WO2019009541A1 - Humidifying heater - Google Patents

Humidifying heater Download PDF

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Publication number
WO2019009541A1
WO2019009541A1 PCT/KR2018/007026 KR2018007026W WO2019009541A1 WO 2019009541 A1 WO2019009541 A1 WO 2019009541A1 KR 2018007026 W KR2018007026 W KR 2018007026W WO 2019009541 A1 WO2019009541 A1 WO 2019009541A1
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WO
WIPO (PCT)
Prior art keywords
heater
main body
heating
unit
heating main
Prior art date
Application number
PCT/KR2018/007026
Other languages
French (fr)
Korean (ko)
Inventor
서동진
오용주
김민석
이정원
Original Assignee
주식회사 미로
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 KR1020180019428A external-priority patent/KR102038958B1/en
Application filed by 주식회사 미로 filed Critical 주식회사 미로
Publication of WO2019009541A1 publication Critical patent/WO2019009541A1/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
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/02Air-humidification, e.g. cooling by humidification by evaporation of water in the air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/12Air-humidification, e.g. cooling by humidification by forming water dispersions in the air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H3/00Air heaters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H3/00Air heaters
    • F24H3/02Air heaters with forced circulation
    • F24H3/04Air heaters with forced circulation the air being in direct contact with the heating medium, e.g. electric heating element
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H9/00Details
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H9/00Details
    • F24H9/18Arrangement or mounting of grates or heating means

Definitions

  • the present invention relates to a radiator, and more particularly, to a humidifying radiator that generates fine droplets and heats and discharges the generated droplets to perform indoor heating.
  • a heater is a device that raises the ambient temperature inside heat. It is divided into petroleum, gas and electricity according to the fuel to be used. It is divided into wall type, stand type and tower type according to the shape of the device itself. It is divided into instantaneous water heater and boiler according to.
  • a heater used for indoor heating can be used in any place such as a general home, an office or a factory, and a hot air fan or a drying device that generates hot air to perform indoor heating is a mainstream.
  • the above-described hot air or drying apparatus heats the air through a heating means such as a heater to raise the temperature, then sucks the outside air and discharges it together with the heated air to generate hot air to raise the room temperature, And drying.
  • a heating means such as a heater to raise the temperature
  • the temperature of the hot air discharge portion of the apparatus is extremely high, but the temperature suddenly drops as the already discharged hot air diffuses to the outside, There is a disadvantage that it takes a long time to reach the user's desired temperature up to every corner of the space to be raised, resulting in a poor heating efficiency.
  • the hot air discharged from the device is not uniformly applied to the object, there is a disadvantage in that the heating efficiency over the entire object is lowered due to the local temperature rise, and the generated hot air is discharged to the outside, The temperature of the air is increased to raise the temperature.
  • the environment of the object space becomes dry, thereby causing problems such as skin aging and respiratory diseases of the user.
  • general electric heaters consume electric power of about 2 KW / h. If you can supply more than 300ml of water per hour to the indoor space, the water droplets generated by the ultrasonic vibrator absorb heat energy through the heat source and spread rapidly to the surrounding area. As a result, The space can be warmed up faster. As the humidity increases, the density increases and the particles in the dense space are naturally pushed to the lower density, and the water vapor absorbing the heat energy is pushed from the higher density side to the smaller side, thereby greatly enhancing the heating effect .
  • the present invention has been made to solve the conventional problems as described above, and it is an object of the present invention to increase the efficiency of heating by preferentially heating a user's living space.
  • Another object of the present invention is to provide comfort to the user by providing temperature and humidity suitable for a living space.
  • Another object of the present invention is to prevent air from being dried due to heating.
  • Another object of the present invention is to uniformly heat the space as a whole.
  • a humidifying heater including a heating main body having a discharge port at an upper portion thereof, a humidifying portion located at one side of the heating main body to generate fine droplets of water, A heater part for heating the fine droplets by heating air in the heating main body part and heating the flow conduit part to be positioned near the flow conduit part; And a controller for controlling operations of the humidifying unit and the heater unit, wherein the heated air and the fine droplets are discharged through the discharge port.
  • the flow conduit portion is detachably mounted to the heating main body portion so as to be washable.
  • the flow conduit section includes an outer guide tube which is located near the heater section and is heated by the heater section, and an inner guide tube which is disposed inside the outer guide tube and guides the fine droplets, The fine droplets flow upward in the inside of the tube and the air heated by the heater part flows upward between the outer guide tube and the inner guide tube.
  • the apparatus may further include a discharge cap detachably mounted on the discharge port, for discharging the heated air and the fine droplets in a specific direction.
  • the discharge cap may be rotatably mounted on the discharge port in the up-and-down direction or in the left-right direction to change the discharge direction of the droplets of the heated air.
  • the heater unit is characterized by having a plurality of heaters having different heat generating performances.
  • control unit selects one of the plurality of heaters according to a required amount of heat generation, or drives and selects two or more heaters together.
  • the light emitting device further includes a reflection plate for directing the infrared rays generated by the heater unit forward.
  • the air conditioner further includes a heater fan, wherein the heater fan sucks outside air and directs the air to the outlet.
  • the humidifying unit is detachably mounted on the main body so as to be cleanable.
  • the apparatus further includes an ultraviolet sterilizer for preventing the bacteria from propagating in the humidifier.
  • control unit senses temperature and humidity, and controls a heating value of the heater unit and an amount of humidification of the humidifying unit based on a heat capacity or an unpleasantness index.
  • the apparatus further includes a temperature and humidity sensor unit detachable from the heating main body, and the controller controls the humidifier or the heater unit based on the temperature and humidity detected by the temperature / humidity sensor unit.
  • control unit includes a sleep mode in which the heater fan is turned off and the amount of heat generated by the heater unit is increased at a predetermined waking time.
  • the water treatment system further includes a water tank for supplying water to the humidifying unit, wherein the water tank includes a plurality of water bottles detachably mounted on the heating body.
  • the air conditioner further includes a heat discharging unit installed in front of the heating main body and having a mesh structure.
  • the heat discharging portion includes a front portion positioned at a front surface of the heating main body portion, and a reflecting portion positioned at a rear surface of the front portion and reflecting the infrared rays generated by the heater portion, And has a low heat transfer characteristic.
  • the heat radiating part is mounted to the heating main body so as to be openable and closable.
  • the user can quickly raise the temperature to a desired temperature throughout the entire space to raise the temperature, so that the heating efficiency is increased and the temperature is raised evenly And it is also possible to prevent the air from being dried due to heating.
  • 1 is a view showing a heat dissipation factor.
  • FIG. 2 is a graph showing a correlation between a sleep cycle and a metabolic rate of a person
  • FIG. 3 is a configuration diagram of a humidifying heater according to an embodiment of the present invention.
  • FIG. 4 is a perspective view of a humidifying heater according to an embodiment of the present invention.
  • FIG. 5 is a front perspective view of a humidifying heater according to an embodiment of the present invention.
  • FIG. 6 is a rear interior view of a humidifying radiator according to an embodiment of the present invention.
  • FIG. 7 is a rear perspective view of a humidifying radiator according to an embodiment of the present invention.
  • FIG. 8 is a top perspective view of a humidifier according to an embodiment of the present invention.
  • FIG. 9 is a side view and an embodiment of a humidifying radiator according to an embodiment of the present invention.
  • FIG. 4 is a perspective view of a humidifying radiator according to an embodiment of the present invention
  • FIG. 5 is a front inner perspective view of a humidifying radiator according to an embodiment of the present invention.
  • the humidifying heater of the present embodiment includes a heating body 100, a humidifier 110, a flow duct 130, a heater 150, a reflector 160, a controller 170, , And a discharge port (190).
  • the heating main body 100 has a discharge port 190 at an upper portion thereof. Further, the humidifying unit 110 is located at one side of the heating main body and generates fine water droplets. At this time, the humidifying unit 110 may be positioned below the heating main body 100.
  • the flow channel unit 130 is located inside the heating main body and guides the fine droplets generated by the humidifying unit to the discharge port.
  • the heater unit 150 heats air inside the heating main body and heats the fine droplets by heating the flow duct to be positioned near the flow duct.
  • the controller 170 controls the operation of the humidifier and the heater, and the reflector 160 directs the infrared rays generated by the heater to the front.
  • the heating main body 100 is bent at each corner portion for the sake of safety of the user and forms a space for accommodating the constituent elements therein. At one end of the lower main body portion 100, the main body is inclined by an external impact A pedestal having an area larger than that of the heating main body 100 may be formed.
  • the humidifier 110 located below the heating main body 100 generates fine water droplets. More specifically, fine water droplets are generated by the ultrasonic vibrator. The details of the structural aspects will be described later.
  • the flow conduit section 130 is provided inside the heating main body 100 and more specifically at the upper end of the humidifying section 110 to guide fine droplets generated in the humidifying section to the discharge port 190 something to do.
  • the heater unit 150 heats the air inside the heating main body 100. In addition, by heating the flow conduit portion located near the flow conduit portion, the fine droplets guided through the flow conduit portion are heated. Meanwhile, the heater part is curved so as to surround the flow conduit part for efficiently heating the flow conduit part. In order to block light generated as the heater part is heated, a sheath heater is used as a material of the heater part. desirable. Due to the limitation of the heater unit, the user can easily use the humidifying heater according to the present invention at home or the like even when sleeping at night because the light is not counted, and the anxiety about the risk of fire can be solved more.
  • the controller 170 may include a plurality of heaters having different heat generating performances and may supply necessary heat energy according to the control of the user.
  • the controller 170 may select one of the plurality of heaters, The above insulators may be selected together and driven through a plurality of combinations. Further, the heater unit according to another embodiment of the present invention can control the heat generation according to the section of the curved shape, and the user can control the temperature and save electric energy by operating the heater by selecting or combining an appropriate section . For example, when the heater is separated into one or more sections and can perform heat generation, the user can control the heat generation according to the number of cases by combining the separated sections. As described above, the separated sections may be made of different insulators, thereby maximizing the exothermic effect of the combination with respect to the number of cases.
  • the controller 170 may be displayed on the upper portion of the heating main body 100 for the sake of convenience of the user, and may be driven to contact a part of the user's body to prevent malfunction.
  • the control unit can control the driving of the heater unit, and the control unit can sense the outside temperature and humidity, and can control the heating amount of the heater unit and the humidification amount of the humidification unit based on the heat- will be.
  • the heat capacity is also referred to as the sensation temperature, which is a combination of atmospheric temperature and humidity, which suggests a temperature that people can actually feel.
  • the control unit can reduce unnecessary loss of energy by controlling the heater unit and the humidifying unit based on the temperature of the user actually felt, which is determined by the relationship between the heat capacity, the unpleasantness index, and the temperature and humidity.
  • the control unit may include a sleep mode for raising the heating value of the heater unit at a preset waking time when the user sets a wakeup time in advance when sleeping.
  • the present invention can help the user smoothly by raising the calorific value of the heater part in accordance with the pre-set waking time. Further, by utilizing the above-described heat-retaining water, the control unit can adjust the heating amount of the heater unit and the humidification amount of the humidifying unit so as to increase the room temperature, thereby helping the user to enjoy a smooth weather.
  • the controller 170 may be capable of separating the sensor unit for sensing temperature and humidity from the heating main body 100. More specifically, the controller 170 may be provided not only in the heating main body 100 but also in a remote control type capable of radio control, and a sensor unit for sensing the temperature and the humidity of the remote control type object may be provided It is possible to provide the most optimal temperature around the user by sensing the temperature and humidity of the position remotely controlled by the user.
  • the reflector 160 may include various forms of directing the infrared rays generated by the heater unit forward, and may not necessarily be limited to the curved U-shape shown in the embodiment of the present invention.
  • FIG. 7 is a rear perspective view of a humidifying radiator according to an embodiment of the present invention
  • FIG. 8 is a cross-sectional view of a humidifying radiator according to an embodiment of the present invention, It is a top perspective view of the radiator.
  • the humidifying heater according to the present embodiment includes a water container 120, a heater fan 151, a discharge cap 191, and a heat discharging unit 140.
  • the water tank 120 supplies water to the humidifier 110 and may include at least one or more water.
  • the heater fan 151 is disposed behind the reflector and sucks outside air to be directed to the discharge port.
  • the discharge cap 191 is detachably mounted on the discharge port and mixes the heated air and the fine droplets to discharge in a specific direction.
  • the heat radiating part 140 is provided in front of the heating main body part and has a mesh structure.
  • the humidifying unit 110 includes a first water tank which is provided with a humidifying main body and is supplied with water by a water tank 120 provided at an upper portion of the humidifying main body, And a second water tank including an ultrasonic transducer for converting the ultrasonic vibrator into the first water tank and the second water tank, wherein the flow pipe portion is provided on the second water tank, and fine droplets generated in the second water tank are provided on the heating body portion through the flow pipe passage portion It can be guided to the discharge port. Meanwhile, the ultrasonic vibrator included in the second water tank can be detached, so that the user can separate the humidifier 110 from the heating body and separate the ultrasonic vibrator provided in the second water tank, You can expect it.
  • the humidifying unit 110 may further include a sterilizing unit that emits ultraviolet rays to suppress the growth of bacteria that may occur when water is stored. More specifically, It may be provided in the flow path.
  • At least one or more water bottles 120 may be provided and detachably mounted to the heating main body. More specifically, the user can open the upper surface of the heating main body 100 and take out the water tub part in a direction perpendicular to the heating main body part, and supply water to the water tub part.
  • the portion of the water bottle 120 which is fastened to the humidifier 110 is made of a material such as a spring that provides elastic force. When the user separates the water bottle from the humidifier, It is possible to prevent water from leaking to the outside.
  • the user can separate the water bottle from the heating body in order to supply water to the water bottle and clean the water bottle separately for complete cleaning as in the case of the humidifier.
  • the above-described problem can be solved by separating and washing the water bottle from the heating part main body as described above.
  • the heater fan 151 is disposed behind the reflector and sucks outside air to the upper end of the heating main body 100. The discharged air is directed to the one side by the discharge cap 191, will be.
  • the discharge cap 191 is positioned above the discharge port 190, and more specifically, discharges the air sucked by the heater fan 151 with directionality as described above.
  • the discharge cap can be attached and detached so that the user can remove the discharge cap when the user desires to discharge fine droplets and hot air in a direction perpendicular to the heating main body portion while the discharge cap 191 is movable up and down Or the left and right direction so as to adjust the discharge direction of the heated air and the fine droplets.
  • the heat radiating part 140 has a mesh structure for effectively transmitting heat energy generated by the heater part and the reflector.
  • the heat radiating part 140 is, more specifically, a front surface And a reflector 140b positioned on a rear surface of the front surface portion and reflecting the infrared rays generated by the heater portion 150.
  • the front surface portion 140a has a heat transfer characteristic Is low.
  • the front part 140a is one of the components constituting the appearance of the heating main body part, it is easily accessible by the user. Therefore, in order to prevent a safety accident that may occur when the heat energy generated by the heater part is directly transferred, The heat transfer characteristic is lower than that of the heat exchanger, so that even when the heater is operated, an appropriate temperature can be maintained to prevent a safety accident,
  • the reflection part 140b is one of the components provided inside the heating body part and reflects the heat energy or infrared ray generated from the heater part to the inside of the heating body part including the heater part again so that the reflection part 140b is located inside the heating body part, It is possible to transfer the heat energy to the fine droplets passing through the flow path portion by transferring the heat to the flow path portion receiving the heat by the heat exchanger.
  • the user can prevent the heat energy generated in the heater unit from being discharged to the outside and reuse the heat energy emitted to the outside by the configuration of the front part and the reflection part as described above, There will be.
  • FIG. 9 is a side view and an embodiment of a humidifying radiator according to an embodiment of the present invention.
  • a humidifying heater includes a flow path portion 131 and 133, a heater portion 150 positioned adjacent to the flow path portion, a heater disposed at the rear of the reflection plate, An air guide member 152 for changing the flow path of the air to guide the flow of the air sucked by the fan 151 and the heater fan to the upper discharge port of the heating main body, An air guide pipe 153 for guiding the upward flow of the air to the upper portion of the heating main body, and a discharge cap 191 for guiding the air moved to the upper portion of the heating main body by the air guide pipe to the side.
  • the flow path portions 131 and 133 include an outer guide pipe 133 positioned near the heater portion and heated by the heater portion, an inner guide pipe 133 disposed inside the outer guide pipe and guiding fine droplets The fine droplet flows upward in the inner guide tube and the air heated by the heater part flows upward between the outer guide tube and the inner guide tube.
  • the humidifying heater According to the construction of the humidifying heater according to the present invention, three kinds of fluid flow are made in the heating main body 100. Specifically, first, the fine droplets generated by the humidifier 110 are guided toward the discharge port 190, and there is a flow of the fluid by the inner guide pipe 131,
  • the air heated by the heater unit 150 is raised by the convection phenomenon through the space formed by the inner guide tube and the outer guide tube 133 formed by surrounding the inner guide tube 131, In addition,
  • the air sucked through the heater fan 151 is vertically moved upward by the air guide member 152 in the horizontal direction with respect to the heating main body 100, There is a flow of the fluid by the air guide pipe 153 which guides the flow of the air to rise to the upper portion of the heating main body portion.
  • fine droplets and high-temperature air are separated and moved by the flow path portions 131 and 133, so that discharged fine droplets and high-temperature air form a kind of external roof to heat the user's real space first You can do it.
  • the fine droplets discharged from the center are formed between the inner guide tube 131 through which the fine droplets are discharged and the outer guide tube 133, which are relatively heavy and rise above a predetermined height and form a descending flow
  • the hot air discharged from the space forms an upward flow by the convection phenomenon, so that the discharged fine droplets and hot air can be heated around the real space of the user by spreading the fine droplets on the high temperature air.
  • the fine droplets holding the heat will stay in the real space of the person, and efficient heating will be possible. More specifically, when the space to be heated is divided into upper and lower middle layers, the spaces in which the people live are middle and lower layers, and the warm air mixed with the fine droplets is divided into the middle layer And the lower layer and the lower layer can be heated preferentially.
  • the space located near the discharge device where hot air or reflected heat is generated is heated to a high temperature.
  • inner guide tube 133 outer guide tube
  • 140a Front part 140b: Reflective part
  • heater part 151 heater fan
  • Discharge port 191 Discharge cap

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Air Humidification (AREA)

Abstract

A humidifying heater, according to the present invention, comprises: a heating main body part provided with an outlet on the upper part thereof; a humidification part positioned at one side of the heating main body part and generating micro-water droplets; a flow pipe part positioned inside the heating main body part and guiding, to the outlet, the micro-water droplets generated by the humidification part; a heater part for heating the air inside the heating main body part, and heating the micro-water droplets by heating the flow pipe part by being positioned near the flow pipe part; and a control part for controlling the operations of the humidification part and the heater part, wherein the heated air and micro-water droplets are discharged via the outlet. According to the present invention, heating efficiency may be increased as a result of an adequate temperature and humidity being supplied to a living space of a user, thereby enabling the overall space being heated to quickly reach a temperature desired by the user.

Description

가습 난방기Humidifier heater
본 발명은 난방기에 관한 것으로서, 더욱 상세하게는 미세물방울을 생성하고 생성된 미세물방울을 가열하여 토출시킴으로써 실내 난방을 수행하는 가습 난방기에 관한 것이다.BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a radiator, and more particularly, to a humidifying radiator that generates fine droplets and heats and discharges the generated droplets to perform indoor heating.
일반적으로 난방기는 자체적으로 열을 내 주변 온도를 높여주는 기기이며, 사용하는 연료에 따라 석유, 가스, 전기로 구분되며, 기기 자체의 형상에 따라 벽걸이형, 스탠드형, 타워형으로 구분되며, 사용용도에 따라 순간온수기, 보일러 등으로 나누어진다.Generally, a heater is a device that raises the ambient temperature inside heat. It is divided into petroleum, gas and electricity according to the fuel to be used. It is divided into wall type, stand type and tower type according to the shape of the device itself. It is divided into instantaneous water heater and boiler according to.
그 중 실내 난방에 사용되는 난방기의 경우 일반 가정, 사무실, 공장 등 어느 장소에 구애됨 없이 사용할 수 있으며 열풍을 발생하여 실내 난방을 수행하는 온풍기나 건조장치가 주류를 이루고 있는 실정이다.Among them, a heater used for indoor heating can be used in any place such as a general home, an office or a factory, and a hot air fan or a drying device that generates hot air to perform indoor heating is a mainstream.
상술한 온풍기나 건조 장치는 히터 등의 가열수단을 통해 공기를 가열하여 고온화 시킨 후, 외부의 공기를 흡입하여 상기 가열된 공기와 함께 외부로 토출시켜 열풍을 생성함으로써 실내 온도를 높이거나 또는 대상물을 건조시키고 있다. 그러나 이와 같이 공기를 가열하여 열풍을 생성하는 열풍발생장치는 기기장치에서 열풍이 토출되는 부분의 온도는 매우 고온이나, 이미 토출된 고온의 공기가 외부로 확산됨에 따라 온도가 급격이 저하되어 온도를 높이고자 하는 공간의 구석구석까지 사용자가 원하는 온도로 높이는데 장시간 소요되어 난방효율이 떨어진다는 단점이 있다. 또한, 기기장치에서 토출되는 열풍이 대상물에 고르게 가해지지 않기 때문에 국부적인 온도 상승에 그쳐 대상물 전반에 걸친 난방효율은 떨어진다는 단점이 있으며, 생성된 열풍이 외부로 토출되어 온도를 높이고자 하는 공간의 공기를 데워 온도는 높아지나, 온도가 높아짐에 따라 대상공간의 환경이 건조해져 사용자의 피부노화 내지 호흡기 질환 등을 촉진시키는 문제가 발생한다.The above-described hot air or drying apparatus heats the air through a heating means such as a heater to raise the temperature, then sucks the outside air and discharges it together with the heated air to generate hot air to raise the room temperature, And drying. However, in the hot air generating apparatus for generating hot air by heating the air in this way, the temperature of the hot air discharge portion of the apparatus is extremely high, but the temperature suddenly drops as the already discharged hot air diffuses to the outside, There is a disadvantage that it takes a long time to reach the user's desired temperature up to every corner of the space to be raised, resulting in a poor heating efficiency. In addition, since the hot air discharged from the device is not uniformly applied to the object, there is a disadvantage in that the heating efficiency over the entire object is lowered due to the local temperature rise, and the generated hot air is discharged to the outside, The temperature of the air is increased to raise the temperature. However, as the temperature increases, the environment of the object space becomes dry, thereby causing problems such as skin aging and respiratory diseases of the user.
보다 구체적으로 일반적인 전기식 온열 난방기는 2KW/h 전후의 전력을 소비한다. 만약 실내 공간에 시간당 300ml 이상의 수분을 공급할 수 있다면 초음파 진동자에서 발생된 물방울이 열원을 거치면서 열에너지를 흡수한 후 주변으로 빠르게 퍼져가기 때문에 일반적인 전기식 온열 난방기 전력소비량의 절반인 1KW/h의 열로도 실내 공간을 보다 빠르게 덥힐 수 있다. 이러한 원리는 습도가 증가함에 따라 이는 밀도가 높아지고 밀도가 높은 공간의 입자들은 자연스럽게 밀도가 작은 쪽으로 밀려가는데, 열에너지를 흡수한 수증기는 밀도가 높은 쪽에서 작은 쪽으로 밀려가게 되므로 난방 효과를 크게 증진시킬 수 있다.More specifically, general electric heaters consume electric power of about 2 KW / h. If you can supply more than 300ml of water per hour to the indoor space, the water droplets generated by the ultrasonic vibrator absorb heat energy through the heat source and spread rapidly to the surrounding area. As a result, The space can be warmed up faster. As the humidity increases, the density increases and the particles in the dense space are naturally pushed to the lower density, and the water vapor absorbing the heat energy is pushed from the higher density side to the smaller side, thereby greatly enhancing the heating effect .
본 발명은 상술한 바와 같은 종래의 문제점을 해결하기 위해 착안된 것으로써, 본 발명의 일 목적은 사용자의 생활공간을 우선적으로 난방하여 난방의 효율을 상승시키고자 함에 있다.SUMMARY OF THE INVENTION The present invention has been made to solve the conventional problems as described above, and it is an object of the present invention to increase the efficiency of heating by preferentially heating a user's living space.
또한, 본 발명의 다른 목적은 생활공간에 적절한 온·습도를 제공하여 사용자에게 쾌적함을 제공하고자 함에 있다.Another object of the present invention is to provide comfort to the user by providing temperature and humidity suitable for a living space.
또한, 본 발명의 다른 목적은 난방으로 인해 공기가 건조해지는 것을 방지하고자 하고자 함에 있다.Another object of the present invention is to prevent air from being dried due to heating.
또한, 본 발명의 다른 목적은 공간을 전체적으로 고르게 난방하고자 함에 있다.Another object of the present invention is to uniformly heat the space as a whole.
상기의 목적을 달성하기 위한 본 발명에 따른 가습 난방기는 상부에 토출구를 구비하는 난방 본체부와 상기 난방 본체부의 일측에 위치하여 미세물방울을 생성하는 가습부와 상기 난방 본체부의 내부에 위치하며 상기 가습부에 의해 생성된 미세물방울을 상기 토출구로 가이드하는 유동 관로부와 상기 난방 본체부 내부의 공기를 가열하며 상기 유동 관로부에 근접하도록 위치해 상기 유동 관로부를 가열함으로써 상기 미세물방울을 가열하는 히터부와 상기 가습부와 상기 히터부의 동작을 제어하는 제어부를 포함하고 상기 가열된 공기와 미세물방울은 상기 토출구를 통해 토출되는 것을 특징으로 한다.According to an aspect of the present invention, there is provided a humidifying heater including a heating main body having a discharge port at an upper portion thereof, a humidifying portion located at one side of the heating main body to generate fine droplets of water, A heater part for heating the fine droplets by heating air in the heating main body part and heating the flow conduit part to be positioned near the flow conduit part; And a controller for controlling operations of the humidifying unit and the heater unit, wherein the heated air and the fine droplets are discharged through the discharge port.
바람직하게는, 상기 유동 관로부는 세척 가능하도록 상기 난방 본체부에 착탈 가능하게 장착된다. 또한, 상기 유동 관로부는 상기 히터부에 근접하게 위치해 상기 히터부에 의해 가열되는 외부 가이드관과, 상기 외부 가이드관의 내부에 배치되며 상기 미세물방울을 가이드하는 내부 가이드관을 구비하며, 상기 내부 가이드관의 내부에서는 상기 미세물방울이 상부로 유동하고, 상기 외부 가이드관과 내부 가이드관의 사이에서는 상기 히터부에 의해 가열된 공기가 상부로 유동한다.Preferably, the flow conduit portion is detachably mounted to the heating main body portion so as to be washable. In addition, the flow conduit section includes an outer guide tube which is located near the heater section and is heated by the heater section, and an inner guide tube which is disposed inside the outer guide tube and guides the fine droplets, The fine droplets flow upward in the inside of the tube and the air heated by the heater part flows upward between the outer guide tube and the inner guide tube.
바람직하게는, 상기 토출구에 착탈 가능하게 장착되며 상기 가열된 공기와 미세물방울을 혼합하여 특정 방향으로 토출하는 토출캡을 더 포함한다. 또한, 상기 토출캡은 상기 토출구에 대해 상하 또는 좌우 방향으로 회전 가능하게 장착되어 상기 가열된 공기와 미세물방울의 토출 방향을 바꿀 수 있다.The apparatus may further include a discharge cap detachably mounted on the discharge port, for discharging the heated air and the fine droplets in a specific direction. The discharge cap may be rotatably mounted on the discharge port in the up-and-down direction or in the left-right direction to change the discharge direction of the droplets of the heated air.
한편, 상기 히터부는 발열 성능이 상이한 복수의 전열체를 구비하는 것을 특징으로 한다.On the other hand, the heater unit is characterized by having a plurality of heaters having different heat generating performances.
바람직하게는, 상기 제어부는 필요한 발열량에 따라 상기 복수의 전열체 중에서 하나의 전열체를 선택하거나 2개 이상의 전열체를 함께 선택하여 구동하는 것을 특징으로 한다.Preferably, the control unit selects one of the plurality of heaters according to a required amount of heat generation, or drives and selects two or more heaters together.
바람직하게는, 상기 히터부에서 생성된 적외선을 전방으로 향하게 하는 반사판을 더 포함하는 것을 특징으로 한다.Preferably, the light emitting device further includes a reflection plate for directing the infrared rays generated by the heater unit forward.
바람직하게는, 히터용 팬을 더 포함하며, 상기 히터용 팬은 외부의 공기를 흡입하여 상기 토출구로 향하게 한다.Preferably, the air conditioner further includes a heater fan, wherein the heater fan sucks outside air and directs the air to the outlet.
바람직하게는, 상기 가습부는 세척 가능하도록 상기 본체부에 착탈 가능하게 장착되는 것을 특징으로 한다.Preferably, the humidifying unit is detachably mounted on the main body so as to be cleanable.
한편, 상기 가습부에서의 세균 번식을 방지하는 자외선 살균부를 더 포함하는 것을 특징으로 한다.The apparatus further includes an ultraviolet sterilizer for preventing the bacteria from propagating in the humidifier.
바람직하게는, 상기 제어부는 온도와 습도를 센싱하고 열지수 또는 불쾌지수에 기초하여 상기 히터부의 발열량과 상기 가습부의 가습량을 제어하는 것을 특징으로 한다.Preferably, the control unit senses temperature and humidity, and controls a heating value of the heater unit and an amount of humidification of the humidifying unit based on a heat capacity or an unpleasantness index.
바람직하게는 상기 난방 본체부로부터 분리 가능한 온습도 센서부를 더 포함하고, 상기 제어부는 상기 온습도 센서부에 의해 감지된 온습도를 기준으로 상기 가습부 또는 상기 히터부를 제어한다.Preferably, the apparatus further includes a temperature and humidity sensor unit detachable from the heating main body, and the controller controls the humidifier or the heater unit based on the temperature and humidity detected by the temperature / humidity sensor unit.
바람직하게는, 상기 제어부는 상기 히터용 팬을 턴오프시키고, 설정된 기상 시간에 상기 히터부의 발열량을 상승시키는 수면 모드를 구비하는 것을 특징으로 한다.Preferably, the control unit includes a sleep mode in which the heater fan is turned off and the amount of heat generated by the heater unit is increased at a predetermined waking time.
바람직하게는, 상기 가습부에 물을 공급하는 물통부를 더 포함하며, 상기 물통부는 상기 난방 본체부에 착탈 가능하게 장착되는 복수개의 물통을 구비하는 것을 특징으로 한다.Preferably, the water treatment system further includes a water tank for supplying water to the humidifying unit, wherein the water tank includes a plurality of water bottles detachably mounted on the heating body.
바람직하게는, 상기 난방 본체부의 전방에 설치되며 메쉬 구조를 갖는 열방출부를 더 포함하는 것을 특징으로 한다. 더욱 상세하게는, 상기 열방출부는 상기 난방 본체부의 전면에 위치하는 전면부와, 상기 전면부의 후면에 위치하며 상기 히터부에서 생성된 적외선을 반사시키는 반사부를 구비하고 상기 전면부는 상기 반사부에 비해 열전달 특성이 낮은 것을 특징으로 한다. 또한, 상기 열방출부는 상기 난방 본체부에 개폐 가능하도록 장착되는 것을 특징으로 한다.Preferably, the air conditioner further includes a heat discharging unit installed in front of the heating main body and having a mesh structure. More specifically, the heat discharging portion includes a front portion positioned at a front surface of the heating main body portion, and a reflecting portion positioned at a rear surface of the front portion and reflecting the infrared rays generated by the heater portion, And has a low heat transfer characteristic. Further, the heat radiating part is mounted to the heating main body so as to be openable and closable.
본 발명에 따르면 열매체를 미세물방울을 사용함으로써, 온도를 높이고자 하는 공간의 전반에 걸쳐 사용자가 원하는 온도로 빠르게 높일 수 있어 난방효율이 상승되고, 온도를 상승시키고자 하는 대상공간에 고르게 온도를 상승시킬 수 있으며, 또한 난방으로 인해 공기가 건조해지는 현상을 방지할 수 있을 것이다.According to the present invention, by using the fine droplets of the heating medium, the user can quickly raise the temperature to a desired temperature throughout the entire space to raise the temperature, so that the heating efficiency is increased and the temperature is raised evenly And it is also possible to prevent the air from being dried due to heating.
본 발명의 효과는 전술한 것으로 제한되지 않으며, 언급되지 않은 다른 효과들은 아래의 기재로부터 통상의 기술자에게 명확하게 인식될 수 있을 것이다.The effects of the present invention are not limited to those described above, and other effects not mentioned may be clearly recognized by those skilled in the art from the following description.
도 1은 열지수를 나타낸 도면이다.1 is a view showing a heat dissipation factor.
도 2는 사람의 수면주기와 대사량의 상관관계를 나타낸 도면이다.FIG. 2 is a graph showing a correlation between a sleep cycle and a metabolic rate of a person; FIG.
도 3은 본 발명의 일 실시예에 따른 가습 난방기의 구성도이다.3 is a configuration diagram of a humidifying heater according to an embodiment of the present invention.
도 4는 본 발명의 일 실시예에 따른 가습 난방기의 사시도이다.4 is a perspective view of a humidifying heater according to an embodiment of the present invention.
도 5는 본 발명의 일 실시예에 따른 가습 난방기의 정면 내부 투시도이다.5 is a front perspective view of a humidifying heater according to an embodiment of the present invention.
도 6은 본 발명의 일 실시예에 따른 가습 난방기의 후면 내부 토시도이다.6 is a rear interior view of a humidifying radiator according to an embodiment of the present invention.
도 7은 본 발명의 일 실시예에 따른 가습 난방기의 후면 투시도이다.7 is a rear perspective view of a humidifying radiator according to an embodiment of the present invention.
도 8은 본 발명의 일 실시예에 따른 가습 난방기의 상면 투시도이다.8 is a top perspective view of a humidifier according to an embodiment of the present invention.
도 9는 본 발명의 일 실시예에 따른 가습 난방기의 측면 및 실시도이다.9 is a side view and an embodiment of a humidifying radiator according to an embodiment of the present invention.
이하에서는 도면을 참조하여 본 발명을 보다 상세하게 설명한다. 도면들 중 동일한 구성요소들은 가능한 한 어느 곳에서든지 동일한 부호들로 나타내고 있음에 유의해야 한다. 또한, 본 발명의 요지를 불필요하게 흐릴 수 있는 공지 기능 및 구성에 대한 설명은 생략한다.Hereinafter, the present invention will be described in detail with reference to the drawings. It is to be noted that the same elements among the drawings are denoted by the same reference numerals whenever possible. In the following description, well-known functions or constructions that may unnecessarily obscure the spirit of the present invention are not described.
또한, 아래 설명하는 실시예들에는 다양한 변경이 가해질 수 있다. 아래 설명하는 실시예들은 실시 형태에 대한 한정하려는 것이 아니며, 이들에 대한 모든 변경, 균등물 내지 대체물을 포함하는 것으로 이해되어야 한다.In addition, various modifications may be made to the embodiments described below. It is to be understood that the embodiments described below are not intended to limit the embodiments, but include all modifications, equivalents, and alternatives to them.
이하 도면에 따라서 논리적으로 기술한다.Hereinafter, it will be described logically in accordance with the drawings.
도 4는 본 발명의 일 실시예에 따른 가습 난방기의 사시도이며, 도 5는 본 발명의 일 실시예에 따른 가습 난방기의 정면 내부 투시도이다.FIG. 4 is a perspective view of a humidifying radiator according to an embodiment of the present invention, and FIG. 5 is a front inner perspective view of a humidifying radiator according to an embodiment of the present invention.
도 4 및 도 5를 참고하면, 본 실시예의 가습 난방기는 난방 본체부(100), 가습부(110), 유동 관로부(130), 히터부(150), 반사판(160), 제어부(170), 토출구(190)를 포함한다. 4 and 5, the humidifying heater of the present embodiment includes a heating body 100, a humidifier 110, a flow duct 130, a heater 150, a reflector 160, a controller 170, , And a discharge port (190).
난방 본체부(100)는 상부에 토출구(190)를 구비한다. 또한, 가습부(110)는 난방 본체부의 일측에 위치하며 미세물방울을 생성한다. 이때 가습부(110)는 난방 본체부(100)의 하부에 위치할 수 있다. 유동관로부(130)는 난방 본체부의 내부에 위치하며 가습부에 의해 생성된 미세물방울을 토출구로 가이드 한다. 히터부(150)는 난방 본체부 내부의 공기를 가열하며 유동 관로부에 근접하도록 위치해 유동 관로부를 가열함으로써 미세물방울을 가열한다. 제어부(170)는 가습부와 히터부의 동작을 제어하며, 반사판(160)은 히터부에서 생성된 적외선을 전방으로 향하게 한다.The heating main body 100 has a discharge port 190 at an upper portion thereof. Further, the humidifying unit 110 is located at one side of the heating main body and generates fine water droplets. At this time, the humidifying unit 110 may be positioned below the heating main body 100. The flow channel unit 130 is located inside the heating main body and guides the fine droplets generated by the humidifying unit to the discharge port. The heater unit 150 heats air inside the heating main body and heats the fine droplets by heating the flow duct to be positioned near the flow duct. The controller 170 controls the operation of the humidifier and the heater, and the reflector 160 directs the infrared rays generated by the heater to the front.
상기 난방 본체부(100)는 사용자의 안전을 위해 각각의 모서리 부분이 굴곡되고 내부에 상기 구성요소를 수용할 수 있는 공간을 형성하며, 하부의 일단에는 상기 본체가 외부의 충격에 의해 기울어지는 등의 현상을 방지하기 위해 상기 난방 본체부(100)의 면적보다 넓은 면적의 받침대가 형성될 수 있다.The heating main body 100 is bent at each corner portion for the sake of safety of the user and forms a space for accommodating the constituent elements therein. At one end of the lower main body portion 100, the main body is inclined by an external impact A pedestal having an area larger than that of the heating main body 100 may be formed.
상기 난방 본체부(100)의 하부에 위치하는 가습부(110)는 미세물방울을 생성하며, 더욱 상세하게는 초음파 진동자에 의해 미세물방울을 생성할 것이며 구조적인 측면에 대한 자세한 사항은 후술한다.The humidifier 110 located below the heating main body 100 generates fine water droplets. More specifically, fine water droplets are generated by the ultrasonic vibrator. The details of the structural aspects will be described later.
상기 유동 관로부(130)는 상기 난방 본체부(100)의 내부에 구비되며 보다 자세하게는 상기 가습부(110)의 상단에 구비되어 상기 가습부에서 생성된 미세물방울을 상기 토출구(190)로 가이드 할 것이다.The flow conduit section 130 is provided inside the heating main body 100 and more specifically at the upper end of the humidifying section 110 to guide fine droplets generated in the humidifying section to the discharge port 190 something to do.
상기 히터부(150)는 상기 난방 본체부(100) 내부의 공기를 가열한다. 또한, 상기 유동 관로부에 근접하도록 위치해 상기 유동 관로부를 가열함으로써 상기 유동관로부를 통해 가이드 되는 미세물방울을 가열한다. 한편, 상기 히터부는 만곡된 형상으로써 상기 유동 관로부를 효율적으로 가열하기 위해 상기 유동 관로부를 감싸는 형상으로 구비되어 있으며, 히터부가 가열됨에 따라 발생하는 빛을 차단하고자 히터부의 소재로는 씨즈히터가 사용됨이 바람직하다. 이러한 히터부의 한정으로 인해 사용자가 가정 등에서 본 발명에 따른 가습 난방기를 사용함에 있어서 빛이 세어 나오지 않아 밤에 수면 시에도 사용하기 편하며 보다 화재의 위험 등에 대한 불안감을 해소시켜 줄 수 있을 것이다. 또한, 히터부는 발열 성능이 상이한 복수의 전열체를 구비하여 사용자의 제어에 따라 필요한 열에너지를 공급할 수 있으며, 제어부(170)에서 필요한 발열량에 따라 상기 복수의 전열체 중에서 하나의 절연체를 선택하거나 2개 이상의 절연체를 함께 선택하여 복수의 조합을 통해 구동할 수 있을 것이다. 또한, 본 발명의 다른 실시예에 따른 히터부는 만곡된 형상의 구간에 따라 발열을 제어할 수 있으며 사용자는 적절한 구간을 선택 또는 조합하여 히터를 가동함으로써 온도의 제어 및 전기 에너지를 절약할 수 있을 것이다. 예를 들어 히터부가 하나 이상의 구간으로 분리되어 발열을 수행할 수 있을 경우 그 경우의 수는 사용자가 상기 분리된 구간을 조합하여 여러 경우의 수에 따라 발열을 제어할 수 있으며 상술한 실시예에서 살펴본 바와 같이 상기 분리된 구간은 서로 다른 절연체로 이루어져 상기 경우의 수에 대한 조합의 발열 효과를 더욱 극대화 할 수 있을 것이다.The heater unit 150 heats the air inside the heating main body 100. In addition, by heating the flow conduit portion located near the flow conduit portion, the fine droplets guided through the flow conduit portion are heated. Meanwhile, the heater part is curved so as to surround the flow conduit part for efficiently heating the flow conduit part. In order to block light generated as the heater part is heated, a sheath heater is used as a material of the heater part. desirable. Due to the limitation of the heater unit, the user can easily use the humidifying heater according to the present invention at home or the like even when sleeping at night because the light is not counted, and the anxiety about the risk of fire can be solved more. The controller 170 may include a plurality of heaters having different heat generating performances and may supply necessary heat energy according to the control of the user. The controller 170 may select one of the plurality of heaters, The above insulators may be selected together and driven through a plurality of combinations. Further, the heater unit according to another embodiment of the present invention can control the heat generation according to the section of the curved shape, and the user can control the temperature and save electric energy by operating the heater by selecting or combining an appropriate section . For example, when the heater is separated into one or more sections and can perform heat generation, the user can control the heat generation according to the number of cases by combining the separated sections. As described above, the separated sections may be made of different insulators, thereby maximizing the exothermic effect of the combination with respect to the number of cases.
제어부(170)는 사용자의 편의를 위해 상기 난방 본체부(100)의 상단에 표시될 수 있으며 오작동을 방지하기 위해 사용자의 신체 일부에 접촉되어 구동될 수 있을 것이다. 또한, 상술한 바와 같이 제어부는 상기 히터부의 구동을 제어할 수 있으며, 또한 제어부는 외부의 온도와 습도를 센싱하고 열지수 또는 불쾌지수에 기초하여 상기 히터부의 발열량과 상기 가습부의 가습량을 제어할 수 있을 것이다.The controller 170 may be displayed on the upper portion of the heating main body 100 for the sake of convenience of the user, and may be driven to contact a part of the user's body to prevent malfunction. In addition, as described above, the control unit can control the driving of the heater unit, and the control unit can sense the outside temperature and humidity, and can control the heating amount of the heater unit and the humidification amount of the humidification unit based on the heat- will be.
보다 구체적으로 열지수는 체감온도라고도 하며 대기온도와 습도의 조합에 의해 사람에게 실제로 느낄 수 있는 온도를 제시해준다. 도 1을 참고하면 같은 온도에서도 습도의 차이에 따라 사람이 느끼는 온도는 상이한 것을 알 수 있다. 즉 제어부는 상술한 열지수, 불쾌지수 내지 온도와 습도의 상관관계에 의해 결정되는 사용자가 실제로 느끼는 온도를 기준으로 히터부 및 가습부를 제어함으로써 불필요한 에너지의 손실을 저감할 수 있을 것이다. 또한, 제어부는 사용자가 취침 시 미리 기상 시간을 설정할 경우 미리 설정된 기상 시간에 상기 히터부의 발열량을 상승시키는 수면 모드를 구비할 수 있다.More specifically, the heat capacity is also referred to as the sensation temperature, which is a combination of atmospheric temperature and humidity, which suggests a temperature that people can actually feel. Referring to FIG. 1, it can be seen that the temperature felt by humans differs according to the difference in humidity even at the same temperature. That is, the control unit can reduce unnecessary loss of energy by controlling the heater unit and the humidifying unit based on the temperature of the user actually felt, which is determined by the relationship between the heat capacity, the unpleasantness index, and the temperature and humidity. In addition, the control unit may include a sleep mode for raising the heating value of the heater unit at a preset waking time when the user sets a wakeup time in advance when sleeping.
상술한 제어부(170)의 수면 모드를 더욱 상세하게 살펴보기 위해 도2를 참고하면, 사람은 하룻밤 사이에 대략 4~5회 정도를 약 90분 주기로 논렘(Non-Rem)과 렘(Rem)수면을 반복하며 입면시의 논렘 수면이 가장 수면심도가 깊으며, 입면 후 대사량이 감소됨에 따라 체온이 현저하게 떨어지는 현상을 수반한다. 또한, 기상 시에는 상기 입면 후 감소된 대사량이 회복됨에 따라 체온이 상승하므로 본 발명은 사용자가 미리 설정한 기상 시간에 맞추어 상기 히터부의 발열량을 상승시킴으로써 사용자의 원활한 기상을 도와줄 수 있을 것이다. 또한, 상술한 열지수를 활용하여 상기 제어부는 히터부의 발열량 및 가습부의 가습량을 조절하여 실내 온도를 상승시켜 사용자의 원활한 기상을 도와줄 수 있을 것이다.Referring to FIG. 2, in order to examine the sleep mode of the control unit 170 in detail, a person is allowed to sleep for about four to five times at about 90 minutes per night, And the depth of the water surface is the deepest at the surface of the Nymph at the time of the elevation, and the body temperature is remarkably lowered as the post-elevation metabolism is decreased. In addition, at the time of the gas phase, since the body temperature is increased as the reduced metabolism amount after the entrance is recovered, the present invention can help the user smoothly by raising the calorific value of the heater part in accordance with the pre-set waking time. Further, by utilizing the above-described heat-retaining water, the control unit can adjust the heating amount of the heater unit and the humidification amount of the humidifying unit so as to increase the room temperature, thereby helping the user to enjoy a smooth weather.
또한, 본 발명의 다른 실시예에 따른 제어부(170)는 온도와 습도를 센싱하는 센서부를 상기 난방 본체부(100)로부터 분리가 가능할 수 있을 것이다. 보다 상세하게는 상기 제어부(170)는 반드시 난방 본체부(100)에 구비될 것은 아니며 무선조종이 가능한 리모콘 형식으로도 구비될 수 있으며 상기 리모콘 형식의 물체에 온도와 습도를 센싱하는 센서부가 구비되어 상기 사용자가 원격으로 제어하는 위치의 온도와 습도를 센싱하여 사용자를 중심으로 가장 최적의 온도를 제공할 수 있을 것이다.In addition, the controller 170 according to another embodiment of the present invention may be capable of separating the sensor unit for sensing temperature and humidity from the heating main body 100. More specifically, the controller 170 may be provided not only in the heating main body 100 but also in a remote control type capable of radio control, and a sensor unit for sensing the temperature and the humidity of the remote control type object may be provided It is possible to provide the most optimal temperature around the user by sensing the temperature and humidity of the position remotely controlled by the user.
반사판(160)은 상기 히터부에서 생성된 적외선을 전방으로 향하게 하는 다양한 형태를 포함하며, 반드시 본 발명에 따른 일 실시예에서 도시하는 만곡된 ‘U’자 형상에 한정되는 것은 아닐 것이다.The reflector 160 may include various forms of directing the infrared rays generated by the heater unit forward, and may not necessarily be limited to the curved U-shape shown in the embodiment of the present invention.
도 6은 본 발명의 일 실시예에 따른 가습 난방기의 후면 내부 토시도이고, 도 7은 본 발명의 일 실시예에 따른 가습 난방기의 후면 투시도이며, 도 8은 본 발명의 일 실시예에 따른 가습 난방기의 상면 투시도이다.FIG. 7 is a rear perspective view of a humidifying radiator according to an embodiment of the present invention, and FIG. 8 is a cross-sectional view of a humidifying radiator according to an embodiment of the present invention, It is a top perspective view of the radiator.
도 6 내지 도 8를 참고하면, 본 실시예의 따른 가습 난방기는 물통부(120), 히터용 팬(151), 토출캡(191), 열방출부(140)를 포함한다. 6 to 8, the humidifying heater according to the present embodiment includes a water container 120, a heater fan 151, a discharge cap 191, and a heat discharging unit 140.
물통부(120)는 가습부(110)에 물을 공급하며 적어도 하나 이상 구비될 수 있다. 히터용 팬(151)은 반사판의 뒤에 배치되며 외부의 공기를 흡입하여 토출구로 향하게 한다. 토출캡(191)은 토출구에 착탈 가능하게 장착되며 가열된 공기와 미세물방울을 혼합하여 특정 방향으로 토출시킨다. 열방출부(140)는 난방 본체부의 전방에 설치되어 메쉬 구조를 갖는다.The water tank 120 supplies water to the humidifier 110 and may include at least one or more water. The heater fan 151 is disposed behind the reflector and sucks outside air to be directed to the discharge port. The discharge cap 191 is detachably mounted on the discharge port and mixes the heated air and the fine droplets to discharge in a specific direction. The heat radiating part 140 is provided in front of the heating main body part and has a mesh structure.
상기 가습부(110)는 가습 본체부를 구비하고 상기 가습 본체부 상부에 구비되는 물통부(120)에 의해 물을 공급받는 제1수조와, 상기 제1수조와 유로로 연결되어 물을 미세물방울로 변환시키는 초음파 진동자를 포함하는 제2수조를 구비하며, 상기 제2수조의 상부에 상기 유동관로부가 구비되어 상기 제2수조에서 생성된 미세물방울이 상기 유동관로부를 통해 상기 난방 본체부 상부에 구비되는 토출구로 가이드 될 수 있을 것이다. 한편, 상기 제2수조에 구비되는 초음파 진동자는 착탈이 가능하여 사용자가 상기 가습부(110)를 난방 본체부로부터 분리하고 제2수조에 구비되는 초음파 진동자까지 모두 분리하여 완전세척을 통한 살균효과를 기대할 수 있을 것이다. 또한, 상기 가습부(110)는 물을 저장하면서 발생할 수 있는 세균의 증식을 억제하기 위해 자외선을 방출하는 살균부를 더 포함할 수 있으며, 더욱 상세하게는 상기 제1수조와 상기 제2수조를 이어주는 유로에 구비될 수 있을 것이다.The humidifying unit 110 includes a first water tank which is provided with a humidifying main body and is supplied with water by a water tank 120 provided at an upper portion of the humidifying main body, And a second water tank including an ultrasonic transducer for converting the ultrasonic vibrator into the first water tank and the second water tank, wherein the flow pipe portion is provided on the second water tank, and fine droplets generated in the second water tank are provided on the heating body portion through the flow pipe passage portion It can be guided to the discharge port. Meanwhile, the ultrasonic vibrator included in the second water tank can be detached, so that the user can separate the humidifier 110 from the heating body and separate the ultrasonic vibrator provided in the second water tank, You can expect it. The humidifying unit 110 may further include a sterilizing unit that emits ultraviolet rays to suppress the growth of bacteria that may occur when water is stored. More specifically, It may be provided in the flow path.
상기 물통부(120)는 적어도 하나 이상 구비될 수 있으며, 난방 본체부에 착탈 가능하게 장착될 수 있을 것이다. 보다 상세하게는 사용자는 상기 난방 본체부(100)의 상측면을 열고 물통부를 난방 본체부와 수직한 방향으로 집어 꺼낼 수 있으며 물통부에 물을 공급할 수 있을 것이다. 또한, 물통부(120)에서 상기 가습부(110)에 체결되는 부분은 스프링 등의 탄성력을 제공하는 소재로 되어 있어 사용자가 물통부를 가습부와 분리하여 본체 외부로 분리하고자 할 때 물통부에 저장되어 있는 물이 외부로 새어나가는 것을 방지할 수 있을 것이다.At least one or more water bottles 120 may be provided and detachably mounted to the heating main body. More specifically, the user can open the upper surface of the heating main body 100 and take out the water tub part in a direction perpendicular to the heating main body part, and supply water to the water tub part. In addition, the portion of the water bottle 120 which is fastened to the humidifier 110 is made of a material such as a spring that provides elastic force. When the user separates the water bottle from the humidifier, It is possible to prevent water from leaking to the outside.
한편, 상기 물통부를 난방부 본체에서 분리 가능함으로써 사용자는 물통부에 물을 공급하기 위해 난방부 본체로부터 분리할 뿐만 아니라 상기 가습부와 마찬가지로 완전세척을 위해 물통부를 분리하여 세척할 수 있을 것이다. 일반적으로 물이 고여있고 습한 환경에서 세균 증식의 문제가 빈번하기 때문에 상술한 바와 같이 물통부를 난방부 본체에서 분리하여 세척함으로써 상술한 문제를 해결할 수 있을 것이다.Meanwhile, since the water bottle can be separated from the heating body, the user can separate the water bottle from the heating body in order to supply water to the water bottle and clean the water bottle separately for complete cleaning as in the case of the humidifier. Generally, since the problem of bacterial growth frequently occurs in a watery and humid environment, the above-described problem can be solved by separating and washing the water bottle from the heating part main body as described above.
상기 히터용 팬(151)은 상기 반사판의 뒤에 배치되어 외부의 공기를 흡입하여 상기 난방 본체부(100) 상단으로 토출시키며 토출되는 공기는 상기 토출캡(191)에 의해 일측으로 방향성을 갖고 토출할 것이다.The heater fan 151 is disposed behind the reflector and sucks outside air to the upper end of the heating main body 100. The discharged air is directed to the one side by the discharge cap 191, will be.
상기 토출캡(191)은 상기 토출구(190)의 상부에 위치하며 더욱 구체적으로는 상술한 바와 같이 히터용 팬(151)에 의해 흡입된 공기를 방향성을 갖고 토출시키는 역할을 수행한다. 상기 토출캡은 착탈이 가능하여 사용자가 난방 본체부에 수직한 방향으로 미세물방울과 열풍을 보내고 싶은 경우에는 상기 토출캡을 제거할 수 있을 것이며, 한편 상기 토출캡(191)은 상기 토출구에 대해 상하 또는 좌우 방향으로 회전이 가능하게 장착되어 상기 가열된 공기와 미세물방울의 토출 방향을 조절할 수 있을 것이다.The discharge cap 191 is positioned above the discharge port 190, and more specifically, discharges the air sucked by the heater fan 151 with directionality as described above. The discharge cap can be attached and detached so that the user can remove the discharge cap when the user desires to discharge fine droplets and hot air in a direction perpendicular to the heating main body portion while the discharge cap 191 is movable up and down Or the left and right direction so as to adjust the discharge direction of the heated air and the fine droplets.
상술한 토출캡(191)을 구비함으로써 토출캡의 하부에 위치하는 토출구에서 토출되는 미세물방울 및 열풍과 토출캡을 통해 가이드 되는 외부공기를 혼합하여 실내 공간으로 배출함으로써 사용자의 생활공간에 미세물방울과 열풍이 혼합된 일종의 루프(Roof)를 형성하여 사용자의 실생활 공간을 우선적으로 난방 하는 효과를 가져 올 수 있을 것이다.By providing the above-described discharge cap 191, fine droplets and hot air discharged from the discharge port located at the lower portion of the discharge cap and external air guided through the discharge cap are mixed and discharged into the indoor space, A kind of roofs mixed with hot winds may be formed, and the user may be able to preferentially heat the real space of the user.
상기 열방출부(140)는 상기 히터부 및 반사판에 의해 발생되는 열에너지 등을 효과적으로 전달하기 위한 메쉬 구조를 띄고 있으며 상기 열방출부(140)는 보다 구체적으로는 상기 난방 본체부의 전면에 위치하는 전면부(140a)와 상기 전면부의 후면에 위치하며 상기 히터부(150)에서 생성된 적외선을 반사시키는 반사부(140b)를 구비하고 상기 전면부(140a)는 상기 반사부(140b)에 비해 열전달 특성이 낮은 것을 특징으로 한다. The heat radiating part 140 has a mesh structure for effectively transmitting heat energy generated by the heater part and the reflector. The heat radiating part 140 is, more specifically, a front surface And a reflector 140b positioned on a rear surface of the front surface portion and reflecting the infrared rays generated by the heater portion 150. The front surface portion 140a has a heat transfer characteristic Is low.
한편, 상기 전면부(140a)는 상기 난방 본체부의 외관을 이루는 구성중 하나로써 사용자가 쉽게 접근할 수 있는 부분이므로 상기 히터부에서 생성되는 열에너지를 그대로 전달시킬 경우 발생할 수 있는 안전사고를 방지하고자 반사부에 비해 열전달 특성이 낮아 상기 난방기가 가동 중에도 적정온도를 유지하여 안전사고를 방지할 수 있으며, Since the front part 140a is one of the components constituting the appearance of the heating main body part, it is easily accessible by the user. Therefore, in order to prevent a safety accident that may occur when the heat energy generated by the heater part is directly transferred, The heat transfer characteristic is lower than that of the heat exchanger, so that even when the heater is operated, an appropriate temperature can be maintained to prevent a safety accident,
상기 반사부(140b)는 상기 난방 본체부의 내부에 구비되는 구성 중 하나로써 히터부에서 발생하는 열에너지 내지 적외선을 다시 히터부를 포함한 난방 본체부의 내부로 반사시킴으로써, 상기 난방 본체부의 내부에 위치하며 히터부에 의해 열을 받는 유동관로부에 열을 전달해 유동관로부를 통과하는 미세물방울에게 열에너지를 전달할 수 있을 것이다. 상술한 전면부와 반사부의 구성에 의해 사용자는 히터부에서 생성된 열에너지가 외부로 방출되어 소모되는 것을 방지할 수 있으며 외부로 방출되는 열에너지를 재사용함으로써 에너지의 효율상승 내지 에너지 절약의 효과를 기대할 수 있을 것이다.The reflection part 140b is one of the components provided inside the heating body part and reflects the heat energy or infrared ray generated from the heater part to the inside of the heating body part including the heater part again so that the reflection part 140b is located inside the heating body part, It is possible to transfer the heat energy to the fine droplets passing through the flow path portion by transferring the heat to the flow path portion receiving the heat by the heat exchanger. The user can prevent the heat energy generated in the heater unit from being discharged to the outside and reuse the heat energy emitted to the outside by the configuration of the front part and the reflection part as described above, There will be.
도 9는 본 발명의 일 실시예에 따른 가습 난방기의 측면 및 실시도이다.9 is a side view and an embodiment of a humidifying radiator according to an embodiment of the present invention.
도 9를 참고하면, 본 발명의 일실시예에 따른 가습 난방기는 유동관로부(131,133)와 상기 유동관로부와 근접하도록 위치하는 히터부(150)와 반사판의 뒤에 배치되며 공기를 흡입하는 히터용 팬(151)과 상기 히터용 팬에의해 흡입된 공기의 흐름을 난방 본체부의 상부 토출구로 가이드 하기 위해 공기의 흐름경로에 변화를 주는 공기 가이드 부재(152)와 상기 공기 가이드 부재에 의해 생성된 공기의 상승기류를 난방 본체부의 상부로 가이드 하는 공기 가이드관(153)과 상기 공기 가이드관에 의해 난방 본체부의 상부로 이동한 공기를 측면으로 가이드하기 위한 토출캡(191)을 포함할 수 있을 것이다. 한편, 상기 유동관로부(131,133)는 더욱 상세하게는 상기 히터부에 근접하게 위치해 상기 히터부에 의해 가열되는 외부 가이드관(133)과 상기 외부 가이드관의 내부에 배치되며 미세물방울을 가이드 하는 내부 가이드관(131)을 구비하며 상기 내부 가이드관의 내부에서는 상기 미세물방울이 상부로 유동하고, 상기 외부 가이드관과 내부 가이드관의 사이에서는 상기 히터부에 의해 가열된 공기가 상부로 유동한다.9, a humidifying heater according to an embodiment of the present invention includes a flow path portion 131 and 133, a heater portion 150 positioned adjacent to the flow path portion, a heater disposed at the rear of the reflection plate, An air guide member 152 for changing the flow path of the air to guide the flow of the air sucked by the fan 151 and the heater fan to the upper discharge port of the heating main body, An air guide pipe 153 for guiding the upward flow of the air to the upper portion of the heating main body, and a discharge cap 191 for guiding the air moved to the upper portion of the heating main body by the air guide pipe to the side. More specifically, the flow path portions 131 and 133 include an outer guide pipe 133 positioned near the heater portion and heated by the heater portion, an inner guide pipe 133 disposed inside the outer guide pipe and guiding fine droplets The fine droplet flows upward in the inner guide tube and the air heated by the heater part flows upward between the outer guide tube and the inner guide tube.
상술한 본 발명에 따른 가습 난방기의 구성에 의해서 상기 난방 본체부(100) 내부에서는 3가지의 유체흐름이 이루어진다. 구체적으로 살펴보면, 먼저 가습부(110)에 의해 생성된 미세물방울을 토출구(190)쪽으로 가이드하나는 내부 가이드관(131)에 의한 유체의 흐름이 있으며, According to the construction of the humidifying heater according to the present invention, three kinds of fluid flow are made in the heating main body 100. Specifically, first, the fine droplets generated by the humidifier 110 are guided toward the discharge port 190, and there is a flow of the fluid by the inner guide pipe 131,
또한, 상기 내부 가이드관과 상기 내부 가이드관(131)을 감싸며 형성되는 외부 가이드관(133)에 의해 형성된 사이 공간을 통해 상기 히터부(150)에 의해 가열된 공기가 대류현상에 의해 상승하는 유체의 흐름이 있으며,The air heated by the heater unit 150 is raised by the convection phenomenon through the space formed by the inner guide tube and the outer guide tube 133 formed by surrounding the inner guide tube 131, In addition,
또한, 상기 히터용 팬(151)을 통해 흡입된 공기가 상기 공기 가이드 부재(152)에 의해 공기의 흐름 경로가 난방 본체부(100)에 대해 수평한 방향에서 수직한 방향으로 바뀌어 상승하게 되며 상기 상승하게 되는 공기의 흐름을 난방 본체부의 상부로 가이드 하는 공기 가이드관(153)에 의한 유체의 흐름이 있다.In addition, the air sucked through the heater fan 151 is vertically moved upward by the air guide member 152 in the horizontal direction with respect to the heating main body 100, There is a flow of the fluid by the air guide pipe 153 which guides the flow of the air to rise to the upper portion of the heating main body portion.
한편, 유동관로부(131,133)에 의해 미세물방울과 고온의 공기가 분리되어 이동함으로써 토출된 미세물방울과 고온의 공기는 외부에서 일종의 루프(Roof)를 형성하여 사용자의 실생활 공간에 우선적으로 난방을 수행할 수 있을 것이다. On the other hand, fine droplets and high-temperature air are separated and moved by the flow path portions 131 and 133, so that discharged fine droplets and high-temperature air form a kind of external roof to heat the user's real space first You can do it.
보다 구체적으로는 중앙에서 배출된 미세물방울은 상대적으로 무거워 일정한 높이 이상 상승하였다가 하강하는 흐름을 형성하며 상기 미세물방울이 토출되는 내부 가이드관(131)과 외부 가이드관(133)의 사이에 형성되는 공간에서 토출되는 고온의 공기는 대류현상에 의해 상승하는 흐름을 형성하여 토출된 미세물방울과 고온의 공기는 미세물방울이 고온의 공기에 얹혀 확산됨으로써 사용자의 실생활 공간을 중심으로 난방 할 수 있을 것이다. More specifically, the fine droplets discharged from the center are formed between the inner guide tube 131 through which the fine droplets are discharged and the outer guide tube 133, which are relatively heavy and rise above a predetermined height and form a descending flow The hot air discharged from the space forms an upward flow by the convection phenomenon, so that the discharged fine droplets and hot air can be heated around the real space of the user by spreading the fine droplets on the high temperature air.
상술한 구성에 의해 열기를 품은 미세물방울이 사람의 실생활 공간에 머무르게 되어 효율적인 난방이 가능할 것이다. 보다 구체적으로는 난방의 대상이 되는 공간을 층을 나누어 상층 중층 하층으로 나누어 구분할 경우 사람이 생활하게 되는 공간은 중층과 하층이 되며, 미세물방울과 혼합된 따뜻한 공기는 그 무게에 의해 상기 공간의 중층과 하층에 머무르게 되어 상기 중층과 하층이 우선적으로 난방이 되는 효과를 가져 올 수 있다.With the above-described constitution, the fine droplets holding the heat will stay in the real space of the person, and efficient heating will be possible. More specifically, when the space to be heated is divided into upper and lower middle layers, the spaces in which the people live are middle and lower layers, and the warm air mixed with the fine droplets is divided into the middle layer And the lower layer and the lower layer can be heated preferentially.
또한, 열풍을 생성하여 토출시키거나 반사열에 의해 난방을 할 경우에는 열풍 또는 반사열이 생성되어 토출되는 기기에 근접하게 위치한 공간은 고온으로 데워지나 기기에서 멀어질수록 열에너지가 외부 공기를 매개체로 확산하기 때문에 급격하게 온도가 낮아지는 현상이 발생한다. 따라서 이러한 경우에는 사용자가 따뜻함을 느끼고자 할 때 난방기를 사용자에게 근접하게 위치시켜야 하나, 본 발명에 따른 가습 난방기의 경우 상술한 구성과 실시예에서 본 바와 같이 열에너지를 확산시키는 매개체로써 미세물방울을 사용함으로써 상기 미세물방울이 열에너지를 머금고 생활공간에 확산되어 온도의 감소 비율이 상기 공기를 매개체로 한 경우보다 적어 보다 효율적으로 공간전체에 걸쳐 온도를 상승시킬 수 있을 것이다.In addition, when hot air is generated and discharged or heat is applied by the reflected heat, the space located near the discharge device where hot air or reflected heat is generated is heated to a high temperature. However, as the distance from the device increases, heat energy spreads as a medium So that the temperature is suddenly lowered. Therefore, in such a case, when the user wishes to feel warmth, the radiator must be positioned close to the user, but in the case of the humidifying radiator according to the present invention, fine droplets are used as a mediator for spreading thermal energy as described in the above- So that the fine droplets can diffuse heat energy into the living space in a faded manner, and the temperature can be increased more efficiently throughout the space than in the case where the temperature reduction ratio is the medium.
한편, 본 발명은 상술한 내용에서 본 발명의 실시예 및 첨부된 도면에 의해 한정되는 것은 아니며, 본 발명의 기술적 사상을 벗어나지 않는 범위 내에서 여러 가지 치환, 변형 및 변경이 가능함은 통상의 기술자에게 명백할 것이다.While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it is clearly understood that the same is by way of illustration and example only and is not to be taken by way of limitation, It will be obvious.
[부호의 설명][Description of Symbols]
100 : 가습 난방기 110 : 가습부100: humidifier radiator 110: humidifier section
120 : 물통부 130 : 유동관로부120: water tank part 130: flow pipe part
131 : 내부 가이드관 133 : 외부 가이드관131: inner guide tube 133: outer guide tube
140 : 열방출부140:
140a : 전면부 140b : 반사부140a: Front part 140b: Reflective part
150 : 히터부 151 : 히터용 팬150: heater part 151: heater fan
152 : 공기 가이드 부재 153 : 공기 가이드관152: air guide member 153: air guide tube
160 : 반사판 170 : 제어부160: reflector 170:
190 : 토출구 191 : 토출캡190: Discharge port 191: Discharge cap

Claims (18)

  1. 상부에 토출구를 구비하는 난방 본체부와,A heating main body having an outlet at an upper portion thereof,
    상기 난방 본체부의 일측에 위치하여 미세물방울을 생성하는 가습부와,A humidifying unit located at one side of the heating main body to generate fine droplets;
    상기 난방 본체부의 내부에 위치하며 상기 가습부에 의해 생성된 미세물방울을 상기 토출구로 가이드하는 유동 관로부와,A flow conduit portion positioned inside the heating main body portion and guiding fine droplets generated by the humidifying portion to the discharge port,
    상기 난방 본체부 내부의 공기를 가열하며 상기 유동 관로부에 근접하도록 위치해 상기 유동 관로부를 가열함으로써 상기 미세물방울을 가열하는 히터부와,A heater unit which heats the fine droplets by heating air in the heating main body and located near the flow duct unit to heat the flow duct unit;
    상기 가습부와 상기 히터부의 동작을 제어하는 제어부를 포함하고,And a controller for controlling operations of the humidifier and the heater,
    상기 가열된 공기와 미세물방울은 상기 토출구를 통해 토출되는 것을 특징으로 하는 가습 난방기.Wherein the heated air and fine droplets are discharged through the discharge port.
  2. 제1항에 있어서,The method according to claim 1,
    상기 유동 관로부는 세척 가능하도록 상기 난방 본체부에 착탈 가능하게 장착되는 것을 특징으로 하는 가습 난방기.Wherein the flow conduit portion is detachably mounted to the heating main body so as to be washable.
  3. 제1항에 있어서, The method according to claim 1,
    상기 유동 관로부는 상기 히터부에 근접하게 위치해 상기 히터부에 의해 가열되는 외부 가이드관과, 상기 외부 가이드관의 내부에 배치되며 상기 미세물방울을 가이드하는 내부 가이드관을 구비하며,Wherein the flow conduit portion includes an outer guide tube which is located near the heater portion and is heated by the heater portion and an inner guide tube which is disposed inside the outer guide tube and guides the fine droplets,
    상기 내부 가이드관의 내부에서는 상기 미세물방울이 상부로 유동하고,The fine droplets flow upward in the inner guide tube,
    상기 외부 가이드관과 내부 가이드관의 사이에서는 상기 히터부에 의해 가열된 공기가 상부로 유동하는 것을 특징으로 하는 가습 난방기. And the air heated by the heater unit flows upward between the outer guide pipe and the inner guide pipe.
  4. 제1항에 있어서,The method according to claim 1,
    상기 토출구에 착탈 가능하게 장착되며 상기 가열된 공기와 미세물방울을 혼합하여 특정 방향으로 토출하는 토출캡을 더 포함하는 것을 특징으로 하는 가습 난방기.Further comprising a discharge cap detachably mounted on the discharge port, for discharging the heated air mixed with fine droplets in a specific direction.
  5. 제4항에 있어서,5. The method of claim 4,
    상기 토출캡은 상기 토출구에 대해 상하 또는 좌우 방향으로 회전 가능하게 장착되어 상기 가열된 공기와 미세물방울의 토출 방향을 바꿀 수 있는 것을 특징으로 하는 가습 난방기.Wherein the discharge cap is mounted rotatably in the up-and-down direction or in the left-right direction with respect to the discharge port so that the discharge direction of the droplets of fine droplets and the heated air can be changed.
  6. 제1항에 있어서,The method according to claim 1,
    상기 히터부는 발열 성능이 상이한 복수의 전열체를 구비하는 것을 특징으로 하는 가습 난방기.Wherein the heater section comprises a plurality of heat transfer elements having different heat generating performances.
  7. 제6항에 있어서,The method according to claim 6,
    상기 제어부는 필요한 발열량에 따라 상기 복수의 전열체 중에서 하나의 전열체를 선택하거나 2개 이상의 전열체를 함께 선택하여 구동하는 것을 특징으로 하는 가습 난방기. Wherein the controller selects one of the plurality of heaters or selects at least two heaters together according to a required calorific value.
  8. 제1항에 있어서,The method according to claim 1,
    상기 히터부에서 생성된 적외선을 전방으로 향하게 하는 반사판을 더 포함하는 것을 특징으로 하는 가습 난방기. And a reflector for directing the infrared rays generated by the heater unit forward.
  9. 제1항에 있어서,The method according to claim 1,
    히터용 팬을 더 포함하며,Further comprising a heater fan,
    상기 히터용 팬은 외부의 공기를 흡입하여 상기 토출구로 향하게 하는 것을 특징으로 하는 가습 난방기.Wherein the heater fan sucks outside air and directs the air to the discharge port.
  10. 제1항에 있어서,The method according to claim 1,
    상기 가습부는 세척 가능하도록 상기 본체부에 착탈 가능하게 장착되는 것을 특징으로 하는 가습 난방기.Wherein the humidifying unit is detachably mounted on the main body so as to be cleanable.
  11. 제1항에 있어서,The method according to claim 1,
    상기 가습부에서의 세균 번식을 방지하는 자외선 살균부를 더 포함하는 것을 특징으로 하는 가습 난방기.Further comprising an ultraviolet sterilizing unit for preventing the propagation of germs in the humidifying unit.
  12. 제1항에 있어서, The method according to claim 1,
    상기 제어부는 온도와 습도를 센싱하고 열지수 또는 불쾌지수에 기초하여 상기 히터부의 발열량과 상기 가습부의 가습량을 제어하는 것을 특징으로 하는 가습 난방기.Wherein the control unit senses temperature and humidity and controls a heating value of the heater unit and a humidification amount of the humidifying unit based on a heat capacity or an unpleasantness index.
  13. 제1항에 있어서,The method according to claim 1,
    상기 난방 본체부로부터 분리 가능한 온습도 센서부를 더 포함하고,And a temperature / humidity sensor part detachable from the heating main body part,
    상기 제어부는 상기 온습도 센서부에 의해 감지된 온습도를 기준으로 상기 가습부 또는 상기 히터부를 제어하는 것을 특징으로 하는 가습 난방기.Wherein the controller controls the humidification unit or the heater unit based on the temperature and humidity detected by the temperature / humidity sensor unit.
  14. 제9항에 있어서,10. The method of claim 9,
    상기 제어부는 상기 히터용 팬을 턴오프시키고, 설정된 기상 시간에 상기 히터부의 발열량을 상승시키는 수면 모드를 구비하는 것을 특징으로 하는 가습 난방기.Wherein the control unit includes a sleep mode for turning off the heater fan and raising a heating value of the heater unit at a set wake-up time.
  15. 제1항에 있어서,The method according to claim 1,
    상기 가습부에 물을 공급하는 물통부를 더 포함하며,And a water tank for supplying water to the humidifying unit,
    상기 물통부는 상기 난방 본체부에 착탈 가능하게 장착되는 복수개의 물통을 구비하는 것을 특징으로 하는 가습 난방기.Wherein the water bottle portion comprises a plurality of water bottles detachably mounted on the heating body portion.
  16. 제1항에 있어서,The method according to claim 1,
    상기 난방 본체부의 전방에 설치되며 메쉬 구조를 갖는 열방출부를 더 포함하는 것을 특징으로 하는 가습 난방기.Further comprising a heat discharging unit (120) disposed in front of the heating main body and having a mesh structure.
  17. 제16항에 있어서, 17. The method of claim 16,
    상기 열방출부는 상기 난방 본체부의 전면에 위치하는 전면부와, 상기 전면부의 후면에 위치하며 상기 히터부에서 생성된 적외선을 반사시키는 반사부를 구비하고,Wherein the heat radiating portion includes a front portion positioned at a front surface of the heating main body portion and a reflecting portion positioned at a rear surface of the front portion and reflecting the infrared rays generated by the heater portion,
    상기 전면부는 상기 반사부에 비해 열전달 특성이 낮은 것을 특징으로 하는 가습 난방기.Wherein the front portion has a lower heat transfer characteristic than the reflective portion.
  18. 제16항에 있어서, 17. The method of claim 16,
    상기 열방출부는 상기 난방 본체부에 개폐 가능하도록 장착되는 것을 특징으로 하는 가습 난방기.And the heat radiating portion is mounted to the heating main body so as to be openable and closable.
PCT/KR2018/007026 2017-07-03 2018-06-21 Humidifying heater WO2019009541A1 (en)

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KR10-2017-0084344 2017-07-03
KR20170084344 2017-07-03
KR10-2018-0019428 2018-02-19
KR1020180019428A KR102038958B1 (en) 2017-02-16 2018-02-19 Heating apparatus with humidifier

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Cited By (1)

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Publication number Priority date Publication date Assignee Title
CN110094878A (en) * 2019-05-13 2019-08-06 武汉万居隆电器有限公司 A kind of calm sense air-source heat-pump air heater

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JPH0544999A (en) * 1991-08-15 1993-02-23 Sharp Corp Electric hot air heater
KR20100050299A (en) * 2008-11-05 2010-05-13 (주)이에스산업 Heating apparatus
KR101446643B1 (en) * 2014-03-24 2014-10-06 김동근 A hot water radiator with humidification function
KR101553024B1 (en) * 2015-01-23 2015-09-15 김동근 A hot water radiator with humidification function
KR20170051181A (en) * 2015-10-30 2017-05-11 엘지전자 주식회사 Air Conditioner

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Publication number Priority date Publication date Assignee Title
JPH0544999A (en) * 1991-08-15 1993-02-23 Sharp Corp Electric hot air heater
KR20100050299A (en) * 2008-11-05 2010-05-13 (주)이에스산업 Heating apparatus
KR101446643B1 (en) * 2014-03-24 2014-10-06 김동근 A hot water radiator with humidification function
KR101553024B1 (en) * 2015-01-23 2015-09-15 김동근 A hot water radiator with humidification function
KR20170051181A (en) * 2015-10-30 2017-05-11 엘지전자 주식회사 Air Conditioner

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* Cited by examiner, † Cited by third party
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CN110094878A (en) * 2019-05-13 2019-08-06 武汉万居隆电器有限公司 A kind of calm sense air-source heat-pump air heater

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