CN2758650Y - Self-overlay air source heat pump water heater - Google Patents
Self-overlay air source heat pump water heater Download PDFInfo
- Publication number
- CN2758650Y CN2758650Y CN 200420103167 CN200420103167U CN2758650Y CN 2758650 Y CN2758650 Y CN 2758650Y CN 200420103167 CN200420103167 CN 200420103167 CN 200420103167 U CN200420103167 U CN 200420103167U CN 2758650 Y CN2758650 Y CN 2758650Y
- Authority
- CN
- China
- Prior art keywords
- condenser
- outlet
- self
- choke valve
- heat pump
- Prior art date
- Legal status (The legal status 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 status listed.)
- Expired - Fee Related
Links
Images
Landscapes
- Heat-Pump Type And Storage Water Heaters (AREA)
Abstract
The utility model relates to a self-overlay type air-source heat-pump water heater which comprises a compressor, a condenser, a water storage tank, a gas-liquid separator, an evaporating condenser, a heat regenerator, an evaporator, a fan, a defrosting heater, two throttle valves, seven temperature sensors, four controllers and two electric motors, wherein the compressor, the condenser, the evaporating condenser, the heat regenerator, the evaporator and the throttle valves are connected by refrigerant pipelines and form a self-overlay type air-source heat pump circulation, and the condenser is installed in the water storage tank. The heat of the utility model is supplied by an air source, water in the storage water tank is heated by the heat discharged out of the condenser through the circulation of refrigerant, the water storage tank adopts heat-insulating material for thermal insulation, and a gas-pressure balancing pipe is installed on the top of the water storage tank. Since the utility model adopts the self-overlay type heat pump circulation, the water heater can work normally under the condition of low ambient air temperature, heat can be supplied in any kind of weather and the adaptability all the year around is good. The utility model has the advantages of simple structure, convenient installation, etc., and can be widely used for supplying hot water for people's production and lives.
Description
Technical field
The utility model belongs to technical field of water heaters, relates in particular to a kind of self-folding type air source heat pump water heater.
Background technology
One of important symbol that the domestic hot-water become modernized high-quality life is provided the whole year, traditional electric heater all is directly to consume expensive high-quality electric energy at present, the thermal efficiency can not surpass 100%, and there are potential safety hazards such as electric leakage easily, do not meet the requirement of the energy policy and the strategy of sustainable development of China.Traditional solar water heater mainly heats water by electrical heating at sunshines such as dark clouds sleety weather and winters when not enough, and the big and poor stability of power consumption exists the heat capacity harmony poor in addition, installs shortcomings such as annual utilization rate is low.The single cycle air source hot pump water heater of present single working medium is when ambient air temperature is low, because compression ratio is big, and can not efficiency operation even can not work.
The utility model content
The purpose of this utility model is to provide a kind of self-folding type air source heat pump water heater at the deficiency of prior art existence.The utility model utilizes the self-folding type air source heat pump circulation can realize high compression ratio, the working environment of the big temperature difference, can when being lower than 0 ℃, ambient air temperature still can normally provide 65 ℃ hot water, improved system architecture, make it to have simple in structure, low price such as installs and easy to operate at advantage, and is easy to utilize.
For achieving the above object, the utility model adopts following technical scheme:
Self-folding type air source heat pump water heater of the present utility model comprises compressor, condenser, storage tank, gas-liquid separator, evaporator-condenser, regenerator, evaporimeter, fan, Defrost heater, two choke valves, seven temperature sensors, four controllers and two motor, the exhaust outlet of described compressor is connected with the air inlet of condenser, the outlet of condenser is connected with the import of gas-liquid separator, the liquid outlet of gas-liquid separator is connected with first choke valve, the outlet of first choke valve, the outlet of the cryogen of regenerator, interconnect between the import of evaporator-condenser cryogen and a node arranged, the outlet of evaporator-condenser cryogen is connected with compressor, the import of the cryogen of regenerator is connected with the outlet of evaporimeter, the import of evaporimeter is connected with the outlet of second choke valve, the import of second choke valve is connected with the outlet of the high temperature fluid of regenerator, the import of the high temperature fluid of regenerator is connected with the outlet of evaporator-condenser high temperature fluid, the import of evaporator-condenser high temperature fluid is connected with the gas outlet of gas-liquid separator, forms the close passage of cold-producing medium self-folding type heat pump cycle; Described compressor also links to each other with first motor; Condenser is installed in the storage tank, and the temperature sensor of storage tank delivery port is connected to first controller, and first controller links to each other with first motor, with the start-stop of control heat pump; Second and third temperature sensor is connected to second controller, is in the outlet of evaporator-condenser cryogen and the exit of first choke valve respectively, and described second controller links to each other with first choke valve, to regulate the aperture of first choke valve; Fourth, fifth temperature sensor is connected to the 3rd controller, is in the export and import place of evaporimeter respectively, and described the 3rd controller links to each other with second choke valve, to regulate the aperture of second choke valve; Six, seven temperature sensors are connected to the 4th controller, be in the place, centre position of the evaporimeter left and right sides respectively, described the 4th controller also links to each other with Defrost heater, second motor, and Defrost heater defrosts according to the automatic start-stop of evaporator air side frosting thickness; Described fan links to each other with second motor, and fan is in Defrost heater right opposite place, is used for strengthening the heat convection of evaporator air side.
Described storage tank adopts the insulation material insulation, and barometric pipe is equipped with at the top.
Connection in the utility model between each parts of the close passage of formed cold-producing medium self-folding type heat pump cycle adopts pipeline to connect, pipe outer wrapping thermal-insulating waterproof material.
Compressor is the engine of whole cascade type heat pump circulation, plays the effect of refrigerant conveying, makes condenser, evaporator-condenser and evaporimeter form certain pressure reduction; Condenser is the heat output device, and liberated heat is used for heat hot water, cold-producing medium condensation therein and emit heat, and most of higher boiling working medium becomes liquid with the condensation of refrigerant of a small amount of low boiling working fluid; Storage tank is the container of stored hot water; Gas-liquid separator separates condensed refrigerant liquid with uncooled refrigerant vapour; Second choke valve freezes refrigerant liquid throttling step-down; The most of high boiling and a small amount of lower boiling cold-producing medium sweat cooling of evaporator-condenser utilization absorbs the condensation heat of most of low boiling working fluid and a small amount of higher boiling working medium cold-producing medium, with most of low boiling working fluid and on a small quantity the refrigerant vapour of higher boiling working medium be condensed into liquid; Regenerator is that utilization is further cold excessively with the refrigerant liquid of most of low boiling working fluid and a small amount of higher boiling working medium from the low-temperature refrigerant steam that evaporimeter comes out; Fan is used for strengthening evaporator air side heat convection; Defrost heater defrosts according to the automatic start-stop of evaporator air side frosting thickness.
The utility model connects compressor, condenser, evaporator-condenser, regenerator, evaporimeter, choke valve with pipeline, form the self-folding type air source heat pump circulation, mixed working fluid separates through a constituent element in cyclic process, making has the mobile at the same time and transmission energy of two kinds of mixed working fluids in the whole circulation, feature with overlapping heat pump cycle, its separation process are equilibrium separation process.
The utility model compared with prior art has following beneficial effect:
Utilize the self-folding type air source heat pump circulation can realize high compression ratio, the working environment of the big temperature difference, can when being lower than 0 ℃, ambient air temperature still can normally provide 65 ℃ hot water, improved system architecture, make it to have simple in structure, low price is installed and advantage such as easy to operate, and is easy to utilize.
Description of drawings
Fig. 1 is the structural representation of self-folding type air source heat pump water heater of the present utility model.
Among the figure: second choke valve 10-of 1-compressor 2-condenser 3-storage tank 4-gas-liquid separator 5-evaporator-condenser 6-regenerator 7-first choke valve 8-evaporimeter 9-fan 11- Defrost heater 12,13,14,15,16,17 and 18 is respectively first, second, third, fourth, the 5th, the 6th, the 7th temperature sensor 19,20,21 and 22 and is respectively first, second, third, fourth controller 23 and 24 first, second motor respectively
The specific embodiment
In order to understand the utility model better, the utility model is done to describe further below in conjunction with accompanying drawing.
As shown in Figure 1, self-folding type air source heat pump water heater of the present utility model comprises compressor 1, condenser 2, storage tank 3, gas-liquid separator 4, evaporator-condenser 5, regenerator 6, evaporimeter 8, fan 10, Defrost heater 11, first choke valve 7 and second choke valve 9, first, second, the 3rd, the 4th, the 5th, the 6th, the 7th temperature sensor is respectively 12,13,14,15,16,17 and 18, first, second, the 3rd, the 4th controller is respectively 19,20,21 and 22, first, second motor is respectively 23 and 24, the exhaust outlet of described compressor 1 is connected with the air inlet of condenser 2, the outlet of condenser 2 is connected with the import of gas-liquid separator 4, the liquid outlet of gas-liquid separator 4 is connected with first choke valve 7, the outlet of first choke valve 7, the outlet of the cryogen of regenerator 6, interconnect between the import of evaporator-condenser 5 cryogens and a node arranged, the outlet of evaporator-condenser 5 cryogens is connected with compressor 1, the import of the cryogen of regenerator 6 is connected with the outlet of evaporimeter 8, the import of evaporimeter 8 is connected with the outlet of second choke valve 9, the import of second choke valve 9 is connected with the outlet of the high temperature fluid of regenerator 6, the import of the high temperature fluid of regenerator 6 is connected with the outlet of evaporator-condenser 5 high temperature fluids, the import of evaporator-condenser 5 high temperature fluids is connected with the gas outlet of gas-liquid separator 4, forms the close passage of cold-producing medium self-folding type heat pump cycle; Described compressor 1 also links to each other with first motor 23; Condenser 2 is installed in the storage tank 3, and the temperature sensor 12 of storage tank 3 delivery ports is connected to first controller 19, and first controller 19 links to each other with first motor 23, with the start-stop of control heat pump; Second temperature sensor 13, the 3rd temperature sensor 14 are connected to second controller 20, be in the outlet of evaporator-condenser 5 cryogens and the exit of first choke valve 7 respectively, described second controller 20 links to each other with first choke valve 7, to regulate the aperture of first choke valve 7; The 4th temperature sensor 15, the 5th temperature sensor 16 are connected to the 3rd controller 21, are in the export and import place of evaporimeter 8 respectively, and described the 3rd controller 21 links to each other with second choke valve 9, to regulate the aperture of second choke valve 9; The 6th temperature sensor 17, the 7th temperature sensor 18 are connected to the 4th controller 22, be in the place, centre position of evaporimeter 8 left and right sides respectively, described the 4th controller 22 also links to each other with Defrost heater 11, second motor 24, with the start-stop of control Defrost heater 11; Described fan 10 links to each other with second motor 24, and fan 10 is in Defrost heater 11 right opposite places, is used for strengthening the heat convection of evaporimeter 8 air side; Defrost heater 11 defrosts according to the automatic start-stop of evaporimeter 8 air side frosting thickness.
Connection between each parts of the close passage of above-mentioned cold-producing medium self-folding type heat pump cycle adopts refrigerant line to connect, pipe outer wrapping thermal-insulating waterproof material.
Mixed working fluid forms the mist of HTHP through after compressor 1 compression, through condenser 2, hot water is heated to target temperature.At this moment, most of high boiling and a small amount of lower boiling working medium is condensed into liquid, through vapour liquid separator 4; Gas partly is that most of low boiling and a small amount of high boiling working medium are condensed into liquid after the working medium secondary cooling from the lower temperature after the throttling of second choke valve 9 in evaporator-condenser 5, pass through regenerator 6 again, the low-temperature refrigerant steam that utilization is come out from evaporimeter 8 is with the cold formation subcooled liquid of the further mistake of refrigerant liquid, subcooled liquid is through second choke valve 9 throttling, form the gas-liquid mixture of low-temp low-pressure, liquid-vapor mixture absorbs the heat of air through evaporimeter 8, become gas after the evaporation, pass through regenerator 6 again, be mixed into evaporator-condenser 5 with working medium from first choke valve 7.And pass through first choke valve 7 from the liquid that gas-liquid separator 4 is separated, decrease temperature and pressure, mix again with from the working medium of regenerator 6, behind the evaporator-condenser 5 most of low boilings of absorption and a small amount of high boiling working medium condensation liberated heat, flash to gas, compressed again machine 1 is compressed into high pressure-temperature gas, finishes a circulation.
The utility model utilizes the self-folding type air source heat pump circulation can realize high compression ratio, the working environment of the big temperature difference, can when being lower than 0 ℃, ambient air temperature still can normally provide 65 ℃ hot water, improved system architecture, make it to have simple in structure, low price such as installs and easy to operate at advantage, and is easy to utilize.
Claims (4)
1. self-folding type air source heat pump water heater, it is characterized in that, comprise compressor, condenser, storage tank, gas-liquid separator, evaporation-condenser, regenerator, evaporimeter, fan, Defrost heater, two choke valves, seven temperature sensors, four controllers and two motor, the exhaust outlet of described compressor is connected with the air inlet of condenser, the outlet of condenser is connected with the import of gas-liquid separator, the liquid outlet of gas-liquid separator is connected with first choke valve, the outlet of first choke valve, the outlet of the cryogen of regenerator, interconnect between the import of evaporation-condenser cryogen and a node arranged, the outlet of evaporation-condenser cryogen is connected with compressor, the import of the cryogen of regenerator is connected with the outlet of evaporimeter, the import of evaporimeter is connected with the outlet of second choke valve, the import of second choke valve is connected with the outlet of the high temperature fluid of regenerator, the import of the high temperature fluid of regenerator is connected with the outlet of evaporation-condenser high temperature fluid, the import of evaporation-condenser high temperature fluid is connected with the gas outlet of gas-liquid separator, forms the close passage of cold-producing medium self-folding type heat pump cycle; Compressor also links to each other with first motor; Condenser is in the storage tank, and the temperature sensor of storage tank delivery port is connected to first controller, and first controller links to each other with first motor; Second and third temperature sensor is connected to second controller, is in the evaporation-outlet of condenser cryogen and the exit of first choke valve respectively, and described second controller links to each other with first choke valve, to regulate the aperture of first choke valve; Fourth, fifth temperature sensor is connected to the 3rd controller, is in the export and import place of evaporimeter respectively, and described the 3rd controller links to each other with second choke valve, to regulate the aperture of second choke valve; Six, seven temperature sensors are connected to the 4th controller, are in the place, centre position of the evaporimeter left and right sides respectively, and described the 4th controller also links to each other with Defrost heater, second motor; Described fan links to each other with second motor.
2. self-folding type air source heat pump water heater according to claim 1 is characterized in that, the connection between each parts of the close passage of described cold-producing medium self-folding type heat pump cycle adopts pipeline to connect, pipe outer wrapping thermal-insulating waterproof material.
3. self-folding type air source heat pump water heater according to claim 1 is characterized in that, described fan is in Defrost heater right opposite place, is used for strengthening evaporator air side heat convection.
4. self-folding type air source heat pump water heater according to claim 1 is characterized in that barometric pipe is equipped with at the top of described storage tank.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200420103167 CN2758650Y (en) | 2004-12-28 | 2004-12-28 | Self-overlay air source heat pump water heater |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200420103167 CN2758650Y (en) | 2004-12-28 | 2004-12-28 | Self-overlay air source heat pump water heater |
Publications (1)
Publication Number | Publication Date |
---|---|
CN2758650Y true CN2758650Y (en) | 2006-02-15 |
Family
ID=36078790
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN 200420103167 Expired - Fee Related CN2758650Y (en) | 2004-12-28 | 2004-12-28 | Self-overlay air source heat pump water heater |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN2758650Y (en) |
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102226596A (en) * | 2011-05-03 | 2011-10-26 | 烟台大学 | Engine-driven cascade heat pump device |
CN101688752B (en) * | 2007-07-12 | 2012-09-05 | 国际壳牌研究有限公司 | Method and apparatus for cooling a hydrocarbon stream |
CN101576329B (en) * | 2008-05-07 | 2013-01-09 | 海尔集团公司 | Self-overlapping refrigeration system |
CN106403347A (en) * | 2016-11-22 | 2017-02-15 | 广东美的暖通设备有限公司 | Low-temperature air conditioning system and air conditioner |
CN106949658A (en) * | 2017-03-17 | 2017-07-14 | 广东美的制冷设备有限公司 | The control method of air-conditioner and air-conditioner |
CN109269154A (en) * | 2018-08-30 | 2019-01-25 | 詹实强 | A kind of coil pipe and the refrigeration system comprising the coil pipe |
CN118224768A (en) * | 2024-05-22 | 2024-06-21 | 昆明理工大学 | Inner overlapping type high-temperature heat pump system capable of efficiently recycling multi-grade low-temperature waste heat at same time |
-
2004
- 2004-12-28 CN CN 200420103167 patent/CN2758650Y/en not_active Expired - Fee Related
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101688752B (en) * | 2007-07-12 | 2012-09-05 | 国际壳牌研究有限公司 | Method and apparatus for cooling a hydrocarbon stream |
CN101576329B (en) * | 2008-05-07 | 2013-01-09 | 海尔集团公司 | Self-overlapping refrigeration system |
CN102226596A (en) * | 2011-05-03 | 2011-10-26 | 烟台大学 | Engine-driven cascade heat pump device |
CN102226596B (en) * | 2011-05-03 | 2013-07-17 | 烟台大学 | Engine-driven cascade heat pump device |
CN106403347A (en) * | 2016-11-22 | 2017-02-15 | 广东美的暖通设备有限公司 | Low-temperature air conditioning system and air conditioner |
CN106403347B (en) * | 2016-11-22 | 2019-01-29 | 广东美的暖通设备有限公司 | Low-temperature air-conditioning system and air-conditioning |
CN106949658A (en) * | 2017-03-17 | 2017-07-14 | 广东美的制冷设备有限公司 | The control method of air-conditioner and air-conditioner |
CN109269154A (en) * | 2018-08-30 | 2019-01-25 | 詹实强 | A kind of coil pipe and the refrigeration system comprising the coil pipe |
CN118224768A (en) * | 2024-05-22 | 2024-06-21 | 昆明理工大学 | Inner overlapping type high-temperature heat pump system capable of efficiently recycling multi-grade low-temperature waste heat at same time |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN101476774B (en) | Double-heat source heat pump water heater with air source and water source | |
CN107388621B (en) | Heat-storage solar energy couples air injection enthalpy-increasing type air source heat pump system and its control method | |
CN103388905B (en) | The adjustable heat pump water heater system of a kind of evaporator flow | |
CN1271384C (en) | Self-folding type air source heat pump water heater | |
CN2694159Y (en) | Multifunctional air source heat pump air conditioner | |
CN105402966B (en) | A kind of solar air source heat pumps | |
CN101957060A (en) | Ultralow temperature air source heat pump hot-water machine | |
CN201351999Y (en) | Air-source and water-source double-heat source heat pump water heat | |
CN101482321B (en) | Ultra-low temperature heat pump water heater | |
CN2522805Y (en) | Gas-liquid separator used in heat-pump system | |
CN111811166B (en) | Triple heat supply pump unit with heat recovery function | |
CN2879030Y (en) | New type air source hot pump water heater | |
CN2758650Y (en) | Self-overlay air source heat pump water heater | |
CN201757505U (en) | Air source heat pump water heater adopting EVI | |
CN100376851C (en) | Multifunctional solar-assisted heat pump system | |
CN208720537U (en) | A kind of superposition type solar water unit | |
CN102494375A (en) | Ultrahigh and low-temperature refrigerating, heating and water heating three-purpose air-conditioning system | |
CN101782292B (en) | Three-purpose air conditioner system of ultra low temperature refrigeration, heating and hot water | |
CN201138027Y (en) | External energy-saving cyclic hot-water air conditioner of heat exchanger | |
CN105135677A (en) | Auto-cascade air source heat pump water heater | |
CN207438784U (en) | A kind of phase transformation condenses air-conditioning | |
CN201218628Y (en) | Cold-hot bidirectional and simultaneous utilizing dual- effect type third-kind absorption heat pump | |
CN205825422U (en) | A kind of efficient big temperature rise single-stage throttling intercooling heat pump water-heating machine | |
CN109708334A (en) | Based on hairdressing place's source of sewage and air source heat pump trilogy supply composite system | |
CN201138065Y (en) | Water heating and boiling multifunctional machine of fluorine pipe line type air source heat pump with energy-saving cycle |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20060215 Termination date: 20111228 |