WO2020179688A1 - Indoor air treatment apparatus and method of operating same - Google Patents

Indoor air treatment apparatus and method of operating same Download PDF

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Publication number
WO2020179688A1
WO2020179688A1 PCT/JP2020/008393 JP2020008393W WO2020179688A1 WO 2020179688 A1 WO2020179688 A1 WO 2020179688A1 JP 2020008393 W JP2020008393 W JP 2020008393W WO 2020179688 A1 WO2020179688 A1 WO 2020179688A1
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WO
WIPO (PCT)
Prior art keywords
air
chamber
indoor
new
operation pattern
Prior art date
Application number
PCT/JP2020/008393
Other languages
French (fr)
Japanese (ja)
Inventor
華 陳
祥龍 孔
磊 季
佳宏 丁
学誠 徐
Original Assignee
ダイキン工業株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201910157077.2A external-priority patent/CN111637548B/en
Priority claimed from CN201920813589.5U external-priority patent/CN210740621U/en
Priority claimed from CN201920813599.9U external-priority patent/CN210425413U/en
Application filed by ダイキン工業株式会社 filed Critical ダイキン工業株式会社
Priority to JP2021504055A priority Critical patent/JP7174296B2/en
Publication of WO2020179688A1 publication Critical patent/WO2020179688A1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/003Ventilation in combination with air cleaning

Definitions

  • an object of the present invention to provide an indoor air treatment device which can improve the quality of indoor air and is easy to use and an operation method thereof.
  • the indoor air treatment device includes an intake chamber, an air purification chamber, an air flow distribution chamber and an exhaust chamber.
  • An intake fan is provided in the intake chamber.
  • the air purification chamber is provided with an air purification assembly.
  • An exhaust fan is provided in the exhaust chamber. Both the intake chamber and the airflow distribution chamber communicate with the air purification chamber.
  • the intake chamber has an air outlet for communicating with the indoor space.
  • the exhaust chamber has a return air port for communicating with the indoor space and an exhaust port for communicating with the outdoor space.
  • the airflow distribution chamber includes a new wind partition chamber and a suction partition chamber.
  • the new wind partition chamber communicates with the air purification chamber.
  • the fresh air partition chamber and the suction partition chamber are connected by a communication port.
  • the new wind partition chamber has a first new air outlet and a second new air outlet for communicating with the outdoor space.
  • the suction partition chamber has a suction port for communicating with the indoor space.
  • the first new air vent is provided with a first valve plate driven by the first drive mechanism.
  • the second fresh air outlet is provided with a second valve plate driven by the second drive mechanism.
  • the first valve plate is located in a state where the first new air outlet is closed, a state where the communication port is closed, and between the first new air port and the communication port. Driven by the first drive mechanism so that each of the states can be moved.
  • the second valve plate is driven by the second drive mechanism so as to close or open the second fresh air outlet.
  • the exhaust chamber does not communicate with the airflow distribution chamber, the air purification chamber, or the intake chamber.
  • the intake chamber, the air purification chamber, the air flow distribution chamber, and the exhaust chamber are all provided in the case.
  • the outer surface of the case includes a first mounting surface and a second mounting surface extending along the longitudinal direction of the case.
  • the first fresh air outlet is exposed from the first mounting surface.
  • the second fresh air outlet is exposed from the second mounting surface.
  • One exhaust port is exposed on each of the first mounting surface and the second mounting surface.
  • a first mounting interface and a second mounting interface are further provided on each of the first mounting surface and the second mounting surface.
  • the indoor air treatment device can be mounted by the first mounting interface or the second mounting interface.
  • the first mounting surface and the second mounting surface can be attached to two walls at a wall angle, respectively. More preferably, the angle formed by the first mounting surface and the second mounting surface is a right angle.
  • the suction partition chamber has two suction ports.
  • the intake chamber has two air outlets.
  • the outer surface of the case further includes a first connecting surface and a second connecting surface extending along the longitudinal direction of the case. One air outlet and one suction port are exposed on the first connecting surface. One air outlet and one suction port are also exposed on the second connecting surface.
  • a partition wall is provided between the fresh air partition chamber and the suction partition chamber.
  • the communication port includes a first communication port and a second communication port provided on the partition wall.
  • the first valve plate moves to each of a state in which the first fresh air port is closed, a state in which the first communication port is closed, and a state which is located between the first fresh air port and the first communication port. It is driven by a first drive mechanism so that it can be.
  • the second valve plate moves to a state in which the second new air outlet is closed, a state in which the second communication port is closed, and a state in which the second valve plate is located between the second new air port and the second communication port. Is driven by a second drive mechanism.
  • the first new air outlet is in a state of being cut off from the outdoor space
  • the operation method of the indoor air treatment device is as follows: new wind introduction operation pattern, internal circulation operation pattern, and new wind introduction. Includes an operating pattern in which internal circulation occurs simultaneously.
  • the new wind introduction operation pattern is 1a) A step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the communication port is closed. 1b) a step in which the second valve plate is driven by the second drive mechanism so as to move to a state in which the second fresh air opening is opened, and the second fresh air opening becomes in communication with the outdoor space; 1c) By activating the rotation of the intake fan, the fresh air in the outdoor space enters the air purification chamber through the second new air outlet and the new air partition chamber in order, and after being purified by the air purification assembly, the intake chamber and the air blower. And sequentially into the interior space through the mouth.
  • the internal circulation operation pattern is 2a) a step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the communication port is opened, and the communication port establishes communication between the fresh air partition chamber and the suction partition chamber; 2b) a step in which the second valve plate is driven by the second drive mechanism so as to move to a state in which the second fresh air outlet is closed, and the second fresh air outlet is shut off from the outdoor space; 2c) The rotation of the intake fan is started, and the air in the indoor space enters the air purification chamber through the suction port, the suction partition chamber, the communication port, and the fresh air partition chamber in order, and is purified by the air purification assembly, and then the intake chamber. , And then blowing the air into the indoor space through the air outlet in order.
  • the operation pattern in which new wind is introduced and internal circulation is performed at the same time is 3a) a step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the communication opening is opened, and the communication opening allows the fresh air partition chamber and the suction partition chamber to communicate with each other; 3b) A step in which the second valve plate is driven by the second drive mechanism so as to move to a state in which the second new air outlet is opened so that the second new air outlet communicates with the outdoor space. 3c) The rotation of the intake fan is activated, and the fresh air in the outdoor space enters the air purification chamber through the second new air outlet and the new air partition chamber in this order, and is purified by the air purification assembly, and then the intake chamber and the air blower.
  • the air is introduced into the indoor space through the mouth in order, and the air in the indoor space passes through the suction port, the suction partition chamber, the communication port, and the fresh air partition chamber in order to enter the air purification chamber, and after being purified by the air purification assembly, the intake chamber Includes an operating pattern in which new wind is introduced and internal circulation is performed at the same time, including the step of feeding into the chamber space through the air outlets in order.
  • an exhaust operation pattern is further included.
  • the exhaust operation pattern is 4a) A step in which the rotation of the exhaust fan is activated and the air in the indoor space is discharged to the outdoor space through the return air port, the exhaust chamber, and the exhaust port in this order. including.
  • the exhaust operation patterns include a new wind introduction operation pattern, an internal circulation operation pattern, and an operation pattern in which new wind introduction and internal circulation are performed at the same time. It will be done at the same time as any one of them.
  • Another method of operating the indoor air treatment device is to work using the above indoor air treatment device, the second new air outlet is in a state of being cut off from the outdoor space, and the new wind introduction operation pattern, the internal circulation operation pattern, and the new wind An operation pattern in which introduction and internal circulation are performed simultaneously is included.
  • the new wind introduction operation pattern is Ia) A step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the communication port is closed, and the first new air port communicates with the outdoor space. 1b) The rotation of the intake fan is started, and the fresh air in the outdoor space enters the air purification chamber through the first fresh air inlet and the fresh air partition chamber in this order, and is purified by the air purification assembly, and then the intake chamber and the air blower. Steps to send into the indoor space through the mouth in order, including.
  • the internal circulation operation pattern is IIa) a step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the first fresh air outlet is closed, and the first fresh air outlet is shut off from the outdoor space; IIb) By activating the rotation of the intake fan, the air in the indoor space enters the air purification chamber through the suction port, the suction partition chamber, the communication port, and the new wind partition chamber in this order, and after being purified by the air purification assembly, the intake chamber. , A step of blowing the air into the indoor space through the blower opening in order, including.
  • the operation pattern in which new wind is introduced and internal circulation is performed at the same time is IIIa)
  • the first valve plate is driven by the first drive mechanism so as to move to a state located between the first new air outlet and the communication port, and the first new air outlet communicates with the outdoor space.
  • fresh air in the outdoor space enters the air purification chamber through the first new air outlet and the new air partition chamber in order, and after being purified by the air purification assembly, the intake chamber, the air blow The air is introduced into the indoor space through the mouth in order, and the air in the indoor space passes through the suction port, the suction partition chamber, the communication port, and the fresh air partition chamber in order to enter the air purification chamber, and after being purified by the air purification assembly, the intake chamber ,
  • a step of blowing the air into the indoor space through the blower opening in order including.
  • an exhaust operation pattern is further included.
  • the exhaust operation pattern is IVa) A step in which the rotation of the exhaust fan is activated and the air in the indoor space is discharged to the outdoor space through the return air port, the exhaust chamber, and the exhaust port in this order. including.
  • the exhaust operation pattern is one of a new wind introduction operation pattern, an internal circulation operation pattern, and an operation pattern in which new wind introduction and internal circulation are performed at the same time. Can be done at the same time.
  • the indoor air treatment device and its operating method have the following beneficial effects.
  • the first drive mechanism and the second drive mechanism can drive the movement by the first valve plate and the second valve plate.
  • the first drive mechanism and the second drive mechanism By controlling the first drive mechanism and the second drive mechanism, it is possible to realize the switching control to the air flow path in the air flow distribution chamber by the first valve plate and the second valve plate.
  • air enters the air flow distribution chamber from indoors or outdoors, enters the air purification chamber to be purified, and finally enters the indoor space via the intake chamber and the air outlet.
  • the front view of an indoor air processing apparatus is shown.
  • the perspective view of an indoor air processing apparatus is shown.
  • a schematic view of the surrounding airflow transmitted from the air purification/ventilation device to the indoor space is shown, and the white arrow in the figure shows the airflow.
  • a perspective view of the indoor air treatment device as viewed from the left rear side is shown.
  • the perspective view which looked at the indoor air treatment equipment from which the 1st end cap, the main exterior surface, and the 2nd connection surface was seen from the right front side is shown.
  • the perspective view which looked at the indoor air treatment equipment from which the 1st end cap, the main exterior surface, and the 2nd connecting surface was removed was seen from the front side.
  • the 1st valve plate is in the state which closes a communicating port
  • the 2nd valve plate shows the composition schematic of the air distribution body in the state which opens the 2nd new air opening.
  • a schematic configuration diagram of an airflow distributor in which the first valve plate is in a state of closing the first new air outlet and the second valve plate is in a state of closing the second new air outlet is shown.
  • a schematic configuration diagram of an airflow distributor in which the first valve plate is located between the first new air outlet and the communication port and the second valve plate opens the second new air outlet is shown.
  • a schematic configuration diagram of an airflow distributor in which the first valve plate is in a state of closing the first new air outlet and the second valve plate is in a state of opening the second new air outlet is shown.
  • the 1st valve plate is in the state which closes a communication opening
  • the 2nd valve plate shows the schematic diagram of composition of an air current distribution object in the state which closes the 2nd new wind mouth.
  • the schematic diagram of a structure of the airflow distributor in another embodiment is shown.
  • the schematic diagram of the air flow path of fresh air introduction, internal circulation, and exhaust in an indoor air treatment apparatus is shown.
  • FIG. 6 shows a schematic view of a first mounting scheme of an indoor air treatment device mounted on a wall by a first mounting surface.
  • FIG. 6 shows a schematic view of a second mounting scheme for an indoor air treatment device mounted on a wall by a second mounting surface.
  • attached on two walls is shown.
  • the structural schematic of the back plate in a case is shown.
  • a schematic configuration diagram of a mounting plate and a hook is shown.
  • the structural schematic diagram which attached the back plate to the hook of a mounting plate is shown.
  • It is a schematic diagram of a combination of an indoor air treatment device and a display panel in a modification.
  • FIG. 9 is a schematic connection diagram of a display panel and a support rod in a modified example. It is the perspective view which looked at the air treatment equipment in the modification from the left rear side. It is a block diagram which looked at the airflow distribution chamber in the modification from the rear side upper part.
  • FIG. 1a shows a front view of the indoor air treatment device as seen from the front.
  • the direction outward which is perpendicular to the plane of the drawing, is the front direction
  • the main exterior surface 131 is located on the front side surface of the cover body 13.
  • the first end cap 11 is located at the upper end of the cover body 13 and the inward direction that is perpendicular to the paper surface of the drawing is the backward direction and the direction that is upward along the paper surface of the drawing is the upward direction.
  • the second end cap 12 is located at the lower end of the cover body 13 with the downward direction along the paper surface of the drawing as the downward direction.
  • the direction toward the right along the paper surface of the drawing is the right direction, and the first connecting surface 132 is connected to the right side of the main exterior surface 131.
  • the direction toward the left along the paper surface of the drawing is the left direction, and the second connecting surface 133 is connected to the left side of the main exterior surface 131.
  • the indoor air treatment device has a case 1 having a columnar structure.
  • the case 1 includes a cylindrical cover body 13.
  • the first end cap 11 is attached to the upper end of the cover body 13.
  • the second end cap 12 is attached to the lower end of the cover body 13.
  • the front side surface of the cover body 13 is the main exterior surface 131.
  • the right side of the main exterior surface 131 is connected to the first connecting surface 132.
  • the left side of the main exterior surface 131 is connected to the second connection surface 133.
  • Information for example, temperature, humidity, PM2.5 concentration
  • Operation mode, etc. is further attached with a display panel 139 for displaying.
  • the indoor air treatment device includes an intake chamber 22, an air purification chamber 23, an air flow distribution chamber 24, and an exhaust chamber 25. Both the intake chamber 22 and the air flow distribution chamber 24 communicate with the air purification chamber 23.
  • the intake chamber 22 is provided with an intake fan 31.
  • An air purification assembly 32 is provided in the air purification chamber 23.
  • An exhaust fan 33 is provided in the exhaust chamber 25.
  • the intake chamber 22 has an air outlet 221/222 for communicating with the indoor space.
  • the exhaust chamber 25 has a return air port 251 for communicating with the indoor space and an exhaust port 252a / 252b for communicating with the outdoor space.
  • the case 1 is provided with the airflow distributor 14.
  • the airflow distribution chamber 24 is provided in the airflow distribution body 14.
  • the airflow distribution chamber 24 includes a new wind partition chamber 241 and a suction partition chamber 242.
  • the new wind partition chamber 241 communicates with the air purification chamber 23.
  • the new wind partition chamber 241 and the suction partition chamber 242 are communicated with each other by a communication port 2413.
  • the fresh air partition chamber 241 has a first fresh air outlet 2411 and a second fresh air outlet 2412 for communicating with the outdoor space.
  • the suction partition chamber 242 has a suction port 2421/2422 for communicating with the indoor space.
  • the first new air vent 2411 is provided with a first valve plate 41 driven by the first drive mechanism 42.
  • the second new air outlet 2412 is provided with a second valve plate 43 driven by the second drive mechanism 44.
  • the indoor air treatment device can realize the following three basic operation patterns.
  • the fresh air introduction operation pattern is a pattern that is individually performed in the air flow path from OA to SA in FIG. 4 to inhale fresh air from the outdoor space, purify it, and then transmit it to the indoor space.
  • Air enters the airflow distribution chamber 24 through the first fresh air outlet 2411 or the second fresh air outlet 2412, and then flows into the air purification chamber 23.
  • the intake chamber 22 draws in the purified air from the air purifying chamber 23 and blows it into the indoor space through the air blow ports 221/222.
  • the internal circulation operation pattern is a pattern that is individually performed in the air flow path from RA2 to SA in FIG. 4 to suck in turbid air from the indoor space, purify the air, and then transmit the purified air to the indoor space.
  • Air enters the airflow distribution chamber 24 through the suction ports 2421/2422 and then flows into the air purification chamber 23.
  • the intake chamber 22 draws in the purified air from the air purifying chamber 23 and blows it into the indoor space through the air blow ports 221/222.
  • ⁇ Operation pattern in which new air is introduced and internal circulation is performed at the same time The operation pattern in which the introduction of new air and the internal circulation are performed simultaneously is performed in the air flow path from OA to SA and the air flow path from RA2 to SA in FIG. 4 at the same time, and fresh air is taken from the outdoor space and purified. Is transmitted from the indoor space to the indoor space, and at the same time, turbid air is sucked from the indoor space, purified, and then transmitted to the indoor space.
  • the outdoor air enters the air flow distribution chamber 24 from the first new air port 2411 or the second new air port 2412 and then flows into the air purification chamber 23, and at the same time, the indoor air flows from the suction port 2421/2422 to the air flow distribution chamber 24. After entering, it similarly flows to the air purification chamber 23.
  • the intake chamber 22 draws in the purified air from the air purifying chamber 23 and blows it into the indoor space through the air blow ports 221/222.
  • the indoor air treatment device can realize an exhaust operation pattern.
  • the exhaust chamber 25 has a return air port 251 for communicating with the indoor space and an exhaust port 252a / 252b for communicating with the outdoor space.
  • the exhaust fan 33 rotates, air enters the exhaust chamber 25 through the return air port 251 and then is discharged to the outdoor space through the exhaust ports 252a / 252b.
  • the above three basic operation patterns can be performed individually. Further, the exhaust operation pattern can be performed individually (that is, it can be performed individually in the airflow path from RA1 to EA in FIG. 4), and the exhaust operation pattern is the above three basic operations. It can also be done at the same time as any one of the patterns.
  • the exhaust chamber 25 is installed individually and does not communicate with the air flow distribution chamber 24, the air purification chamber 23, or the intake chamber 22. Therefore, in the indoor air treatment device, when the exhaust work is performed, the exhaust airflow does not collide with the airflow in the airflow distribution chamber 24, the air purification chamber 23, or the intake chamber 22, and the airflow is not turbulent or turbulent. Then, the internal circulation operation pattern and the new wind introduction operation pattern do not interfere with the normal operation. Moreover, according to the independent exhaust airflow path, it is possible to effectively prevent the airflow distribution chamber 24, the air purification chamber 23, or the intake chamber 22 from occupying the space, which is advantageous for securing the amount of new wind introduced. Yes, it is finally ensured that the air quality in the room satisfies the comfort requirements of the user.
  • the indoor air treatment device When using the above indoor air treatment device, the indoor air treatment device is installed in the room, and the first new air outlet 2411 or the second new air outlet 2412 is communicated with the outdoor space.
  • a fresh air introduction operation pattern, an internal circulation operation pattern, an operation pattern in which fresh air introduction and internal circulation are simultaneously performed, and a single exhaust operation pattern, or an exhaust operation pattern and any one of the above operation patterns Can be realized in combination with.
  • the exhaust airflow paths are individually provided, there is no possibility that airflow turbulence or turbulence will occur due to collision with other airflow paths.
  • the various operating patterns of the indoor air treatment device can be fitted and combined, thereby effectively treating the indoor air and improving the quality of the indoor air.
  • one airflow distributor 14 is designed for the convenience of manufacturing.
  • the airflow distribution chamber 24 is provided in the airflow distribution body 14.
  • a partition wall 141 is provided between the fresh air partition chamber 241 and the suction partition chamber 242.
  • the communication port 2413 is provided in the partition wall 141.
  • the upper end of the new wind partition chamber 241 communicates with the air purification chamber 23, as can be seen with reference to FIGS. 2b, 2c, and 3b and 3d, in order to enable the airflow distribution chamber 24 to switch to the airflow path.
  • the upper end of the suction partition chamber 242 does not communicate with the air purification chamber 23.
  • the air that enters the fresh air partition chamber 241 from the fresh air inlet can directly enter the air purification chamber 23, but the air that enters the suction partition chamber 242 from the suction opening 2421/2422 can be sent through the communication opening 2413 to the fresh air partition chamber 2413. After entering the chamber 241 it enters the air purification chamber 23.
  • the first valve plate 41 and the second valve plate 43 switching to the operation pattern of the indoor air treatment device is realized. be able to.
  • Both the first drive mechanism 42 and the second drive mechanism 44 may be rotary motors.
  • the opening degree of the first valve plate 41 or the second valve plate 43 can be controlled. This controls the magnitude of the air flow rate according to the actual demand for indoor air quality. In addition, it is also advantageous that the downsizing of the air treatment device is ensured.
  • the first drive mechanism 42 and the second drive mechanism 44 operate the indoor air treatment device by driving the first valve plate 41 and the second valve plate 43, respectively. Control the pattern and air flow.
  • the first new air outlet 2411 is provided with a first valve plate 41. ing.
  • the first valve plate 41 is driven by the first drive mechanism 42, and is in a state where the first new air outlet 2411 is closed, a state where the communication port 2413 is closed, and between the first new air port 2411 and the communication port 2413. You can move to each of the states located in.
  • a second valve plate 43 is provided at the second fresh air outlet 2412. The second valve plate 43 is driven by the second drive mechanism 44 to close or open the second fresh air outlet 2412, and the structure is simple.
  • the communication port 2413 includes a first communication port 2413a and a second communication port 2413b provided in the partition wall.
  • the first valve plate 41 is driven by the first drive mechanism 42 to close the first new air outlet 2411, the first communication port 2413a, and the first new air outlet 2411 and the first. It is possible to move to each of the states located between the communication ports 2413a.
  • the second valve plate 43 is driven by the second drive mechanism 44 to close the second new air outlet 2412, the second communication port 2413b, and the second new air outlet 2412 and the second. , Which is located between the communication ports 2413b.
  • the first communication port 2413a approaches the first valve plate 41 side
  • the second communication port 2413b approaches the second valve plate 43 side. Since the structures on both the left and right sides of the airflow distributor 14 are basically symmetrical, it is easy to manufacture and install. Moreover, since both the first valve plate 41 and the second valve plate 43 rotate and move inside the fresh air partition chamber, they do not project from the outer wall of the airflow distributor. Therefore, the first valve plate 41 and the second valve plate 43 do not interfere with parts or walls outside the airflow distributor. Further, since the first valve plate 41 and the second valve plate 43 have the same motion mode, the second fresh air outlet 2412 is closed and fresh air is taken in through the first fresh air outlet 2411.
  • the fresh air introduction operation pattern, the internal circulation operation pattern, and the fresh air of the indoor air treatment device are also obtained.
  • the logic of controlling the operation pattern in which the introduction and the internal circulation are performed at the same time becomes the same. As described above, the control method is simple, and the user is less likely to be confused during use.
  • the suction partition chamber 242 has two suction ports.
  • One of the suction ports is the first suction port 2421.
  • the outer surface of the case 1 further includes a first connecting surface 132 and a second connecting surface 133 extending along the longitudinal direction of the case 1.
  • the first connecting surface 132 is connected to the right side of the main exterior surface 131.
  • the second connection surface 133 is connected to the left side of the main exterior surface 131.
  • the first suction port 2421 is exposed on the first connection surface 132.
  • the second suction port 2422 is exposed on the second connection surface 133.
  • a window grid 134 is further provided on the first connecting surface 132 and the second connecting surface 133.
  • the airflow entering the first suction port 2421 and the second suction port 2422 becomes uniform. Further, it is possible to prevent the user's finger from getting inside the machine and coming into contact with the rotating member or the electric member, so that the use safety of the user is ensured.
  • the overall outer shape of the above indoor air treatment device has a columnar structure.
  • the intake chamber 22, the air purification chamber 23, the airflow distribution chamber 24, and the exhaust chamber 25 are all provided in the case 1 and the case 1 Are sequentially distributed from the first end to the second end.
  • the overall columnar structure is easy to install and can be better integrated with the interior space.
  • the indoor space processing device can be better integrated with the indoor space.
  • the case 1 is provided with a first mounting surface 135 and a second mounting surface 136.
  • the first new air vent 2411 is exposed from the first mounting surface 135.
  • the second fresh air outlet 2412 is exposed from the second mounting surface 136.
  • One exhaust port is exposed on each of the first mounting surface 135 and the second mounting surface 136.
  • the exhaust port exposed from the first mounting surface 135 is the first exhaust port 252a.
  • the exhaust port exposed from the second mounting surface 136 is the second exhaust port 252b.
  • a first mounting interface 137 and a second mounting interface 138 are further provided on each of the first mounting surface 135 and the second mounting surface 136.
  • the indoor air treatment device may be mounted by a first mounting interface 137 or a second mounting interface 138.
  • the first mounting interface 137 or the second mounting interface 138 can be selected to mount the indoor air treatment device on the indoor wall 5. There are various mounting methods, and it is possible to satisfy the requirements of different mounting environments.
  • the air purification assemble 32 is a columnar filter network as a preferred embodiment in order to adapt to the structural arrangement of the indoor air treatment apparatus.
  • the outer structure of the air purification assembly 32 can be better matched with the air purification chamber 23, resulting in higher space utilization.
  • the filter network can filter PM2.5 particulate matter in the air. Further, for example, by arranging some reactants capable of removing other pollutants such as formaldehyde in the filter network, harmful gaseous substances in the air in the indoor space or the outdoor space can be removed.
  • one end of the air purification chamber 23 communicates with the intake chamber 22 and the other end of the air purification chamber 23 communicates with the airflow distribution chamber 24.
  • the upper end of the air purification chamber 23 can be communicated with the intake chamber 22, and the lower end of the air purification chamber 23 can be communicated with the airflow distribution chamber 24.
  • the air in the air flow distribution chamber 24 flows into the air purification chamber 23, is purified by the purification device, and then flows into the intake chamber 22. Eventually, the cleanliness of the air sent into the room is secured, and the user's request can be satisfied.
  • the exhaust port 252a / 252b and the new air port 2411/2412 communicate with the outdoor space via a duct.
  • the air flow at the fresh air outlets 2411/2412 and the exhaust ports 252a/252b does not disturb the air in the indoor space.
  • the blower ports 221/222, the intake ports 2421/2422, and the return air port 251 are all located in the indoor space.
  • the airflow port 221/222 is the upper part of the case 1 in order to prevent the airflows at the airflow port 221/222, the intake port 2421/2422, and the return air port 251 from being disturbed by each other.
  • the intake ports 2421/2422 are located in the lower part of the case 1.
  • the air outlets 221/222 and the intake ports 2421/2422 are far apart from each other, and the effect of mutual disturbance of the airflow at these two locations is weakened.
  • the return air port 251 is provided on the end surface of the second end of the case 1.
  • the return air port 251 is far away from the air outlet 221/222 and the intake port 2421/2422. Not only that, the direction of the return air port 251 is also different from that of the air outlet 221/222 and the intake port 2421/2422. Therefore, the airflow at the return air port 251 is unlikely to affect the airflow at the airflow port 221/222 or the intake port 2421/2422, and mutual interference between the airflows is avoided.
  • the first end of the case 1 has a storage chamber 21 for accommodating the electric elements. Is further provided. Other electrical control elements such as a power supply and a controller may be installed in the accommodation chamber 21.
  • the electrical element in the containment chamber 21 generates heat. If the accommodation chamber 21 is close to the new air outlet 2411/2412 or the exhaust port 252a / 252b, the temperature in the vicinity of the accommodation chamber 21 becomes low due to the low temperature air outside the room. However, moisture in the air in the housing chamber 21 condenses on the electric element to affect the insulation performance of the electric element, which increases the risk of the electric element failure.
  • the indoor air treatment apparatus since the accommodation chamber 21 is separated from the new air outlet 2411/2412 and the exhaust ports 252a/252b, the risk of dew condensation in the accommodation chamber 21 is reduced, the operation reliability by the electric element is improved, and the indoor air treatment apparatus is improved. Is maintained to operate normally.
  • an outdoor PM2.5 detection sensor is installed in the new wind partition chamber 241 and an indoor PM2.5 detection sensor is installed in the suction partition chamber 242. can do. Both the outdoor PM2.5 detection sensor and the indoor PM2.5 detection sensor are connected to the control device.
  • the control device moves the first drive mechanism 42, the second drive mechanism 44, the intake fan 31, and the exhaust fan 33 based on the data detected by the outdoor PM2.5 detection sensor and the indoor PM2.5 detection sensor. Can be controlled. As a result, the indoor air is adjusted and the control accuracy is improved.
  • the intake chamber 22 has two air outlets 221/222 in order to make the airflow sent from the air outlets 221/222 in the indoor air treatment device uniform.
  • Each of the first connection surface 132 and the second connection surface 133 on both sides of the main exterior surface 131 is provided with one air outlet.
  • the blower port on the first connection surface 132 is the first blower port 221.
  • the air outlet on the second connection surface 133 is the second air outlet 222. Both the first blower opening 221 and the second blower opening 222 blow air into the indoor space.
  • a turbofan may be used as the intake fan 31 in order to form the airflow sent from the first air outlet 221 and the second air outlet 222 into a surrounding airflow. As shown in FIG.
  • the airflow delivered from the first air outlet 221 flows to one wall, and the airflow delivered from the second air outlet 222 flows to the other vertical wall.
  • the two streams merge around the wall from opposite directions and are surrounded.
  • Such fluid flow causes the airflow to be more evenly distributed throughout the room. And since it is not blown out by a person, the comfort of the person is significantly improved.
  • the indoor air treatment device can better adapt to the indoor space.
  • the indoor air treatment device can be chosen to be mounted horizontally on the wall 5 between the window and the ground, as shown in Figure 5a.
  • the first mounting surface 135 is attached to the wall 5.
  • a duct communicating with the outdoor space is connected to the first new air port 2411 and the first exhaust port 252a on the first mounting surface 135.
  • the main exterior surface 131 faces toward the ceiling so that a person can see the display panel in a plan view.
  • the indoor air treatment device may be mounted horizontally on the wall 5 at a high position.
  • the second mounting surface 136 is attached to the wall 5.
  • a duct communicating with the outdoor space is connected to the second new air port 2412 and the second exhaust port 252b on the second mounting surface 136.
  • the first mounting surface 135 faces the ceiling so that a person can view the display panel 139 from the bottom.
  • the main exterior surface 131 faces the ground.
  • the indoor air treatment device may be mounted perpendicular to the position of the wall angle.
  • the first mounting surface 135 and the second mounting surface 136 can be attached to the two walls 5 at the wall corner, respectively.
  • the angle between the two walls 5 at the wall angle is a right angle.
  • the first mounting surface 135 and the second mounting surface 136 are attached to two vertical walls 5, respectively.
  • the angle formed by the first mounting surface 135 and the second mounting surface 136 is a right angle.
  • a duct communicating with the outdoor space is connected to the first new air port 2411 and the first exhaust port 252a on the first mounting surface 135.
  • a duct communicating with the outdoor space may be connected to the second new air port 2412 and the second exhaust port 252b on the second mounting surface 136.
  • the main exterior surface 131 faces horizontally.
  • the first blower opening 221 and the second blower opening 222 respectively have two vertical walls. It will face the wall 5.
  • the air sent out from the first air outlet 221 and the second air outlet 222 is formed in the surrounding airflow after being blocked by the two walls 5, respectively. As a result, the airflow becomes soft and evenly distributed.
  • the indoor air treatment device may be mounted horizontally or vertically.
  • the display panel 139 can be adapted for horizontal or vertical mounting of the air purification assembly 32, and the connection interface between the display panel 139 and the main exterior surface 131 can be installed in a 90 ° rotation compatible structure. .. After the display panel 139 and the main exterior surface 131 have been fitted and attached, the display panel 139 can be rotated 90 °, 180 °, or 270 ° along its location plane to refit with the connection interface on the main exterior surface 131. Can be connected. Then, by adjusting the angle of the display panel according to the mounting method of the air treatment device, it is possible to improve the convenience for the user to browse the display contents of the display panel.
  • first mounting interface 137 and the second mounting interface 138 can be adapted for horizontal or vertical mounting of the air purification assembly 32. After the first mounting interface 137 or the second mounting interface 138 has been fitted in conformity with the connecting interface in the wall 5, the first mounting interface 137 or the second mounting interface 138 is mounted along its plane of occupancy 90. A rotation of °, 180° or 270° allows a refitting connection with the connection interface on the wall 5.
  • a back plate 7 is connected to the case 1 of the indoor air treatment device in order to mount the indoor air treatment device on the wall 5.
  • a mounting hole 71 is provided in the back plate 7.
  • a mounting plate 6 is fixedly connected to the wall 5, and a hook 61 is fixed to the mounting plate 6.
  • the back plate 7 is hooked on the hook 61 by the mounting hole 71. This makes it easier to hook the indoor air treatment device on the wall 5.
  • the back plate 7, the mounting plate 6, and the hook 61 may be made of a sheet metal material. A connection by bolt connection or soldering may be adopted between the hook 61 and the mounting plate 6. In this case, the structure is simple and the installation is convenient.
  • the indoor mounting device is mounted on the wall 5 by the first mounting surface 135.
  • the first fresh air outlet 2411 and the first exhaust outlet 252a are attached to the wall 5 and are in a state of being shielded from the outdoor space.
  • the first valve plate 41 and the second valve plate 43 are controlled by the following methods, respectively.
  • the new wind introduction operation pattern will be described with reference to FIG. 3a.
  • the new wind introduction operation pattern includes the following work steps. 1a) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the communication port 2413 is closed. Then, the suction partition chamber 242 and the new wind partition chamber 241 are shut off, and only the new wind partition chamber 241 communicates with the air purification chamber 23. 1b) The second valve plate 43 is driven by the second drive mechanism 44 to move to a state where the second new air outlet 2412 is opened, and the second new air outlet 2412 communicates with the outdoor space.
  • the outdoor space communicates with the indoor space through the second new air outlet 2412, the new air partition chamber 241, the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order.
  • the rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31.
  • fresh air in the outdoor space enters the air purification chamber 23 through the second fresh air outlet 2412 and the fresh air partition chamber 241 in order, and is purified by the air purification assembly 32, and then the intake chamber 22. Then, the air is blown into the indoor space through the blower ports 221/222 in order.
  • the flow velocity of the air flowing in the indoor space can be adjusted, and further, the pressure of the air in the indoor space can be adjusted.
  • the rotation speed of the intake fan 31 By increasing the rotation speed of the intake fan 31, a large amount of outdoor air is purified and then flows into the indoor space, and the air pressure in the indoor space becomes higher than the air pressure in the outdoor space.
  • the indoor space is maintained at a positive pressure, turbid air is prevented from entering the room from the outside, and the cleanliness of the indoor air is ensured.
  • the internal circulation operation pattern includes the following work steps.
  • 2a) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the communication port 2413 is opened.
  • the communication port 2413 connects the fresh air partition chamber 241 and the suction partition chamber 242. Then, the air in the indoor space passes through the intake port 2421/2422, the suction partition chamber 242, the communication port 2413, the new wind partition chamber 241 and the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order to enter the indoor space. You can enter again.
  • 2b) The second valve plate 43 is driven by the second drive mechanism 44 to move to a state in which the second new air vent 2412 is closed.
  • the second new air outlet 2412 is blocked from the outdoor space, and the first new air outlet 2411 is attached to the wall 5 to be shielded from the outdoor space. Therefore, air cannot enter the fresh air partition chamber 241 through the first fresh air outlet 2411 and the second fresh air outlet 2412, and only the air flowing from the suction partition chamber 242 can enter the fresh air partition chamber 241. it can. 2c)
  • the rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31. Under the drive of the intake fan 31, the air in the indoor space enters the air purification chamber 23 through the intake port 2421/2422, the suction partition chamber 242, the communication port 2413, and the new wind partition chamber 241 in this order, and is purified by the air purification assembly 32. After that, the air is returned to the indoor space through the intake chamber 22 and the air outlets 221 and 222 in that order.
  • FIGS. 3c and 3d An operation pattern in which fresh air introduction and internal circulation are performed at the same time will be described with reference to FIGS. 3c and 3d.
  • An operation pattern in which fresh air introduction and internal circulation are performed at the same time includes the following work steps.
  • the communication port 2413 connects the fresh air partition chamber 241 and the suction partition chamber 242. Then, the air in the indoor space passes through the intake port 2421/2422, the suction partition chamber 242, the communication port 2413, the new wind partition chamber 241 and the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order to enter the indoor space. You can enter again.
  • the second valve plate 43 is driven by the second drive mechanism 44 to move to a state where the second new air outlet 2412 is opened, and the second new air outlet 2412 communicates with the outdoor space. Then, the outdoor space passes through the second new air outlet 2412, the new air partition chamber 241, the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order, and communicates with the indoor space.
  • 3c) The rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31. Under the drive of the intake fan 31, the fresh air in the outdoor space enters the air purification chamber 23 through the second new air outlet 2412 and the new air partition chamber 241 in order, and after being purified by the air purification assembly 32, the air is taken in.
  • the air is blown into the indoor space through the chamber 22 and the air outlets 221 and 222 in that order.
  • the air in the indoor space enters the air purification chamber 23 in this order through the suction port 2421/2422, the suction partition chamber 242, the communication port 2413, and the new wind partition chamber 241.
  • the air intake chamber 22 After purification by the air purification assembly 32, the air intake chamber 22 Then, the air is blown into the indoor space through the blower ports 221/222 in order. As a result, the quality of the air fed into the room finally satisfies the requirements of the user.
  • the flow rate of the air entering the fresh air partition chamber 241 from the communication port 2413 can be adjusted, and further, the internal circulation air flow rate and the introduced fresh air.
  • the magnitude of the flow rate can be adjusted.
  • the size of the opening degree of the first valve plate 41 and the rotation speed of the intake fan 31 the size of the air pressure in the room can be adjusted. For example, by increasing the rotation speed of the intake fan 31, a large amount of outdoor air is purified and then flows into the indoor space, and the air pressure in the indoor space becomes larger than the air pressure in the outdoor space. Thereby, the indoor space is maintained at a positive pressure, turbid air is prevented from entering the room from the outside, and the cleanliness of the indoor air is secured.
  • the exhaust operation pattern will be described.
  • the indoor space and the outdoor space are communicated with each other through the return air port 251 and the second exhaust port 252b.
  • the air in the indoor space is discharged to the outdoor space through the return air port 251, the exhaust fan 25, and the exhaust ports 252a/252b in order.
  • the exhaust operation pattern may be performed individually, but among the above (A1) fresh air introduction operation pattern, (A2) internal circulation operation pattern, and (A3) operation mode in which fresh air introduction and internal circulation are performed at the same time. Any one may be performed at the same time.
  • the pressure of the indoor air can be adjusted.
  • the rotation speed of the exhaust fan 33 By increasing the rotation speed of the exhaust fan 33, more indoor air is discharged to the outside, and the pressure of the indoor air is reduced.
  • the turbid air in the room is discharged to the outside of the room, and at the same time, the diffusion of the turbid air in the room to other rooms is suppressed.
  • the indoor mounting device is mounted on the wall 5 by the second mounting surface 136.
  • the second fresh air outlet 2412 and the second exhaust outlet 252b are attached to the wall 5 and are shut off from the outdoor space.
  • the first valve plate 41 and the second valve plate 43 are controlled by the following methods, respectively.
  • the new wind introduction operation pattern will be described with reference to FIG. 3e.
  • the new wind introduction operation pattern includes the following work steps. Ia) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the communication port 2413 is closed. The first new air outlet 2411 communicates with the outdoor space. Then, the suction partition chamber 242 and the new wind partition chamber 241 are shut off, and only the new wind partition chamber 241 communicates with the air purification chamber 23. The outdoor space passes through the first new air outlet 2411, the new air partition chamber 241, the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order, and communicates with the indoor space.
  • the internal circulation operation pattern includes the following working steps. IIa)
  • the first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the first new air outlet 2411 is closed.
  • the first new air outlet 2411 is blocked from the outdoor space, and the second new air outlet 2412 is attached to the wall 5 to be shielded from the outdoor space. Therefore, air cannot enter the new air partition chamber 241 from the first new air outlet 2411 or the second new air outlet 2412.
  • the communication port 2413 is in an open position, the communication port 2413 communicates the suction partition chamber 242 and the new wind partition chamber 241, and the air in the indoor space is sucked into the suction port 2421/2422, the suction partition chamber 242, the communication port 2413, and the new wind partition.
  • the air can be returned to the indoor space by sequentially passing through the ports 2421/2422, the suction partition chamber 242, the communication port 2413, the fresh air partition chamber 241, the air purification chamber 23, the air intake chamber 22, and the blower ports 221/222.
  • IIIb) The rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31. Under the drive of the intake fan 31, fresh air in the outdoor space enters the air purification chamber 23 through the first new air outlet 2411 and the new air partition chamber 241 in this order, and after being purified by the air purification assembly 32, the air is taken in. The air is blown into the indoor space through the chamber 32 and the air blow ports 221/222 in order.
  • the air in the indoor space enters the air purifying chamber 23 through the suction ports 2421/2422, the suction partition chamber 242, the communication port 2413, and the fresh air partition chamber 241, in that order, and after being purified by the air purification assembly 32, the intake chamber 22. Then, the air is blown into the indoor space through the blower ports 221/222 in order.
  • the magnitude of the opening degree of the first valve plate 41 By controlling the magnitude of the opening degree of the first valve plate 41, the magnitude of the flow rate of the introduced new wind and the magnitude of the air flow rate of the internal circulation can be adjusted.
  • the opening degree of the first valve plate 41 and the rotation speed of the intake fan 31 it is possible to adjust the magnitude of the pressure of the air in the room. For example, by increasing the rotation speed of the intake fan 31, a large amount of outdoor air is purified and then flows into the indoor space, so that the pressure of air in the indoor space becomes higher than the pressure of air in the outdoor space. As a result, the indoor space is maintained at a positive pressure, turbid air from the outside is prevented from entering the room, and the cleanliness of the indoor air is ensured.
  • exhaust operation pattern may be performed individually, any one of the above (B1) fresh air introduction operation pattern, (B2) internal circulation operation pattern, and (B3) operation pattern in which fresh air introduction and internal circulation are performed simultaneously Or one can be done at the same time.
  • the pressure of the indoor air can be adjusted.
  • the rotation speed of the exhaust fan 33 By increasing the rotation speed of the exhaust fan 33, more indoor air is discharged to the outside, and the pressure of the indoor air is reduced. As a result, the turbid air in the room is discharged to the outside, and at the same time, the diffusion of the turbid air in the room to other rooms is suppressed.
  • the indoor air treatment device can realize fusion of a plurality of types of operation patterns, and various operation patterns can be combined appropriately. .. Thereby, the indoor air can be effectively treated and the quality of the indoor air can be improved. Moreover, since the exhaust airflow paths are individually provided, the airflow turbulence and the turbulent flow do not occur due to collision with other airflow paths. Therefore, the operation performance of the indoor air treatment device is further improved, and the user's sensation is further improved.
  • the indoor air treatment device may be mounted by a plurality of types of mounting methods. Appropriate mounting methods can be selected according to different indoor mounting environments, and can be better adapted to the layout of the indoor space.
  • the indoor air treatment device may be mounted on a wall at a low position, may be mounted on a wall at a high position, or may be mounted according to the position of the wall angle.
  • the opening of the first new air outlet, the second new air outlet, and the communication port is finely controlled by using the first valve plate and the second valve plate. , Achieve the purpose of air flow control, and realize the switching between the new air introduction operation pattern, the internal circulation operation pattern, the operation pattern in which the new air introduction and internal circulation are performed simultaneously, and the exhaust work pattern is performed individually, or , May be performed simultaneously with other work patterns.
  • the control system is simplified, the structure and layout are rational, the volume is small, and the indoor space is saved.
  • This indoor air treatment device includes a housing 3002 and a display panel 3001. At least two sets of engaging portions 3011 are provided on the back of the display panel 3001. The rotation angle of the two adjacent sets of engaging portions 3011 with respect to the center of the display panel 3001 is 90 °.
  • the display panel 3001 is mounted on the housing 3002 by at least one set of two sets of engaging portions 3011.
  • a housing 4001 shown in FIGS. 10 and 11 may be adopted. On the side plate of the housing 4001, two fresh air openings 4111/4121 for communicating with the outside of the room are opened.
  • Both of the two fresh air inlets 4111/4121 may be installed on the first mounting plate 4011 or the second mounting plate 4012.
  • the two fresh air inlets 4111/4121 may be installed on the first mounting plate 4011 and the second mounting plate 4012, respectively.
  • the housing 4001 between the two new air vents is provided with one air detecting means 4005. Therefore, the air detection unit 4005 can detect the introduced fresh air regardless of which fresh air port has introduced the fresh air. As a result, the control accuracy of the air treatment equipment can be improved.
  • the air detection means 4005 is preferably a PM2.5 detection sensor for detecting the PM2.5 concentration of outdoor air.
  • the first fresh air inlet 4111 is provided on the first mounting plate 4011 in the process of concrete implementation.
  • a second fresh air port 4121 is provided on the second mounting plate 4012. The centers of the two fresh air outlets are located on the same horizontal line.
  • the air detecting means 4005 is provided inside the connection portion between the first mounting plate 4011 and the second mounting plate 4012.
  • the indoor air treatment device described above solves various deficiencies existing in the prior art and has high industrial utility value.

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Abstract

In this indoor air treatment apparatus, by controlling switching of an airflow path in an airflow distribution chamber (24) by means of a first valve plate (41) and a second valve plate (43), switching is implemented between a new wind introduction operation pattern, an internal circulation operation pattern, and an operation pattern in which new wind introduction and internal circulation are simultaneously performed. Furthermore, the airflow path for air discharge is provided independently, and thus, in the indoor air treatment apparatus, an air discharge operation pattern can be individually performed, or the air discharge operation pattern can be performed at the same time with any one among the new wind introduction operation pattern, the internal circulation operation pattern, and the operation pattern in which new wind introduction and internal circulation are simultaneously performed. In this way, since matching/switching between the plurality of types of operation patterns can be easily performed, the apparatus can be easily used and the quality of indoor air can be improved.

Description

室内空気処理装置及びその作動方法Indoor air treatment device and method of operating the same
 室内空気処理装置及びその作動方法に関し、室内空気浄化処理の技術分野に属する。 ▽ Regarding indoor air treatment equipment and its operating method, belongs to the technical field of indoor air purification treatment.
 工業化の進展に伴い、工業汚染の原因により、空気中の粉塵粒子などの有害物質の含有量が多くなっており、これらの有害物質は人々の健康に影響を与える。このため、室内空気を浄化して処理するための様々な装置がそのような情勢によって開発されている。 With the progress of industrialization, the content of harmful substances such as dust particles in the air is increasing due to the cause of industrial pollution, and these harmful substances affect people's health. For this reason, various devices for purifying and treating indoor air have been developed under such circumstances.
 一方では、室内に新風を導入する必要があるが、外部の空気の質がよくない場合、室外から室内に導入された新鮮な空気を浄化して処理する必要がある。他方では、室内の空気の内循環処理も行う必要があり、室内の空気の質がホルムアルデヒド等の有害物質で汚染されることもある。そのため、室内の空気の質がよくない場合に、室内の空気を浄化して処理する必要もある。さらに、室内に対して排気処理を行う必要もあり、室内の汚れた空気を速やかに排出するために、室内の空気を適時に室外へ排出する必要がある。 On the other hand, it is necessary to introduce new air into the room, but if the quality of the outside air is not good, it is necessary to purify and treat the fresh air introduced into the room from the outside. On the other hand, it is also necessary to perform an internal circulation process of indoor air, and the quality of indoor air may be contaminated with harmful substances such as formaldehyde. Therefore, when the quality of the indoor air is not good, it is necessary to purify and treat the indoor air. Further, it is necessary to perform exhaust treatment on the room, and it is necessary to timely discharge the indoor air to the outside in order to quickly discharge the dirty air in the room.
 従来技術では、室内の空気を浄化して処理することができる装置が幾つかあったが、一方で、これらの装置は、例えば、新風の導入、内部循環、排気処理等の種々の要求を十分に満足することができなく、また、各機能を同一の装置に効率的に集約することも困難であり、或いは、各機能を同一の装置に集約した場合には、各機能間の適合性がよくなくて、各機能を同時に実現することが困難である。他方で、室内構造によって、室内の取付条件は異なる。従来の空気処理装置は、異なる取付条件に適応することが困難であったため、空気処理装置の取付を容易にするとともに、室内のレイアウトとうまく融合させることができることを実現するのも困難であった。 In the prior art, there were some devices that could purify and treat the air in the room, but on the other hand, these devices are sufficient for various requirements such as introduction of new wind, internal circulation, exhaust treatment, etc. It is not possible to be satisfied with the above, and it is difficult to efficiently consolidate each function into the same device, or when each function is consolidated into the same device, the compatibility between each function becomes high. It is not good, and it is difficult to realize each function at the same time. On the other hand, the indoor mounting conditions differ depending on the indoor structure. Since it has been difficult for conventional air treatment devices to adapt to different mounting conditions, it has also been difficult to facilitate mounting of the air treatment device and to realize that it can be well integrated with the layout of the room. ..
 上記従来技術の欠点を鑑みて、ここでは、室内の空気の質を向上させることができ、使用しやすい室内空気処理装置及びその作動方法を提供することを目的にしている。 In view of the above-mentioned drawbacks of the prior art, it is an object of the present invention to provide an indoor air treatment device which can improve the quality of indoor air and is easy to use and an operation method thereof.
 上記目的を実現するために、室内空気処理装置は、吸気チャンバー、空気浄化チャンバー、気流分配チャンバー及び排気チャンバーを含む。吸気チャンバーには、吸気ファンが設けられている。空気浄化チャンバーには、空気浄化アセンブリが設けられている。排気チャンバーには、排気ファンが設けられている。吸気チャンバーと気流分配チャンバーは、ともに、空気浄化チャンバーに連通している。吸気チャンバーは、室内空間に連通するための送風口を有する。排気チャンバーは、室内空間に連通するための還気口と、室外空間に連通するための排気口と、を有する。気流分配チャンバーは、新風仕切チャンバーと吸込仕切チャンバーを含む。新風仕切チャンバーは、空気浄化チャンバーと連通する。新風仕切チャンバーと吸込仕切チャンバーの間は、連通口によって連通されている。新風仕切チャンバーは、室外空間に連通するための第1の新風口と第2の新風口を有する。吸込仕切チャンバーは、室内空間に連通するための吸込口を有する。第1の新風口には、第1の駆動機構によって駆動される第1の弁板が設けられている。第2の新風口には、第2の駆動機構によって駆動される第2の弁板が設けられている。 In order to achieve the above purpose, the indoor air treatment device includes an intake chamber, an air purification chamber, an air flow distribution chamber and an exhaust chamber. An intake fan is provided in the intake chamber. The air purification chamber is provided with an air purification assembly. An exhaust fan is provided in the exhaust chamber. Both the intake chamber and the airflow distribution chamber communicate with the air purification chamber. The intake chamber has an air outlet for communicating with the indoor space. The exhaust chamber has a return air port for communicating with the indoor space and an exhaust port for communicating with the outdoor space. The airflow distribution chamber includes a new wind partition chamber and a suction partition chamber. The new wind partition chamber communicates with the air purification chamber. The fresh air partition chamber and the suction partition chamber are connected by a communication port. The new wind partition chamber has a first new air outlet and a second new air outlet for communicating with the outdoor space. The suction partition chamber has a suction port for communicating with the indoor space. The first new air vent is provided with a first valve plate driven by the first drive mechanism. The second fresh air outlet is provided with a second valve plate driven by the second drive mechanism.
 室内空気処理装置の第1の好ましい技術案として、第1の弁板は、第1の新風口を閉鎖する状態、連通口を閉鎖する状態、第1の新風口と連通口の間に位置する状態、のそれぞれへ移動することができるように、第1の駆動機構によって駆動される。第2の弁板は、第2の新風口を閉鎖または開放させるように、第2の駆動機構によって駆動される。 As the first preferred technical proposal of the indoor air treatment device, the first valve plate is located in a state where the first new air outlet is closed, a state where the communication port is closed, and between the first new air port and the communication port. Driven by the first drive mechanism so that each of the states can be moved. The second valve plate is driven by the second drive mechanism so as to close or open the second fresh air outlet.
 室内空気処理装置の第2の好ましい技術案として、排気チャンバーは、気流分配チャンバー、空気浄化チャンバー、または、吸気チャンバーに連通しない。 As a second preferred technical solution for the indoor air treatment device, the exhaust chamber does not communicate with the airflow distribution chamber, the air purification chamber, or the intake chamber.
 室内空気処理装置の第3の好ましい技術案として、吸気チャンバー、空気浄化チャンバー、気流分配チャンバー、および、排気チャンバーは、いずれも、ケース内に設けられている。ケースの外側面は、ケースの長手方向に沿って延伸している第1の取付面と第2の取付面を含む。第1の新風口は、第1の取付面から露出する。第2の新風口は、第2の取付面から露出する。第1の取付面と第2の取付面の各々には、1つの排気口が露出される。第1の取付面と第2の取付面の各々には、第1の取付インターフェースと第2の取付インターフェースがさらに設けられている。室内空気処理装置は、第1の取付インターフェース又は第2の取付インターフェースによって装着されることができる。 As the third preferable technical proposal of the indoor air treatment device, the intake chamber, the air purification chamber, the air flow distribution chamber, and the exhaust chamber are all provided in the case. The outer surface of the case includes a first mounting surface and a second mounting surface extending along the longitudinal direction of the case. The first fresh air outlet is exposed from the first mounting surface. The second fresh air outlet is exposed from the second mounting surface. One exhaust port is exposed on each of the first mounting surface and the second mounting surface. A first mounting interface and a second mounting interface are further provided on each of the first mounting surface and the second mounting surface. The indoor air treatment device can be mounted by the first mounting interface or the second mounting interface.
 上記の室内空気処理装置の第3の好ましい技術案を基にして、第1の取付面と第2の取付面は、それぞれ、壁角における2つの壁に貼り付けられることができる。さらに好ましくは、第1の取付面と第2の取付面とがなす角度が直角である。 Based on the third preferred technical proposal of the indoor air treatment device described above, the first mounting surface and the second mounting surface can be attached to two walls at a wall angle, respectively. More preferably, the angle formed by the first mounting surface and the second mounting surface is a right angle.
 室内空気処理装置の第4の好ましい技術案として、吸込仕切チャンバーは、2つの吸込口を有する。吸気チャンバーは、2つの送風口を有する。ケースの外側面には、ケースの長手方向に沿って延伸している第1の接続面と第2の接続面がさらに含まれる。第1の接続面には、1つの送風口と1つの吸込口が露出される。第2の接続面にも、1つの送風口と1つの吸込口が露出される。 As a fourth preferred technical proposal for the indoor air treatment device, the suction partition chamber has two suction ports. The intake chamber has two air outlets. The outer surface of the case further includes a first connecting surface and a second connecting surface extending along the longitudinal direction of the case. One air outlet and one suction port are exposed on the first connecting surface. One air outlet and one suction port are also exposed on the second connecting surface.
 室内空気処理装置の別の1つの好ましい技術案として、新風仕切チャンバーと吸込仕切チャンバーの間には、仕切壁が設けられている。連通口は、仕切壁に設けられた第1の連通口と第2の連通口を含む。第1の弁板は、第1の新風口を閉鎖する状態、第1の連通口を閉鎖する状態、第1の新風口と第1の連通口の間に位置する状態、のそれぞれへ移動することができるように、第1の駆動機構によって駆動されている。第2の弁板は、第2の新風口を閉鎖する状態、第2の連通口を閉鎖する状態、第2の新風口と第2の連通口の間に位置する状態、のそれぞれへ移動することができるように、第2の駆動機構によって駆動される。上記の室内空気処理装置を用いて作業し、第1の新風口が室外空間から遮断した状態にあり、室内空気処理装置の作動方法は、新風導入作動パターン、内循環作動パターン、及び新風導入と内循環が同時に行われる作動パターン、を含む。 As another preferable technical proposal for the indoor air treatment device, a partition wall is provided between the fresh air partition chamber and the suction partition chamber. The communication port includes a first communication port and a second communication port provided on the partition wall. The first valve plate moves to each of a state in which the first fresh air port is closed, a state in which the first communication port is closed, and a state which is located between the first fresh air port and the first communication port. It is driven by a first drive mechanism so that it can be. The second valve plate moves to a state in which the second new air outlet is closed, a state in which the second communication port is closed, and a state in which the second valve plate is located between the second new air port and the second communication port. Is driven by a second drive mechanism. Working with the above indoor air treatment device, the first new air outlet is in a state of being cut off from the outdoor space, and the operation method of the indoor air treatment device is as follows: new wind introduction operation pattern, internal circulation operation pattern, and new wind introduction. Includes an operating pattern in which internal circulation occurs simultaneously.
 新風導入作動パターンは、
1a)第1の弁板が、連通口を閉鎖する状態に移動するように第1の駆動機構によって駆動されるステップと、
1b)第2の弁板が、第2の新風口を開放する状態に移動するように第2の駆動機構によって駆動されて、第2の新風口が室外空間に連通するようになるステップと、
1c)吸気ファンの回転を起動させて、室外空間における新鮮な空気が、第2の新風口、新風仕切チャンバーを順に経て空気浄化チャンバーに入り、空気浄化アセンブリにより浄化された後、吸気チャンバー、送風口を順に経て室内空間に送入するようになるステップとを含む。
The new wind introduction operation pattern is
1a) A step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the communication port is closed.
1b) a step in which the second valve plate is driven by the second drive mechanism so as to move to a state in which the second fresh air opening is opened, and the second fresh air opening becomes in communication with the outdoor space;
1c) By activating the rotation of the intake fan, the fresh air in the outdoor space enters the air purification chamber through the second new air outlet and the new air partition chamber in order, and after being purified by the air purification assembly, the intake chamber and the air blower. And sequentially into the interior space through the mouth.
 内循環作動パターンは、
2a)第1の弁板が、連通口を開放する状態に移動するように第1の駆動機構によって駆動されて、連通口が新風仕切チャンバーと吸込仕切チャンバーとを連通するようになるステップと、
2b)第2の弁板が、第2の新風口を閉鎖する状態に移動するように第2の駆動機構によって駆動されて、第2の新風口が室外空間から遮断するようになるステップと、
2c)吸気ファンの回転を起動させて、室内空間における空気が、吸込口、吸込仕切チャンバー、連通口、新風仕切チャンバーを順に経て空気浄化チャンバーに入り、空気浄化アセンブリにより浄化された後、吸気チャンバー、送風口を順に経て室内空間に送入するステップとを含む。
The internal circulation operation pattern is
2a) a step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the communication port is opened, and the communication port establishes communication between the fresh air partition chamber and the suction partition chamber;
2b) a step in which the second valve plate is driven by the second drive mechanism so as to move to a state in which the second fresh air outlet is closed, and the second fresh air outlet is shut off from the outdoor space;
2c) The rotation of the intake fan is started, and the air in the indoor space enters the air purification chamber through the suction port, the suction partition chamber, the communication port, and the fresh air partition chamber in order, and is purified by the air purification assembly, and then the intake chamber. , And then blowing the air into the indoor space through the air outlet in order.
 新風導入と内循環が同時に行われる作動パターンは、
3a)第1の弁板が、連通口を開放する状態に移動するように第1の駆動機構によって駆動されて、連通口が新風仕切チャンバーと吸込仕切チャンバーとを連通するようになるステップと、
3b)第2の弁板が、第2の新風口を開放する状態に移動するように第2の駆動機構によって駆動されて、第2の新風口が室外空間に連通するようになるステップと、
3c)吸気ファンの回転を起動させて、室外空間における新鮮な空気が、第2の新風口、新風仕切チャンバーを順に経て空気浄化チャンバーに入り、空気浄化アセンブリにより浄化された後、吸気チャンバー、送風口を順に経て室内空間に送入し、室内空間における空気が、吸込口、吸込仕切チャンバー、連通口、新風仕切チャンバーを順に経て空気浄化チャンバーに入り、空気浄化アセンブリにより浄化された後、吸気チャンバー、送風口を順に経て室内空間に送入するステップとを含む、新風導入と内循環が同時に行われる作動パターン、を含む。
The operation pattern in which new wind is introduced and internal circulation is performed at the same time is
3a) a step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the communication opening is opened, and the communication opening allows the fresh air partition chamber and the suction partition chamber to communicate with each other;
3b) A step in which the second valve plate is driven by the second drive mechanism so as to move to a state in which the second new air outlet is opened so that the second new air outlet communicates with the outdoor space.
3c) The rotation of the intake fan is activated, and the fresh air in the outdoor space enters the air purification chamber through the second new air outlet and the new air partition chamber in this order, and is purified by the air purification assembly, and then the intake chamber and the air blower. The air is introduced into the indoor space through the mouth in order, and the air in the indoor space passes through the suction port, the suction partition chamber, the communication port, and the fresh air partition chamber in order to enter the air purification chamber, and after being purified by the air purification assembly, the intake chamber Includes an operating pattern in which new wind is introduced and internal circulation is performed at the same time, including the step of feeding into the chamber space through the air outlets in order.
 室内空気処理装置の作動方法の第1の好ましい技術案として、排気作動パターンをさらに含む。排気作動パターンは、
4a)排気ファンの回転を起動させ、室内空間における空気が、還気口、排気チャンバー、および、排気口を順に経て室外空間に排出するステップ、
を含む。
As a first preferred technical solution of the method of operating the indoor air treatment device, an exhaust operation pattern is further included. The exhaust operation pattern is
4a) A step in which the rotation of the exhaust fan is activated and the air in the indoor space is discharged to the outdoor space through the return air port, the exhaust chamber, and the exhaust port in this order.
including.
 上記の室内空気処理装置の作動方法の第1の好ましい技術案を基にして、排気作動パターンは、新風導入作動パターン、内循環作動パターン、及び新風導入と内循環が同時に行われる作動パターン、のうちのいずれか1つと同時に行われる。 Based on the first preferred technical proposal of the above-mentioned method of operating the indoor air treatment device, the exhaust operation patterns include a new wind introduction operation pattern, an internal circulation operation pattern, and an operation pattern in which new wind introduction and internal circulation are performed at the same time. It will be done at the same time as any one of them.
 別の室内空気処理装置の作動方法は、上記の室内空気処理装置を用いて作業し、第2の新風口が室外空間から遮断した状態にあり、新風導入作動パターン、内循環作動パターン、及び新風導入と内循環が同時に行われる作動パターン、を含む。 Another method of operating the indoor air treatment device is to work using the above indoor air treatment device, the second new air outlet is in a state of being cut off from the outdoor space, and the new wind introduction operation pattern, the internal circulation operation pattern, and the new wind An operation pattern in which introduction and internal circulation are performed simultaneously is included.
 新風導入作動パターンは、
Ia)第1の弁板が、連通口を閉鎖する状態に移動するように第1の駆動機構によって駆動されて、第1の新風口が室外空間に連通するようになるステップと、
1b)吸気ファンの回転を起動させて、室外空間における新鮮な空気が、第1の新風口、新風仕切チャンバーを順に経て空気浄化チャンバーに入り、空気浄化アセンブリにより浄化された後、吸気チャンバー、送風口を順に経て室内空間に送入するステップと、
を含む。
The new wind introduction operation pattern is
Ia) A step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the communication port is closed, and the first new air port communicates with the outdoor space.
1b) The rotation of the intake fan is started, and the fresh air in the outdoor space enters the air purification chamber through the first fresh air inlet and the fresh air partition chamber in this order, and is purified by the air purification assembly, and then the intake chamber and the air blower. Steps to send into the indoor space through the mouth in order,
including.
 内循環作動パターンは、
IIa)第1の弁板が、第1の新風口を閉鎖する状態に移動するように第1の駆動機構によって駆動されて、第1の新風口が室外空間から遮断するようになるステップと、
IIb)吸気ファンの回転を起動させて、室内空間における空気が、吸込口、吸込仕切チャンバー、連通口、新風仕切チャンバーを順に経て空気浄化チャンバーに入り、空気浄化アセンブリにより浄化された後、吸気チャンバー、送風口を順に経て室内空間に送入するステップと、
を含む。
The internal circulation operation pattern is
IIa) a step in which the first valve plate is driven by the first drive mechanism so as to move to a state in which the first fresh air outlet is closed, and the first fresh air outlet is shut off from the outdoor space;
IIb) By activating the rotation of the intake fan, the air in the indoor space enters the air purification chamber through the suction port, the suction partition chamber, the communication port, and the new wind partition chamber in this order, and after being purified by the air purification assembly, the intake chamber. , A step of blowing the air into the indoor space through the blower opening in order,
including.
 新風導入と内循環が同時に行われる作動パターンは、
IIIa)第1の弁板が、第1の新風口と連通口の間に位置する状態に移動するように第1の駆動機構によって駆動されて、第1の新風口が室外空間に連通し、かつ、連通口が新風仕切チャンバーと吸込仕切チャンバーを連通するようになるステップと、
IIIb)吸気ファンの回転を起動させて、室外空間における新鮮な空気が、第1の新風口、新風仕切チャンバーを順に経て空気浄化チャンバーに入り、空気浄化アセンブリにより浄化された後、吸気チャンバー、送風口を順に経て室内空間に送入し、室内空間における空気が、吸込口、吸込仕切チャンバー、連通口、新風仕切チャンバーを順に経て空気浄化チャンバーに入り、空気浄化アセンブリにより浄化された後、吸気チャンバー、送風口を順に経て室内空間に送入するステップと、
を含む。
The operation pattern in which new wind is introduced and internal circulation is performed at the same time is
IIIa) The first valve plate is driven by the first drive mechanism so as to move to a state located between the first new air outlet and the communication port, and the first new air outlet communicates with the outdoor space. And, the step where the communication port connects the fresh air partition chamber and the suction partition chamber,
IIIb) By starting the rotation of the intake fan, fresh air in the outdoor space enters the air purification chamber through the first new air outlet and the new air partition chamber in order, and after being purified by the air purification assembly, the intake chamber, the air blow The air is introduced into the indoor space through the mouth in order, and the air in the indoor space passes through the suction port, the suction partition chamber, the communication port, and the fresh air partition chamber in order to enter the air purification chamber, and after being purified by the air purification assembly, the intake chamber , A step of blowing the air into the indoor space through the blower opening in order,
including.
 上記の別の室内空気処理装置の作動方法の第1の好ましい技術案として、排気作動パターンをさらに含む。排気作動パターンは、
IVa)排気ファンの回転を起動させ、室内空間における空気が、還気口、排気チャンバー、および、排気口を順に経て室外空間に排出するステップ、
を含む。
As a first preferred technical solution of the above-mentioned another method of operating the indoor air treatment device, an exhaust operation pattern is further included. The exhaust operation pattern is
IVa) A step in which the rotation of the exhaust fan is activated and the air in the indoor space is discharged to the outdoor space through the return air port, the exhaust chamber, and the exhaust port in this order.
including.
 上記の別の室内空気処理装置の作動方法を基にして、排気作動パターンは、新風導入作動パターン、内循環作動パターン、及び新風導入と内循環が同時に行われる作動パターン、のうちのいずれか1つと同時に行われることができる。 Based on the operation method of the other indoor air treatment device described above, the exhaust operation pattern is one of a new wind introduction operation pattern, an internal circulation operation pattern, and an operation pattern in which new wind introduction and internal circulation are performed at the same time. Can be done at the same time.
 上述したように、室内空気処理装置及びその作動方法は、以下のような有益な効果を有する。室内空気処理装置では、第1の駆動機構と第2の駆動機構は、第1の弁板と第2の弁板による移動を駆動することができる。第1の駆動機構と第2の駆動機構を制御することにより、第1の弁板と第2の弁板によって、気流分配チャンバーにおける気流経路への切り換え制御を実現することができる。これにより、空気が、室内または室外から、気流分配チャンバーに入って、空気浄化チャンバーに入って浄化されるようになり、最終的に、吸気チャンバー、送風口を経て室内空間に入る。第1の弁板と第2の弁板により気流分配チャンバーにおける気流経路を切り換え制御することで、新風導入作動パターン、内循環作動パターン、及び新風導入と内循環が同時に行われる作動パターン、の間の切り換えが実現される。しかも、排気するための気流経路が独立して設けられたので、室内空気処理装置では、排気作動パターンを個別に行うことができる、あるいは、排気作動パターンが新風導入作動パターン、内循環作動パターン、及び新風導入と内循環が同時に行われる作動パターン、のうちのいずれか1つと同時に行われることができる。これより分かるように、上記の室内空気処理装置は、室内空気の質に対する実際な要求に応じて、複数種類の作動パターン間の整合・切り換えを容易に行うことができ、使い勝手が良く、室内空気の質を向上させることができる。 As described above, the indoor air treatment device and its operating method have the following beneficial effects. In the indoor air treatment device, the first drive mechanism and the second drive mechanism can drive the movement by the first valve plate and the second valve plate. By controlling the first drive mechanism and the second drive mechanism, it is possible to realize the switching control to the air flow path in the air flow distribution chamber by the first valve plate and the second valve plate. As a result, air enters the air flow distribution chamber from indoors or outdoors, enters the air purification chamber to be purified, and finally enters the indoor space via the intake chamber and the air outlet. By switching and controlling the air flow path in the air flow distribution chamber by the first valve plate and the second valve plate, a fresh air introduction operation pattern, an internal circulation operation pattern, and an operation pattern in which fresh air introduction and internal circulation are simultaneously performed. Switching is realized. Moreover, since the air flow path for exhausting is provided independently, in the indoor air treatment device, it is possible to individually perform the exhausting operation pattern, or the exhausting operation pattern is the fresh air introduction operating pattern, the internal circulation operating pattern, And any one of the operation patterns in which the introduction of new air and the internal circulation are performed at the same time can be performed at the same time. As can be seen from this, the above-mentioned indoor air treatment device can easily match and switch between a plurality of types of operation patterns according to the actual requirements for the indoor air quality, is easy to use, and is indoor air. The quality of the air can be improved.
室内空気処理装置の正面図を示す。The front view of an indoor air processing apparatus is shown. 室内空気処理装置の斜視図を示す。The perspective view of an indoor air processing apparatus is shown. 空気浄化・通風装置から室内空間へ伝送する取巻き気流の概略図を示し、図中の白抜き矢印が気流を示す。A schematic view of the surrounding airflow transmitted from the air purification/ventilation device to the indoor space is shown, and the white arrow in the figure shows the airflow. 室内空気処理装置を左後側方向から見た斜視図を示す。A perspective view of the indoor air treatment device as viewed from the left rear side is shown. 第1のエンドキャップ、メイン外装面、および、第2の接続面が除去された室内空気処理装置を右前側方向から見た斜視図を示す。The perspective view which looked at the indoor air treatment equipment from which the 1st end cap, the main exterior surface, and the 2nd connection surface was seen from the right front side is shown. 第1のエンドキャップ、メイン外装面、および、第2の接続面が除去された室内空気処理装置を前側方向から見た斜視図を示す。The perspective view which looked at the indoor air treatment equipment from which the 1st end cap, the main exterior surface, and the 2nd connecting surface was removed was seen from the front side. 第1の弁板が連通口を閉鎖する状態にあり、第2の弁板が第2の新風口を開放する状態にある気流分配体の構成概略図を示す。The 1st valve plate is in the state which closes a communicating port, and the 2nd valve plate shows the composition schematic of the air distribution body in the state which opens the 2nd new air opening. 第1の弁板が第1の新風口を閉鎖する状態にあり、第2の弁板が第2の新風口を閉鎖する状態にある気流分配体の構成概略図を示す。A schematic configuration diagram of an airflow distributor in which the first valve plate is in a state of closing the first new air outlet and the second valve plate is in a state of closing the second new air outlet is shown. 第1の弁板が第1の新風口と連通口の間に位置する状態にあり、第2の弁板が第2の新風口を開放する状態にある気流分配体の構成概略図を示す。A schematic configuration diagram of an airflow distributor in which the first valve plate is located between the first new air outlet and the communication port and the second valve plate opens the second new air outlet is shown. 第1の弁板が第1の新風口を閉鎖する状態にあり、第2の弁板が第2の新風口を開放する状態にある気流分配体の構成概略図を示す。A schematic configuration diagram of an airflow distributor in which the first valve plate is in a state of closing the first new air outlet and the second valve plate is in a state of opening the second new air outlet is shown. 第1の弁板が連通口を閉鎖する状態にあり、第2の弁板が第2の新風口を閉鎖する状態にある気流分配体の構成概略図を示す。The 1st valve plate is in the state which closes a communication opening, and the 2nd valve plate shows the schematic diagram of composition of an air current distribution object in the state which closes the 2nd new wind mouth. 別の実施形態における気流分配体の構成概略図を示す。The schematic diagram of a structure of the airflow distributor in another embodiment is shown. 室内空気処理装置における新風導入、内循環、および、排気の気流経路概略図を示す。The schematic diagram of the air flow path of fresh air introduction, internal circulation, and exhaust in an indoor air treatment apparatus is shown. 第1の取付面によって壁に取り付けられる室内空気処理装置の第1の取付方式の概略図を示す。FIG. 6 shows a schematic view of a first mounting scheme of an indoor air treatment device mounted on a wall by a first mounting surface. 第2の取付面によって壁に取り付けられる室内空気処理装置の第2の取付方式の概略図を示す。FIG. 6 shows a schematic view of a second mounting scheme for an indoor air treatment device mounted on a wall by a second mounting surface. 第1の取付面と第2の取付面がそれぞれ、2つの壁に貼り付けられた室内空気処理装置の第3の取付方式の概略図を示す。The schematic diagram of the 3rd mounting system of the indoor air treatment apparatus with which the 1st mounting surface and the 2nd mounting surface were each adhere|attached on two walls is shown. ケースにおける背板の構成概略図を示す。The structural schematic of the back plate in a case is shown. 取付板及びフックの構成概略図を示す。A schematic configuration diagram of a mounting plate and a hook is shown. 取付板のフックに背板が取り付けられた構成概略図を示す。The structural schematic diagram which attached the back plate to the hook of a mounting plate is shown. 変形例における、室内空気処理装置と表示パネルの組合せの概略図である。It is a schematic diagram of a combination of an indoor air treatment device and a display panel in a modification. 変形例における、表示パネルの裏面構成の概略図である。It is a schematic diagram of the back surface composition of a display panel in a modification. 変形例における、表示パネルと支持ロッドの接続概略図である。FIG. 9 is a schematic connection diagram of a display panel and a support rod in a modified example. 変形例における、空気処理機器を左後側方から見た斜視図である。It is the perspective view which looked at the air treatment equipment in the modification from the left rear side. 変形例における、気流分配チャンバーを後側上方から見た構成図である。It is a block diagram which looked at the airflow distribution chamber in the modification from the rear side upper part.
 以下、室内空気処理装置の実施の形態を具体的な実施例により説明するが、室内空気処理装置の他の利点及び効果は、この技術を熟知した者が本明細書により開示された内容から容易に把握されるであろう。 Hereinafter, embodiments of the indoor air treatment device will be described with reference to specific examples, but other advantages and effects of the indoor air treatment device can be easily obtained from the contents disclosed in the present specification by a person familiar with this technique. Will be grasped by.
 なお、本明細書に添付の図面式により描かれている構成、比例、大きさ等は、実施可能な限定条件を限定するものではなく、この技術を熟知した者に対し閲覧し、把握してもらうために、本明細書により開示された内容に合わせて用いられるものに過ぎない。従って、技術上の実質的な意味を持っていない。いかなる構造の修飾、比例関係の変更又は大きさの調整は、室内空気処理装置によって実現されることができる効果及び達成することができる目的に影響を与えない限り、いずれも、開示された技術内容でカバーされる範囲内に入っているはずである。同時、本明細書に引用される、例えば、「上」、「下」、「左」、「右」、「中間」及び「一」等の用語も、記載の便宜上のものであり、室内空気処理装置が実施可能な範囲を限定するものではなく、その相対関係への変更又は調整は、技術内容を実質的に変更しない限り、室内空気処理装置が実施可能な範疇として見なされる。 It should be noted that the configuration, proportion, size, etc. drawn by the drawing formula attached to this specification do not limit the feasible limiting conditions, and should be viewed and grasped by a person familiar with this technique. It is merely used in accordance with the contents disclosed in this specification to obtain the information. Therefore, it has no technical meaning. Any structural modifications, proportional changes or resizing, as long as they do not affect the effects that can be achieved by the indoor air treatment equipment and the objectives that can be achieved, are all disclosed technical details. It should be within the range covered by. At the same time, terms such as "top", "bottom", "left", "right", "middle" and "one" cited herein are also for convenience of description and are for convenience of description. It does not limit the extent to which the treatment equipment can be implemented, and any changes or adjustments to its relative relationship are considered as a feasible category for the indoor air treatment equipment, unless the technical content is substantially changed.
 (1)室内空気処理装置の構成、動作
 図1aには、室内空気処理装置を前方向から見た正面図が示される。以下の記載では、図1aの添付図面を方向の参照基礎とする。図1aでは、図面の紙面に垂直であって外へ向かう方向を前方向とし、メイン外装面131はカバー体13の前側面に位置する。図面の紙面に垂直であって内へ向かう方向を後方向とし、図面の紙面に沿って上に向かう方向を上方向とし、第1のエンドキャップ11がカバー体13の上端に位置する。図面の紙面に沿って下に向かう方向を下方向とし、第2のエンドキャップ12がカバー体13の下端に位置する。図面の紙面に沿って右へ向かう方向を右方向とし、第1の接続面132がメイン外装面131の右側辺に接続される。図面の紙面に沿って左に向かう方向を左方向とし、第2の接続面133がメイン外装面131の左側辺に接続される。他の図面を記述するとき、図1aで確定された方向を基礎とする。
(1) Configuration and Operation of Indoor Air Treatment Device FIG. 1a shows a front view of the indoor air treatment device as seen from the front. In the following description, the accompanying drawing of FIG. In FIG. 1 a, the direction outward, which is perpendicular to the plane of the drawing, is the front direction, and the main exterior surface 131 is located on the front side surface of the cover body 13. The first end cap 11 is located at the upper end of the cover body 13 and the inward direction that is perpendicular to the paper surface of the drawing is the backward direction and the direction that is upward along the paper surface of the drawing is the upward direction. The second end cap 12 is located at the lower end of the cover body 13 with the downward direction along the paper surface of the drawing as the downward direction. The direction toward the right along the paper surface of the drawing is the right direction, and the first connecting surface 132 is connected to the right side of the main exterior surface 131. The direction toward the left along the paper surface of the drawing is the left direction, and the second connecting surface 133 is connected to the left side of the main exterior surface 131. When describing the other figures, it is based on the orientation determined in FIG. 1a.
 図1aと図1bに示すように、室内空気処理装置は、柱状構造のケース1を有する。ケース1は、円筒形のカバー体13を含む。カバー体13の上端には、第1のエンドキャップ11が取り付けられている。カバー体13の下端には、第2のエンドキャップ12が取り付けられている。カバー体13の前側面が、メイン外装面131である。メイン外装面131の右側辺は、第1の接続面132に接続されている。メイン外装面131の左側辺は、第2の接続面133に接続されている。ユーザが室内の空気の質を把握しやすくなり、空気処理装置の運行状態への調整にも利便性を図るために、メイン外装面131には、情報(例えば、温度、湿度、PM2.5濃度、運転モードなど)を表示するための表示パネル139がさらに取り付けられている。 As shown in FIGS. 1a and 1b, the indoor air treatment device has a case 1 having a columnar structure. The case 1 includes a cylindrical cover body 13. The first end cap 11 is attached to the upper end of the cover body 13. The second end cap 12 is attached to the lower end of the cover body 13. The front side surface of the cover body 13 is the main exterior surface 131. The right side of the main exterior surface 131 is connected to the first connecting surface 132. The left side of the main exterior surface 131 is connected to the second connection surface 133. Information (for example, temperature, humidity, PM2.5 concentration) is provided on the main exterior surface 131 in order to make it easier for the user to grasp the quality of the air in the room and to make it convenient to adjust the operating state of the air treatment device. , Operation mode, etc.) is further attached with a display panel 139 for displaying.
 図2a、図2b、および、図2cに示すように、室内空気処理装置は、吸気チャンバー22、空気浄化チャンバー23、気流分配チャンバー24、及び排気チャンバー25を含む。吸気チャンバー22と気流分配チャンバー24は、ともに、空気浄化チャンバー23に連通している。 As shown in FIGS. 2a, 2b, and 2c, the indoor air treatment device includes an intake chamber 22, an air purification chamber 23, an air flow distribution chamber 24, and an exhaust chamber 25. Both the intake chamber 22 and the air flow distribution chamber 24 communicate with the air purification chamber 23.
 図2bと図2cに示すように、吸気チャンバー22には、吸気ファン31が設けられている。空気浄化チャンバー23には、空気浄化アセンブリ32が設けられている。排気チャンバー25には、排気ファン33が設けられている。 As shown in FIGS. 2b and 2c, the intake chamber 22 is provided with an intake fan 31. An air purification assembly 32 is provided in the air purification chamber 23. An exhaust fan 33 is provided in the exhaust chamber 25.
 図2bに示すように、吸気チャンバー22は、室内空間に連通するための送風口221/222を有する。 As shown in FIG. 2b, the intake chamber 22 has an air outlet 221/222 for communicating with the indoor space.
 図2aと図2bに示すように、排気チャンバー25は、室内空間に連通するための還気口251と、室外空間に連通するための排気口252a/252bと、を有する。 As shown in FIGS. 2a and 2b, the exhaust chamber 25 has a return air port 251 for communicating with the indoor space and an exhaust port 252a / 252b for communicating with the outdoor space.
 図2bと図2cに示すように、ケース1には、気流分配体14が設けられている。気流分配チャンバー24は、気流分配体14に設けられている。図3a、図3b、図3c、図3d、および、図3eに示すように、気流分配チャンバー24は、新風仕切チャンバー241と吸込仕切チャンバー242を含む。新風仕切チャンバー241は、空気浄化チャンバー23と連通する。図3bと図3dに示すように、新風仕切チャンバー241と吸込仕切チャンバー242の間は、連通口2413によって連通されている。新風仕切チャンバー241は、室外空間に連通するための第1の新風口2411と第2の新風口2412を有する。吸込仕切チャンバー242は、室内空間に連通するための吸込口2421/2422を有する。 As shown in FIGS. 2b and 2c, the case 1 is provided with the airflow distributor 14. The airflow distribution chamber 24 is provided in the airflow distribution body 14. As shown in FIGS. 3a, 3b, 3c, 3d, and 3e, the airflow distribution chamber 24 includes a new wind partition chamber 241 and a suction partition chamber 242. The new wind partition chamber 241 communicates with the air purification chamber 23. As shown in FIGS. 3b and 3d, the new wind partition chamber 241 and the suction partition chamber 242 are communicated with each other by a communication port 2413. The fresh air partition chamber 241 has a first fresh air outlet 2411 and a second fresh air outlet 2412 for communicating with the outdoor space. The suction partition chamber 242 has a suction port 2421/2422 for communicating with the indoor space.
 図3a、図3b、図3c、図3d、および、図3eに示すように、第1の新風口2411には、第1の駆動機構42によって駆動される第1の弁板41が設けられている。第2の新風口2412には、第2の駆動機構44によって駆動される第2の弁板43が設けられている。 As shown in FIGS. 3a, 3b, 3c, 3d, and 3e, the first new air vent 2411 is provided with a first valve plate 41 driven by the first drive mechanism 42. There is. The second new air outlet 2412 is provided with a second valve plate 43 driven by the second drive mechanism 44.
 室内空気処理装置は、以下の3つの基本的な作動パターンを実現することができる。 The indoor air treatment device can realize the following three basic operation patterns.
 <新風導入作動パターン>
 新風導入作動パターンは、図4のOAからSAまでの気流経路で個別に行われ、室外空間から新鮮な空気を吸気し、浄化してから室内空間へ伝送するためのパターンである。空気は、第1の新風口2411または第2の新風口2412から気流分配チャンバー24に入ってから、空気浄化チャンバー23へ流れる。吸気チャンバー22は、空気浄化チャンバー23から浄化された空気を吸気して、送風口221/222から室内空間へ送入する。
<New wind introduction operation pattern>
The fresh air introduction operation pattern is a pattern that is individually performed in the air flow path from OA to SA in FIG. 4 to inhale fresh air from the outdoor space, purify it, and then transmit it to the indoor space. Air enters the airflow distribution chamber 24 through the first fresh air outlet 2411 or the second fresh air outlet 2412, and then flows into the air purification chamber 23. The intake chamber 22 draws in the purified air from the air purifying chamber 23 and blows it into the indoor space through the air blow ports 221/222.
 <内循環作動パターン>
 内循環作動パターンは、図4のRA2からSAまでの気流経路で個別に行われ、室内空間から混濁な空気を吸気し、浄化してから室内空間へ伝送するためのパターンである。空気は、吸込口2421/2422から気流分配チャンバー24に入ってから、空気浄化チャンバー23へ流れる。吸気チャンバー22は、空気浄化チャンバー23から浄化された空気を吸気して、送風口221/222から室内空間へ送入する。
<Internal circulation operation pattern>
The internal circulation operation pattern is a pattern that is individually performed in the air flow path from RA2 to SA in FIG. 4 to suck in turbid air from the indoor space, purify the air, and then transmit the purified air to the indoor space. Air enters the airflow distribution chamber 24 through the suction ports 2421/2422 and then flows into the air purification chamber 23. The intake chamber 22 draws in the purified air from the air purifying chamber 23 and blows it into the indoor space through the air blow ports 221/222.
 <新風導入と内循環が同時に行われる作動パターン>
 新風導入と内循環が同時に行われる作動パターンは、図4のOAからSAまでの気流経路とRA2からSAまでの気流経路とで同時に行われ、室外空間から新鮮な空気を吸気し、浄化してから室内空間へ伝送する同時に、室内空間から混濁な空気を吸気し、浄化してから室内空間へ伝送するためのパターンである。室外空気は、第1の新風口2411または第2の新風口2412から気流分配チャンバー24に入ってから、空気浄化チャンバー23へ流れ、同時に、室内空気は、吸込口2421/2422から気流分配チャンバー24に入ってから、同様に空気浄化チャンバー23へ流れる。吸気チャンバー22は、空気浄化チャンバー23から浄化された空気を吸気して、送風口221/222から室内空間へ送入する。
<Operation pattern in which new air is introduced and internal circulation is performed at the same time>
The operation pattern in which the introduction of new air and the internal circulation are performed simultaneously is performed in the air flow path from OA to SA and the air flow path from RA2 to SA in FIG. 4 at the same time, and fresh air is taken from the outdoor space and purified. Is transmitted from the indoor space to the indoor space, and at the same time, turbid air is sucked from the indoor space, purified, and then transmitted to the indoor space. The outdoor air enters the air flow distribution chamber 24 from the first new air port 2411 or the second new air port 2412 and then flows into the air purification chamber 23, and at the same time, the indoor air flows from the suction port 2421/2422 to the air flow distribution chamber 24. After entering, it similarly flows to the air purification chamber 23. The intake chamber 22 draws in the purified air from the air purifying chamber 23 and blows it into the indoor space through the air blow ports 221/222.
 <排気作動パターン>
 また、室内空気処理装置は、排気作動パターンを実現することができる。排気チャンバー25は、室内空間に連通するための還気口251と、室外空間に連通するための排気口252a/252bと、を有する。排気ファン33の回動時、空気は、還気口251から排気チャンバー25に入ってから、排気口252a/252bを介して室外空間に排出される。
<Exhaust operation pattern>
Further, the indoor air treatment device can realize an exhaust operation pattern. The exhaust chamber 25 has a return air port 251 for communicating with the indoor space and an exhaust port 252a / 252b for communicating with the outdoor space. When the exhaust fan 33 rotates, air enters the exhaust chamber 25 through the return air port 251 and then is discharged to the outdoor space through the exhaust ports 252a / 252b.
 上記3つの基本的な作動パターン(新風導入作動パターン、内循環作動パターン、及び新風導入と内循環が同時に行われる作動パターン)は、それぞれ、個別で行われることができる。また、排気作動パターンは個別に行われることができ(即ち、図4中のRA1からEAまでの気流経路で個別に行われることができ)、かつ、排気作動パターンは上記3つの基本的な作動パターンのいずれか1つと同時に行われることもできる。 The above three basic operation patterns (new wind introduction operation pattern, internal circulation operation pattern, and operation pattern in which new wind introduction and internal circulation are performed at the same time) can be performed individually. Further, the exhaust operation pattern can be performed individually (that is, it can be performed individually in the airflow path from RA1 to EA in FIG. 4), and the exhaust operation pattern is the above three basic operations. It can also be done at the same time as any one of the patterns.
 排気チャンバー25は、個別に設置され、気流分配チャンバー24、空気浄化チャンバー23、または、吸気チャンバー22と連通しない。したがって、室内空気処理装置では、排気作業を行うとき、排気の気流が気流分配チャンバー24、空気浄化チャンバー23または吸気チャンバー22における気流と衝突して気流の乱れや乱流が生じることがない。そうすると、内循環作動パターンと新風導入作動パターンの正常運転に干渉しなくなる。しかも、独立した排気の気流経路によれば、気流分配チャンバー24、空気浄化チャンバー23または、吸気チャンバー22の空間への占用を効果的に防止することができ、新風導入量の確保にも有利であり、最終的に、室内の空気の質がユーザによる快適さへの要求を満足することが確保される。 The exhaust chamber 25 is installed individually and does not communicate with the air flow distribution chamber 24, the air purification chamber 23, or the intake chamber 22. Therefore, in the indoor air treatment device, when the exhaust work is performed, the exhaust airflow does not collide with the airflow in the airflow distribution chamber 24, the air purification chamber 23, or the intake chamber 22, and the airflow is not turbulent or turbulent. Then, the internal circulation operation pattern and the new wind introduction operation pattern do not interfere with the normal operation. Moreover, according to the independent exhaust airflow path, it is possible to effectively prevent the airflow distribution chamber 24, the air purification chamber 23, or the intake chamber 22 from occupying the space, which is advantageous for securing the amount of new wind introduced. Yes, it is finally ensured that the air quality in the room satisfies the comfort requirements of the user.
 上記の室内空気処理装置の使用時、室内空気処理装置を室内に装着するとともに、第1の新風口2411または第2の新風口2412を室外空間に連通する。室内空気処理装置では、新風導入作動パターン、内循環作動パターン、新風導入と内循環が同時に行われる作動パターン、および、単一の排気作動パターン、または、排気作動パターンと上記いずれか1つの作動パターンとの組み合わせ、を実現することができる。しかも、排気の気流経路が個別に設けられたので、他の気流経路と衝突して気流の乱れや乱流が生じることがない。これより分かるように、室内空気処理装置の様々な作動パターンは適合して組み合わせることができ、それにより、室内空気を効果的に処理して、室内空気の質を向上させることができる。 When using the above indoor air treatment device, the indoor air treatment device is installed in the room, and the first new air outlet 2411 or the second new air outlet 2412 is communicated with the outdoor space. In the indoor air treatment device, a fresh air introduction operation pattern, an internal circulation operation pattern, an operation pattern in which fresh air introduction and internal circulation are simultaneously performed, and a single exhaust operation pattern, or an exhaust operation pattern and any one of the above operation patterns Can be realized in combination with. Moreover, since the exhaust airflow paths are individually provided, there is no possibility that airflow turbulence or turbulence will occur due to collision with other airflow paths. As can be seen from this, the various operating patterns of the indoor air treatment device can be fitted and combined, thereby effectively treating the indoor air and improving the quality of the indoor air.
 上記の室内空気処理装置では、製造の便宜上、気流分配体14が1つ設計される。気流分配チャンバー24は、気流分配体14に設けられている。図3bと図3dに示すように、新風仕切チャンバー241と吸込仕切チャンバー242の間には、仕切壁141がある。連通口2413は、仕切壁141に設けられている。気流分配チャンバー24に気流経路への切換機能を実現させるために、図2b、図2c、および、図3bと図3dを参照すると分かるように、新風仕切チャンバー241の上端が空気浄化チャンバー23に連通し、吸込仕切チャンバー242の上端が空気浄化チャンバー23と連通しない。すると、新風口から新風仕切チャンバー241に入る空気は、空気浄化チャンバー23に直接に入ることができるが、吸込口2421/2422から吸込仕切チャンバー242に入る空気は、連通口2413を介して新風仕切チャンバー241に入ってから空気浄化チャンバー23に入る。図3b、図3c、図3d、および、図3eに示すように、第1の弁板41と第2の弁板43を制御することで、室内空気処理装置の作動パターンへの切換を実現することができる。第1の駆動機構42と第2の駆動機構44はともに、回転モーターであってもよい。制御装置によって、回転モーターの回転軸の回転角度が制御されることで、第1の弁板41または第2の弁板43の開度が制御されることができる。これにより、室内空気の質に対する実際な要求に応じて空気流量の大きさが制御される。また、空気処理装置の小型化が確保されることにも有利である。 In the above-mentioned indoor air treatment device, one airflow distributor 14 is designed for the convenience of manufacturing. The airflow distribution chamber 24 is provided in the airflow distribution body 14. As shown in FIGS. 3b and 3d, a partition wall 141 is provided between the fresh air partition chamber 241 and the suction partition chamber 242. The communication port 2413 is provided in the partition wall 141. The upper end of the new wind partition chamber 241 communicates with the air purification chamber 23, as can be seen with reference to FIGS. 2b, 2c, and 3b and 3d, in order to enable the airflow distribution chamber 24 to switch to the airflow path. However, the upper end of the suction partition chamber 242 does not communicate with the air purification chamber 23. Then, the air that enters the fresh air partition chamber 241 from the fresh air inlet can directly enter the air purification chamber 23, but the air that enters the suction partition chamber 242 from the suction opening 2421/2422 can be sent through the communication opening 2413 to the fresh air partition chamber 2413. After entering the chamber 241 it enters the air purification chamber 23. As shown in FIGS. 3b, 3c, 3d, and 3e, by controlling the first valve plate 41 and the second valve plate 43, switching to the operation pattern of the indoor air treatment device is realized. be able to. Both the first drive mechanism 42 and the second drive mechanism 44 may be rotary motors. By controlling the rotation angle of the rotation shaft of the rotary motor by the control device, the opening degree of the first valve plate 41 or the second valve plate 43 can be controlled. This controls the magnitude of the air flow rate according to the actual demand for indoor air quality. In addition, it is also advantageous that the downsizing of the air treatment device is ensured.
 上記の室内空気処理装置では、第1の駆動機構42と第2の駆動機構44は、それぞれ、第1の弁板41と第2の弁板43を駆動することで、室内空気処理装置の作動パターン及び空気流量を制御する。 In the above-mentioned indoor air treatment device, the first drive mechanism 42 and the second drive mechanism 44 operate the indoor air treatment device by driving the first valve plate 41 and the second valve plate 43, respectively. Control the pattern and air flow.
 気流分配体14の好ましい実施の形態として、図3a、図3b、図3c、図3d、および、図3eに示すように、第1の新風口2411には、第1の弁板41が設けられている。第1の弁板41は、第1の駆動機構42によって駆動されて、第1の新風口2411を閉鎖する状態、連通口2413を閉鎖する状態、第1の新風口2411と連通口2413の間に位置する状態、のそれぞれへ移動することができる。第2の新風口2412には、第2の弁板43が設けられている。第2の弁板43は、第2の駆動機構44によって駆動されて第2の新風口2412を閉鎖または開放させ、構造が簡単である。 As a preferred embodiment of the airflow distributor 14, as shown in FIGS. 3a, 3b, 3c, 3d, and 3e, the first new air outlet 2411 is provided with a first valve plate 41. ing. The first valve plate 41 is driven by the first drive mechanism 42, and is in a state where the first new air outlet 2411 is closed, a state where the communication port 2413 is closed, and between the first new air port 2411 and the communication port 2413. You can move to each of the states located in. A second valve plate 43 is provided at the second fresh air outlet 2412. The second valve plate 43 is driven by the second drive mechanism 44 to close or open the second fresh air outlet 2412, and the structure is simple.
 気流分配体14の別の好ましい実施の形態として、図3fに示すように、連通口2413は、仕切壁に設けられた第1の連通口2413aと第2の連通口2413bを含む。第1の弁板41は、第1の駆動機構42によって駆動されて、第1の新風口2411を閉鎖する状態、第1の連通口2413aを閉鎖する状態、第1の新風口2411と第1の連通口2413aの間に位置する状態、のそれぞれへ移動することができる。第2の弁板43は、第2の駆動機構44によって駆動されて、第2の新風口2412を閉鎖する状態、第2の連通口2413bを閉鎖する状態、第2の新風口2412と第2の連通口2413bの間に位置する状態、のそれぞれへ移動することができる。第1の連通口2413aは、第1の弁板41側に接近し、第2の連通口2413bは、第2の弁板43側に接近する。気流分配体14の左右両側の構造が基本的に対称となる構造であるため、製造や取付を行いやすい。しかも、第1の弁板41と第2の弁板43は、ともに、新風仕切チャンバーの内部を回転移動するので、気流分配体の外側壁から突出することがない。したがって、第1の弁板41と第2の弁板43は、気流分配体の外部における部品または壁に干渉することがない。また、第1の弁板41と第2の弁板43の運動形式が同じであるため、第2の新風口2412を閉鎖して第1の新風口2411を介して新鮮な空気を吸気する場合にも、または、第1の新風口2411を閉鎖して第2の新風口2412を介して新鮮な空気を吸気する場合にも、室内空気処理装置の新風導入作動パターン、内循環作動パターン、新風導入と内循環が同時に行われる作動パターンの制御の論理が同様なものになる。このように、制御方式は簡単であり、ユーザによる使用時の混乱が発生しにくくなる。 As another preferred embodiment of the airflow distributor 14, as shown in FIG. 3f, the communication port 2413 includes a first communication port 2413a and a second communication port 2413b provided in the partition wall. The first valve plate 41 is driven by the first drive mechanism 42 to close the first new air outlet 2411, the first communication port 2413a, and the first new air outlet 2411 and the first. It is possible to move to each of the states located between the communication ports 2413a. The second valve plate 43 is driven by the second drive mechanism 44 to close the second new air outlet 2412, the second communication port 2413b, and the second new air outlet 2412 and the second. , Which is located between the communication ports 2413b. The first communication port 2413a approaches the first valve plate 41 side, and the second communication port 2413b approaches the second valve plate 43 side. Since the structures on both the left and right sides of the airflow distributor 14 are basically symmetrical, it is easy to manufacture and install. Moreover, since both the first valve plate 41 and the second valve plate 43 rotate and move inside the fresh air partition chamber, they do not project from the outer wall of the airflow distributor. Therefore, the first valve plate 41 and the second valve plate 43 do not interfere with parts or walls outside the airflow distributor. Further, since the first valve plate 41 and the second valve plate 43 have the same motion mode, the second fresh air outlet 2412 is closed and fresh air is taken in through the first fresh air outlet 2411. In addition, or when the first fresh air outlet 2411 is closed and fresh air is taken in through the second fresh air outlet 2412, the fresh air introduction operation pattern, the internal circulation operation pattern, and the fresh air of the indoor air treatment device are also obtained. The logic of controlling the operation pattern in which the introduction and the internal circulation are performed at the same time becomes the same. As described above, the control method is simple, and the user is less likely to be confused during use.
 好ましい実施の形態として、図3b、図3c、図3d、および、図3eに示すように、吸込仕切チャンバー242は、2つの吸込口を有する。そのうちの1つの吸込口は、第1の吸込口2421である。図1aに示すように、ケース1の外側面には、ケース1の長手方向に沿って延伸している第1の接続面132と第2の接続面133がさらに含まれる。第1の接続面132は、メイン外装面131の右側辺に接続される。第2の接続面133は、メイン外装面131の左側辺に接続されている。第1の接続面132には、第1の吸込口2421が露出される。第2の接続面133には、第2の吸込口2422が露出される。第1の接続面132と第2の接続面133には、ウィンドウグリッド134がさらに設けられている。そうすると、第1の吸込口2421と第2の吸込口2422に入る気流が均一的となる。また、ユーザの指が機械内部に入り込み、回動部材または電気部材に接触してしまうこと、も防止することができ、ユーザの使用安全が確保される。 As a preferred embodiment, as shown in FIGS. 3b, 3c, 3d, and 3e, the suction partition chamber 242 has two suction ports. One of the suction ports is the first suction port 2421. As shown in FIG. 1a, the outer surface of the case 1 further includes a first connecting surface 132 and a second connecting surface 133 extending along the longitudinal direction of the case 1. The first connecting surface 132 is connected to the right side of the main exterior surface 131. The second connection surface 133 is connected to the left side of the main exterior surface 131. The first suction port 2421 is exposed on the first connection surface 132. The second suction port 2422 is exposed on the second connection surface 133. A window grid 134 is further provided on the first connecting surface 132 and the second connecting surface 133. Then, the airflow entering the first suction port 2421 and the second suction port 2422 becomes uniform. Further, it is possible to prevent the user's finger from getting inside the machine and coming into contact with the rotating member or the electric member, so that the use safety of the user is ensured.
 上記の室内空気処理装置の外形全体は、柱状構造となっている。図2a、図2b、および、図2cに示すように、吸気チャンバー22、空気浄化チャンバー23、気流分配チャンバー24、および、排気チャンバー25は、いずれも、ケース1内に設けられ、かつ、ケース1の第1の端から第2の端へ順次に分布している。全体が柱状である構造は、取り付けやすく、室内空間とよりよく融合することもできる。室内空間処理装置は、室内空間とよりよく融合することができる。図1b、図2a、および、図2bに示すように、ケース1には、第1の取付面135と第2の取付面136が設けられている。第1の新風口2411は、第1の取付面135から露出する。第2の新風口2412は、第2の取付面136から露出する。第1の取付面135と第2の取付面136の各々には、1つの排気口が露出される。第1の取付面135から露出した排気口じゃ、第1の排気口252aである。第2の取付面136から露出した排気口は、第2の排気口252bである。第1の取付面135と第2の取付面136の各々には、第1の取付インターフェース137と第2の取付インターフェース138がさらに設けられている。室内空気処理装置は、第1の取付インターフェース137または第2の取付インターフェース138によって装着されてもよい。室内の取付条件に応じて、第1の取付インターフェース137または第2の取付インターフェース138を選択して、室内空気処理装置を室内の壁5に装着することができる。取付の方式が多様であり、異なる取付環境による要求を満足することができる。  The overall outer shape of the above indoor air treatment device has a columnar structure. As shown in FIGS. 2a, 2b, and 2c, the intake chamber 22, the air purification chamber 23, the airflow distribution chamber 24, and the exhaust chamber 25 are all provided in the case 1 and the case 1 Are sequentially distributed from the first end to the second end. The overall columnar structure is easy to install and can be better integrated with the interior space. The indoor space processing device can be better integrated with the indoor space. As shown in FIGS. 1b, 2a, and 2b, the case 1 is provided with a first mounting surface 135 and a second mounting surface 136. The first new air vent 2411 is exposed from the first mounting surface 135. The second fresh air outlet 2412 is exposed from the second mounting surface 136. One exhaust port is exposed on each of the first mounting surface 135 and the second mounting surface 136. The exhaust port exposed from the first mounting surface 135 is the first exhaust port 252a. The exhaust port exposed from the second mounting surface 136 is the second exhaust port 252b. A first mounting interface 137 and a second mounting interface 138 are further provided on each of the first mounting surface 135 and the second mounting surface 136. The indoor air treatment device may be mounted by a first mounting interface 137 or a second mounting interface 138. Depending on the indoor mounting conditions, the first mounting interface 137 or the second mounting interface 138 can be selected to mount the indoor air treatment device on the indoor wall 5. There are various mounting methods, and it is possible to satisfy the requirements of different mounting environments.
 室内空気処理装置の構造配置に適応するために、好ましい実施の形態として、図2bと図2cに示すように、空気浄化アセンブル32は、円柱状のフィルタ網である。空気浄化アセンブリ32の外形構造は、空気浄化チャンバー23とよりよく合わせることができ、空間の利用率が高くなる。フィルタ網は、空気中のPM2.5粒子状物質を濾過することができる。また、例えば、ホルムアルデヒドなどの他の汚染物を除去できるいくつかの反応物質をフィルタ網に配置することで、室内空間または室外空間における空気中の有害気体物質を除去することもできる。図2bと図2cを参照して、好ましい実施の形態として、空気浄化チャンバー23の一端が吸気チャンバー22に連通し、空気浄化チャンバー23の他端が気流分配チャンバー24に連通する。これにより、空気浄化チャンバー23の上端を吸気チャンバー22に連通させ、空気浄化チャンバー23の下端を気流分配チャンバー24に連通させることができる。気流分配チャンバー24における空気は、空気浄化チャンバー23に流れて浄化装置によって浄化された後、吸気チャンバー22に流れる。最終的に室内に送入する空気の清浄度は確保され、ユーザによる要求を満足できる。 As shown in FIGS. 2b and 2c, the air purification assemble 32 is a columnar filter network as a preferred embodiment in order to adapt to the structural arrangement of the indoor air treatment apparatus. The outer structure of the air purification assembly 32 can be better matched with the air purification chamber 23, resulting in higher space utilization. The filter network can filter PM2.5 particulate matter in the air. Further, for example, by arranging some reactants capable of removing other pollutants such as formaldehyde in the filter network, harmful gaseous substances in the air in the indoor space or the outdoor space can be removed. With reference to FIGS. 2b and 2c, as a preferred embodiment, one end of the air purification chamber 23 communicates with the intake chamber 22 and the other end of the air purification chamber 23 communicates with the airflow distribution chamber 24. Thereby, the upper end of the air purification chamber 23 can be communicated with the intake chamber 22, and the lower end of the air purification chamber 23 can be communicated with the airflow distribution chamber 24. The air in the air flow distribution chamber 24 flows into the air purification chamber 23, is purified by the purification device, and then flows into the intake chamber 22. Eventually, the cleanliness of the air sent into the room is secured, and the user's request can be satisfied.
 室内空気処理装置を利用するとき、排気口252a/252bと新風口2411/2412は、ダクトを介して室外空間に連通している。新風口2411/2412と排気口252a/252bでの空気の流れは、室内空間における空気をかく乱することがない。送風口221/222、吸気口2421/2422、および、還気口251は、いずれも、室内空間に位置する。送風口221/222、吸気口2421/2422、および、還気口251での気流が互いに攪乱することを防止するために、図1aに示すように、送風口221/222は、ケース1の上部に位置し、吸気口2421/2422はケース1の下部に位置する。これにより、送風口221/222と吸気口2421/2422が遠く離れ、これらの2か所での気流の相互のかく乱による効果が弱くなる。図1bと図2bを参照するとわかるように、還気口251は、ケース1の第2端の端面に設けられている。還気口251は、送風口221/222および吸気口2421/2422から遠く離れる。それだけではなく、還気口251の向きも、送風口221/222と吸気口2421/2422とは異なる。このため、還気口251での気流は、送風口221/222または吸気口2421/2422での気流に影響を与えにくく、気流間の相互干渉が回避される。 When using the indoor air treatment device, the exhaust port 252a / 252b and the new air port 2411/2412 communicate with the outdoor space via a duct. The air flow at the fresh air outlets 2411/2412 and the exhaust ports 252a/252b does not disturb the air in the indoor space. The blower ports 221/222, the intake ports 2421/2422, and the return air port 251 are all located in the indoor space. As shown in FIG. 1a, the airflow port 221/222 is the upper part of the case 1 in order to prevent the airflows at the airflow port 221/222, the intake port 2421/2422, and the return air port 251 from being disturbed by each other. , And the intake ports 2421/2422 are located in the lower part of the case 1. As a result, the air outlets 221/222 and the intake ports 2421/2422 are far apart from each other, and the effect of mutual disturbance of the airflow at these two locations is weakened. As can be seen from FIGS. 1b and 2b, the return air port 251 is provided on the end surface of the second end of the case 1. The return air port 251 is far away from the air outlet 221/222 and the intake port 2421/2422. Not only that, the direction of the return air port 251 is also different from that of the air outlet 221/222 and the intake port 2421/2422. Therefore, the airflow at the return air port 251 is unlikely to affect the airflow at the airflow port 221/222 or the intake port 2421/2422, and mutual interference between the airflows is avoided.
 室内空気処理装置における電気素子に対して電気供給または制御を行いやすくするために、図2bと図2cに示すように、ケース1の第1端には、電気素子を収容するための収容チャンバー21がさらに設けられている。収容チャンバー21には、電源、コントローラなどの他の電気制御素子が設置されてもよい。収容チャンバー21における電気素子は熱量を発生する。収容チャンバー21が、新風口2411/2412または排気口252a/252bに近ければ、室外における低温の空気によって、収容チャンバー21近傍の温度が低くなる。但し、収容チャンバー21における空気中の水分が電気素子において結露して電気素子の絶縁性能に影響を与え、電気素子が故障するリスクも高くなる。室内空気処理装置では、収容チャンバー21が新風口2411/2412と排気口252a/252bから離れるため、収容チャンバー21において結露するリスクが低くなり、電気素子による作動確実性が向上し、室内空気処理装置が正常に作動することが保持される。 In order to facilitate the supply or control of electric elements to the electric elements in the indoor air treatment device, as shown in FIGS. 2b and 2c, the first end of the case 1 has a storage chamber 21 for accommodating the electric elements. Is further provided. Other electrical control elements such as a power supply and a controller may be installed in the accommodation chamber 21. The electrical element in the containment chamber 21 generates heat. If the accommodation chamber 21 is close to the new air outlet 2411/2412 or the exhaust port 252a / 252b, the temperature in the vicinity of the accommodation chamber 21 becomes low due to the low temperature air outside the room. However, moisture in the air in the housing chamber 21 condenses on the electric element to affect the insulation performance of the electric element, which increases the risk of the electric element failure. In the indoor air treatment apparatus, since the accommodation chamber 21 is separated from the new air outlet 2411/2412 and the exhaust ports 252a/252b, the risk of dew condensation in the accommodation chamber 21 is reduced, the operation reliability by the electric element is improved, and the indoor air treatment apparatus is improved. Is maintained to operate normally.
 室内空間と室外空間における空気中のPM2.5の濃度を検出するために、さらに、新風仕切チャンバー241において室外PM2.5検出センサーを設置し、吸込仕切チャンバー242において室内PM2.5検出センサーを設置することができる。室外PM2.5検出センサーと室内PM2.5検出センサーは、ともに、制御装置に接続されている。制御装置は、室外PM2.5検出センサーと室内PM2.5検出センサーによって検出されたデータに基づき、第1の駆動機構42、第2の駆動機構44、吸気ファン31、および、排気ファン33の動きを制御することができる。これにより、室内空気を調節し、制御精度が高くなる。 In order to detect the concentration of PM2.5 in the air in the indoor space and the outdoor space, an outdoor PM2.5 detection sensor is installed in the new wind partition chamber 241 and an indoor PM2.5 detection sensor is installed in the suction partition chamber 242. can do. Both the outdoor PM2.5 detection sensor and the indoor PM2.5 detection sensor are connected to the control device. The control device moves the first drive mechanism 42, the second drive mechanism 44, the intake fan 31, and the exhaust fan 33 based on the data detected by the outdoor PM2.5 detection sensor and the indoor PM2.5 detection sensor. Can be controlled. As a result, the indoor air is adjusted and the control accuracy is improved.
 室内空気処理装置における送風口221/222から送出される気流を均一にさせるために、図1aに示すように、吸気チャンバー22は、2つの送風口221/222を有する。メイン外装面131の両側における第1の接続面132と第2の接続面133の各々には、1つの送風口が設けられている。第1の接続面132における送風口は、第1の送風口221である。第2の接続面133における送風口は、第2の送風口222である。第1の送風口221と第2の送風口222は、ともに、室内空間に空気を送入する。第1の送風口221と第2の送風口222から送出された気流を取巻き気流に形成するために、吸気ファン31として、ターボファンを用いてもよい。図1cに示すように、第1の送風口221から送出される気流は、一側の壁に流れ、第2の送風口222から送出される気流は、垂直な他側の壁に流れる。2つの流れが、逆な方向から壁に沿って合流して、取巻かれる。そのような流体の流れによって、気流が、室内全体にさらに均一的に散布するようになる。そして、人に吹出されることがないので、人の快適さが著しく向上する。 As shown in FIG. 1a, the intake chamber 22 has two air outlets 221/222 in order to make the airflow sent from the air outlets 221/222 in the indoor air treatment device uniform. Each of the first connection surface 132 and the second connection surface 133 on both sides of the main exterior surface 131 is provided with one air outlet. The blower port on the first connection surface 132 is the first blower port 221. The air outlet on the second connection surface 133 is the second air outlet 222. Both the first blower opening 221 and the second blower opening 222 blow air into the indoor space. A turbofan may be used as the intake fan 31 in order to form the airflow sent from the first air outlet 221 and the second air outlet 222 into a surrounding airflow. As shown in FIG. 1c, the airflow delivered from the first air outlet 221 flows to one wall, and the airflow delivered from the second air outlet 222 flows to the other vertical wall. The two streams merge around the wall from opposite directions and are surrounded. Such fluid flow causes the airflow to be more evenly distributed throughout the room. And since it is not blown out by a person, the comfort of the person is significantly improved.
 室内空気処理装置は、室内の空間によりよく適応することができる。 The indoor air treatment device can better adapt to the indoor space.
 図5aに示すように、室内空気処理装置は、ウィンドウと地面との間の壁5に水平に取り付けられるように選択することができる。第1の取付面135は、壁5に貼り付けられる。第1の取付面135における第1の新風口2411と第1の排気口252aには、室外空間に連通するダクトが接続されている。人が表示パネルを平面視できるように、メイン外装面131は、天井方向に向いている。 The indoor air treatment device can be chosen to be mounted horizontally on the wall 5 between the window and the ground, as shown in Figure 5a. The first mounting surface 135 is attached to the wall 5. A duct communicating with the outdoor space is connected to the first new air port 2411 and the first exhaust port 252a on the first mounting surface 135. The main exterior surface 131 faces toward the ceiling so that a person can see the display panel in a plan view.
 図5bに示すように、室内空気処理装置が高い位置にある壁5に水平に取り付けられてもよい。第2の取付面136は、壁5に貼り付けられる。第2の取付面136における第2の新風口2412と第2の排気口252bには、室外空間に連通するダクトが接続されている。人が表示パネル139を底面視できるように、第1の取付面135は、天井に向いている。メイン外装面131は、地面方向に向いている。 As shown in FIG. 5b, the indoor air treatment device may be mounted horizontally on the wall 5 at a high position. The second mounting surface 136 is attached to the wall 5. A duct communicating with the outdoor space is connected to the second new air port 2412 and the second exhaust port 252b on the second mounting surface 136. The first mounting surface 135 faces the ceiling so that a person can view the display panel 139 from the bottom. The main exterior surface 131 faces the ground.
 図5cに示すように、室内空気処理装置は、壁角の位置に垂直に取り付けられてもよい。壁角での取付方式に適応するために、第1の取付面135と第2の取付面136は、それぞれ、壁角にある2つの壁5に貼り付けられることができる。一般的には、壁角にある2つの壁5の間のなす角度が直角である。第1の取付面135と第2の取付面136は、それぞれ、2つの垂直な壁5に貼り付けられる。第1の取付面135と第2の取付面136とがなす角度は、直角である。第1の取付面135における第1の新風口2411と第1の排気口252aには、室外空間に連通するダクトが接続されている。第2の取付面136における第2の新風口2412と第2の排気口252bには、室外空間に連通するダクトが接続されてもよい。メイン外装面131が水平方向に向く。第1の取付面135と第2の取付面136が、それぞれ、2つの垂直な壁5に貼り付けられた場合、第1の送風口221と第2の送風口222は、それぞれ、2つの垂直な壁5に向くようになる。第1の送風口221と第2の送風口222から送出された空気は、それぞれ、2つの壁5によって塞がれた後、取巻き気流に形成される。これにより、気流が柔らかとなり、均一に分布しているようになる。 As shown in FIG. 5c, the indoor air treatment device may be mounted perpendicular to the position of the wall angle. To accommodate the wall angle mounting scheme, the first mounting surface 135 and the second mounting surface 136 can be attached to the two walls 5 at the wall corner, respectively. Generally, the angle between the two walls 5 at the wall angle is a right angle. The first mounting surface 135 and the second mounting surface 136 are attached to two vertical walls 5, respectively. The angle formed by the first mounting surface 135 and the second mounting surface 136 is a right angle. A duct communicating with the outdoor space is connected to the first new air port 2411 and the first exhaust port 252a on the first mounting surface 135. A duct communicating with the outdoor space may be connected to the second new air port 2412 and the second exhaust port 252b on the second mounting surface 136. The main exterior surface 131 faces horizontally. When the first mounting surface 135 and the second mounting surface 136 are attached to the two vertical walls 5, respectively, the first blower opening 221 and the second blower opening 222 respectively have two vertical walls. It will face the wall 5. The air sent out from the first air outlet 221 and the second air outlet 222 is formed in the surrounding airflow after being blocked by the two walls 5, respectively. As a result, the airflow becomes soft and evenly distributed.
 室内空気処理装置は、水平に装着されてもよいし、垂直に装着されてもよい。表示パネル139は、空気浄化アセンブリ32の水平な取付または垂直な取付に適応することができ、表示パネル139とメイン外装面131の間における接続インターフェースを90°回転適合の構造に設置することができる。表示パネル139とメイン外装面131が適合されて取り付けられた後、表示パネル139を、その所在平面に沿って90°、180°または270°回転すると、メイン外装面131における接続インターフェースと再度適合して接続することができる。そうすると、空気処理装置の装着方式に応じて、表示パネルの角度を調節することで、ユーザによる表示パネルの表示内容への閲覧に利便性を図ることができる。 -The indoor air treatment device may be mounted horizontally or vertically. The display panel 139 can be adapted for horizontal or vertical mounting of the air purification assembly 32, and the connection interface between the display panel 139 and the main exterior surface 131 can be installed in a 90 ° rotation compatible structure. .. After the display panel 139 and the main exterior surface 131 have been fitted and attached, the display panel 139 can be rotated 90 °, 180 °, or 270 ° along its location plane to refit with the connection interface on the main exterior surface 131. Can be connected. Then, by adjusting the angle of the display panel according to the mounting method of the air treatment device, it is possible to improve the convenience for the user to browse the display contents of the display panel.
 同様に、第1の取付インターフェース137と第2の取付インターフェース138は、空気浄化アセンブリ32の水平な取付または垂直な取付に適応することができる。第1の取付インターフェース137または第2の取付インターフェース138が壁5における接続インターフェースと適合して取り付けられた後、第1の取付インターフェース137または第2の取付インターフェース138を、その所在平面に沿って90°、180°または270°回転すると、壁5における接続インターフェースと再度適合して接続することができる。 Similarly, the first mounting interface 137 and the second mounting interface 138 can be adapted for horizontal or vertical mounting of the air purification assembly 32. After the first mounting interface 137 or the second mounting interface 138 has been fitted in conformity with the connecting interface in the wall 5, the first mounting interface 137 or the second mounting interface 138 is mounted along its plane of occupancy 90. A rotation of °, 180° or 270° allows a refitting connection with the connection interface on the wall 5.
 室内空気処理装置を壁5に装着するために、図6aに示すように、室内空気処理装置のケース1には、背板7が接続されている。背板7には、取付穴71が設けられている。図6bに示すように、壁5には、取付板6が固定されて接続されており、取付板6には、フック61が固定されている。図6cに示すように、背板7は、取付穴71によってフック61に引っ掛けられる。これにより、室内空気処理装置を壁5に引っ掛けやすくなる。背板7、取付板6、および、フック61は、板金材で製造されてもよい。フック61と取付板6の間は、ボルト接続または半田付けによる接続が採用されてもよい。この場合、構造が簡単で、取付が便利である。 As shown in FIG. 6a, a back plate 7 is connected to the case 1 of the indoor air treatment device in order to mount the indoor air treatment device on the wall 5. A mounting hole 71 is provided in the back plate 7. As shown in FIG. 6 b, a mounting plate 6 is fixedly connected to the wall 5, and a hook 61 is fixed to the mounting plate 6. As shown in FIG. 6 c, the back plate 7 is hooked on the hook 61 by the mounting hole 71. This makes it easier to hook the indoor air treatment device on the wall 5. The back plate 7, the mounting plate 6, and the hook 61 may be made of a sheet metal material. A connection by bolt connection or soldering may be adopted between the hook 61 and the mounting plate 6. In this case, the structure is simple and the installation is convenient.
 次に、室内空気処理装置が異なる装着方式によって装着された場合の作動パターンを、以下のように説明する。 Next, the operation pattern when the indoor air treatment device is installed by different installation methods is explained as follows.
 (A)第1の取付方式
 第1の取付面135によって、室内空気処理装置が壁5に装着される。第1の新風口2411と第1の排気口252aが壁5に貼り付けられるとともに、室外空間から遮断した状態にある。この場合、各作動パターンでは、それぞれ、以下のような方式により、第1の弁板41と第2の弁板43が制御される。
(A) First Mounting Method The indoor mounting device is mounted on the wall 5 by the first mounting surface 135. The first fresh air outlet 2411 and the first exhaust outlet 252a are attached to the wall 5 and are in a state of being shielded from the outdoor space. In this case, in each operation pattern, the first valve plate 41 and the second valve plate 43 are controlled by the following methods, respectively.
 (A1)
 新風導入作動パターンについて、図3aを参照して説明する。新風導入作動パターンは、以下の作業ステップを含む。
1a)第1の駆動機構42によって第1の弁板41が駆動されて、連通口2413を閉鎖する状態に移動する。そうすると、吸込仕切チャンバー242と新風仕切チャンバー241が遮断され、新風仕切チャンバー241のみが空気浄化チャンバー23と連通する。
1b)第2の駆動機構44によって第2の弁板43が駆動されて、第2の新風口2412を開放する状態に移動し、第2の新風口2412が室外空間に連通する。そうすると、室外空間が第2の新風口2412、新風仕切チャンバー241、空気浄化チャンバー23、吸気チャンバー22、送風口221/222を順に介して室内空間に連通する。
1c)吸気ファン31の回転を起動させ、吸気ファン31から気流流通の動力が提供される。吸気ファン31による駆動下で、室外空間における新鮮な空気が、第2の新風口2412、新風仕切チャンバー241を順に経て空気浄化チャンバー23に入り、空気浄化アセンブリ32により浄化された後、吸気チャンバー22、送風口221/222を順に経て室内空間に送入する。吸気ファン31の回転速度を調節することにより、室内空間に流れる空気の流速を調節することができ、さらに、室内空間における空気の圧力を調節することができる。例えば、吸気ファン31の回転速度を高めることで、大量な室外空気が浄化されてから、室内空間に流れるようになり、室内空間における空気の圧力が室外空間における空気の圧力よりも大きくなり、それにより、室内空間が正圧に保持され、室外から混濁な空気が室内に入ってしまうのが防止され、室内空気の清浄度が確保される。
(A1)
The new wind introduction operation pattern will be described with reference to FIG. 3a. The new wind introduction operation pattern includes the following work steps.
1a) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the communication port 2413 is closed. Then, the suction partition chamber 242 and the new wind partition chamber 241 are shut off, and only the new wind partition chamber 241 communicates with the air purification chamber 23.
1b) The second valve plate 43 is driven by the second drive mechanism 44 to move to a state where the second new air outlet 2412 is opened, and the second new air outlet 2412 communicates with the outdoor space. Then, the outdoor space communicates with the indoor space through the second new air outlet 2412, the new air partition chamber 241, the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order.
1c) The rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31. Under the drive of the intake fan 31, fresh air in the outdoor space enters the air purification chamber 23 through the second fresh air outlet 2412 and the fresh air partition chamber 241 in order, and is purified by the air purification assembly 32, and then the intake chamber 22. Then, the air is blown into the indoor space through the blower ports 221/222 in order. By adjusting the rotation speed of the intake fan 31, the flow velocity of the air flowing in the indoor space can be adjusted, and further, the pressure of the air in the indoor space can be adjusted. For example, by increasing the rotation speed of the intake fan 31, a large amount of outdoor air is purified and then flows into the indoor space, and the air pressure in the indoor space becomes higher than the air pressure in the outdoor space. As a result, the indoor space is maintained at a positive pressure, turbid air is prevented from entering the room from the outside, and the cleanliness of the indoor air is ensured.
 (A2)
 内循環作動パターンについて、図3bを参照して説明する。内循環作動パターンは、以下の作業ステップを含む。
2a)第1の駆動機構42によって第1の弁板41が駆動されて、連通口2413を開放する状態に移動する。連通口2413が、新風仕切チャンバー241と吸込仕切チャンバー242とを連通する。そうすると、室内空間における空気が、吸気口2421/2422、吸込仕切チャンバー242、連通口2413、新風仕切チャンバー241、空気浄化チャンバー23、吸気チャンバー22、送風口221/222を順に通過して室内空間に再び入ることができる。
2b)第2の駆動機構44によって第2の弁板43が駆動されて、第2の新風口2412を閉鎖する状態に移動する。第2の新風口2412が室外空間から遮断され、第1の新風口2411が壁5に貼り付けられて室外空間から遮断される。このため、空気は、第1の新風口2411と第2の新風口2412から新風仕切チャンバー241に入ることができず、新風仕切チャンバー241には、吸込仕切チャンバー242から流れ込む空気のみが入ることができる。
2c)吸気ファン31の回転を起動させ、吸気ファン31から気流流通の動力が提供される。吸気ファン31による駆動下で、室内空間における空気が、吸気口2421/2422、吸込仕切チャンバー242、連通口2413、新風仕切チャンバー241を順に経て空気浄化チャンバー23に入り、空気浄化アセンブリ32による浄化が行われた後、吸気チャンバー22、送風口221/222を順に経て室内空間に再び戻る。
(A2)
The internal circulation operation pattern will be described with reference to FIG. 3b. The internal circulation operation pattern includes the following work steps.
2a) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the communication port 2413 is opened. The communication port 2413 connects the fresh air partition chamber 241 and the suction partition chamber 242. Then, the air in the indoor space passes through the intake port 2421/2422, the suction partition chamber 242, the communication port 2413, the new wind partition chamber 241 and the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order to enter the indoor space. You can enter again.
2b) The second valve plate 43 is driven by the second drive mechanism 44 to move to a state in which the second new air vent 2412 is closed. The second new air outlet 2412 is blocked from the outdoor space, and the first new air outlet 2411 is attached to the wall 5 to be shielded from the outdoor space. Therefore, air cannot enter the fresh air partition chamber 241 through the first fresh air outlet 2411 and the second fresh air outlet 2412, and only the air flowing from the suction partition chamber 242 can enter the fresh air partition chamber 241. it can.
2c) The rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31. Under the drive of the intake fan 31, the air in the indoor space enters the air purification chamber 23 through the intake port 2421/2422, the suction partition chamber 242, the communication port 2413, and the new wind partition chamber 241 in this order, and is purified by the air purification assembly 32. After that, the air is returned to the indoor space through the intake chamber 22 and the air outlets 221 and 222 in that order.
 (A3)
 新風導入と内循環が同時に行われる作動パターンについて、図3cと図3dを参照して説明する。新風導入と内循環が同時に行われる作動パターンは、以下の作業ステップを含む。
3a)第1の駆動機構42によって第1の弁板41が駆動されて、連通口2413を開放する状態に移動する。連通口2413が、新風仕切チャンバー241と吸込仕切チャンバー242とを連通する。そうすると、室内空間における空気が、吸気口2421/2422、吸込仕切チャンバー242、連通口2413、新風仕切チャンバー241、空気浄化チャンバー23、吸気チャンバー22、送風口221/222を順に通過して室内空間に再び入ることができる。
3b)第2の駆動機構44によって第2の弁板43が駆動されて、第2の新風口2412を開放する状態に移動し、第2の新風口2412が室外空間に連通する。そうすると、室外空間が、第2の新風口2412、新風仕切チャンバー241、空気浄化チャンバー23、吸気チャンバー22、送風口221/222を順に通過して、室内空間に連通する。
3c)吸気ファン31の回転を起動させ、吸気ファン31から気流流通の動力が提供される。吸気ファン31による駆動下で、室外空間における新鮮な空気は、第2の新風口2412、新風仕切チャンバー241を順に経て空気浄化チャンバー23に入り、空気浄化アセンブリ32による浄化が行われた後、吸気チャンバー22、送風口221/222を順に経て室内空間に送入する。室内空間における空気は、吸込口2421/2422、吸込仕切チャンバー242、連通口2413、新風仕切チャンバー241を順に経て空気浄化チャンバー23に入り、空気浄化アセンブリ32による浄化が行われた後、吸気チャンバー22、送風口221/222を順に経て室内空間に送入する。これらにより、最終的に、室内に送入する空気の質がユーザによる要求を満足する状態になる。
(A3)
An operation pattern in which fresh air introduction and internal circulation are performed at the same time will be described with reference to FIGS. 3c and 3d. An operation pattern in which fresh air introduction and internal circulation are performed at the same time includes the following work steps.
3a) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the communication port 2413 is opened. The communication port 2413 connects the fresh air partition chamber 241 and the suction partition chamber 242. Then, the air in the indoor space passes through the intake port 2421/2422, the suction partition chamber 242, the communication port 2413, the new wind partition chamber 241 and the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order to enter the indoor space. You can enter again.
3b) The second valve plate 43 is driven by the second drive mechanism 44 to move to a state where the second new air outlet 2412 is opened, and the second new air outlet 2412 communicates with the outdoor space. Then, the outdoor space passes through the second new air outlet 2412, the new air partition chamber 241, the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order, and communicates with the indoor space.
3c) The rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31. Under the drive of the intake fan 31, the fresh air in the outdoor space enters the air purification chamber 23 through the second new air outlet 2412 and the new air partition chamber 241 in order, and after being purified by the air purification assembly 32, the air is taken in. The air is blown into the indoor space through the chamber 22 and the air outlets 221 and 222 in that order. The air in the indoor space enters the air purification chamber 23 in this order through the suction port 2421/2422, the suction partition chamber 242, the communication port 2413, and the new wind partition chamber 241. After purification by the air purification assembly 32, the air intake chamber 22 Then, the air is blown into the indoor space through the blower ports 221/222 in order. As a result, the quality of the air fed into the room finally satisfies the requirements of the user.
 第1の弁板41の開度の大きさを制御することで、連通口2413から新風仕切チャンバー241に入る空気の流量を調節することができ、さらに、内循環の風流量と導入された新風の流量の大きさを調節することができる。また、第1の弁板41の開度の大きさと吸気ファン31の回転速度を調節することで、室内の空気の圧力の大きさを調節することができる。例えば、吸気ファン31の回転速度を高めることで、大量な室外空気が浄化されてから、室内空間に流れるようになり、室内空間における空気の圧力が室外空間における空気の圧力よりも大きくなる。これにより、室内空間が正圧に保持され、室外から混濁な空気が室内に入ってしまうのが防止され、室内空気の清浄度が確保される。 By controlling the size of the opening of the first valve plate 41, the flow rate of the air entering the fresh air partition chamber 241 from the communication port 2413 can be adjusted, and further, the internal circulation air flow rate and the introduced fresh air. The magnitude of the flow rate can be adjusted. Further, by adjusting the size of the opening degree of the first valve plate 41 and the rotation speed of the intake fan 31, the size of the air pressure in the room can be adjusted. For example, by increasing the rotation speed of the intake fan 31, a large amount of outdoor air is purified and then flows into the indoor space, and the air pressure in the indoor space becomes larger than the air pressure in the outdoor space. Thereby, the indoor space is maintained at a positive pressure, turbid air is prevented from entering the room from the outside, and the cleanliness of the indoor air is secured.
 (A4)
 排気作動パターンについて、説明する。室内空間と室外空間は、還気口251と第2の排気口252bを介して連通されている。排気ファン33の回転を起動させると、室内空間における空気は、還気口251、排気ファン25、および、排気口252a/252bを順に経て室外空間に排出される。排気作動パターンは、個別に行われてもよいが、上記の(A1)新風導入作動パターン、(A2)内循環作動パターン、(A3)新風導入と内循環が同時に行われる作動パターン、のうちのいずれか1つと同時に行われてもよい。
(A4)
The exhaust operation pattern will be described. The indoor space and the outdoor space are communicated with each other through the return air port 251 and the second exhaust port 252b. When the rotation of the exhaust fan 33 is activated, the air in the indoor space is discharged to the outdoor space through the return air port 251, the exhaust fan 25, and the exhaust ports 252a/252b in order. The exhaust operation pattern may be performed individually, but among the above (A1) fresh air introduction operation pattern, (A2) internal circulation operation pattern, and (A3) operation mode in which fresh air introduction and internal circulation are performed at the same time. Any one may be performed at the same time.
 排気ファン33の回転速度を制御することで、室内空気の圧力を調節することができる。排気ファン33の回転速度を増加することで、さらに多くの室内空気が室外へ排出され、室内空気の圧力が低減される。これにより、室内における混濁な空気が室外に排出されると同時に、室内における混濁な空気の他の部屋への拡散が抑制される。 By controlling the rotation speed of the exhaust fan 33, the pressure of the indoor air can be adjusted. By increasing the rotation speed of the exhaust fan 33, more indoor air is discharged to the outside, and the pressure of the indoor air is reduced. As a result, the turbid air in the room is discharged to the outside of the room, and at the same time, the diffusion of the turbid air in the room to other rooms is suppressed.
 (B)第2の取付方式
 第2の取付面136によって、室内空気処理装置が壁5に装着される。第2の新風口2412と第2の排気口252bは、壁5に貼り付けられるとともに、室外空間から遮断した状態にある。この場合、各作動パターンでは、それぞれ、以下のような方式により、第1の弁板41と第2の弁板43が制御される。
(B) Second Mounting Method The indoor mounting device is mounted on the wall 5 by the second mounting surface 136. The second fresh air outlet 2412 and the second exhaust outlet 252b are attached to the wall 5 and are shut off from the outdoor space. In this case, in each operation pattern, the first valve plate 41 and the second valve plate 43 are controlled by the following methods, respectively.
 (B1)
 新風導入作動パターンについて、図3eを参照して説明する。新風導入作動パターンは、以下の作業ステップを含む。
Ia)第1の駆動機構42によって第1の弁板41が駆動されて、連通口2413を閉鎖する状態に移動する。第1の新風口2411が室外空間に連通する。そうすると、吸込仕切チャンバー242と新風仕切チャンバー241とが遮断され、新風仕切チャンバー241のみが空気浄化チャンバー23に連通する。室外空間が、第1の新風口2411、新風仕切チャンバー241、空気浄化チャンバー23、吸気チャンバー22、送風口221/222を順に通過して、室内空間に連通する。
Ib)吸気ファン31の回転を起動させ、吸気ファン31から気流流通の動力が提供される。吸気ファン31の駆動下で、室外空間における新鮮な空気は、第1の新風口2411、新風仕切チャンバー241を順に経て空気浄化チャンバー23に入り、空気浄化アセンブリ32による浄化が行われた後、吸気チャンバー22、送風口221/222を順に経て、室内空間に送入する。
(B1)
The new wind introduction operation pattern will be described with reference to FIG. 3e. The new wind introduction operation pattern includes the following work steps.
Ia) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the communication port 2413 is closed. The first new air outlet 2411 communicates with the outdoor space. Then, the suction partition chamber 242 and the new wind partition chamber 241 are shut off, and only the new wind partition chamber 241 communicates with the air purification chamber 23. The outdoor space passes through the first new air outlet 2411, the new air partition chamber 241, the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order, and communicates with the indoor space.
Ib) The rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31. Under the drive of the intake fan 31, fresh air in the outdoor space enters the air purification chamber 23 through the first new air outlet 2411 and the new air partition chamber 241 in this order, and after being purified by the air purification assembly 32, the air is taken in. The air is blown into the indoor space through the chamber 22 and the air outlets 221 and 222 in order.
 (B2)
 内循環作動パターンは、以下の作業ステップを含む。
IIa)第1の駆動機構42によって第1の弁板41が駆動されて、第1の新風口2411を閉鎖する状態に移動する。第1の新風口2411が室外空間から遮断され、第2の新風口2412が壁5に貼り付けられて室外空間から遮断される。このため、空気は、第1の新風口2411または第2の新風口2412から新風仕切チャンバー241に入ることができない。連通口2413が開放した位置にあり、連通口2413が吸込仕切チャンバー242と新風仕切チャンバー241とを連通し、室内空間における空気が吸込口2421/2422、吸込仕切チャンバー242、連通口2413、新風仕切チャンバー241、空気浄化チャンバー23、吸気チャンバー22、送風口221/222を順に経て室内空間に再び入ることができる。
IIb)吸気ファン31の回転を起動させ、吸気ファン31から気流流通の動力が提供される。吸気ファン31の駆動下で、室内空間における空気は、吸気口2421/2422、吸込仕切チャンバー242、連通口2413、新風仕切チャンバー241を順に経て空気浄化チャンバー23に入り、空気浄化アセンブリ32による浄化が行われた後、吸気チャンバー22、送風口221/222を順に経て室内空間に入る。
(B2)
The internal circulation operation pattern includes the following working steps.
IIa) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state in which the first new air outlet 2411 is closed. The first new air outlet 2411 is blocked from the outdoor space, and the second new air outlet 2412 is attached to the wall 5 to be shielded from the outdoor space. Therefore, air cannot enter the new air partition chamber 241 from the first new air outlet 2411 or the second new air outlet 2412. The communication port 2413 is in an open position, the communication port 2413 communicates the suction partition chamber 242 and the new wind partition chamber 241, and the air in the indoor space is sucked into the suction port 2421/2422, the suction partition chamber 242, the communication port 2413, and the new wind partition. It is possible to re-enter the indoor space through the chamber 241, the air purification chamber 23, the intake chamber 22, and the air outlet 221/222 in this order.
IIb) The rotation of the intake fan 31 is started, and the power for air flow is provided from the intake fan 31. Under the drive of the intake fan 31, the air in the indoor space enters the air purification chamber 23 through the intake port 2421/2422, the suction partition chamber 242, the communication port 2413, and the new wind partition chamber 241 in this order, and is purified by the air purification assembly 32. After that, the air enters into the indoor space through the intake chamber 22 and the air outlets 221 and 222 in order.
 (B3)
 新風導入と内循環が同時に行われる作動パターンは、以下の作業ステップを含む。
IIIa)第1の駆動機構42によって第1の弁板41が駆動されて、第1の新風口2411と連通口2413の間に位置する状態に移動する。第1の新風口2411が室外空間に連通し、かつ、連通口2413が新風仕切チャンバー241と吸込仕切チャンバー242とを連通する。そうすると、室外空間における空気は、第1の新風口2411、新風仕切チャンバー241、空気浄化チャンバー23、吸気チャンバー22、送風口221/222を順に通過して室内空間に流れ、室内空間における空気が吸込口2421/2422、吸込仕切チャンバー242、連通口2413、新風仕切チャンバー241、空気浄化チャンバー23、吸気チャンバー22、送風口221/222を順に通過して室内空間に還流することができる。
IIIb)吸気ファン31の回転を起動させ、吸気ファン31から気流流通の動力が提供される。吸気ファン31の駆動下で、室外空間における新鮮な空気は、第1の新風口2411、新風仕切チャンバー241を順に経て空気浄化チャンバー23に入り、空気浄化アセンブリ32による浄化が行われた後、吸気チャンバー32、送風口221/222を順に経て室内空間に送入する。室内空間における空気は、吸込口2421/2422、吸込仕切チャンバー242、連通口2413、新風仕切チャンバー241を順に経て空気浄化チャンバー23に入り、空気浄化アセンブリ32による浄化が行われた後、吸気チャンバー22、送風口221/222を順に経て室内空間に送入する。
(B3)
An operation pattern in which fresh air introduction and internal circulation are performed at the same time includes the following work steps.
IIIa) The first valve plate 41 is driven by the first drive mechanism 42 to move to a state located between the first new air outlet 2411 and the communication port 2413. The first new wind port 2411 communicates with the outdoor space, and the communication port 2413 communicates with the new wind partition chamber 241 and the suction partition chamber 242. Then, the air in the outdoor space sequentially passes through the first fresh air outlet 2411, the fresh air partition chamber 241, the air purification chamber 23, the air intake chamber 22, and the air outlet 221/222 into the indoor space, and the air in the indoor space is sucked in. The air can be returned to the indoor space by sequentially passing through the ports 2421/2422, the suction partition chamber 242, the communication port 2413, the fresh air partition chamber 241, the air purification chamber 23, the air intake chamber 22, and the blower ports 221/222.
IIIb) The rotation of the intake fan 31 is started, and the power for airflow circulation is provided from the intake fan 31. Under the drive of the intake fan 31, fresh air in the outdoor space enters the air purification chamber 23 through the first new air outlet 2411 and the new air partition chamber 241 in this order, and after being purified by the air purification assembly 32, the air is taken in. The air is blown into the indoor space through the chamber 32 and the air blow ports 221/222 in order. The air in the indoor space enters the air purifying chamber 23 through the suction ports 2421/2422, the suction partition chamber 242, the communication port 2413, and the fresh air partition chamber 241, in that order, and after being purified by the air purification assembly 32, the intake chamber 22. Then, the air is blown into the indoor space through the blower ports 221/222 in order.
 第1の弁板41の開度の大きさを制御することで、導入された新風の流量および内循環の風流量の大きさを調節することができる。第1の弁板41の開度の大きさと吸気ファン31の回転速度を調節することで、室内の空気の圧力の大きさを調節することができる。例えば、吸気ファン31の回転速度を高めることで、大量な室外空気が浄化されてから、室内空間に流れるようになり、室内空間における空気の圧力が室外空間における空気の圧力よりも大きくなる。これにより、室内空間が正圧に保持され、室外からの混濁な空気が室内に入ってしまうのが防止され、室内空気の清浄度が確保される。 By controlling the magnitude of the opening degree of the first valve plate 41, the magnitude of the flow rate of the introduced new wind and the magnitude of the air flow rate of the internal circulation can be adjusted. By adjusting the opening degree of the first valve plate 41 and the rotation speed of the intake fan 31, it is possible to adjust the magnitude of the pressure of the air in the room. For example, by increasing the rotation speed of the intake fan 31, a large amount of outdoor air is purified and then flows into the indoor space, so that the pressure of air in the indoor space becomes higher than the pressure of air in the outdoor space. As a result, the indoor space is maintained at a positive pressure, turbid air from the outside is prevented from entering the room, and the cleanliness of the indoor air is ensured.
 (B4)
 排気作動パターンについて説明する。室内空間と室外空間は、還気口251と第1の排気口252aを介して連通されている。排気ファン33の回転を起動させると、室内空間における空気は、還気口251、排気ファン25、および、排気口252a/252bを順に経て室外空間に排出される。
(B4)
The exhaust operation pattern will be described. The indoor space and the outdoor space are communicated with each other through the return air port 251 and the first exhaust port 252a. When the rotation of the exhaust fan 33 is activated, the air in the indoor space is discharged to the outdoor space through the return air port 251, the exhaust fan 25, and the exhaust ports 252a/252b in order.
 排気作動パターンは、個別に行われてもよいが、上記(B1)新風導入作動パターン、(B2)内循環作動パターン、(B3)新風導入と内循環が同時に行われる作動パターン、のうちのいずれか1つと同時に行われることができる。 Although the exhaust operation pattern may be performed individually, any one of the above (B1) fresh air introduction operation pattern, (B2) internal circulation operation pattern, and (B3) operation pattern in which fresh air introduction and internal circulation are performed simultaneously Or one can be done at the same time.
 排気ファン33の回転速度を制御することで、室内空気の圧力を調節することができる。排気ファン33の回転速度を増加することで、さらに多くの室内空気が室外へ排出され、室内空気の圧力が低減される。これにより、室内における混濁な空気が室外に排出されると同時に、室内における混濁な空気の他の部屋への拡散が抑制される。 By controlling the rotation speed of the exhaust fan 33, the pressure of the indoor air can be adjusted. By increasing the rotation speed of the exhaust fan 33, more indoor air is discharged to the outside, and the pressure of the indoor air is reduced. As a result, the turbid air in the room is discharged to the outside, and at the same time, the diffusion of the turbid air in the room to other rooms is suppressed.
 (2)室内空気処理装置の特徴
 上記実施例の技術案に基づき、室内空気処理装置は、複数種類の作動パターンの融合を実現することができ、様々な作動パターンは適合して組み合わせることができる。これにより、室内空気を効果的に処理して、室内空気の質を向上させることができる。しかも、排気の気流経路が個別に設けられているので、他の気流経路と衝突して気流の乱れや乱流が生じることがない。このため、室内空気処理装置の作動性能がさらに良くなり、ユーザの体感がさらに良くなる。
(2) Characteristics of indoor air treatment device Based on the technical solution of the above-described embodiment, the indoor air treatment device can realize fusion of a plurality of types of operation patterns, and various operation patterns can be combined appropriately. .. Thereby, the indoor air can be effectively treated and the quality of the indoor air can be improved. Moreover, since the exhaust airflow paths are individually provided, the airflow turbulence and the turbulent flow do not occur due to collision with other airflow paths. Therefore, the operation performance of the indoor air treatment device is further improved, and the user's sensation is further improved.
 また、室内空気処理装置は、複数種類の装着方式によって装着されてもよい。異なる室内装着環境に応じて、適切な装着方式を選択することができ、室内空間のレイアウトによりよく適応することができる。室内空気処理装置は、低い位置にある壁に装着されてもよいし、高い位置にある壁に装着されてもよいし、また、壁角の位置に応じて装着されてもよい。 Further, the indoor air treatment device may be mounted by a plurality of types of mounting methods. Appropriate mounting methods can be selected according to different indoor mounting environments, and can be better adapted to the layout of the indoor space. The indoor air treatment device may be mounted on a wall at a low position, may be mounted on a wall at a high position, or may be mounted according to the position of the wall angle.
 気流分配チャンバーに対する巧妙な設計により、第1の弁板と第2の弁板を用いて、第1の新風口、第2の新風口、および、連通口の開度を巧妙に制御することで、気流制御の目的を達成し、新風導入作動パターン、内循環作動パターン、新風導入と内循環が同時に行われる作動パターンの間の切り換えが実現され、また、排気作業パターンが個別に行われ、または、他の作業パターンと同時に行われてもよい。 By cleverly designing the airflow distribution chamber, the opening of the first new air outlet, the second new air outlet, and the communication port is finely controlled by using the first valve plate and the second valve plate. , Achieve the purpose of air flow control, and realize the switching between the new air introduction operation pattern, the internal circulation operation pattern, the operation pattern in which the new air introduction and internal circulation are performed simultaneously, and the exhaust work pattern is performed individually, or , May be performed simultaneously with other work patterns.
 上記の室内空気処理装置によれば、制御方式が簡素化され、構造やレイアウトが合理的であり、体積が小さく、室内空間が節約される。 According to the above indoor air treatment device, the control system is simplified, the structure and layout are rational, the volume is small, and the indoor space is saved.
 (3)変形例
 (3-1)
 上記の表示パネル139が設けられているケース1に代えて、図7~図9に示すハウジング3002を採用してもよい。
(3) Modified example (3-1)
Instead of the case 1 in which the display panel 139 is provided, the housing 3002 shown in FIGS. 7 to 9 may be adopted.
 この室内空気処理装置は、ハウジング3002と表示パネル3001を含む。表示パネル3001の背部には、少なくとも2組の係合部3011が設けられている。表示パネル3001の中心に対する隣り合う2組の係合部3011の回転角度は、90°である。表示パネル3001は、少なくとも2組の係合部3011のうちの1組によって、ハウジング3002に装着されている。 This indoor air treatment device includes a housing 3002 and a display panel 3001. At least two sets of engaging portions 3011 are provided on the back of the display panel 3001. The rotation angle of the two adjacent sets of engaging portions 3011 with respect to the center of the display panel 3001 is 90 °. The display panel 3001 is mounted on the housing 3002 by at least one set of two sets of engaging portions 3011.
 (3-2)
 上記のケース1に代えて、図10と図11に示すハウジング4001を採用してもよい。ハウジング4001の側板には、室外に連通するための新風口4111/4121が、2つ開設されている。
(3-2)
Instead of the case 1, a housing 4001 shown in FIGS. 10 and 11 may be adopted. On the side plate of the housing 4001, two fresh air openings 4111/4121 for communicating with the outside of the room are opened.
 2つの新風口4111/4121は、ともに、第1の取付板4011または第2の取付板4012に設置されてもよい。 Both of the two fresh air inlets 4111/4121 may be installed on the first mounting plate 4011 or the second mounting plate 4012.
 また、2つの新風口4111/4121は、それぞれ、第1の取付板4011と第2の取付板4012に設置されてもよい。 Also, the two fresh air inlets 4111/4121 may be installed on the first mounting plate 4011 and the second mounting plate 4012, respectively.
 2つの新風口の間にあるハウジング4001には、空気検出手段4005が1つ設けられている。このため、どの新風口から新風が導入されたかにも拘らず、空気検出手段4005は、導入された新風を検出することができる。これにより、空気処理機器の制御精度を向上させることができる。空気検出手段4005は、室外空気のPM2.5濃度を検出するためのPM2.5検出センサーであることが好ましい。 The housing 4001 between the two new air vents is provided with one air detecting means 4005. Therefore, the air detection unit 4005 can detect the introduced fresh air regardless of which fresh air port has introduced the fresh air. As a result, the control accuracy of the air treatment equipment can be improved. The air detection means 4005 is preferably a PM2.5 detection sensor for detecting the PM2.5 concentration of outdoor air.
 図10に示すように、具体的な実施の過程において、第1の取付板4011には、第1の新風口4111が設けられている。第2の取付板4012には、第2の新風口4121が設けられている。2つの新風口の中心は、同一の水平線に位置する。空気検出手段4005は、第1の取付板4011と第2の取付板4012の接続箇所の内側に設けられている。 As shown in FIG. 10, the first fresh air inlet 4111 is provided on the first mounting plate 4011 in the process of concrete implementation. A second fresh air port 4121 is provided on the second mounting plate 4012. The centers of the two fresh air outlets are located on the same horizontal line. The air detecting means 4005 is provided inside the connection portion between the first mounting plate 4011 and the second mounting plate 4012.
 (4)
 以上に説明したように、上記の室内空気処理装置は、従来技術に存在した種々の不備を解消しており、高い産業利用価値がある。
(4)
As described above, the indoor air treatment device described above solves various deficiencies existing in the prior art and has high industrial utility value.
 (5)
 上記の実施例は、室内空気処理装置の原理及びその効果を例示的に説明するものに過ぎず、室内空気処理装置を限定するものではない。この技術を熟知した者は、本開示の精神及び範囲から逸脱しない限り、上記実施例を修飾したり、変更したりすることができる。従って、当業界における通常の知識を有する者であれば、ここに開示された精神及び技術思想から逸脱することなく、完成したすべての等価な修飾又は変更は、依然として、請求の範囲によってカバーされるべきである。
(5)
The above embodiments are merely illustrative of the principle and effect of the indoor air treatment device, and do not limit the indoor air treatment device. Those skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present disclosure. Therefore, any equivalent modification or modification completed, without departing from the spiritual and technical ideas disclosed herein, is still covered by the claims, as long as it is of ordinary knowledge in the industry. Should be.
   1  ケース
  11  第1のエンドキャップ
  12  第2のエンドキャップ
  13  カバー体
 131  メイン外装面
 132  第1の接続面
 133  第2の接続面
 134  ウィンドウグリッド
 135  第1の取付面
 136  第2の取付面
 137  第1の取付インターフェース
 138  第2の取付インターフェース
 139  表示パネル
  14  気流分配体
 141  仕切壁
  21  収容チャンバー
  22  吸気チャンバー
 221  第1の送風口
 222  第2の送風口
  23  空気浄化チャンバー
  24  気流分配チャンバー
 241  新風仕切チャンバー
2411  第1の新風口
2412  第2の新風口
2413  連通口
2413a 第1の連通口
2413b 第2の連通口
 242  吸込仕切チャンバー
2421  第1の吸込口
2422  第2の吸込口
  25  排気チャンバー
 251  還気口
252a  第1の排気口
252b  第2の排気口
  31  吸気ファン
  32  空気浄化アセンブリ
  33  排気ファン
  41  第1の弁板
  42  第1の駆動機構
  43  第2の弁板
  44  第2の駆動機構
   5  壁
   6  取付板
  61  フック
   7  背板
  71  取付穴
 
1 Case 11 1st end cap 12 2nd end cap 13 Cover body 131 Main exterior surface 132 1st connection surface 133 2nd connection surface 134 Window grid 135 1st mounting surface 136 2nd mounting surface 137 1 mounting interface 138 2nd mounting interface 139 Display panel 14 Air flow distribution chamber 141 Partition wall 21 Containment chamber 22 Intake chamber 221 1st air outlet 222 2nd air outlet 23 Air purification chamber 24 Air air distribution chamber 241 New air partition chamber 2411 First fresh air outlet 2412 Second fresh air outlet 2413 Communication port 2413a First communication port 2413b Second communication port 242 Suction partition chamber 2421 First suction port 2422 Second suction port 25 Exhaust chamber 251 Return air port 252a First exhaust port 252b Second exhaust port 31 Intake fan 32 Air purification assembly 33 Exhaust fan 41 First valve plate 42 First drive mechanism 43 Second valve plate 44 Second drive mechanism 5 Wall 6 mounting Plate 61 Hook 7 Back plate 71 Mounting hole

Claims (16)

  1.  吸気チャンバー(22)、空気浄化チャンバー(23)、気流分配チャンバー(24)及び排気チャンバー(25)を含み、
     前記吸気チャンバー(22)には、吸気ファン(31)が設けられており、
     前記空気浄化チャンバー(23)には、空気浄化アセンブリ(32)が設けられており、
     前記排気チャンバー(25)には、排気ファン(33)が設けられており、
     前記吸気チャンバー(22)と気流分配チャンバー(24)は、ともに、空気浄化チャンバー(23)に連通しており、
     前記吸気チャンバー(22)は、室内空間に連通するための送風口(221,222)を有し、
     前記排気チャンバー(25)は、室内空間に連通するための還気口(251)と、室外空間に連通するための排気口(252a,252b)と、を有し、
     前記気流分配チャンバー(24)は、新風仕切チャンバー(241)と吸込仕切チャンバー(242)を含み、
     前記新風仕切チャンバー(241)は、前記空気浄化チャンバー(23)と連通し、
     前記新風仕切チャンバー(241)と前記吸込仕切チャンバー(242)の間は、連通口(2413)によって連通されており、
     前記新風仕切チャンバー(241)は、室外空間に連通するための第1の新風口(2411)と第2の新風口(2412)を有し、
     前記吸込仕切チャンバー(242)は、室内空間に連通するための吸込口(2421,2422)を有し、
     前記第1の新風口(2411)には、第1の駆動機構(42)によって駆動される第1の弁板(41)が設けられており、
     前記第2の新風口(2412)には、第2の駆動機構(44)によって駆動される第2の弁板(43)が設けられている、
    ことを特徴とする、室内空気処理装置。
    Including an intake chamber (22), an air purification chamber (23), an airflow distribution chamber (24) and an exhaust chamber (25),
    An intake fan (31) is provided in the intake chamber (22),
    The air purification chamber (23) is provided with an air purification assembly (32),
    An exhaust fan (33) is provided in the exhaust chamber (25),
    Both the intake chamber (22) and the airflow distribution chamber (24) communicate with the air purification chamber (23),
    The intake chamber (22) has blower ports (221, 222) for communicating with the indoor space,
    The exhaust chamber (25) has a return air port (251) for communicating with the indoor space and an exhaust port (252a, 252b) for communicating with the outdoor space.
    The airflow distribution chamber (24) includes a new wind partition chamber (241) and a suction partition chamber (242).
    The fresh air partition chamber (241) communicates with the air purification chamber (23),
    The fresh air partition chamber (241) and the suction partition chamber (242) are connected by a communication port (2413),
    The new wind partition chamber (241) has a first new air outlet (2411) and a second new air outlet (2412) for communicating with the outdoor space.
    The suction partition chamber (242) has suction ports (2421, 2422) for communicating with the indoor space,
    The first new air outlet (2411) is provided with a first valve plate (41) driven by a first drive mechanism (42).
    The second fresh air outlet (2412) is provided with a second valve plate (43) driven by a second drive mechanism (44).
    An indoor air treatment device characterized by the above.
  2.  前記第1の弁板(41)は、前記第1の新風口(2411)を閉鎖する状態、前記連通口(2413)を閉鎖する状態、前記第1の新風口(2411)と前記連通口(2413)の間に位置する状態、のそれぞれへ移動することができるように、前記第1の駆動機構(42)によって駆動されており、
     前記第2の弁板(43)は、前記第2の新風口(2412)を閉鎖または開放させるように、前記第2の駆動機構(44)によって駆動される、
    ことを特徴とする、請求項1に記載の室内空気処理装置。
    The first valve plate (41) has a state in which the first new air outlet (2411) is closed, a state in which the communication port (2413) is closed, and a state in which the first new air port (2411) and the communication port (2411) are closed. 2413), and is driven by the first drive mechanism (42),
    The second valve plate (43) is driven by the second drive mechanism (44) so as to close or open the second new air outlet (2412).
    The indoor air treatment device according to claim 1, wherein
  3.  前記新風仕切チャンバー(241)と前記吸込仕切チャンバー(242)の間には、仕切壁(141)が設けられており、
     前記連通口(2413)は、前記仕切壁(141)に設けられた第1の連通口(2413a)と第2の連通口(2413b)を含み、
     前記第1の弁板(41)は、前記第1の新風口(2411)を閉鎖する状態、前記第1の連通口(2413a)を閉鎖する状態、前記第1の新風口(2411)と前記第1の連通口(2413a)の間に位置する状態、のそれぞれへ移動することができるように、第1の駆動機構(42)によって駆動されており、
     前記第2の弁板(43)は、前記第2の新風口(2412)を閉鎖する状態、前記第2の連通口(2413b)を閉鎖する状態、前記第2の新風口(2412)と前記第2の連通口(2413b)の間に位置する状態、のそれぞれへ移動することができるように、第2の駆動機構(44)によって駆動される、
    ことを特徴とする、請求項1に記載の室内空気処理装置。
    A partition wall (141) is provided between the fresh air partition chamber (241) and the suction partition chamber (242),
    The communication port (2413) includes a first communication port (2413a) and a second communication port (2413b) provided in the partition wall (141),
    The first valve plate (41) is in a state of closing the first fresh air outlet (2411), a state of closing the first communication opening (2413a), the first fresh air outlet (2411) and the first fresh air outlet (2411). It is driven by the first drive mechanism (42) so that it can move to each of the states located between the first communication ports (2413a).
    The second valve plate (43) has a state in which the second new air outlet (2412) is closed, a state in which the second communication port (2413b) is closed, the second new air outlet (2412) and the above. Driven by a second drive mechanism (44) so that it can move to each of the states located between the second communication ports (2413b).
    The indoor air treatment device according to claim 1, wherein
  4.  前記排気チャンバー(25)は、気流分配チャンバー(24)、空気浄化チャンバー(23)、または、吸気チャンバー(22)に連通しない、
    ことを特徴とする、請求項1から3のいずれかに記載の室内空気処理装置。
    The exhaust chamber (25) does not communicate with the airflow distribution chamber (24), the air purification chamber (23), or the intake chamber (22),
    The indoor air treatment device according to any one of claims 1 to 3, characterized in that:
  5.  前記吸気チャンバー(22)、空気浄化チャンバー(23)、気流分配チャンバー(24)、および、排気チャンバー(25)は、いずれも、ケース(1)内に設けられており、
     前記ケース(1)の外側面は、前記ケース(1)の長手方向に沿って延伸している第1の取付面(135)と第2の取付面(136)を含み、
     前記第1の新風口(2411)は、前記第1の取付面(135)から露出し、
     前記第2の新風口(2412)は、前記第2の取付面(136)から露出し、
     前記第1の取付面(135)と前記第2の取付面(136)の各々には、1つの排気口(252a,252b)が露出され、
     前記第1の取付面(135)と前記第2の取付面(136)の各々には、第1の取付インターフェース(137)と第2の取付インターフェース(138)がさらに設けられており、
     前記室内空気処理装置は、前記第1の取付インターフェース(137)又は前記第2の取付インターフェース(138)によって装着されることができる、
    ことを特徴とする、請求項1から4のいずれかに記載の室内空気処理装置。
    The intake chamber (22), the air purification chamber (23), the air flow distribution chamber (24), and the exhaust chamber (25) are all provided in the case (1),
    The outer surface of the case (1) includes a first mounting surface (135) and a second mounting surface (136) extending along the longitudinal direction of the case (1).
    The first new air outlet (2411) is exposed from the first mounting surface (135).
    The second new air outlet (2412) is exposed from the second mounting surface (136).
    One exhaust port (252a, 252b) is exposed on each of the first mounting surface (135) and the second mounting surface (136).
    A first mounting interface (137) and a second mounting interface (138) are further provided on each of the first mounting surface (135) and the second mounting surface (136).
    The indoor air treatment device can be mounted by the first mounting interface (137) or the second mounting interface (138).
    The indoor air treatment device according to any one of claims 1 to 4, characterized in that:
  6.  前記第1の取付面(135)と前記第2の取付面(136)は、それぞれ、壁角における2つの壁に貼り付けられることができる、
    ことを特徴とする、請求項5に記載の室内空気処理装置。
    The first mounting surface (135) and the second mounting surface (136) can each be attached to two walls at a wall angle.
    The indoor air treatment device according to claim 5, wherein:
  7.  前記第1の取付面(135)と前記第2の取付面(136)とがなす角度が直角である、
    ことを特徴とする、請求項6に記載の室内空気処理装置。
    An angle formed by the first mounting surface (135) and the second mounting surface (136) is a right angle,
    The indoor air treatment device according to claim 6, characterized in that
  8.  前記吸込仕切チャンバー(242)は、2つの前記吸込口(2421,2422)を有し、
     前記吸気チャンバー(22)は、2つの前記送風口(221,222)を有し、
     前記ケース(1)の外側面には、前記ケース(1)の長手方向に沿って延伸している第1の接続面(132)と第2の接続面(133)がさらに含まれ、
     前記第1の接続面(132)には、1つの前記送風口(221)と1つの前記吸込口(2421)が露出され、
     前記第2の接続面(133)にも、1つの前記送風口(222)と1つの前記吸込口(2422)が露出される、
    ことを特徴とする、請求項1に記載の室内空気処理装置。
    The suction partition chamber (242) has two suction ports (2421, 2422),
    The intake chamber (22) has the two blower ports (221, 222),
    The outer surface of the case (1) further includes a first connection surface (132) and a second connection surface (133) extending along the longitudinal direction of the case (1),
    The blower port (221) and the suction port (2421) are exposed on the first connection surface (132),
    Also on the second connection surface (133), one blower opening (222) and one suction opening (2422) are exposed.
    The indoor air treatment device according to claim 1, wherein
  9.  請求項1に記載の室内空気処理装置を用いて作業し、前記第1の新風口(2411)が室外空間から遮断した状態にあり、
    1)新風導入作動パターンであって、
    1a)前記第1の弁板(41)が、前記連通口(2413)を閉鎖する状態に移動するように、前記第1の駆動機構(42)によって駆動されるステップと、
    1b)前記第2の弁板(43)が、前記第2の新風口(2412)を開放する状態に移動するように、前記第2の駆動機構(44)によって駆動されて、前記第2の新風口(2412)が室外空間に連通するようになるステップと、
    1c)前記吸気ファン(31)の回転を起動させて、室外空間における新鮮な空気が、前記第2の新風口(2412)、前記新風仕切チャンバー(241)を順に経て前記空気浄化チャンバー(23)に入り、前記空気浄化アセンブリ(32)により浄化された後、前記吸気チャンバー(22)、前記送風口(221,222)を順に経て室内空間に送入するようになるステップと、
    を含む新風導入作動パターン、
    2)内循環作動パターンであって、
    2a)前記第1の弁板(41)が、前記連通口(2413)を開放する状態に移動するように、前記第1の駆動機構(42)によって駆動されて、前記連通口(2413)が前記新風仕切チャンバー(241)と前記吸込仕切チャンバー(242)とを連通するようになるステップと、
    2b)前記第2の弁板(43)が、前記第2の新風口(2412)を閉鎖する状態に移動するように、前記第2の駆動機構(44)によって駆動されて、前記第2の新風口(2412)が室外空間から遮断するようになるステップと、
    2c)前記吸気ファン(31)の回転を起動させて、室内空間における空気が、前記吸込口(2421,2422)、前記吸込仕切チャンバー(242)、前記連通口(2413)、前記新風仕切チャンバー(241)を順に経て前記空気浄化チャンバー(23)に入り、前記空気浄化アセンブリ(32)により浄化された後、前記吸気チャンバー(22)、前記送風口(221,222)を順に経て室内空間に送入するステップと、
    を含む内循環作動パターン、および、
    3)新風導入と内循環が同時に行われる作動パターンであって、
    3a)前記第1の弁板(41)が、前記連通口(2413)を開放する状態に移動するように、前記第1の駆動機構(42)によって駆動されて、前記連通口(2413)が前記新風仕切チャンバー(241)と前記吸込仕切チャンバー(242)とを連通するようになるステップと、
    3b)前記第2の弁板(43)が、前記第2の新風口(2412)を開放する状態に移動するように、前記第2の駆動機構(44)によって駆動されて、前記第2の新風口(2412)が室外空間に連通するようになるステップと、
    3c)前記吸気ファン(31)の回転を起動させて、室外空間における新鮮な空気が、前記第2の新風口(2412)、前記新風仕切チャンバー(241)を順に経て前記空気浄化チャンバー(23)に入り、前記空気浄化アセンブリ(32)により浄化された後、前記吸気チャンバー(22)、前記送風口(221,222)を順に経て室内空間に送入し、室内空間における空気が、前記吸込口(2421,2422)、前記吸込仕切チャンバー(242)、前記連通口(2413)、前記新風仕切チャンバー(241)を順に経て前記空気浄化チャンバー(23)に入り、前記空気浄化アセンブリ(32)により浄化された後、前記吸気チャンバー(22)、前記送風口(221,222)を順に経て室内空間に送入するステップと、
    を含む、新風導入と内循環が同時に行われる作動パターン、
    を含む、
    ことを特徴とする、室内空気処理装置の作動方法。
    Working using the indoor air treatment device according to claim 1, the first new air outlet (2411) is in a state of being shielded from the outdoor space.
    1) It is a new wind introduction operation pattern,
    1a) A step driven by the first drive mechanism (42) so that the first valve plate (41) moves to a state in which the communication port (2413) is closed.
    1b) The second valve plate (43) is driven by the second drive mechanism (44) so as to move to a state in which the second new air vent (2412) is opened. The step where the new air outlet (2412) comes to communicate with the outdoor space,
    1c) The rotation of the intake fan (31) is started, and fresh air in the outdoor space passes through the second fresh air outlet (2412) and the fresh air partition chamber (241) in this order, and the air purification chamber (23). After entering and purifying by the air purification assembly (32), the step of feeding into the indoor space through the intake chamber (22) and the air outlet (221,222) in this order.
    New wind introduction operation pattern, including
    2) It is an internal circulation operation pattern
    2a) The communication port (2413) is driven by the first drive mechanism (42) so that the first valve plate (41) moves to a state in which the communication port (2413) is opened. A step in which the new wind partition chamber (241) and the suction partition chamber (242) are communicated with each other.
    2b) The second valve plate (43) is driven by the second drive mechanism (44) so as to move to a state in which the second new air outlet (2412) is closed. The step where the new air outlet (2412) comes to be cut off from the outdoor space,
    2c) By activating the rotation of the intake fan (31), the air in the indoor space is brought into the suction port (2421, 2422), the suction partition chamber (242), the communication port (2413), and the new wind partition chamber ( After entering the air purification chamber (23) in order through 241) and being purified by the air purification assembly (32), the air is sent to the indoor space through the intake chamber (22) and the air outlet (221,222) in order. Steps to enter and
    Internal circulation operation pattern including, and
    3) It is an operation pattern in which the introduction of new air and internal circulation are performed at the same time.
    3a) The communication port (2413) is driven by the first drive mechanism (42) so that the first valve plate (41) moves to a state in which the communication port (2413) is opened. A step in which the new wind partition chamber (241) and the suction partition chamber (242) are communicated with each other.
    3b) The second valve plate (43) is driven by the second drive mechanism (44) so as to move to a state in which the second new air vent (2412) is opened. The step where the new air outlet (2412) comes to communicate with the outdoor space,
    3c) The rotation of the intake fan (31) is started, and fresh air in the outdoor space passes through the second fresh air outlet (2412) and the fresh air partition chamber (241) in this order, and the air purification chamber (23). After entering and being purified by the air purification assembly (32), the air is sent into the indoor space through the intake chamber (22) and the air outlet (221,222) in this order, and the air in the indoor space is introduced into the suction port. (2421, 2422), the suction partition chamber (242), the communication port (2413), the new wind partition chamber (241), enter the air purification chamber (23) in this order, and purify by the air purification assembly (32). After that, the step of feeding into the indoor space through the intake chamber (22) and the air outlet (221,222) in this order.
    The operation pattern in which new wind introduction and internal circulation are performed at the same time, including
    including,
    A method of operating an indoor air treatment device, characterized in that.
  10.  4)排気作動パターンであって、
    4a)前記排気ファン(33)の回転を起動させ、室内空間における空気が、前記還気口(251)、前記排気チャンバー(25)、および、前記排気口(252a,252b)を順に経て室外空間に排出するステップ、
    を含む排気作動パターン
    をさらに含む、
    ことを特徴とする、請求項9に記載の室内空気処理装置の作動方法。
    4) Exhaust operation pattern,
    4a) The rotation of the exhaust fan (33) is activated, and the air in the indoor space passes through the return air port (251), the exhaust chamber (25), and the exhaust port (252a, 252b) in this order to the outdoor space. The step of discharging to
    Further including an exhaust operation pattern including
    The method for operating an indoor air treatment device according to claim 9, wherein
  11.  前記排気作動パターンは、前記新風導入作動パターン、前記内循環作動パターン、及び前記新風導入と内循環が同時に行われる作動パターン、のうちのいずれか1つと同時に行われることができる、
    ことを特徴とする、請求項10に記載の室内空気処理装置の作動方法。
    The exhaust operation pattern can be performed at the same time as any one of the new wind introduction operation pattern, the internal circulation operation pattern, and the operation pattern in which the new wind introduction and the internal circulation are simultaneously performed.
    The method for operating an indoor air treatment device according to claim 10, wherein
  12.  請求項1に記載の室内空気処理装置を用いて作業し、前記第2の新風口(2412)が室外空間から遮断した状態にあり、
    I)新風導入作動パターンであって、
    Ia)前記第1の弁板(41)が、前記連通口(2413)を閉鎖する状態に移動するように、前記第1の駆動機構(42)によって駆動されて、前記第1の新風口(2411)が室外空間に連通するようになるステップと、
    1b)前記吸気ファン(31)の回転を起動させて、室外空間における新鮮な空気が、前記第1の新風口(2411)、前記新風仕切チャンバー(241)を順に経て前記空気浄化チャンバー(23)に入り、前記空気浄化アセンブリ(32)により浄化された後、前記吸気チャンバー(22)、前記送風口(221,222)を順に経て室内空間に送入するステップと、
    を含む新風導入作動パターン、
    II)内循環作動パターンであって、
    IIa)前記第1の弁板(41)が、前記第1の新風口(2411)を閉鎖する状態に移動するように、前記第1の駆動機構(42)によって駆動されて、前記第1の新風口(2411)が室外空間から遮断するようになるステップと、
    IIb)前記吸気ファン(31)の回転を起動させて、室内空間における空気が、前記吸込口(2421,2422)、前記吸込仕切チャンバー(242)、前記連通口(2413)、前記新風仕切チャンバー(241)を順に経て前記空気浄化チャンバー(23)に入り、前記空気浄化アセンブリ(32)により浄化された後、前記吸気チャンバー(22)、前記送風口(221,222)を順に経て室内空間に送入するステップと、
    を含む内循環作動パターン、および、
    III)新風導入と内循環が同時に行われる作動パターンであって、
    IIIa)前記第1の弁板(41)が、前記第1の新風口(2411)と前記連通口(2413)の間に位置する状態に移動するように、前記第1の駆動機構(42)によって駆動されて、前記第1の新風口(2411)が室外空間に連通し、かつ、前記連通口(2413)が前記新風仕切チャンバー(241)と前記吸込仕切チャンバー(242)を連通するようになるステップと、
    IIIb)前記吸気ファン(31)の回転を起動させて、室外空間における新鮮な空気が、前記第1の新風口(2411)、前記新風仕切チャンバー(241)を順に経て前記空気浄化チャンバー(23)に入り、前記空気浄化アセンブリ(32)により浄化された後、前記吸気チャンバー(22)、前記送風口(221,222)を順に経て室内空間に送入し、室内空間における空気が、前記吸込口(2421,2422)、前記吸込仕切チャンバー(242)、前記連通口(2413)、前記新風仕切チャンバー(241)を順に経て前記空気浄化チャンバー(23)に入り、前記空気浄化アセンブリ(32)により浄化された後、前記吸気チャンバー(22)、前記送風口(221,222)を順に経て室内空間に送入するステップと、
    を含む、新風導入と内循環が同時に行われる作動パターン、
    を含む、
    ことを特徴とする、室内空気処理装置の作動方法。
    Working with the indoor air treatment device according to claim 1, the second new air outlet (2412) is in a state of being shielded from the outdoor space.
    I) It is a new wind introduction operation pattern,
    Ia) The first new air outlet (41) is driven by the first drive mechanism (42) so that the first valve plate (41) moves to a state in which the communication port (2413) is closed. The step that 2411) comes to communicate with the outdoor space,
    1b) By starting the rotation of the intake fan (31), fresh air in the outdoor space passes through the first fresh air outlet (2411) and the fresh air partition chamber (241) in this order, and the air purification chamber (23). After entering and purifying by the air purification assembly (32), the step of feeding into the indoor space through the intake chamber (22) and the air outlet (221,222) in this order.
    New wind introduction operation pattern, including
    II) It is an internal circulation operation pattern,
    IIa) The first valve plate (41) is driven by the first drive mechanism (42) so as to move to a state in which the first new air outlet (2411) is closed. The step where the new air outlet (2411) is cut off from the outdoor space,
    IIb) By activating the rotation of the intake fan (31), the air in the indoor space is brought into the suction port (2421, 2422), the suction partition chamber (242), the communication port (2413), and the new wind partition chamber ( After entering the air purification chamber (23) in order through 241) and being purified by the air purification assembly (32), the air is sent to the indoor space through the intake chamber (22) and the air outlet (221,222) in order. Steps to enter and
    Internal circulation operation pattern including, and
    III) An operation pattern in which new air introduction and internal circulation are performed at the same time,
    IIIa) The first drive mechanism (42) so that the first valve plate (41) moves to a state where it is located between the first new air outlet (2411) and the communication port (2413). The first new air outlet (2411) communicates with the outdoor space, and the communication port (2413) communicates with the new air partition chamber (241) and the suction partition chamber (242). Steps and
    IIIb) The rotation of the intake fan (31) is started, and fresh air in the outdoor space passes through the first fresh air outlet (2411) and the fresh air partition chamber (241) in this order, and the air purification chamber (23). After entering and being purified by the air purification assembly (32), the air is sent into the indoor space through the intake chamber (22) and the air outlet (221,222) in this order, and the air in the indoor space is introduced into the suction port. (2421, 2422), the suction partition chamber (242), the communication port (2413), and the fresh air partition chamber (241) in this order into the air purification chamber (23) and purified by the air purification assembly (32). After that, the step of feeding into the indoor space through the intake chamber (22) and the air outlet (221,222) in this order.
    Operation pattern in which new wind introduction and internal circulation are performed at the same time, including
    including,
    A method of operating an indoor air treatment device, characterized in that.
  13.  IV)排気作動パターンであって、
    IVa)前記排気ファン(33)の回転を起動させ、室内空間における空気が、前記還気口(251)、前記排気チャンバー(25)、および、前記排気口(252a,252b)を順に経て室外空間に排出するステップ、
    を含む排気作動パターン、
    をさらに含む、
    ことを特徴とする、請求項12に記載の室内空気処理装置の作動方法。
    IV) Exhaust operation pattern
    IVa) The rotation of the exhaust fan (33) is started, and the air in the indoor space passes through the return air port (251), the exhaust chamber (25), and the exhaust ports (252a, 252b) in this order to the outdoor space. Steps to discharge to
    Exhaust operation pattern, including
    Further including,
    13. The method of operating an indoor air treatment device according to claim 12, characterized in that.
  14.  前記排気作動パターンは、前記新風導入作動パターン、前記内循環作動パターン、及び前記新風導入と内循環が同時に行われる作動パターン、のうちのいずれか1つと同時に行われることができる、
    ことを特徴とする、請求項13に記載の室内空気処理装置の作動方法。
    The exhaust operation pattern may be performed at the same time as any one of the fresh air introduction operation pattern, the internal circulation operation pattern, and the operation pattern in which the fresh air introduction and internal circulation are performed at the same time.
    The method for operating the indoor air treatment device according to claim 13, wherein
  15.  ハウジング(3002)と表示パネル(3001)をさらに含み、
     前記表示パネル(3001)の背部には、少なくとも2組の係合部(3011)が設けられており、
     前記表示パネル(3001)の中心に対する隣り合う2組の係合部(3011)の回転角度が、90°であり、
     前記表示パネル(3001)は、前記少なくとも2組の係合部(3001)のうちの1組によって前記ハウジング(3002)に係合されている、
    ことを特徴とする、請求項1から8のいずれかに記載の室内空気処理装置。
    A housing (3002) and a display panel (3001),
    At least two sets of engaging portions (3011) are provided on the back of the display panel (3001),
    The rotation angle of the two adjacent engaging portions (3011) with respect to the center of the display panel (3001) is 90°,
    The display panel (3001) is engaged with the housing (3002) by one set of the at least two sets of engaging portions (3001),
    The indoor air treatment device according to any one of claims 1 to 8, characterized in that:
  16.  ハウジング(4001)をさらに含み、
     前記ハウジング(4001)の側板には、2つの新風口(4111,4121)が開設されており、
     隣接して設置された第1の取付板(4011)と第2の取付板(4012)を含み、
     2つの前記新風口(4111,4121)が、前記第1の取付板(4011)及び/または前記第2の取付板(4012)に設けられており、
     2つの前記新風口(4111,4121)の間に位置する前記ハウジング(4001)には、新風の質を検出するための空気検出手段(4005)が1つ設けられている、
    ことを特徴とする、請求項1から8のいずれかに記載の室内空気処理装置。
     
    Including the housing (4001)
    Two new air outlets (4111, 4121) are opened on the side plate of the housing (4001).
    Includes a first mounting plate (4011) and a second mounting plate (4012) installed adjacently.
    Two new air vents (4111, 4121) are provided on the first mounting plate (4011) and / or the second mounting plate (4012).
    The housing (4001) located between the two new air outlets (4111, 4121) is provided with one air detecting means (4005) for detecting the quality of the new air.
    The indoor air treatment device according to any one of claims 1 to 8, characterized in that:
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