WO2017005068A1 - 一种具有智能除湿功能和空气净化功能的温度调节装置 - Google Patents

一种具有智能除湿功能和空气净化功能的温度调节装置 Download PDF

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Publication number
WO2017005068A1
WO2017005068A1 PCT/CN2016/084451 CN2016084451W WO2017005068A1 WO 2017005068 A1 WO2017005068 A1 WO 2017005068A1 CN 2016084451 W CN2016084451 W CN 2016084451W WO 2017005068 A1 WO2017005068 A1 WO 2017005068A1
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Prior art keywords
sump
air
radiator
evaporator
water
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PCT/CN2016/084451
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English (en)
French (fr)
Inventor
胡贵博
Original Assignee
胡贵博
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Publication date
Application filed by 胡贵博 filed Critical 胡贵博
Priority to CN201680023681.0A priority Critical patent/CN107532808A/zh
Publication of WO2017005068A1 publication Critical patent/WO2017005068A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L9/00Disinfection, sterilisation or deodorisation of air
    • A61L9/16Disinfection, sterilisation or deodorisation of air using physical phenomena
    • A61L9/18Radiation
    • A61L9/20Ultraviolet radiation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • F24F5/0007Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater cooling apparatus specially adapted for use in air-conditioning
    • F24F5/0035Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater cooling apparatus specially adapted for use in air-conditioning using evaporation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/89Arrangement or mounting of control or safety devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F3/00Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
    • F24F3/12Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
    • F24F3/14Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F3/00Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
    • F24F3/12Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
    • F24F3/16Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by purification, e.g. by filtering; by sterilisation; by ozonisation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/20Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by sterilisation
    • F24F8/22Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by sterilisation using UV light
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B30/00Heat pumps
    • F25B30/02Heat pumps of the compression type
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F3/00Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
    • F24F3/12Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
    • F24F3/14Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification
    • F24F2003/144Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification by dehumidification only
    • F24F2003/1446Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification by dehumidification only by condensing

Definitions

  • the invention relates to a temperature regulating device, in particular to a temperature regulating device with an intelligent dehumidifying function and an air purifying function.
  • the object of the present invention is to overcome the deficiencies of the prior art and to provide a temperature regulating device having an intelligent dehumidification function and an air purification function, which meets various needs of indoor use.
  • the technical solution adopted by the present invention is: a temperature adjusting device having an intelligent dehumidifying function and an air purifying function, including a fluid guiding body 41, a lower portion of the guiding fluid 41 is connected with a main body 42, and a connecting portion of the guiding fluid 41 and the main body 42 is provided with a drafting wind.
  • the main unit 42 includes a heat pump device 1, a water collecting device 2, a controller 3, and a casing 4.
  • the controller 3 is connected to the control panel 25, and the control panel 25 is provided with a control switch.
  • the heat pump device 1 includes a compressor 5.
  • the water collecting device 2 includes a sump 14, the sump 14 is provided with a groove 16, a boss 17 and a drainage tube 15, and one end of the drainage tube 15 is connected to the purification device The other end of the outer side is opposite to the groove 16, and the inside of the boss 17 is hollow
  • An ultraviolet lamp tube 21 is disposed, and the boss 17 is provided with a venting hole 18; the outer casing 4 is provided with an exhaust port 19 and an air inlet 20, and the fan 12, the evapor
  • the controller 3 is connected to the compressor 5 and the fan 12 through a control line; the sump 14 is provided with a plurality of layers, and the lowermost layer of the sump 14 is concave.
  • the bottom of the groove of the groove 16 is provided with a drainage pipe 15, one end of which is connected with the water receiving tank, and the other end is connected with the groove 16; the bottom of the groove 16 of the sump 14 which is not the lowermost layer is provided with a drainage hole 22, There is a space between the sump 14 , and each sump 14 is provided with a plurality of grooves 16 and a plurality of bosses 17; the controller 3 is provided with a humidity sensor 24 and a control panel 25, and the control panel 25 is provided with an automatic control switch 26 The air-conditioning output switch 27 and the stop switch 35.
  • the fluid guide 41 is annular.
  • the exhaust port 19 is an annular mesh structure, and the exhaust port 19 is plural.
  • An air filter cotton is disposed on the exhaust port 19.
  • the fluid guide 41 is bolted to the main body 42, and the air filter cotton on the exhaust port 19 is a detachable structure.
  • the evaporator 6, the first heat sink 7, and the second heat sink 8 are coated with a nano titanium dioxide coating.
  • the surface of the sump 14 is coated with a nano titanium dioxide coating.
  • the temperature regulating device with intelligent dehumidification function and air purification function includes dehumidification heating and dehumidification and cooling working states;
  • the dehumidification heating working state is: when dehumidifying heating work, it will have intelligent dehumidification function and air purification function
  • the temperature adjusting device is placed in a room where dehumidification is required, and the compressor 5 and the fan 9 of the heat pump device 1 are controlled by the controller 3, and the solenoid valve 9 is controlled to be turned on by the controller 3 to make the first radiator 7 and the second radiator 8 dissipates heat to cool the evaporator 6;
  • humid air is drawn in by the air inlet 20 of the outer casing 4, and the humid air is first heated and evaporated by the first radiator 7, cooled by the sump 14 to absorb moisture, and then passed through the evaporator 6 After condensing and dehumidifying, the air condensed and dehumidified by the evaporator 6 is further heated by the second radiator 8, absorbed by
  • the temperature regulating device with the intelligent dehumidification function and the air purifying function performs the dehumidification heating operation, and after the humid air enters through the air inlet 20, it is heated by the first radiator 7 to become water vapor, and the water vapor is composed of the bottom layer.
  • the vent hole 18 of the sump 14 enters, evaporates and flows to the back position of the upper sump 14, and is continuously cooled into water droplets by the back position thereof, and the water drops to the groove 16 of the sump 14 below, and then
  • the drainage hole 22 of the groove 16 flows into the sump 14 of the lowermost layer, and flows from the groove 16 of the bottommost sump 14 through the drainage pipe to the water receiving tank, and is heated and evaporated by the first radiator 7.
  • the humid air is used to cool the moisture absorbed by the humid air by the sump 14; the humid air after the first dehumidification flows from the vent hole 18 of the uppermost sump 14 to the evaporator 6, and is cooled and condensed into water by the evaporator 6.
  • the humid air is dehumidified a second time; the condensed water is dropped from the evaporator 6 to the lower sump 14, and the condensed water flows into the lowermost layer through the drain hole 22 of the groove 16 of the sump 11 of the non-final layer Set sink 14 inside, and then by the most
  • the lower layer of the water collecting tank 14 is discharged into the water receiving tank through the drainage pipe; the humid air passes through the radiator 7, the sump 14 and the evaporator 6 to absorb the water twice, and then enters the second radiator 8 through the second radiator 8 After being heated, it is discharged from the exhaust port 19; thus continuously circulating, continuously absorbing moisture that removes indoor air.
  • the humid air enters the air inlet 20, and is heated by the first radiator 7 to become water vapor, and the water vapor is from the bottom layer.
  • the venting hole 18 of the sump 14 enters, evaporates and flows to the back position of the upper sump 14, and is continuously cooled into a water droplet by the back position thereof, and the water sump flows into the groove 16 of the sump 14 below.
  • the drain hole 22 of the groove 16 flows into the sump 14 of the lowermost layer, and the groove 16 of the bottommost sump 14 flows through the drain pipe 15 to the water receiving tank, and the first heat sink 7 is utilized.
  • the humid air is heated and evaporated, and the moisture absorbed by the humid air is cooled by the sump 14; the humid air after the first dehumidification is discharged from the vent hole 18 of the uppermost sump 14 to the evaporator 6, and is cooled and condensed by the evaporator 6.
  • the humid air is dehumidified a second time; the condensed water is dropped from the evaporator 6 to the lower sump 14, and the condensed water flows into the lowermost portion through the drain hole 22 of the groove 16 of the sump 11 of the non-final layer.
  • One layer of the sump 14 and then The lowermost sump 14 is discharged into the water receiving tank through the drainage pipe 15; the moist air is absorbed by the radiator 7, the sump 14 and the evaporator 6 twice, and the dehumidified cold air is discharged from the vent 19; This cycle continues to absorb moisture from the indoor air.
  • the automatic control switch 26 When the temperature adjustment device with the intelligent dehumidification function and the air purification function performs the dehumidification heating operation, the automatic control switch 26 is pressed, the controller 3 controls the electromagnetic valve 9 to be energized, the electromagnetic valve 9 is turned on, and the second radiator 8 has the refrigerant passing through.
  • the heat dissipation of the second radiator 8 is heated by the dehumidified air, and the exhaust port 19 discharges the dehumidified heating; when the temperature adjustment device with the intelligent dehumidification function and the air purification function dehumidifies the cooling operation, the cold air output switch 27 is pressed, and the controller 3
  • the control solenoid valve 9 is de-energized, the solenoid valve 9 is not turned on, the second radiator 8 does not pass the refrigerant, the second radiator 8 does not dissipate heat, and the exhaust port 19 discharges the dehumidified cold air.
  • the evaporator 6 is dropped into the sump 14 condensed water, and the drain hole 22 of the groove 16 of the uppermost sump 14 and the vent hole 18 flows into the sump 14 of the next layer, and finally flows to the last layer.
  • the water tank 14 cools the sump 14 of each layer by condensed water, increases the temperature difference between the sump 14 and the humid air heated by the radiator 7, and contacts each of the sump 14 cooled by the condensed water with the warmed humid air.
  • the warmed water vapor is cooled into water droplets to improve the efficiency of dehumidification.
  • the automatic control switch 26 When the temperature regulating device with the intelligent dehumidification function and the air purifying function performs the dehumidification heating operation, the automatic control switch 26 is pressed, and the controller 3 enters the dehumidification heating automatic control working state, when the indoor air humidity reaches the set humidity upper limit.
  • the humidity sensor 24 transmits its humidity signal to the controller 3, and the controller 3 controls the power supply to turn on the compressor 5, the fan 12, and the solenoid valve 9, and dehumidifies with the first radiator 7, the sump 14, and the evaporator 6.
  • the humidity sensor 24 transmits its humidity signal to the controller 3, and the controller 3 turns off the compressor 5, the fan 12, and the electromagnetic
  • the power supply of the valve 9, the temperature regulating device with the intelligent dehumidification function and the air purification function works to stop the dehumidification heating.
  • the cold air output switch 27 is pressed, and the controller 3 enters the dehumidification and cooling automatic control working state, when the indoor air humidity reaches the set humidity.
  • the humidity sensor 24 transmits its humidity signal to the controller 3, and the controller 3 controls the power supply of the compressor 5 and the fan 12 to be turned on, and the power of the electromagnetic valve 9 is turned off, using the first radiator 7 and the sump 14 And the evaporator 6 dehumidifies; as the humidity of the indoor air continuously decreases, when the humidity of the indoor air decreases to the set lower humidity limit, the humidity sensor 24 transmits its humidity signal to the controller 3, and the controller 3 cuts off the compressor 5
  • the power supply of the fan 12 and the temperature regulating device with the intelligent dehumidification function and the air purification function stop the dehumidification and cooling.
  • the humid air that has entered the radiator 7 is heated to become steam, and the water vapor enters the plurality of vent holes 18 of the sump 14 of each layer, and the heated water vapor is directly evaporated to the back surface of the sump 14 of each layer, and the water is used.
  • the back surface of each layer of the sump 14 where the condensed water is cooled is in full contact with the water vapor to cool the steam into water.
  • the condensed water dropped from the evaporator 6 to the lower sump 14 flows from the drain hole 22 of each layer of the sump 14 on the last sump 14 to the sump 14 of the last layer, and is used by the first radiator.
  • the heated humid air passes through the drain holes 22 of the sump 14 of each layer, it is condensed by the drain holes 22 and is absorbed into water, and is discharged into the water tank through the drain pipe 15, thereby further improving the efficiency of dehumidification.
  • the flow of air in the outer casing 4 is directed to the exhaust port 19 by the air inlet 20; when the temperature regulating device with the intelligent dehumidification function and the air purifying function is operated, the heat of the air absorbed by the evaporator 6 is converted. To the first radiator 7, the first radiator 7 is used to heat and evaporate the humid air.
  • the utility model has the beneficial effects that the temperature adjusting device with the intelligent dehumidifying function and the air purifying function is provided with a heat pump device and a water collecting device, and after opening, the ultraviolet lamp tube in the device is opened, coated with the first radiator and the second
  • the nanometer titanium dioxide on the surface of the radiator, evaporator and sump plays a catalytic role, which can remove the formaldehyde in the air and kill a variety of harmful bacteria.
  • the device is provided with a heat pump device and a water collecting device.
  • the first dehumidification is performed by using the first radiator, the second radiator and the sump
  • the second dehumidification is performed by the evaporator
  • the condensate is cooled by the condensate of the evaporator
  • the condensed water of the evaporator is used to absorb the steam.
  • the steam is turned into water through the drainage pipe 15 to the water tank, which enhances the dehumidification efficiency; at the same time, the air after dehumidification can be selected as heating and cooling.
  • the indoor air is purified and dehumidified, and then blown out, and the entire indoor air is cleaned and dehumidified while being used.
  • FIG. 1 is a schematic structural view of a temperature adjustment device having an intelligent dehumidification function and an air purification function.
  • FIG. 2 is an enlarged schematic view of the drainage duct at A in Figure 1
  • FIG. 1 is a schematic structural view of a temperature adjusting device with an intelligent dehumidifying function and an air purifying function, a temperature adjusting device having an intelligent dehumidifying function and an air purifying function, including a fluid guiding body 41, and a lower portion of the guiding fluid 41 is connected with a main body 42 and a fluid guiding body 41 is connected to the host 42 with a drainage duct.
  • the main unit 42 includes a heat pump device 1, a water collecting device 2, a controller 3, and a casing 4.
  • the controller 3 is connected to the control panel 25, and the control panel 25 is provided with control.
  • the heat pump device 1 includes a compressor 5, an evaporator 6, a first radiator 7, a second radiator 8, a solenoid valve 9, a check valve 10, an expansion valve 11, and a fan 12, and a refrigerant output connector of the compressor 5.
  • 13 is connected to the first radiator 7 and the solenoid valve 9, the first radiator 7 is connected to the expansion valve 11, the expansion valve 11 is connected to the evaporator 6, the evaporator 6 is connected to the compressor 5, and the solenoid valve 9 and the second heat dissipation are connected.
  • the second radiator 8 is connected to the one-way valve 10, the one-way valve 10 is connected to the expansion valve 11, and the water collecting device 2 includes a sump 14, which is provided with a groove 16, a boss 17, and drainage.
  • Tube 15 one end of the drainage tube 15 is connected to the net
  • the other end of the device is opposite to the groove 16 and the boss 17 is hollow inside, and is provided with an ultraviolet lamp tube 21.
  • the boss 17 is provided with a venting hole 18; the outer casing 4 is provided with an exhaust port 19 and an air inlet 20, a fan 12 and an evaporator.
  • the first radiator 7 and the second radiator 8 are disposed between the exhaust port 19 and the intake port 20, the vent hole 18 communicates with the exhaust port 19 and the intake port 20, and the sump 14 is located at the evaporator 6 and the Between a radiator 7, a second radiator 8 is located between the fan 12 and the evaporator 6; the controller 3 is connected to the compressor 5 and the fan 12 through a control line; the sump 14 is provided with a plurality of layers, and the lowermost layer is provided The bottom of the groove 16 of the water tank 14 is provided with a drainage tube 15, one end of which is in communication with the water receiving tank, and the other end is in communication with the groove 16; the groove bottom of the groove 16 of the sump 14 which is not the lowermost layer is provided There are spaces between the drainage holes 22 and the sump 14, each of the sump 14 is provided with a plurality of grooves 16 and a plurality of bosses 17; the controller 3 is provided with a humidity sensor 24 and a control panel 25, and the control panel 25 is provided The switch 26, the cool air
  • the fluid guide 41 is annular.
  • the exhaust port 19 has an annular mesh structure, and the exhaust port 19 is plural.
  • An air filter cotton is disposed on the exhaust port 19.
  • the fluid guide 41 is bolted to the main body 42, and the air filter cotton on the exhaust port 19 is of a detachable structure.
  • the air after purifying and dehumidifying is discharged upward from the exhaust port 19, and a parallel air guiding surface parallel to the air flow and a diagonal wind guiding surface 43 at an angle to the air flow are disposed at the drainage air passage, and the parallel wind guiding surface is passed through the parallel air guiding surface
  • the action of 44 does not change the direction of the airflow, and the portion of the airflow that can be extruded through the inclined guide surface 43 can change the original direction and obliquely guide the flow, thereby providing an upwardly diffused airflow, thereby pulling the side and the back.
  • the airflow runs forward together.
  • the surface of the evaporator 6, the first heat sink 7, and the second heat sink 8 coated with the nano-titanium dioxide coating sump 14 is also coated with a nano-titanium dioxide coating.
  • the working principle of the temperature adjusting device with intelligent dehumidification function and air purifying function is: when working, the fan is turned on, the ultraviolet lamp tube 21 is opened, and the evaporator 6, the first radiator 7, the second radiator 8 and The nano-titanium dioxide on the surface of the collecting tank 14 acts as a catalyst to remove harmful substances such as formaldehyde in the air and kill a variety of harmful bacteria.
  • the temperature regulating device with intelligent dehumidification function and air purification function includes dehumidification heating and dehumidification and cooling.
  • the dehumidifying heating working state is: when the dehumidifying heating work is performed, the temperature adjusting device having the intelligent dehumidifying function and the air purifying function is placed in a room requiring dehumidification, and the compressor 5 and the fan 9 of the heat pump device 1 are controlled by the controller 3
  • the controller 3 is used to control the solenoid valve 9 to be turned on, so that the first heat sink 7 and the second heat sink 8 dissipate heat to cool the evaporator 6; the humid air is drawn in by the air inlet 20 of the outer casing 4, and the humid air is drawn.
  • the first radiator 7 it is heated and evaporated by the first radiator 7, cooled by the sump 14 to absorb moisture, and then condensed and dehumidified by the evaporator 6, and condensed by the evaporator 6.
  • the wet air is further heated by the second radiator 8, and is absorbed by moisture, condensed and dehumidified, and the heated air is discharged from the exhaust port 19; the water collected by the sump 14 and the evaporator 6 is collected by the drain pipe 15 to the water tank.
  • the dehumidification and cooling working state is: when the dehumidification and cooling work is performed, the controller 3 is used to control the operation of the compressor 5 and the fan 9, and the controller 3 is used to control the electromagnetic
  • the valve 9 is turned off, the solenoid valve 9 is not turned on, so that the second radiator 8 does not enter the refrigerant; the first radiator 7 of the heat pump device 1 is controlled to dissipate heat, and the evaporator 6 is controlled to cool; the humid air is fed by the casing 4
  • the air port 20 is drawn in, and the humid air is first heated and evaporated by the first heat sink 7, and is cooled by the sump 14 to absorb moisture, and then condensed and dehumidified by the evaporator 6, and the cold air condensed and dehumidified by the evaporator 6 is exhausted by the exhaust port 19
  • the water discharged from the sump 14 and the evaporator 6 is collected into the
  • the temperature adjusting device with the intelligent dehumidifying function and the air purifying function removes the humidifying heating work, and after the humid air enters the air inlet 20, it is heated by the first radiator 7 to become water vapor, and the water vapor is collected by the bottommost layer of the sump 14
  • the venting opening 18 enters, evaporates and flows to the back surface position 21 of the upper sump 14, and is continuously cooled by the back surface position 21 into water drops, and the water drops flow into the groove 16 of the lower sump 14 of the lower layer, and then
  • the drain hole 22 of the groove 16 flows into the sump 14 of the lowermost layer, and flows from the groove 16 of the bottommost sump 14 through the drain pipe 15 to the water receiving tank, and is heated and evaporated by the first radiator 7.
  • the humid air is used to cool the moisture absorbed by the humid air by the sump 14; the humid air after the first dehumidification flows from the vent hole 18 of the uppermost sump 14 to the evaporator 6, and is cooled and condensed into water by the evaporator 6. , into the humid air
  • the second dehumidification is performed; the condensed water is dropped from the evaporator 6 to the lower sump 14, and the condensed water flows into the sump 14 of the lowermost layer through the drain hole 22 of the groove 16 of the sump 11 of the non-final layer.
  • the lowermost layer of the sump 14 is discharged into the water receiving tank through the drainage pipe 15; the humid air passes through the radiator 7, the sump 14 and the evaporator 6 to absorb the water twice, and then enters the second radiator 8, After being heated by the second radiator 8, it is discharged by the exhaust port 19; thus continuously circulating, continuously absorbing moisture that removes indoor air.
  • the humid air enters the air inlet 20, and is heated by the first radiator 7 to become water vapor, and the water vapor is condensed by the bottom layer.
  • the venting opening 18 of the 14 enters, evaporates and flows to the back surface position 21 of the upper sump 14, and is continuously cooled by the back surface position 21 into water drops, and the water drops flow into the groove 16 of the lower sump 14 of the lower layer, and then
  • the drain hole 22 of the groove 16 flows into the sump 14 of the lowermost layer, and flows from the groove 16 of the bottommost sump 14 through the drain pipe 15 to the water receiving tank, and is heated by the first heat sink 7.
  • the humid air is evaporated, and the moisture absorbed by the humid air is cooled by the sump 14; the humid air after the first dehumidification is discharged from the vent hole 18 of the uppermost sump 14 to the evaporator 6, and is cooled and condensed by the evaporator 6.
  • the sump 14 is provided with a plurality of layers, and the bottom of the groove 16 of the lowermost sump 14 is provided with a drainage tube 15 and one end of the drainage tube 15
  • the water is connected to the water tank, and the other end is connected to the groove 16; the bottom of the groove 16 of the sump 14 which is not the lowermost layer is provided with a drainage hole 22, and a space is left between the sump 14, and each layer of the sump 14 is provided.
  • each groove 16 communicates with each other; the vent hole 18 of the sump 14 of the lowest layer faces the back of the groove 16 of the upper sump 14 Position 21; the back surface position 21 of the groove 16 of the upper layer faces the vent hole 18 of the lower boss 17; the wet steam coming out of the vent hole 18 is directly sprayed on the back position 21 of the groove 16; There are a plurality of ports 19, and the exhaust port 19 is provided on the upper end surface 28 of the main body.
  • the air port 20 is provided with a plurality of air inlets 20 provided on the peripheral wall 29 of the outer casing 4; the fan 12 is located below the exhaust port 19, the second radiator 8 is located below the fan 12, and the evaporator 6 is located below the second radiator 8.
  • the sump 14 is located below the evaporator 6, the first radiator 7 is located below the sump 14, the first radiator 7 is located above the air inlet 20, the base of the fan 12, the second radiator 8, the evaporator 6,
  • the sump 14 and the first radiator 7 are fixedly connected to the outer casing 4; the sump 14 is formed of an aluminum alloy plate.
  • the controller 3 is provided with a humidity sensor 24 and a control panel 25, and the control panel 25 is provided with an automatic control switch 26, a cold air output switch 27, and a stop switch 35.
  • the humidity sensor 24 is mounted to the air inlet 20, and the humidity sensor 24 is connected to the controller 3 via a sensing line.
  • the temperature regulating device with intelligent dehumidification function and air purifying function presses the automatic control switch 26 when the dehumidification heating operation is performed, the controller 3 controls the electromagnetic valve 9 to be energized, the electromagnetic valve 9 is turned on, the second radiator 8 has the refrigerant passing, and the second The heat dissipation of the radiator 8 will be heated by the dehumidified air, and the exhaust port 19 discharges the dehumidified heating; when the temperature adjustment device with the intelligent dehumidification function and the air purification function dehumidifies the cooling operation, the cold air output switch 27 is pressed, and the controller 3 controls the electromagnetic
  • the valve 9 is de-energized, the solenoid valve 9 is not conducting, the second radiator 8 does not pass the refrigerant, the second radiator 8 does not dissipate heat, the exhaust port 19 discharges the dehumidified cold air; the evaporator 6 drops to the sump 14 condensate The drain hole 22 of the groove 16 of the uppermost sump 14 and the vent
  • the temperature difference is increased, and the temperature difference between the sump 14 and the humid air heated by the radiator 7 is increased, and the sump 14 cooled by the condensed water is brought into contact with the warmed humid air to cool the heated water vapor into water drops, thereby improving the removal. Wet efficiency.
  • the automatic control switch 26 When the temperature adjustment device with intelligent dehumidification function and air purification function dehumidifies the heating work, the automatic control switch 26 is pressed, and the controller 3 enters the dehumidification heating automatic control working state, when the indoor air humidity reaches the set upper humidity upper limit value, The humidity sensor 24 transmits its humidity signal to the controller 3, and the controller 3 controls the power supply to turn on the compressor 5, the fan 12, and the solenoid valve 9, and dehumidifies with the first radiator 7, the sump 14, and the evaporator 6; The indoor air humidity is continuously decreased. When the humidity of the indoor air is lowered to the set lower humidity limit, the humidity sensor 24 transmits its humidity signal to the controller 3, and the controller 3 cuts off the compressor 5, the fan 12, and the solenoid valve 9. The power supply, the temperature control device with intelligent dehumidification function and air purification function works to stop dehumidification heating.
  • the controller 3 When the temperature adjustment device with intelligent dehumidification function and air purification function is used for dehumidification and cooling, press the cold air output switch 27, and the controller 3 enters the dehumidification and cooling automatic control working state, when the indoor air humidity reaches the set humidity upper limit value.
  • the humidity sensor 24 transmits its humidity signal to the controller 3, the controller 3 controls the power supply to turn on the compressor 5 and the fan 12, cuts off the power of the solenoid valve 9, and utilizes the first radiator 7, the sump 14, and the evaporator.
  • the humidity sensor 24 transmits its humidity signal to the controller 3, and the controller 3 cuts off the compressor 5 and the fan 12
  • the power supply, the temperature control device with intelligent dehumidification function and air purification function works to stop dehumidification and cooling.
  • the humid air entering the radiator 7 is heated to become water vapor, and the water vapor enters from the plurality of vent holes 18 of the sump 14 of each layer, and the water vapor is heated.
  • the back surface position 21 of each layer of the sump 14 cooled by the condensed water is sufficiently contacted with water vapor to cool the steam into water; and the evaporator 6 is dropped to the lower sump
  • the condensed water of 14 flows from the drain hole 22 of each layer of the sump 14 above the last sump 14 to the sump 14 of the last layer, and the humid air heated by the first radiator 7 passes through the sump 14 of each layer.
  • the condensed water flows through the drain hole 22 to be absorbed into water, and is discharged into the water receiving tank through the drain pipe 15, thereby further improving the efficiency of dehumidification;
  • the fan 12 is in operation, the flow of air in the outer casing 4 is from the air inlet. 20 points to the exhaust port 19;
  • the temperature regulating device with the intelligent dehumidification function and the air purifying function works, the heat absorbed by the evaporator 6 is converted into the first radiator 7, and the first radiator 7 is used to heat and evaporate the moisture. Gas.
  • the heat pump device 1 includes a reservoir 30 and a gas-liquid separator 31; the expansion valve 11 is connected to the reservoir 30, the reservoir 30 is connected to the first radiator 7 and the second radiator 8, and the compressor 5 and the gas-liquid separator 31 are connected.
  • the gas-liquid separator 31 is connected to the evaporator 6;
  • the outer casing 4 is provided with a control chamber 32, the compressor 5, the gas-liquid separator 31, the reservoir 30 and the expansion valve 11 are disposed in the control chamber 32;
  • the control chamber 32 is located Below the port 20, the control chamber 32 is provided with a partition 33 separating the control chamber 32 from the air inlet 20;
  • the water tank is disposed outside the outer casing 4, and the outer casing 4 is provided with a hook 34, and the water tank is hung on the hook 34.

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Abstract

一种具有智能除湿功能和空气净化功能的温度调节装置,包括导流体(41),导流体(41)下部连接有主机(42),导流体(41)与主机(42)的连接处设置有引流风道,主机(42)包括有热泵装置(1)、集水装置(2)、控制器(3)以及外壳(4);热泵装置(1)包括有压缩机(5)、蒸发器(6)、第一散热器(7)、第二散热器(8)、电磁阀(9)、单向阀(10)、膨胀阀(11)以及风机(12),集水装置(2)包括有集水槽(14),集水槽(14)设有凹槽(16)以及凸台(17),凸台(17)内部中空,设置有紫外线灯管(21)。

Description

一种具有智能除湿功能和空气净化功能的温度调节装置 技术领域
本发明涉及一种温度调节装置,特别涉及一种具有智能除湿功能和空气净化功能的温度调节装置。
背景技术
目前,因为室外空气污染的问题,导致人们开窗换气的时间越来越少,导致室内有害细菌滋生、室内空气不流通以及室内潮湿等问题,直接危害到人们的身体健康和生活质量。普通的除湿机和空气净化机功能单一,效果不好,满足不了人们的需求。
发明内容
本发明的目的是克服现有技术的不足,提供一种具有智能除湿功能和空气净化功能的温度调节装置,满足室内使用的多种需求。
本发明的所采取的技术方案是:具有智能除湿功能和空气净化功能的温度调节装置,包括导流体41,导流体41下部连接有主机42,导流体41与主机42的连接处设置有引流风道,主机42包括,包括有热泵装置1、集水装置2、控制器3以及外壳4,控制器3连接有控制面板25,控制面板25设有控制开关;热泵装置1包括有压缩机5、蒸发器6、第一散热器7、第二散热器8、电磁阀9、单向阀10、膨胀阀11以及风机12,压缩机5的冷媒输出接头13与第一散热器7以及电磁阀9连接,第一散热器7与膨胀阀11连接,膨胀阀11连接与蒸发器6连接,蒸发器6与压缩机5连接,电磁阀9与第二散热器8连接,第二散热器8与单向阀10连接,单向阀10与膨胀阀11连接;集水装置2包括有集水槽14,集水槽14设有凹槽16、凸台17以及引流管15,引流管15一端连接至净化装置外侧另一端与凹槽16,凸台17内部中空,设置有紫外线灯管21,凸台17设有透气孔18;外壳4设有排气口19以及进气口20,风机12、蒸发器6第一散热器7以及第二散热器8设于排气口19与进气口20之间,透气孔18与排气口19以及进气口20连通,集水槽14位于蒸发器6与第一散热器7 之间,第二散热器8位于风机12与蒸发器6之间;控制器3通过控制线与压缩机5以及风机12连接;集水槽14设有多层,最下面一层集水槽14的凹槽16的槽底设有引流管15,引流管15一端与接水箱连通,另一端与凹槽16连通;非最下面一层的集水槽14的凹槽16的槽底设有排水孔22,集水槽14之间留有空间,每层集水槽14设有多个凹槽16以及多个凸台17;控制器3设有湿度传感器24以及控制面板25,控制面板25设有自动控制开关26、冷气输出开关27以及停止开关35。所述导流体41为环形。
述排气口19为环形网状结构,所述排气口19为多个。
所述排气口19上设置有空气滤棉。
所述导流体41用螺栓连接在主体42上,所述排气口19上的空气滤棉为可拆卸结构。
所述蒸发器6、第一散热器7及第二散热器8表面涂有纳米二氧化钛涂层。
所述集水槽14表面涂有纳米二氧化钛涂层。
其工作原理是:具有智能除湿功能和空气净化功能的温度调节装置包括有除湿供暖以及除湿供冷两种工作状态;除湿供暖工作状态是:除湿供暖工作时,将具有智能除湿功能和空气净化功能的温度调节装置置于需要除湿的室内,利用控制器3控制热泵装置1的压缩机5以及风机9运行,利用控制器3控制电磁阀9导通,使第一散热器7以及第二散热器8散发热量,使蒸发器6制冷;潮湿的空气由外壳4的进气口20抽入,潮湿的空气先经过第一散热器7加热蒸发,由集水槽14冷却吸收水分,然后经过蒸发器6冷凝除湿,经过蒸发器6冷凝除湿后的空气再经过第二散热器8升温,被吸收水分、冷凝除湿以及升温后的空气由排气口19排出;集水槽14以及蒸发器6吸收的水通过引流管被收集到接水箱内,从而到达提高除湿效率的目的,以及向室内提供干燥的暖气;除湿供冷工作状态是:除湿供冷工作时,利用控制器3控制压缩机5以及风机9运行,利用控制器3控制电磁阀9关断,电磁阀9不导通,使第二散热器8没有冷媒进入;控制热泵装置1的第一散热器7散发热量,以及控制蒸发器6制冷;潮湿的空气由外壳4的进气口20抽入,潮湿的空气先经过第一散热器7加热蒸发,由集水槽14冷却吸收水分,然后经过蒸发器6冷凝除湿,经过蒸发器6冷凝除湿后的冷空气由排气口19排出;集水槽14以及蒸发器6吸 收的水通过引流管被收集到接水箱内,从而到达提高除湿效率的目的,以及向室内提供干燥的冷气。
所述的具有智能除湿功能和空气净化功能的温度调节装置除湿供暖工作时,潮湿的空气由进气口20进入后,经过第一散热器7加热成为水蒸气,水蒸气由最底下一层的集水槽14的透气孔18进入,蒸发流动到上一层集水槽14的背面位置上,被其背面位置不断冷却成水珠,水珠流到下面一层集水槽14的凹槽16内,再由其凹槽16的排水孔22流到最下面一层的集水槽14内,由最底下一层的集水槽14的凹槽16通过引流管流到接水箱,利用第一散热器7加热蒸发潮湿空气,利用集水槽14冷却吸收潮湿空气的水分;经过第一次除湿后的潮湿空气,由最上面一层集水槽14的透气孔18流到蒸发器6,被蒸发器6降温冷凝成水,对潮湿空气进行第二次除湿;冷凝水由蒸发器6滴下到下面的集水槽14,冷凝水经非最后一层各层的集水槽11的凹槽16的排水孔22流入最下一层的集水槽14内,再由最下面一层集水槽14通过引流管排到接水箱内;潮湿的空气经过散热器7、集水槽14以及蒸发器6两次吸收水分后,进入到第二散热器8,经第二散热器8加热后由排气口19排出;如此不断循环,不断吸收去除室内空气的湿气。
所述的具有智能除湿功能和空气净化功能的温度调节装置除湿供冷工作时,潮湿的空气由进气口20进入后,经过第一散热器7加热成为水蒸气,水蒸气由最底下一层的集水槽14的透气孔18进入,蒸发流动到上一层集水槽14的背面位置上,被其背面位置不断冷却成水珠,水珠流到下面一层集水槽14的凹槽16内,再由其凹槽16的排水孔22流到最下面一层的集水槽14内,由最底下一层的集水槽14的凹槽16通过引流管15流到接水箱,利用第一散热器7加热蒸发潮湿空气,利用集水槽14冷却吸收潮湿空气的水分;经过第一次除湿后的潮湿空气,由最上面一层集水槽14的透气孔18排出到蒸发器6,被蒸发器6降温冷凝成水,对潮湿空气进行第二次除湿;冷凝水由蒸发器6滴下到下面的集水槽14,冷凝水经非最后一层各层的集水槽11的凹槽16的排水孔22流入最下一层的集水槽14内,再由最下面一层集水槽14通过引流管15排到接水箱内;潮湿的空气经过散热器7、集水槽14以及蒸发器6两次吸收水分后,由排气口19排出除湿后的冷空气;如此不断循环,不断吸收去除室内空气的湿气。
所述的具有智能除湿功能和空气净化功能的温度调节装置除湿供暖工作时,按下自动控制开关26,控制器3控制电磁阀9通电,电磁阀9导通,第二散热器8有冷媒通过,第二散热器8散热将通过除湿空气加热,排气口19排出除湿后的暖气;具有智能除湿功能和空气净化功能的温度调节装置除湿供冷工作时,按下冷气输出开关27,控制器3控制电磁阀9断电,电磁阀9不导通,第二散热器8没有冷媒通过,第二散热器8不散热,排气口19排出除湿后的冷空气。
所述的蒸发器6滴下到集水槽14冷凝水,由最上一层集水槽14其凹槽16的排水孔22以及透气孔18流入下一层的集水槽14,最后流到最后一层的集水槽14,利用冷凝水将各层的集水槽14降温,增加集水槽14与被散热器7升温的潮湿空气的温差,利用被冷凝水降温的各层集水槽14与升温的潮湿空气接触,使升温的水蒸汽冷却成水珠,提高除湿的效率。
所述的具有智能除湿功能和空气净化功能的温度调节装置除湿供暖工作时,按下自动控制开关26,控制器3进入除湿供暖自动控制工作状态,当室内的空气湿度达到设定的湿度上限值时,湿度传感器24将其湿度信号传输给控制器3,控制器3控制接通压缩机5、风机12以及电磁阀9的电源,利用第一散热器7、集水槽14以及蒸发器6除湿;随着室内的空气湿度不断降低,当室内空气的湿度降低设定的湿度下限值时,湿度传感器24将其湿度信号传输给控制器3,控制器3切断压缩机5、风机12以及电磁阀9的电源,具有智能除湿功能和空气净化功能的温度调节装置工作停止除湿供暖。
所述的具有智能除湿功能和空气净化功能的温度调节装置除湿供冷工作时,按下冷气输出开关27,控制器3进入除湿供冷自动控制工作状态,当室内的空气湿度达到设定的湿度上限值时,湿度传感器24将其湿度信号传输给控制器3,控制器3控制接通压缩机5以及风机12的电源,切断电磁阀9的电源,利用第一散热器7、集水槽14以及蒸发器6除湿;随着室内的空气湿度不断降低,当室内空气的湿度降低设定的湿度下限值时,湿度传感器24将其湿度信号传输给控制器3,控制器3切断压缩机5、风机12的电源,具有智能除湿功能和空气净化功能的温度调节装置工作停止除湿供冷。
所述的具有智能除湿功能和空气净化功能的温度调节装置工作时,进 入散热器7的湿空气被加热成为水蒸气,水蒸气由各层的集水槽14的多个透气孔18进入,被升温的水蒸气直接蒸发到各层的集水槽14的背面位置,利用被冷凝水降温的各层集水槽14的背面位置与水蒸气充分接触,使蒸汽冷却为水。
所述的由蒸发器6滴下到下面集水槽14的冷凝水,由最后一层集水槽14上面各层集水槽14的排水孔22流到最后一层的集水槽14中,被第一散热器7加热的湿空气经过各层集水槽14的排水孔22时,被流经排水孔22冷凝水吸收变成水,通过引流管15排到接水箱中,进一步提高除湿的效率。
所述的风机12运行时,外壳4内空气的流向是由进气口20指向排气口19;具有智能除湿功能和空气净化功能的温度调节装置工作时,利用蒸发器6吸收空气的热量转化到第一散热器7,利用第一散热器7加热蒸发潮湿空气。
本发明的有益效果是:具有智能除湿功能和空气净化功能的温度调节装置设有热泵装置以及集水装置,开启后,装置内的紫外线灯管随之打开,涂与第一散热器、第二散热器、蒸发器及集水槽表面的纳米二氧化钛起到催化作用,能达到去除空气中的甲醛,灭杀多种有害细菌的效果,在净化的过程中,装置内设有热泵装置以及集水装置,利用第一散热器、第二散热器以及集水槽进行第一次除湿,再利用蒸发器进行第二次除湿,利用蒸发器的冷凝水将集水槽降温,以及利用蒸发器的冷凝水吸收蒸汽,把蒸汽变成水通过引流管15排到接水箱,增强了除湿效率;同时,除湿后的空气还能选择为加热以及制冷两种方式。将室内空气净化并除湿后再吹出,在使用的同时对整个室内的空气起到净化并除湿的作用。
附图说明
图1是具有智能除湿功能和空气净化功能的温度调节装置的结构示意图。
图2是图1中A处引流风道的放大示意图
具体实施方式
下面结合附图与具体实施例对本发明进行进一步的说明:
图1所示的具有智能除湿功能和空气净化功能的温度调节装置的结构示意图,具有智能除湿功能和空气净化功能的温度调节装置,包括导流体41,导流体41下部连接有主机42,导流体41与主机42的连接处设置有引流风道,主机42包括,包括有热泵装置1、集水装置2、控制器3以及外壳4,控制器3连接有控制面板25,控制面板25设有控制开关;热泵装置1包括有压缩机5、蒸发器6、第一散热器7、第二散热器8、电磁阀9、单向阀10、膨胀阀11以及风机12,压缩机5的冷媒输出接头13与第一散热器7以及电磁阀9连接,第一散热器7与膨胀阀11连接,膨胀阀11连接与蒸发器6连接,蒸发器6与压缩机5连接,电磁阀9与第二散热器8连接,第二散热器8与单向阀10连接,单向阀10与膨胀阀11连接;集水装置2包括有集水槽14,集水槽14设有凹槽16、凸台17以及引流管15,引流管15一端连接至净化装置外侧另一端与凹槽16,凸台17内部中空,设置有紫外线灯管21,凸台17设有透气孔18;外壳4设有排气口19以及进气口20,风机12、蒸发器6第一散热器7以及第二散热器8设于排气口19与进气口20之间,透气孔18与排气口19以及进气口20连通,集水槽14位于蒸发器6与第一散热器7之间,第二散热器8位于风机12与蒸发器6之间;控制器3通过控制线与压缩机5以及风机12连接;集水槽14设有多层,最下面一层集水槽14的凹槽16的槽底设有引流管15,引流管15一端与接水箱连通,另一端与凹槽16连通;非最下面一层的集水槽14的凹槽16的槽底设有排水孔22,集水槽14之间留有空间,每层集水槽14设有多个凹槽16以及多个凸台17;控制器3设有湿度传感器24以及控制面板25,控制面板25设有自动控制开关26、冷气输出开关27以及停止开关35。导流体41为环形。排气口19为环形网状结构,排气口19为多个。排气口19上设置有空气滤棉。导流体41用螺栓连接在主体42上,排气口19上的空气滤棉为可拆卸结构。净化除湿后的空气由排气口19向上排出,引流风道处设置与出风气流相平行的平行导风面和与出风气流成一定角度的斜向导风面43,通过该平行导风面44的作用其可不改变气流方向,而通过斜向导风面43可将出风口挤出的部份气流可改变原有方向并斜向导流,由此可提供向上扩散的气流,从而拉动侧面和后面的气流一起向前运行。蒸发器6、第一散热器7及第二散热器8表面涂有纳米二氧化钛涂层集水槽14表面也涂有纳米二氧化钛涂层。
具有智能除湿功能和空气净化功能的温度调节装置的工作原理是:工作时,将风扇开启,紫外线灯管21随之打开,涂与蒸发器6、第一散热器7、第二散热器8及集水槽14表面的纳米二氧化钛起到催化作用,去除空气中的甲醛等有害物质,灭杀多种有害细菌,具有智能除湿功能和空气净化功能的温度调节装置包括有除湿供暖以及除湿供冷两种工作状态;除湿供暖工作状态是:除湿供暖工作时,将具有智能除湿功能和空气净化功能的温度调节装置置于需要除湿的室内,利用控制器3控制热泵装置1的压缩机5以及风机9运行,利用控制器3控制电磁阀9导通,使第一散热器7以及第二散热器8散发热量,使蒸发器6制冷;潮湿的空气由外壳4的进气口20抽入,潮湿的空气先经过第一散热器7加热蒸发,由集水槽14冷却吸收水分,然后经过蒸发器6冷凝除湿,经过蒸发器6冷凝除湿后的空气再经过第二散热器8升温,被吸收水分、冷凝除湿以及升温后的空气由排气口19排出;集水槽14以及蒸发器6吸收的水通过引流管15被收集到接水箱内,从而到达提高除湿效率的目的,以及向室内提供干燥的暖气;除湿供冷工作状态是:除湿供冷工作时,利用控制器3控制压缩机5以及风机9运行,利用控制器3控制电磁阀9关断,电磁阀9不导通,使第二散热器8没有冷媒进入;控制热泵装置1的第一散热器7散发热量,以及控制蒸发器6制冷;潮湿的空气由外壳4的进气口20抽入,潮湿的空气先经过第一散热器7加热蒸发,由集水槽14冷却吸收水分,然后经过蒸发器6冷凝除湿,经过蒸发器6冷凝除湿后的冷空气由排气口19排出;集水槽14以及蒸发器6吸收的水通过引流管15被收集到接水箱内,从而到达提高除湿效率的目的,以及向室内提供干燥的冷气。
具有智能除湿功能和空气净化功能的温度调节装置除湿供暖工作时,潮湿的空气由进气口20进入后,经过第一散热器7加热成为水蒸气,水蒸气由最底下一层的集水槽14的透气孔18进入,蒸发流动到上一层集水槽14的背面位置21上,被其背面位置21不断冷却成水珠,水珠流到下面一层集水槽14的凹槽16内,再由其凹槽16的排水孔22流到最下面一层的集水槽14内,由最底下一层的集水槽14的凹槽16通过引流管15流到接水箱,利用第一散热器7加热蒸发潮湿空气,利用集水槽14冷却吸收潮湿空气的水分;经过第一次除湿后的潮湿空气,由最上面一层集水槽14的透气孔18流到蒸发器6,被蒸发器6降温冷凝成水,对潮湿空气进 行第二次除湿;冷凝水由蒸发器6滴下到下面的集水槽14,冷凝水经非最后一层各层的集水槽11的凹槽16的排水孔22流入最下一层的集水槽14内,再由最下面一层集水槽14通过引流管15排到接水箱内;潮湿的空气经过散热器7、集水槽14以及蒸发器6两次吸收水分后,进入到第二散热器8,经第二散热器8加热后由排气口19排出;如此不断循环,不断吸收去除室内空气的湿气。
具有智能除湿功能和空气净化功能的温度调节装置除湿供冷工作时,潮湿的空气由进气口20进入后,经过第一散热器7加热成为水蒸气,水蒸气由最底下一层的集水槽14的透气孔18进入,蒸发流动到上一层集水槽14的背面位置21上,被其背面位置21不断冷却成水珠,水珠流到下面一层集水槽14的凹槽16内,再由其凹槽16的排水孔22流到最下面一层的集水槽14内,由最底下一层的集水槽14的凹槽16通过引流管15流到接水箱,利用第一散热器7加热蒸发潮湿空气,利用集水槽14冷却吸收潮湿空气的水分;经过第一次除湿后的潮湿空气,由最上面一层集水槽14的透气孔18排出到蒸发器6,被蒸发器6降温冷凝成水,对潮湿空气进行第二次除湿;冷凝水由蒸发器6滴下到下面的集水槽14,冷凝水经非最后一层各层的集水槽11的凹槽16的排水孔22流入最下一层的集水槽14内,再由最下面一层集水槽14通过引流管15排到接水箱内;潮湿的空气经过散热器7、集水槽14以及蒸发器6两次吸收水分后,由排气口19排出除湿后的冷空气;如此不断循环,不断吸收去除室内空气的湿气。
为了实施提高具有智能除湿功能和空气净化功能的温度调节装置的除湿,集水槽14设有多层,最下面一层集水槽14的凹槽16的槽底设有引流管15,引流管15一端与接水箱连通,另一端与凹槽16连通;非最下面一层的集水槽14的凹槽16的槽底设有排水孔22,集水槽14之间留有空间,每层集水槽14设有多个凹槽16以及多个凸台17,每层的集水槽14的凸台17的透气孔18互相连通,每层非最下面一层集水槽14的凹槽16的排水孔22互相连通;每层的集水槽14的凹槽16设有多个,每个凹槽16相互连通;最低一层的集水槽14的透气孔18,对着上一层集水槽14的凹槽16的背面位置21;上一层的凹槽16的背面位置21对着下一层凸台17的透气孔18;使由透气孔18出来的湿蒸汽直接喷在凹槽16的背面位置21上;排气口19设有多个,排气口19设于主机的上端面28,进 气口20设有多个,进气口20设于外壳4的周壁29;风机12位于排气口19的下面,第二散热器8位于风机12的下面,蒸发器6位于第二散热器8下面,集水槽14位于蒸发器6下面,第一散热器7位于集水槽14下面,第一散热器7位于进气口20的上方;风机12的机座、第二散热器8、蒸发器6、集水槽14以及第一散热器7与外壳4的固定连接;集水槽14由铝合金板构成。
为了实施提高具有智能除湿功能和空气净化功能的温度调节装置的控制功能,控制器3设有湿度传感器24以及控制面板25,控制面板25设有自动控制开关26、冷气输出开关27以及停止开关35,湿度传感器24安装于进气口20,湿度传感器24通过传感线与控制器3连接。
具有智能除湿功能和空气净化功能的温度调节装置除湿供暖工作时,按下自动控制开关26,控制器3控制电磁阀9通电,电磁阀9导通,第二散热器8有冷媒通过,第二散热器8散热将通过除湿空气加热,排气口19排出除湿后的暖气;具有智能除湿功能和空气净化功能的温度调节装置除湿供冷工作时,按下冷气输出开关27,控制器3控制电磁阀9断电,电磁阀9不导通,第二散热器8没有冷媒通过,第二散热器8不散热,排气口19排出除湿后的冷空气;蒸发器6滴下到集水槽14冷凝水,由最上一层集水槽14其凹槽16的排水孔22以及透气孔18流入下一层的集水槽14,最后流到最后一层的集水槽14,利用冷凝水将各层的集水槽14降温,增加集水槽14与被散热器7升温的潮湿空气的温差,利用被冷凝水降温的各层集水槽14与升温的潮湿空气接触,使升温的水蒸汽冷却成水珠,提高除湿的效率。
具有智能除湿功能和空气净化功能的温度调节装置除湿供暖工作时,按下自动控制开关26,控制器3进入除湿供暖自动控制工作状态,当室内的空气湿度达到设定的湿度上限值时,湿度传感器24将其湿度信号传输给控制器3,控制器3控制接通压缩机5、风机12以及电磁阀9的电源,利用第一散热器7、集水槽14以及蒸发器6除湿;随着室内的空气湿度不断降低,当室内空气的湿度降低设定的湿度下限值时,湿度传感器24将其湿度信号传输给控制器3,控制器3切断压缩机5、风机12以及电磁阀9的电源,具有智能除湿功能和空气净化功能的温度调节装置工作停止除湿供暖。
具有智能除湿功能和空气净化功能的温度调节装置除湿供冷工作时,按下冷气输出开关27,控制器3进入除湿供冷自动控制工作状态,当室内的空气湿度达到设定的湿度上限值时,湿度传感器24将其湿度信号传输给控制器3,控制器3控制接通压缩机5以及风机12的电源,切断电磁阀9的电源,利用第一散热器7、集水槽14以及蒸发器6除湿;随着室内的空气湿度不断降低,当室内空气的湿度降低设定的湿度下限值时,湿度传感器24将其湿度信号传输给控制器3,控制器3切断压缩机5、风机12的电源,具有智能除湿功能和空气净化功能的温度调节装置工作停止除湿供冷。
具有智能除湿功能和空气净化功能的温度调节装置工作时,进入散热器7的湿空气被加热成为水蒸气,水蒸气由各层的集水槽14的多个透气孔18进入,被升温的水蒸气直接蒸发到各层的集水槽14的背面位置21,利用被冷凝水降温的各层集水槽14的背面位置21与水蒸气充分接触,使蒸汽冷却为水;由蒸发器6滴下到下面集水槽14的冷凝水,由最后一层集水槽14上面各层集水槽14的排水孔22流到最后一层的集水槽14中,被第一散热器7加热的湿空气经过各层集水槽14的排水孔22时,被流经排水孔22冷凝水吸收变成水,通过引流管15排到接水箱中,进一步提高除湿的效率;风机12运行时,外壳4内空气的流向是由进气口20指向排气口19;具有智能除湿功能和空气净化功能的温度调节装置工作时,利用蒸发器6吸收空气的热量转化到第一散热器7,利用第一散热器7加热蒸发潮湿空气。
热泵装置1包括有储存器30以及气液分离器31;膨胀阀11与储存器30连接,储存器30与第一散热器7以及第二散热器8连接;压缩机5与气液分离器31连接,气液分离器31与蒸发器6连接;外壳4设有控制室32,压缩机5、气液分离器31、储存器30以及膨胀阀11设于控制室32内;控制室32位于进气口20的下方,控制室32设有隔板33,将控制室32与进气口20隔开;接水箱设于外壳4外面,外壳4设有挂钩34,接水箱挂在挂钩34上。

Claims (10)

  1. 一种具有智能除湿功能和空气净化功能的温度调节装置,其特征在于:包括导流体(41),导流体(41)下部连接有主机(42),导流体(41)与主机(42)的连接处设置有引流风道,主机(42)包括,包括有热泵装置(1)、集水装置(2)、控制器(3)以及外壳(4),控制器(3)连接有控制面板(25),控制面板(25)设有控制开关;热泵装置(1)包括有压缩机(5)、蒸发器(6)、第一散热器(7)、第二散热器(8)、电磁阀(9)、单向阀(10)、膨胀阀(11)以及风机(12),压缩机(5)的冷媒输出接头(13)与第一散热器(7)以及电磁阀(9)连接,第一散热器(7)与膨胀阀(11)连接,膨胀阀(11)连接与蒸发器(6)连接,蒸发器(6)与压缩机(5)连接,电磁阀(9)与第二散热器(8)连接,第二散热器(8)与单向阀(10)连接,单向阀(10)与膨胀阀(11)连接;集水装置(2)包括有集水槽(14),集水槽(14)设有凹槽(16)、凸台(17)以及引流管(15),引流管(15)一端连接至净化装置外侧另一端与凹槽(16),凸台(17)内部中空,设置有紫外线灯管(21),凸台(17)设有透气孔(18);外壳(4)设有排气口(19)以及进气口(20),风机(12)、蒸发器(6)第一散热器(7)以及第二散热器(8)设于排气口(19)与进气口(20)之间,透气孔(18)与排气口(19)以及进气口(20)连通,集水槽(14)位于蒸发器(6)与第一散热器(7)之间,第二散热器(8)位于风机(12)与蒸发器(6)之间;控制器(3)通过控制线与压缩机(5)以及风机(12)连接;集水槽(14)设有多层,最下面一层集水槽(14)的凹槽(16)的槽底设有引流管(15),引流管(15)一端与接水箱连通,另一端与凹槽(16)连通;非最下面一层的集水槽(14)的凹槽(16)的槽底设有排水孔(22),集水槽(14)之间留有空间,每层集水槽(14)设有多个凹槽(16)以及多个凸台(17);控制器(3)设有湿度传感器(24)以及控制面板(25),控制面板(25)设有自动控制开关(26)、冷气输出开关(27)以及停止开关(35)。
  2. 根据权利要求1所述的一种具有智能除湿功能和空气净化功能的温度调节装置,其特征在于,所述导流体(41)为环形。
  3. 根权利要求1所述的一种具有智能除湿功能和空气净化功能的温度调节装置,其特征在于,所述排气口(19)为环形网状结构,所述排气口(19)为多个。
  4. 根权利要求1所述的一种具有智能除湿功能和空气净化功能的温度调节装置,其特征在于,其特征在于,所述排气口(19)上设置有空气滤棉。
  5. 根据权利要求4所述的一种具有智能除湿和空气净化功能的空气温度调节装置,其特征在于,所述导流体(41)用螺栓连接在主体(42)上,所述排气口(19)上的空气滤棉为可拆卸结构。
  6. 根据权利要求1所述的具有智能除湿和空气净化功能的空气温度调节装置,所述蒸发器(6)、第一散热器(7)及第二散热器(8)表面涂有纳米二氧化钛涂层。
  7. 根据权利要求1所述的具有智能除湿和空气净化功能的空气温度调节装置,所述集水槽(14)表面涂有纳米二氧化钛涂层。
  8. 根据权利要求1-7任一所述的具有智能除湿和空气净化功能的空气温度调节装置,其工作原理是:具有智能除湿功能和空气净化功能的温度调节装置包括有除湿供暖以及除湿供冷两种工作状态;除湿供暖工作状态是:除湿供暖工作时,将具有智能除湿功能和空气净化功能的温度调节装置置于需要除湿的室内,利用控制器(3)控制热泵装置(1)的压缩机(5)以及风机(9)运行,利用控制器(3)控制电磁阀(9)导通,使第一散热器(7)以及第二散热器(8)散发热量,使蒸发器(6)制冷;潮湿的空气由外壳(4)的进气口(20)抽入,潮湿的空气先经过第一散热器(7)加热蒸发,由集水槽(14)冷却吸收水分,然后经过蒸发器(6)冷凝除湿,经过蒸发器(6)冷凝除湿后的空气再经过第二散热器(8)升温,被吸收水分、冷凝除湿以及升温后的空气由排气口(19)排出;集水槽(14)以及蒸发器(6)吸收的水通过引流管(15)被收集到接水箱内,从而到达提高除湿效率的目的,以及向室内提供干燥的暖气;除湿供冷工作状态是:除湿供冷工作时,利用控制器(3)控制压缩机(5)以及风机(9)运行,利用控制器(3)控制电磁阀(9)关断,电磁阀(9)不导通,使第二散热器(8)没有冷媒进入;控制热泵装置(1)的第一散热器(7)散发热量,以及控制蒸发器(6)制冷;潮湿的空气由外壳(4)的进气口(20)抽入,潮湿的空气先经过第一散热器(7)加热蒸发,由集水槽(14)冷却吸收水分,然后经过蒸发器(6)冷凝除湿,经过蒸发器(6)冷凝除湿后的冷空气由排气口(19)排出;集水槽(14)以及蒸发器(6)吸收 的水通过引流管(15)被收集到接水箱内,从而到达提高除湿效率的目的,以及向室内提供干燥的冷气。
  9. 根据权利要求8所述的具有智能除湿功能和空气净化功能的温度调节装置,其特征在于:所述的具有智能除湿功能和空气净化功能的温度调节装置除湿供暖工作时,潮湿的空气由进气口(20)进入后,经过第一散热器(7)加热成为水蒸气,水蒸气由最底下一层的集水槽(14)的透气孔(18)进入,蒸发流动到上一层集水槽(14)的背面位置上,被其背面位置不断冷却成水珠,水珠流到下面一层集水槽(14)的凹槽(16)内,再由其凹槽(16)的排水孔(22)流到最下面一层的集水槽(14)内,由最底下一层的集水槽(14)的凹槽(16)通过引流管(15)流到接水箱,利用第一散热器(7)加热蒸发潮湿空气,利用集水槽(14)冷却吸收潮湿空气的水分;经过第一次除湿后的潮湿空气,由最上面一层集水槽(14)的透气孔(18)流到蒸发器(6),被蒸发器(6)降温冷凝成水,对潮湿空气进行第二次除湿;冷凝水由蒸发器(6)滴下到下面的集水槽(14),冷凝水经非最后一层各层的集水槽(11)的凹槽(16)的排水孔(22)流入最下一层的集水槽(14)内,再由最下面一层集水槽(14)通过引流管(15)排到接水箱内;潮湿的空气经过散热器(7)、集水槽(14)以及蒸发器(6)两次吸收水分后,进入到第二散热器(8),经第二散热器(8)加热后由排气口(19)排出;如此不断循环,不断吸收去除室内空气的湿气。
  10. 根据权利要求8所述的具有智能除湿功能和空气净化功能的温度调节装置,其特征在于:所述的具有智能除湿功能和空气净化功能的温度调节装置除湿供冷工作时,潮湿的空气由进气口(20)进入后,经过第一散热器(7)加热成为水蒸气,水蒸气由最底下一层的集水槽(14)的透气孔(18)进入,蒸发流动到上一层集水槽(14)的背面位置上,被其背面位置不断冷却成水珠,水珠流到下面一层集水槽(14)的凹槽(16)内,再由其凹槽(16)的排水孔(22)流到最下面一层的集水槽(14)内,由最底下一层的集水槽(14)的凹槽(16)通过引流管(15)流到接水箱,利用第一散热器(7)加热蒸发潮湿空气,利用集水槽(14)冷却吸收潮湿空气的水分;经过第一次除湿后的潮湿空气,由最上面一层集水槽(14)的透气孔(18)排出到蒸发器(6),被蒸发器(6)降温冷凝成水,对潮 湿空气进行第二次除湿;冷凝水由蒸发器(6)滴下到下面的集水槽(14),冷凝水经非最后一层各层的集水槽(11)的凹槽(16)的排水孔(22)流入最下一层的集水槽(14)内,再由最下面一层集水槽(14)通过引流管(15)排到接水箱内;潮湿的空气经过散热器(7)、集水槽(14)以及蒸发器(6)两次吸收水分后,由排气口(19)排出除湿后的冷空气;如此不断循环,不断吸收去除室内空气的湿气。
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