WO2022068508A1 - 空调器 - Google Patents

空调器 Download PDF

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Publication number
WO2022068508A1
WO2022068508A1 PCT/CN2021/116023 CN2021116023W WO2022068508A1 WO 2022068508 A1 WO2022068508 A1 WO 2022068508A1 CN 2021116023 W CN2021116023 W CN 2021116023W WO 2022068508 A1 WO2022068508 A1 WO 2022068508A1
Authority
WO
WIPO (PCT)
Prior art keywords
air
air outlet
indoor side
indoor
air conditioner
Prior art date
Application number
PCT/CN2021/116023
Other languages
English (en)
French (fr)
Inventor
邓景文
江敬强
刘刚
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
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 CN202011070355.XA external-priority patent/CN114322076A/zh
Priority claimed from CN202022223707.2U external-priority patent/CN212319875U/zh
Application filed by 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2022068508A1 publication Critical patent/WO2022068508A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0011Indoor units, e.g. fan coil units characterised by air outlets
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/02Ducting arrangements
    • F24F13/06Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/14Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre

Definitions

  • the present application relates to the technical field of air conditioning, and in particular, to an air conditioner.
  • the board house or container house can be quickly assembled and disassembled, it is widely used as a temporary house for field operations such as roads, railways, and construction.
  • the air conditioner used in the board house or the container house has the problem that the circulation of cold air or warm air in the room is poor, which is not conducive to quickly adjusting the indoor temperature.
  • the main purpose of this application is to propose an air conditioner, which aims to improve the circulation effect of the cold air or warm air of the air conditioner in a board room or a container room.
  • the air conditioner proposed by this application includes:
  • the inner casing is provided with an indoor side air inlet and an indoor side air outlet, and an air duct connecting the indoor side air inlet and the indoor side air outlet;
  • the indoor side wind wheel is arranged in the air duct, and the air duct includes an air outlet air duct located on the air outlet side of the indoor side wind wheel;
  • the air outlet air duct includes an air outlet section extending obliquely forward and upward, and the air outlet section is arranged in communication with the indoor side air outlet.
  • the indoor side air outlet is arranged on the upper end of the inner casing.
  • the inner casing includes a front panel, and the indoor side air outlet is provided at an upper end of the front panel.
  • the indoor side air inlet is disposed on the front panel and below the indoor side air outlet.
  • the inner casing includes a top plate, and the indoor side air outlet is provided on the top plate.
  • the top plate has an inclined section extending obliquely forward and downward, and the indoor side air outlet is provided on the inclined section.
  • the air outlet section is arranged in a gradually expanding manner in a direction toward the indoor side air outlet.
  • the indoor side wind rotor is a cross-flow wind rotor, an axial-flow wind rotor, or a centrifugal wind rotor.
  • the inner machine casing defines a main cavity of the inner machine and a sub cavity of the inner machine, and the air outlet on the indoor side and the air inlet on the indoor side are both connected to the main cavity of the inner machine,
  • a compressor is arranged in the inner unit sub-chamber;
  • the air conditioner further includes an outer unit chassis connected with the inner unit chassis and in communication with the inner unit sub-chamber, and the outer unit chassis is provided with a chamber
  • the outer air inlet and the outdoor side air outlet are provided with an outdoor side wind wheel.
  • the inner casing extends in an up-down direction, and the main cavity of the inner machine is located on the upper side of the auxiliary cavity of the inner machine.
  • the height of the inner casing is in the range of 1.1m to 1.3m.
  • the outer casing includes a rear side panel disposed opposite to the front panel of the inner casing, and a left side panel and a right side panel connected to the rear side panel;
  • the left side panel and/or the right side panel is provided with an outdoor side air inlet, and the rear side panel is provided with an outdoor side air outlet; or,
  • the rear side panel is provided with an outdoor side air inlet, and the left side panel and/or the right side panel is provided with an outdoor side air outlet.
  • the present application provides an air conditioner, in which an air duct connecting an indoor side air inlet and an indoor side air outlet is provided in an inner casing, the air duct includes an air outlet air duct located on the air outlet side of the indoor side wind wheel, and The air outlet air duct includes an air outlet section that extends forward and upward slopingly, and the air outlet section is arranged in communication with the indoor side air outlet.
  • the air outlet section connected to the air outlet is inclined upwardly, so that the air conditioner emits air obliquely upward, and the air supply height and air supply range can be effectively improved, so that the cold air or warm air of the air conditioner can be improved.
  • the indoor circulation effect is conducive to quickly adjusting the indoor temperature.
  • FIG. 1 is a schematic diagram of the external structure of an embodiment of the air conditioner of the application, wherein the air deflector is in a state of closing the indoor side air outlet;
  • FIG. 2 is a schematic diagram of the external structure of the air conditioner shown in FIG. 1 from another perspective;
  • Fig. 3 is the internal structure schematic diagram of the air conditioner shown in Fig. 2;
  • FIG. 4 is a schematic diagram of the internal structure of the air conditioner shown in FIG. 3 from another perspective;
  • FIG. 5 is a schematic diagram of the internal structure of the air conditioner shown in FIG. 3 from another perspective;
  • FIG. 6 is another schematic diagram of the external structure of the air conditioner shown in FIG. 1, wherein the air deflector is in a state of opening the indoor side air outlet;
  • Fig. 7 is the internal structure schematic diagram of the air conditioner shown in Fig. 6;
  • Fig. 8 is the structural representation of the wind deflector and the wind deflector in Fig. 6;
  • FIG. 9 is a schematic structural diagram of an air deflector and an air deflector in another embodiment of the application.
  • FIG. 10 is a schematic structural diagram of the wind deflector and the wind deflector shown in FIG. 9 from another perspective.
  • the embodiment of the present application proposes an air conditioner, which is mainly used in prefabricated houses or container houses.
  • the air conditioner can also be applied in scenarios such as ordinary houses (such as commercial houses) or RVs, which is not limited in this application.
  • ordinary houses such as commercial houses
  • RVs which is not limited in this application.
  • the present application makes the following improvements to the structure of the air conditioner.
  • the air conditioner includes:
  • the inner casing 100 is provided with an indoor side air inlet 111 and an indoor side air outlet 112, and an air duct connecting the indoor side air inlet 111 and the indoor side air outlet 112; and,
  • the indoor side wind wheel 210 is arranged in the air duct, and the air duct includes an air outlet air duct located on the air outlet side of the indoor side wind wheel 210; wherein,
  • the air outlet air duct includes an air outlet section 140 that extends forward and upward slantingly, and the air outlet section 140 is arranged in communication with the indoor side air outlet 112 .
  • the air conditioner includes an indoor unit and an outdoor unit, and the indoor unit and the outdoor unit communicate with each other through a refrigerant pipe.
  • the indoor unit includes an inner unit casing 100 , an indoor side wind wheel 210 and an indoor side heat exchanger 220 , and the indoor side wind wheel 210 and the indoor side heat exchanger 220 are installed in the inner unit casing 100 .
  • the inner casing 100 is provided with a volute and a volute tongue, and the volute and the volute tongue are surrounded to form the air duct, and the air duct includes the air inlet side of the wind wheel 210 on the indoor side.
  • the air inlet air duct, and the air outlet air duct located on the air outlet side of the indoor side wind wheel 210 .
  • the indoor side wind wheel 210 is used to drive the air flow to enter the inner casing 100 through the indoor side air inlet 111, flow through the indoor side heat exchanger 220 and then enter the air inlet air duct, and then pass through the air outlet air duct from The indoor side air outlet 112 blows out to cool or warm the indoor environment.
  • the air outlet duct includes an air outlet section 140 extending obliquely forward and upward, and the air outlet section 140 is arranged in communication with the indoor side air outlet 112, so that it is beneficial for the indoor unit to discharge air obliquely upward.
  • the inner unit casing 100 includes a front panel 110 facing the user and a top panel 120 located on the top of the indoor unit.
  • the indoor side air outlet 112 can be provided on the front panel 110 or on the top panel 120. The details will be described below. illustrate.
  • the present application provides an air conditioner, in which the inner casing 100 is provided with an air duct connecting the indoor side air inlet 111 and the indoor side air outlet 112 , and the air duct includes an air outlet located on the air outlet side of the indoor side wind wheel 210 .
  • the air outlet duct includes an air outlet section 140 that is inclined forward and upward, and the air outlet section 140 is arranged in communication with the indoor side air outlet 112 .
  • the air outlet section 140 that communicates with the air outlet is inclined upward, so that the air conditioner emits air obliquely upward, and the air supply height and air supply range can be effectively improved, so that the cold air or warm air of the air conditioner can be improved.
  • the indoor circulation effect is conducive to quickly adjusting the indoor temperature.
  • the indoor side air outlet 112 is located above the indoor side air inlet 111 , and the indoor side air outlet 112 is provided on the upper end of the inner casing 100 . It can be understood that the higher the setting height of the air outlet, the longer the air supply distance, and therefore the larger the air supply range. Therefore, compared with arranging the indoor side air outlet 112 at the middle or the lower end of the inner casing 100, the technical solution of this embodiment increases the setting height of the indoor side air outlet 112 as much as possible, which is beneficial to increase the air supply range and enhance the The circulation of cold air or warm air in the room is beneficial to quickly adjust the indoor temperature.
  • the inner casing 100 includes a front panel 110 , and the indoor side air outlet 112 is disposed on the upper end of the front panel 110 .
  • the indoor side air outlet 112 on the front panel 110 is beneficial for the air conditioner to supply air to the user, and it is convenient for the user to cool or heat.
  • the requirements for whole house cooling are high, and there are often bunk beds in usage scenarios. If the indoor side air outlet 112 is set too low, the air supply height will be low, and the air supply distance will be short, which will cause problems. It makes the cooling rate of the space on the bed slower. Therefore, in the technical solution of this embodiment, by arranging the indoor side air outlet 112 facing forward and as high as possible, it is beneficial to improve the cooling or heating effect of the whole house.
  • the indoor side air inlet 111 is also provided on the front panel 110 and is located below the indoor side air outlet 112 .
  • the indoor side heat exchanger 220 is located between the indoor side wind wheel 210 and the indoor side air inlet 111 . It can face the wind from the front, which is conducive to the sufficient heat exchange between the indoor side heat exchanger 220 and the indoor air intake, and further improves the heat exchange efficiency.
  • the indoor side air inlets 111 may also be provided on the left and right side walls of the inner casing 100, but the area of the front panel 110 is relatively large, and generally there is no obstruction in front of the front panel 110. Therefore, by opening the indoor side air inlet 111 on the front panel 110, it is beneficial to increase the air intake volume, thereby facilitating the improvement of the heat exchange efficiency of the air conditioner.
  • the inner casing 100 includes a top plate 120, and the indoor side air outlet 112 is arranged on the top plate 120, that is, the indoor side air outlet 112 is arranged on the top of the air conditioner.
  • the air supply height of the air conditioner can also be increased. It is beneficial to further enhance the circulation of cold air or warm air in the room, so as to adjust the temperature of the room as soon as possible.
  • the top plate 120 has an inclined section extending obliquely forward and downward, and the indoor side air outlet 112 is provided on the inclined section. It can be understood that by slanting at least part of the top plate 120 downward, on the one hand, it is beneficial to increase the air outlet area of the indoor side air outlet 112 and increase the air outlet volume; , so that the air conditioner can supply air to the user, and at the same time, the height and range of the air supply can be improved.
  • the inner casing 100 includes a front casing and a rear casing that are connected to each other.
  • the front casing includes a front side wall, a front top wall, a front bottom wall, and a front left side wall and a front right side extending backward from the front side wall.
  • the rear shell includes a rear side wall, a rear top wall, a rear bottom wall, and a front left side wall and a front right side wall extending forward from the rear side wall.
  • the indoor side accommodating space of the air conditioner is formed, thereby helping to improve the assembly efficiency of the indoor side components of the air conditioner.
  • the front side wall of the front case is the aforementioned front panel 110
  • the front top wall of the front case and the rear top wall of the rear case together form the aforementioned top panel 120 .
  • the air outlet section 140 is arranged to be gradually expanded in the direction toward the indoor side air outlet 112 .
  • the air output and air supply range of the indoor unit can be significantly increased, so as to facilitate rapid cooling or heating of the room.
  • an air guide structure is provided at the indoor side air outlet 112 .
  • at least one air deflector is rotatably disposed on the indoor side air outlet 112; a plurality of air deflectors 330 are connected to the air deflector, and the plurality of air deflectors 330 are spaced in sequence along the lengthwise extending direction of the air deflector Arrange.
  • the air deflector extends along the left and right directions of the indoor side air outlet 112, and both ends of the air deflector are pivotally connected to the two side walls of the indoor side air outlet 112, so that the air deflector can be rotatably installed indoors
  • the side air outlet 112 is used to adjust the air outlet height and angle in the vertical direction.
  • the plurality of wind deflectors 330 are arranged at intervals along the lengthwise extending direction of the wind deflector, that is, the plurality of wind deflectors are arranged at intervals along the left and right directions of the indoor side air outlet 112 to adjust the direction of the wind in the horizontal direction.
  • the technical solution of this embodiment can effectively adjust the outlet wind direction and increase the air supply angle, so as to guide the wind according to the user's needs and improve the user experience.
  • the wind deflector extends along the left-right direction, and there are a plurality of wind deflectors, and the plurality of wind deflectors are arranged at intervals in the up-down direction.
  • the two ends of the air deflector are provided with first rotating shafts 340
  • the side wall of the indoor side air outlet 112 is provided with first rotating shaft holes
  • the inner casing 100 is also provided with a motor
  • the first rotating shaft 340 is inserted through the first rotating shaft 340.
  • the motor is drivingly connected with the first rotating shaft 340, and the motor drives the first rotating shaft 340 to rotate, thereby driving the wind deflector to rotate.
  • Multiple wind deflectors can be controlled by different motors, which are independent of each other and do not interfere with each other.
  • a plurality of wind deflectors can also be linked together, so that all the wind deflectors have the same orientation.
  • one of the wind deflectors is driven and connected to the motor, and the other wind deflectors are linked with the wind deflector through a connecting rod;
  • the device is electrically connected, and the controller controls multiple wind deflectors to rotate in the same direction synchronously. It can be understood that if only one air deflector is provided, the air deflecting effect is not obvious.
  • multiple air deflectors are arranged at the indoor side air outlet 112, so that the plurality of air deflectors can guide the wind at the same time, so that the Further improve the air guide effect.
  • the air guide plate includes a main air guide plate 310 and a secondary air guide plate 320, and two ends of each air guide plate 330 are respectively connected to the main air guide plate 310 and the auxiliary air guide plate 320. 320.
  • the main air guide plate 310 may be provided, that is, only one end of each air guide plate 330 is fixedly connected to the main air guide plate 310 .
  • the main function of the pair of main air guide plates 310 is to guide the wind
  • the main function of the auxiliary air guide plate 320 is to further strengthen and fix the air guide sheet 330 .
  • each air guide plate 330 is fixedly connected to the main air guide plate 310 and the auxiliary air guide plate 320 respectively, so that the air guide plate 330 can be effectively strengthened and the stability of the air guide plate 330 can be improved.
  • the reliability of the wind guide sheet 330 is ensured.
  • the length of the auxiliary air guide plate 320 is less than or equal to the length of the main air guide plate 310 ; and/or the width of the auxiliary air guide plate 320 is less than or equal to the width of the main air guide plate 310 .
  • the auxiliary air guide plate 320 is fixedly connected with the main air guide plate 310 through the air guide plate 330 , and the auxiliary air guide plate 320 rotates as the main air guide plate 310 rotates.
  • the size of the auxiliary air guide plate 320 can be prevented from interfering with the rotation of the main air guide plate 310 and the direction of wind guide.
  • both ends of the air guide fins 330 are fixedly connected to the main air guide plate 310 and the secondary air guide plate 320 respectively, and in the air outlet direction, the plurality of air guide fins 330 are arranged in the shape of a Divergent distribution. In this embodiment, all the air guide fins 330 will not swing.
  • the plurality of air guide fins 330 By arranging the plurality of air guide fins 330 in a diverging shape, the airflow from the indoor side air outlet 112 is also blown out in a diverging shape, thereby effectively increasing the air volume. and expand the air supply range.
  • the air guide fins 330 close to the left end of the air guide plate extend obliquely to the left, the air guide fins 330 near the right end of the air guide plate are inclined to the right, and the air guide fins 330 closer to the left end are inclined to the left.
  • the leftwardly inclined air guide fins 330 and the rightwardly inclined air guide fins 330 are alternately arranged, but in comparison, the technical solution of this embodiment can make the plurality of air guide fins 330 diverge as much as possible
  • the shape of the setting can further increase the air supply angle and air supply range.
  • the wind deflector 330 is pivotally connected to the wind deflector, so that the wind deflector 330 can rotate relative to the wind deflector, so as to realize adjustable wind direction in the horizontal direction.
  • the wind deflector 330 needs to be rotated manually, so as to adjust the direction of the wind in the horizontal direction according to user requirements.
  • the wind deflector 330 may be driven by a motor to rotate, so that the user does not need to manually adjust the wind direction, which saves time and effort.
  • the plurality of air guide fins 330 are linked by connecting rods. In this way, it is only necessary to adjust the guidance of one of the air guide fins 330, and the other air guide fins 330 will also rotate synchronously, thereby ensuring the The direction is the same, so as to effectively improve the air guiding effect.
  • each end of the air guide plate 330 is provided with a second rotating shaft 350
  • the air guide plate is provided with a second rotating shaft hole
  • the second rotating shaft 350 is pivotally connected to the second rotating shaft hole.
  • the wind deflector may also be provided with a plurality of second rotating shafts 350
  • the end of each wind guide sheet 330 is provided with a second rotating shaft hole for the second rotating shaft 350 to be pivotally connected, which can also realize guide The pivot connection between the wind blade 330 and the wind deflector.
  • the number of the air guide sheets 330 is greater than or equal to four. It can be understood that the number of the air guide fins 330 should not be too small, otherwise the wind will not have an obvious guiding effect; of course, the number of the air guide fins 330 should not be too much, otherwise it will cause the air guide fins 330 and the wind guide fins 330. The air gap between them is too small, which obviously reduces the air output from the indoor side air outlet 112 .
  • the air deflector has a first state of opening the indoor side air outlet 112 and a second state of closing the indoor side air outlet 112.
  • a plurality of The air guide sheet 330 is used to guide the air to the indoor side air outlet 112 .
  • the plurality of air deflectors can cooperate to close the indoor side air outlet 112 to prevent rodents and insects from entering the air conditioner through the indoor side air outlet 112 and affect the stability of the internal structure of the air conditioner.
  • the plurality of air guide plates can cooperate to open the indoor side air outlet 112. At this time, the air guide plates and the air guide sheets 330 work together to guide the wind.
  • the indoor side wind rotor 210 is a cross-flow wind rotor, an axial-flow wind rotor, or a centrifugal wind rotor.
  • the indoor side wind wheel 210 adopts a cross-flow wind wheel, so as to facilitate the suction of air from the front side of the air conditioner, and make the air pass through the indoor side heat exchanger 220 after heat exchange, and then flow from the indoor side. sent from the top of the machine.
  • the cross-flow wind rotor has the advantages of low noise and long air supply distance.
  • the indoor side heat exchanger 220 is bent and arranged. It can be understood that, compared with the arrangement of the indoor side heat exchanger 220 in a linear structure as a whole, the curved arrangement of the indoor side heat exchanger 220 can significantly increase the heat exchange area of the heat exchanger, thereby improving the indoor side heat exchange of the air conditioner. The thermal efficiency is also equivalent to compressing the height of the heat exchanger, which is beneficial to the miniaturization of the product.
  • the indoor side heat exchanger 220 includes a first heat exchange part 221 and a second heat exchange part 222, and the first heat exchange part 221 and the second heat exchange part 222 are arranged at an included angle, And the opening of the angle formed between the first heat exchange part 221 and the second heat exchange part 222 faces the indoor side wind wheel 210, so it is equivalent to increasing the air passing area of the air duct inlet, reducing the wind resistance, and the wide-angle air inlet. to further increase the air intake.
  • the angle of the included angle is greater than 90°, so that the heat exchange surfaces of the two heat exchange parts correspond to the indoor side air inlet 111 as much as possible, which is more favorable for the wind to fully flow through the two heat exchange parts for exchange. hot.
  • the inner casing 100 is also provided with a filter screen 230, and the filter screen 230 is located between the indoor side heat exchanger 220 and the indoor side air inlet 111.
  • the filter screen 230 is used to filter the air entering the indoor unit and lift the The cleanliness of the air released by the indoor unit.
  • the filter screen 230 is also arranged in a folded manner, that is, the shape of the filter screen 230 is consistent with the shape of the indoor heat exchanger 220, so as to ensure the filtering effect of the filter screen 230 and make the internal structure of the indoor unit more compact.
  • the shape of the filter screen 230 can also be consistent with the shape of the indoor side air inlet 111, and it is not necessary to be bent.
  • the inner casing 100 defines a main cavity for the inner machine and a secondary cavity for the inner machine, the indoor side air outlet 112 and the indoor side air inlet 111 are both connected to the inner machine main cavity, and the inner machine main cavity is provided with
  • the indoor side heat exchanger 220 and the indoor side wind wheel 210 are provided with a compressor 510 in the inner unit sub-chamber;
  • the air conditioner also includes an outer unit chassis connected to the inner unit chassis 100 and communicating with the inner unit sub-chamber 400, the outer casing 400 is provided with an outdoor side air inlet 410 and an outdoor side air outlet, and an outdoor side wind wheel 530 is arranged inside.
  • the air conditioner is an integral type air conditioner, and the inner casing 100 and the outer casing 400 are arranged in front and rear.
  • the wall of the prefab house or the container house is provided with an installation port for the air conditioner to be installed.
  • the outer casing 400 needs to be pushed from the inside of the wall to the outside of the wall through the installation opening, so as to facilitate heat exchange between the outdoor unit and the outdoor air.
  • the compressor 510 is disposed in the inner casing 100, so as to reduce the volume of the outer casing 400, thereby reducing the part of the air conditioner that needs to be pushed out of the wall.
  • the inner casing 100 extends in the up-down direction, and the main cavity of the inner machine is located on the upper side of the auxiliary cavity of the inner machine.
  • the inner casing 100 is provided with a middle partition plate 130, and the middle partition 130 divides the inner casing 100 into an inner main cavity and an inner auxiliary cavity, and the inner main cavity is located at The upper side of the sub-chamber of the indoor unit is beneficial to increase the height of the indoor unit, thereby increasing the air supply height and air supply range of the indoor unit.
  • the main cavity of the inner machine can also be arranged on the front side of the auxiliary cavity of the inner machine, so as to be suitable for some relatively low prefab houses or container houses.
  • the height of the inner casing 100 ranges from 1.1 m to 1.3 m. It can be understood that the height of the inner machine casing 100 should not be too low nor too high, especially for a board room or a container house with upper and lower beds, if the inner machine casing 100 is too low, it is not conducive to improving the air supply height and height.
  • the air supply range is not conducive to supplying air for users who get on the bed; if the inner unit casing 100 is too high, the space occupied by the indoor unit will increase, and it is not conducive to directly supplying air for users who get off the bed.
  • the outer casing 400 includes a rear side panel disposed opposite to the front panel 110 of the inner casing 100 , and a left side panel and a right side panel connected to the rear side panel.
  • the left side panel and/or the right side panel is provided with an outdoor side air inlet 410, and the rear side panel is provided with an outdoor side air outlet; or, the rear side panel is provided with an outdoor side air inlet 410, and the left side panel and/or the right side panel is provided with There are outdoor side vents.
  • the outdoor unit can adopt the method of air intake from both sides and air out from the rear side, that is, the outdoor side wind wheel 530 drives the air into the interior from the left and right sides of the outer unit casing 400, flows through the outdoor side heat exchanger 520, and then flows out from the outside.
  • the air is discharged from the rear side of the casing 400 ; the air intake from the rear side of the outer casing 400 can also be adopted, and then the air is discharged from the left and right sides of the outer casing 400 .
  • the air conditioner further includes a chassis 600 , the inner casing 100 and the outer casing 400 are both mounted on the chassis 600 , and the bottom of the chassis 600 is provided with rollers 610 .
  • the indoor unit and the outdoor unit are arranged in front and rear, the indoor unit and the outdoor unit share the chassis 600, and the bottom of the chassis 600 is provided with rollers 610, which can facilitate the transfer and transportation of the air conditioner on the one hand, and facilitate the transfer and transportation of the air conditioner on the other hand.
  • the outdoor unit is pushed from the inside of the wall to the outside of the wall through the installation port, saving time and effort and improving the installation efficiency of the air conditioner.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)

Abstract

一种空调器,包括内机机壳(100)和室内侧风轮(210),内机机壳(100)设有室内侧进风口(111)和室内侧出风口(112),以及连通室内侧进风口(111)和室内侧出风口(112)的风道;室内侧风轮(210)设于风道,风道包括位于室内侧风轮(210)的出风侧的出风风道;其中,出风风道包括朝前且朝上倾斜延伸的出风段(140),出风段(140)连通室内侧出风口(112)设置。

Description

空调器
本申请要求于2020年9月30日提交中国专利局、申请号为202011070355.X、申请名称为“空调器”的中国专利申请的优先权,以及于2020年9月30日提交中国专利局、申请号为202022223707.2、申请名称为“空调器”的中国专利申请的优先权,其全部内容通过引用结合在申请中。
技术领域
本申请涉及空气调节技术领域,特别涉及一种空调器。
背景技术
由于板房或集装箱房能够快捷地进行组装和拆卸,因此被广泛地用作道路、铁路、建筑施工等野外作业的临时用房。相关技术中,用在板房或集装箱房上的空调器,存在冷空气或暖空气在室内的循环较差、不有利于快速调节室内温度的问题。
以上内容仅用于辅助理解本申请的技术方案,并不代表承认上述内容是现有技术。
技术问题
本申请的主要目的是提出一种空调器,旨在提升空调器的冷空气或暖空气在板房或集装箱房内的循环效果。
技术解决方案
为实现上述目的,本申请提出的空调器包括:
内机机壳,设有室内侧进风口和室内侧出风口,以及连通所述室内侧进风口和所述室内侧出风口的风道;以及,
室内侧风轮,设于所述风道,所述风道包括位于所述室内侧风轮的出风侧的出风风道;其中,
所述出风风道包括朝前且朝上倾斜延伸的出风段,所述出风段连通所述室内侧出风口设置。
在一实施例中,所述室内侧出风口设于所述内机机壳的上端。
在一实施例中,所述内机机壳包括前面板,所述室内侧出风口设于所述前面板的上端。
在一实施例中,所述室内侧进风口设于所述前面板,且位于所述室内侧出风口下方。
在一实施例中,所述内机机壳包括顶板,所述室内侧出风口设于所述顶板。
在一实施例中,所述顶板具有朝前且朝下倾斜延伸的倾斜段,所述室内侧出风口设于所述倾斜段。
在一实施例中,所述出风段在朝向所述室内侧出风口的方向上呈渐扩设置。
在一实施例中,所述室内侧风轮为贯流风轮或轴流风轮或离心风轮。
在一实施例中,所述内机机壳内限定出相隔离的内机主腔和内机副腔,所述室内侧出风口和所述室内侧进风口均连通所述内机主腔,所述内机副腔内设有压缩机;所述空调器还包括与所述内机机壳连接、且连通所述内机副腔的外机机壳,所述外机机壳设有室外侧进风口和室外侧出风口,且内设有室外侧风轮。
在一实施例中,所述内机机壳沿上下方向延伸,所述内机主腔位于所述内机副腔上侧。
在一实施例中,所述内机机壳的高度范围为1.1m~1.3m。
在一实施例中,所述外机机壳包括与所述内机机壳的前面板相对设置的后侧板,以及连接于所述后侧板的左侧板和右侧板;
所述左侧板和/或右侧板开设有室外侧进风口,所述后侧板开设有室外侧出风口;或者,
所述后侧板开设有室外侧进风口,所述左侧板和/或右侧板开设有室外侧出风口。
有益效果
本申请提供一种空调器,其内机机壳内设有连通室内侧进风口和室内侧出风口的风道,所述风道包括位于室内侧风轮的出风侧的出风风道,而出风风道包括朝前且朝上倾斜延伸的出风段,且出风段连通所述室内侧出风口设置。本申请技术方案通过将连通出风口的出风段朝上倾斜设置,以使空调器朝斜上方出风,有效提高送风高度和送风范围,从而能够提升空调器的冷空气或暖空气在室内的循环效果,有利于快速调节室内温度。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本申请空调器一实施例的外部结构示意图,其中导风板处于关闭室内侧出风口的状态;
图2为图1所示空调器的另一视角的外部结构示意图;
图3为图2所示空调器的内部结构示意图;
图4为图3所示空调器的另一视角的内部结构示意图;
图5为图3所示空调器的又一视角的内部结构示意图;
图6为图1所示空调器的另一外部结构示意图,其中导风板处于打开室内侧出风口的状态;
图7为图6所示空调器的内部结构示意图;
图8为图6中导风板和导风片的结构示意图;
图9为本申请另一实施例中导风板和导风片的结构示意图;
图10为图9所示导风板和导风片的另一视角的结构示意图。
附图标号说明:
标号 名称 标号 名称
100 内机机壳 110 前面板
111 室内侧进风口 112 室内侧出风口
120 顶板 130 中隔板
140 出风段 210 室内侧风轮
220 室内侧换热器 221 第一换热部
222 第二换热部 230 滤网
310 主导风板 320 副导风板
330 导风片 340 第一转轴
350 第二转轴 400 外机机壳
410 室外侧进风口 510 压缩机
520 室外侧换热器 530 室外侧风轮
600 底盘 610 滚轮
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,全文中出现的“和/或”的含义为,包括三个并列的方案,以“A和/或B为例”,包括A方案,或B方案,或A和B同时满足的方案。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本申请实施例提出一种空调器,主要应用在板房或集装箱房中,当然,该空调器也可以应用在普通的房屋(如商品房)或房车等场景中,本申请对此不作限制。为了提升空调器的冷空气或暖空气在板房或集装箱房内的循环效果,本申请对空调器的结构进行以下改进。
在本申请实施例中,如图1至图6所示,所述空调器包括:
内机机壳100,设有室内侧进风口111和室内侧出风口112,以及连通所述室内侧进风口111和所述室内侧出风口112的风道;以及,
室内侧风轮210,设于所述风道,所述风道包括位于所述室内侧风轮210的出风侧的出风风道;其中,
所述出风风道包括朝前且朝上倾斜延伸的出风段140,所述出风段140连通所述室内侧出风口112设置。
具体而言,所述空调器包括室内机和室外机,室内机与室外机之间通过冷媒管连通。其中,室内机包括内机机壳100、室内侧风轮210和室内侧换热器220,室内侧风轮210和室内侧换热器220安装于内机机壳100内。所述内机机壳100内设有蜗壳和蜗舌,所述蜗壳与所述蜗舌围设成所述风道,所述风道包括位于所述室内侧风轮210的进风侧的进风风道,以及位于所述室内侧风轮210的出风侧的出风风道。本实施例中,室内侧风轮210用以驱动气流通过室内侧进风口111进入内机机壳100内,流经室内侧换热器220后进入进风风道,再通过出风风道从室内侧出风口112吹出,以对室内环境进行降温或升温。
其中,出风风道包括朝前且朝上倾斜延伸的出风段140,出风段140连通室内侧出风口112设置,如此,有利于室内机朝向斜上方出风。具体的,内机机壳100包括用以面向用户的前面板110和位于室内机顶部的顶板120,室内侧出风口112可以设于前面板110,也可以设于顶板120上,下文还将详细说明。
本申请提供一种空调器,其内机机壳100内设有连通室内侧进风口111和室内侧出风口112的风道,所述风道包括位于室内侧风轮210的出风侧的出风风道,而出风风道包括朝前且朝上倾斜延伸的出风段140,且出风段140连通所述室内侧出风口112设置。本申请技术方案通过将连通出风口的出风段140朝上倾斜设置,以使空调器朝斜上方出风,有效提高送风高度和送风范围,从而能够提升空调器的冷空气或暖空气在室内的循环效果,有利于快速调节室内温度。
进一步,如图6所示,室内侧出风口112位于室内侧进风口111的上方,且室内侧出风口112设于内机机壳100的上端。可以理解,出风口的设置高度越高,送风距离就越远,因此送风范围也就越大。因此,相较于将室内侧出风口112设置于内机机壳100的中部或下端,本实施例技术方案尽可能地提高室内侧出风口112的设置高度,有利于增大送风范围,增强冷空气或暖空气在室内的循环,有利于快速调节室内温度。
本实施例中,内机机壳100包括前面板110,室内侧出风口112设于前面板110的上端。可以理解,将室内侧出风口112设于前面板110,有利于空调器面向用户送风,方便用户取冷或取暖。特别是对于板房或集装箱房而言,对全屋制冷要求较高、使用情景中多有上下床铺,如果室内侧出风口112设置过低,会导致送风高度低,送风距离短,会使得上床铺的空间降温速度较慢。因此,本实施例技术方案通过将室内侧出风口112朝前且尽量靠上设置,有利于提升全屋的制冷或制暖效果。
进一步地,室内侧进风口111也设于前面板110,且位于室内侧出风口112的下方。本实施例中,室内侧换热器220位于室内侧风轮210与室内侧进风口111之间,通过将室内侧进风口111设于内机机壳100的前面,使得室内侧换热器220能够正面迎风,从而有利于室内侧换热器220与室内进风充分换热,进一步提升换热效率。当然,在其它实施例中,室内侧进风口111也可以设在内机机壳100的左右两侧壁上,但前面板110的面积较大,并且,通常前面板110的前方无阻碍物遮挡,因此,通过将室内侧进风口111开设于前面板110,有利于增大进风量,从而利于提升空调器的换热效率。
一实施例中,内机机壳100包括顶板120,室内侧出风口112设于顶板120,即将室内侧出风口112设于空调器的顶部,如此,同样能够提升空调器的送风高度,有利于进一步增强冷空气或暖空气在室内的循环,从而利于尽快调节室内的温度。
进一步地,顶板120具有朝前且朝下倾斜延伸的倾斜段,室内侧出风口112设于所述倾斜段。可以理解,通过将顶板120至少部分朝下倾斜设置,一方面有利于增大室内侧出风口112的出风面积,增大出风量;另一方面,使得室内侧出风口112朝向斜上方出风,从而利于空调器面向用户进行送风,同时还能提升送风高度和范围。
具体而言,内机机壳100包括相互连接的前壳和后壳,前壳包括前侧壁、前顶壁、前底壁、及自前侧壁向后延伸的前左侧壁和前右侧壁;而后壳包括后侧壁、后顶壁、后底壁、及自后侧壁向前延伸的前左侧壁和前右侧壁,如此,只要前壳与后壳相互拼接,就能够围成空调器的室内侧容置空间,从而有利于提升空调器室内侧部件的装配效率。其中,所述前壳的前侧壁即是前述的前面板110,所述前壳的前顶壁与所述后壳的后顶壁共同形成前述的顶板120。
本实施例中,如图3至图5所示,所述出风段140在朝向室内侧出风口112的方向上呈渐扩设置。如此,能够显著增大室内机的出风量和送风范围,以利于对室内快速制冷或制热。
进一步地,如图6和图7所示,室内侧出风口112处设置有导风结构。具体的,至少一个导风板可转动地设于所述室内侧出风口112;多个导风片330与导风板连接,且多个导风片330沿导风板的长度延伸方向依次间隔排布。本实施例中,导风板沿室内侧出风口112的左右方向延伸,导风板的两端分别与室内侧出风口112的两侧壁枢接,以使导风板可转动地设于室内侧出风口112,以调节在竖直方向上的出风高度和角度。另外,多个导风片330沿导风板的长度延伸方向依次间隔排布,即多个导风板沿室内侧出风口112的左右方向间隔排布,以调节风在水平方向的朝向。本实施例技术方案能够有效调节出风风向,增大送风角度,以根据用户需求进行导风,提升用户体验。
本实施例中,导风板沿左右方向延伸,并设有多个,多个导风板在上下方向上间隔排布。具体的,导风板的两端设有第一转轴340,室内侧出风口112的侧壁设有第一转轴孔,内机机壳100内还设有电机,第一转轴340穿插于第一转轴孔,电机与第一转轴340驱动连接,电机通过驱动第一转轴340转动,从而驱动导风板转动。多个导风板可以分别采用不同的电机控制,相互独立,互不干扰。当然,多个导风板之间也可以联动,以使所有的导风板的导向相同。具体的,其中一个导风板与电机驱动连接,其它导风板与该导风板通过连杆实现联动;或者,多个导风板依然分别采用不同的电机控制,但不同的电机均与控制器电性连接,通过控制器控制多个导风板同步同向转动。可以理解,如果导风板仅设置一个,导风效果并不明显,本实施例通过在室内侧出风口112处设置多个导风板,以使多个导风板可以同时导风,从而能够进一步提升导风效果。
进一步地,如图6和图7所示,所述导风板包括主导风板310和副导风板320,每一导风片330的两端分别连接于主导风板310和副导风板320。当然,在其它实施例中,可以仅设置主导风板310,即每一导风片330中仅一端固定连接于主导风板310。本实施例中,主导风板310对的主要作用在于导风,而副导风板320的主要作用在于对导风片330起到进一步的加强固定作用。本实施例技术方案,通过使每一导风片330的两端分别与主导风板310和副导风板320进行固定连接,能够有效加强导风片330,提升导风片330的稳固性,从而确保导风片330导风的可靠性。
进一步地,副导风板320的长度小于或等于主导风板310的长度;和/或,副导风板320的宽度小于或等于主导风板310的宽度。本实施例中,副导风板320通过导风片330与主导风板310固定连接,副导风板320会随着主导风板310转动而转动。通过将副导风板320的尺寸设置为小于主导风板310的尺寸,以避免副导风板320干涉主导风板310的转动以及导风方向。
一实施例中,如图6至图8所示,导风片330的两端分别固定连接于主导风板310和副导风板320,且在出风方向上,多个导风片330呈发散状分布。该实施例中,所有导风片330均不会摆动,通过将多个导风片330呈发散状设置,以使室内侧出风口112的气流也呈发散状吹出,从而能够有效增大出风量和扩大送风范围。
进一步地,在出风方向上,靠近导风板左端的导风片330朝左倾斜延伸,靠近导风板右端的导风片330朝右倾斜,且越靠近左端的导风片330朝左的倾斜度越大,越靠近右端的导风片330朝右的倾斜度越大。在其它实施例中,向左倾斜的导风片330和向右倾斜的导风片330相互交替设置,但相较而言,本实施例技术方案能够尽可能使多个导风片330呈发散状设置,更加能够增大送风角度和送风范围。
另一实施例中,如图9和图10所示,导风片330与导风板枢接,以使得导风片330能够相对导风板转动,从而实现风在水平方向朝向的可调节。一实施例中,需要通过手动的方式转动导风片330,从而根据用户需求调节风在水平方向的朝向。另一实施例中,可以通过电机驱动导风片330进行转动,从而无需用户手动调节风向,省时省力。进一步地,多个导风片330通过连杆联动,如此,只需要调节其中一个导风片330的导向,其它的导风片330也会随之同步转动,从而确保多个导风片330的导向相同,从而有效提升导风效果。
本实施例中,所述导风片330的端部均设有第二转轴350,所述导风板设有第二转轴孔,所述第二转轴350枢接于所述第二转轴孔。当然,在其它实施例中,导风板也可以设置多个第二转轴350,每一导风片330的端部设置有供第二转轴350枢接的第二转轴孔,同样也能够实现导风片330与导风板之间的枢接。
在一实施例中,所述导风片330的数量大于或等于4。可以理解,导风片330的数量不宜过少,否则对风起不到明显的导向作用;当然,导风片330的数量也不宜过多,否则会造成导风片330与导风片330之间的过风间隙太小,明显减少室内侧出风口112的出风量。
进一步地,如图1和图6所示,导风板具有打开室内侧出风口112的第一状态及关闭室内侧出风口112的第二状态,当导风板处于第一状态时,多个导风片330用以对室内侧出风口112进行导风。当空调器处于关闭状态时,多个导风板可以协同关闭室内侧出风口112,以防止老鼠昆虫通过室内侧出风口112进入空调器内部,影响空调器内部结构的稳定性。当空调器处于关闭状态时,多个导风板可以协同打开室内侧出风口112,此时,导风板和导风片330共同发挥导风作用。
在一实施例中,所述室内侧风轮210为贯流风轮或轴流风轮或离心风轮。本实施例中,如图3至图5所示,室内侧风轮210采用贯流风轮,以利于从空调器的前侧吸风,并使风经过室内侧换热器220换热后从室内机的上端送出。此外,相较于其它风轮,贯流风轮具有噪音低和送风距离远的优点。
本实施例中室内侧换热器220呈弯折设置。可以理解,相较于室内侧换热器220整体呈直线型状结构设置,室内侧换热器220呈弯折设置能够明显增大换热器的换热面积,进而提高空调器的室内侧换热效率,还相当于压缩了换热器的高度,有利于产品小型化。
进一步地,如图3所示,所述室内侧换热器220包括第一换热部221和第二换热部222,第一换热部221和第二换热部222呈夹角设置,且第一换热部221和第二换热部222之间形成的夹角开口朝向所述室内侧风轮210,如此,相当于增大风道进口的过风面积,减小风阻,广角式进风,进一步增大进风量。并且,所述夹角的角度大于90°,以使两个换热部的换热面尽可能地与室内侧进风口111对应,从而更有利于风能够充分流经两个换热部进行换热。
进一步地,内机机壳100内还设有滤网230,且滤网230位于室内侧换热器220与室内侧进风口111之间,滤网230用以过滤进入室内机内的空气,提升室内机所释放的空气的洁净度。本实施例中,滤网230也呈弯折式设置,即滤网230的形状与室内侧换热器220的形状相吻合,以确保滤网230的过滤效果,以及使得室内机的内部结构更加紧凑。当然,在其它实施例中,滤网230也可以与室内侧进风口111的形状一致,而无需呈弯折设置。
本实施例中,内机机壳100内限定出相隔离的内机主腔和内机副腔,室内侧出风口112和室内侧进风口111均连通内机主腔,内机主腔内设有室内侧换热器220和室内侧风轮210,内机副腔内设有压缩机510;所述空调器还包括与内机机壳100连接、且连通所述内机副腔的外机机壳400,外机机壳400设有室外侧进风口410和室外侧出风口,且内设有室外侧风轮530。本实施例中,空调器为整体式空调器,内机机壳100与外机机壳400呈前后排布。可以理解,板房或集装箱房的墙体开设有安装口,以供该空调器安装。当空调器安装于墙体时,需要将外机机壳400从墙体内侧通过安装口推到墙体外侧,以便于室外机与室外空气进行热交换。值得注意的是,本实施例中,压缩机510设于内机机壳100内,如此,以缩小外机机壳400的体积,进而减小空调器中需要推出到墙体外侧的部分。
进一步地,内机机壳100沿上下方向延伸,内机主腔位于内机副腔上侧。具体的,如图5所示,内机机壳100内设有中隔板130,中隔板130将内机机壳100分隔为内机主腔和内机副腔,且内机主腔位于内机副腔上侧,如此,有利于增加室内机的高度,从而提升室内机的送风高度和送风范围。在其它实施例中,内机主腔也可以设于内机副腔的前侧,以适配一些较为低矮的板房或集装箱房。
本实施例中,内机机壳100的高度范围为1.1m~1.3m。可以理解,内机机壳100的高度不宜过低也不宜过高,特别是对于设置了上下床铺的板房或集装箱房而言,如果内机机壳100过低,不利于提高送风高度和送风范围,不利于为上床铺的用户送风;如果内机机壳100过高,则会增大室内机的占用空间,且不利于为下床铺的用户直接送风。
其中,如图1所示,外机机壳400包括与内机机壳100的前面板110相对设置的后侧板,以及连接于后侧板的左侧板和右侧板。左侧板和/或右侧板开设有室外侧进风口410,后侧板开设有室外侧出风口;或者,后侧板开设有室外侧进风口410,左侧板和/或右侧板开设有室外侧出风口。即室外机可以采用两侧进风,后侧出风的方式,即室外侧风轮530驱动空气从外机机壳400的左右两侧进入内部,流经室外侧换热器520,随后从外机机壳400的后侧排出;也可以采用从外机机壳400的后侧进风,再从外机机壳400的左右侧出风的方式。
本实施例中,如图7所示,空调器还包括底盘600,内机机壳100与外机机壳400均安装于底盘600,底盘600的底部设有滚轮610。本实施例中,室内机与室外机呈前后排布,室内机与室外机共用底盘600,底盘600的底部设有滚轮610,一方面可以方便空调器的转移和运输,另一方面可以方便将室外机从墙体内侧通过安装口推到墙体外侧,省时省力,提升空调器的安装效率。
以上所述仅为本申请的可选实施例,并非因此限制本申请的专利范围,凡是在本申请的申请构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (12)

  1. 一种空调器,其中,包括:
    内机机壳,设有室内侧进风口和室内侧出风口,以及连通所述室内侧进风口和所述室内侧出风口的风道;以及,
    室内侧风轮,设于所述风道,所述风道包括位于所述室内侧风轮的出风侧的出风风道;其中,
    所述出风风道包括朝前且朝上倾斜延伸的出风段,所述出风段连通所述室内侧出风口设置。
  2. 如权利要求1所述的空调器,其中,所述室内侧出风口设于所述内机机壳的上端。
  3. 如权利要求2所述的空调器,其中,所述内机机壳包括前面板,所述室内侧出风口设于所述前面板的上端。
  4. 如权利要求3所述的空调器,其中,所述室内侧进风口设于所述前面板,且位于所述室内侧出风口下方。
  5. 如权利要求2所述的空调器,其中,所述内机机壳包括顶板,所述室内侧出风口设于所述顶板。
  6. 如权利要求5所述的空调器,其中,所述顶板具有朝前且朝下倾斜延伸的倾斜段,所述室内侧出风口设于所述倾斜段。
  7. 如权利要求1所述的空调器,其中,所述出风段在朝向所述室内侧出风口的方向上呈渐扩设置。
  8. 如权利要求1所述的空调器,其中,所述室内侧风轮为贯流风轮或轴流风轮或离心风轮。
  9. 如权利要求1至8中任意一项所述的空调器,其中,所述内机机壳内限定出相隔离的内机主腔和内机副腔,所述室内侧出风口和所述室内侧进风口均连通所述内机主腔,所述内机副腔内设有压缩机;所述空调器还包括与所述内机机壳连接、且连通所述内机副腔的外机机壳,所述外机机壳设有室外侧进风口和室外侧出风口,且内设有室外侧风轮。
  10. 如权利要求9所述的空调器,其中,所述内机机壳沿上下方向延伸,所述内机主腔位于所述内机副腔上侧。
  11. 如权利要求9所述的空调器,其中,所述内机机壳的高度范围为1.1m~1.3m。
  12. 如权利要求9所述的空调器,其中,所述外机机壳包括与所述内机机壳的前面板相对设置的后侧板,以及连接于所述后侧板的左侧板和右侧板;
    所述左侧板和/或右侧板开设有室外侧进风口,所述后侧板开设有室外侧出风口;或者,
    所述后侧板开设有室外侧进风口,所述左侧板和/或右侧板开设有室外侧出风口。
PCT/CN2021/116023 2020-09-30 2021-09-01 空调器 WO2022068508A1 (zh)

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