CN204404560U - A kind of separated type solar and air source heat pump hybrid system - Google Patents
A kind of separated type solar and air source heat pump hybrid system Download PDFInfo
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- CN204404560U CN204404560U CN201520023335.5U CN201520023335U CN204404560U CN 204404560 U CN204404560 U CN 204404560U CN 201520023335 U CN201520023335 U CN 201520023335U CN 204404560 U CN204404560 U CN 204404560U
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- air source
- water tank
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- storage water
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/40—Solar thermal energy, e.g. solar towers
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Abstract
The utility model discloses a kind of separated type solar and air source heat pump hybrid system, comprise heat collector, heat storage water tank, air source heat pump system and fan coil, the built-in heat exchange coil of described heat storage water tank, heat exchange coil two ends are connected with heat collector with connecting line II by connecting line I, connecting line II is provided with circulating pump and expansion drum, heat collector exit arranges the first temperature sensor, arrange the second temperature sensor in heat storage water tank, the first temperature sensor is connected with controller with the second temperature sensor; Described air source heat pump system comprises air source heat pump off-premises station A and B, and air source heat pump off-premises station B is connected with heat storage water tank; Be provided with plate type heat exchanger above heat storage water tank fan coil is connected with air source heat pump off-premises station A.Solar energy heating and air-source are added thermal by the utility model, utilize fan coil that the cold/heat source that the acting of air-source system produces is regulated indoor temperature, have the advantage of economize energy, environmental protection.
Description
Technical field
The utility model relates to a kind of multiple-energy-source and meets system, particularly relate to a kind of be applied to ordinarily resident's building refrigeration, heating and the solar energy of domestic hot-water supply and the hybrid system of air source heat pump, belong to technical field of energy utilization.
Background technology
Separated type solar is by collecting plate and water tank system arranged apart, perfect adaptation can be accomplished with roofing, but the also impact that be subject to weather the same as most of solar water heater simultaneously, although water tank has carried electric heating function, its energy-saving effect can have been had a greatly reduced quality.Principle that air source hot pump water heater adopts " inverse Kano ", by compressor, refrigeration working medium is carried out exchange heat at evaporimeter and condenser, produce domestic hot-water, it is under 20 DEG C of environment temperatures, while water temperature rises to 55 DEG C from 15 DEG C, its Energy Efficiency Ratio is up to more than 4, namely heat its power consumption of same water and only have 1/4 of electric heating hot water, current air source heat pump mostly only provides the function of hot water preparing, do not have Appropriate application to provide preference temperature for room, cause the waste of the part energy.
Summary of the invention
Technical problem to be solved in the utility model is the defect existed for prior art, there is provided a kind of and separated type solar and air source heat pump are met system, solve the problem that solar water heater is poor at overcast and rainy heating effect and employing electric heating energy-saving effect is low, the low-temperature receiver simultaneously utilizing fan coil the acting of air-source system to be produced and thermal source take indoor to, regulate temperature.
For solving this technical problem, the utility model provides a kind of separated type solar and air source heat pump hybrid system, comprise heat collector, heat storage water tank, air source heat pump system and fan coil, in described heat storage water tank, heat exchange coil is set, described heat exchange coil two ends are connected with exporting with heat collector import with connecting line II respectively by connecting line I, connecting line II is provided with circulating pump and expansion drum, described heat collector exit arranges the first temperature sensor, second temperature sensor is set in heat storage water tank, first temperature sensor and the second temperature sensor and controller connection control circulating pump open and close, described air source heat pump system comprises air source heat pump off-premises station A and air source heat pump off-premises station B, and air source heat pump off-premises station B is connected with heat storage water tank by pipeline, be provided with plate type heat exchanger above described heat storage water tank, fan coil and air source heat pump off-premises station A link together by plate type heat exchanger.
Heat exchange coil in described heat storage water tank is using anti-icing fluid as circulatory mediator.
The top of described heat storage water tank is provided with safety valve.
The hot water outlet of described heat storage water tank is arranged on the top of heat storage water tank, its cooling water inlet be arranged on heat storage water tank bottom, to be connected with water supply pipe and to push up ability of swimming supply water for adopting.
Before described cooling water inlet, pressure charging valve or pressure-reducing valve are set with running water junction.
On the roof that described heat collector is disposed in the outdoor or balcony, heat storage water tank water place disposed in the interior.
Beneficial effect: solar energy heating heats with air-source and combines by the utility model, eliminate conventional water heaters electric heating function, to make the consumed energy lower when obtaining same volume hot water amount, the low-temperature receiver simultaneously utilizing fan coil the acting of air-source system to be produced and thermal source regulate indoor temperature, have the advantage of economize energy, environmental protection.The utility model solve, place restriction not enough at solar irradiation and environment temperature too low in, separated type solar and air source heat pump heating efficiency low, and the problem that heating cost is high, can provide sufficient low-temperature receiver and thermal source simultaneously to indoor.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
In figure: 1 heat collector, 2 heat storage water tanks, 3 circulating pumps, 4 controllers, 5 air source heat pump off-premises station A, 6 air source heat pump off-premises station B, 7 fan coils, 8 first temperature sensors, 9 second temperature sensors, 10 heat exchange coils, 11 connecting line I, 12 connecting line II, 13 expansion drums, 14 cooling water inlets, 15 hot water outlets, 16 safety valves, 17 plate type heat exchangers.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model is specifically described.
Figure 1 shows that structural representation of the present utility model.
The utility model comprises heat collector 1, heat storage water tank 2, air source heat pump system and fan coil 7.
Arrange heat exchange coil 10 in described heat storage water tank 2, described heat exchange coil 10 two ends are connected with exporting with heat collector 1 import with connecting line II respectively by connecting line I, connecting line II are provided with circulating pump 3 and expansion drum 13, wherein will be full of circulatory mediator.
Described heat collector 1 exit arranges the first temperature sensor 8, second temperature sensor 9 is set in heat storage water tank 2, first temperature sensor 8 is connected with controller 4 with the second temperature sensor 9, first temperature sensor 8 and the second temperature sensor 9 coordinate controller 4, when the first temperature sensor 8 records temperature T
0temperature T is recorded with the second temperature sensor 9 in heat storage water tank 2
1difference higher than design temperature 5 DEG C time, systemic circulation pump 3 starts, and realizes the exchange of heat exchange coil 10 medium in heat transfer medium and heat storage water tank 2 in heat collector 1; As heat collector 1 temperature T
0temperature T is recorded with the second temperature sensor 9 in heat storage water tank 2
1difference lower than design temperature time, systemic circulation pump 3 stops.
Described air source heat pump system comprises air source heat pump off-premises station A and air source heat pump off-premises station B, air source heat pump off-premises station A and air source heat pump off-premises station B and comprises compressor, condenser, evaporimeter and throttling arrangement.
Described air source heat pump off-premises station B is connected with heat storage water tank 2 by cold and hot matchmaker's pipeline, and described heat storage water tank 2 top comprises the part of air source heat pump off-premises station B and water tank internal heat, utilizes air can heat heat storage water tank 2 as auxiliary thermal source.
In heat collector 1 medium temperature, heat storage water tank 2 temperature too low and the time is not suitable for using hot water time, start air source heat pump off-premises station B, to continue the domestic water in heating heat storage water tank 2.
Plate type heat exchanger 17 is provided with above described heat storage water tank 2, fan coil 7 links together with air source heat pump off-premises station A by plate type heat exchanger 17, low-temperature receiver is taken to indoor by pipeline and fan coil 17 when heat pump refrigerating, take thermal source to indoor by pipeline and fan coil 17 when heat pump heats, realize utilizing air can regulate indoor temperature.
Described air source heat pump off-premises station A often opens, to ensure that indoor fan coil pipe regulates the normal function of indoor temperature.
Heat exchange coil 10 in described heat storage water tank 2 is using anti-icing fluid as circulatory mediator.
The top of described heat storage water tank 2 is provided with safety valve 16.
The hot water outlet 15 of described heat storage water tank 2 is arranged on the top of heat storage water tank 2, its cooling water inlet 14 be arranged on heat storage water tank 2 bottom, to be connected with water supply pipe and to push up ability of swimming supply water for adopting, when hot water goes out, automatically the cold water of equivalent is added in water tank, can ensure that quantity of water in water tank remains unchanged.
Arrange pressure charging valve or pressure-reducing valve with running water junction before described cooling water inlet 14, ensure that pressure is suitable for, general Stress control is within 0.2-0.3MPa.
On the roof that described heat collector 1 is disposed in the outdoor or balcony, heat storage water tank 2 is arranged in indoor suitable place according to specific environment.
The course of work of the present utility model:
When sunlight is irradiated on heat collector 1, the heat-absorbing material heat absorption in heat collector 1, make the dielectric heating in heat collector 1, the first temperature sensor 8 heats up thereupon, i.e. T
0temperature rises, when temperature rises to T
0-T
1>5 DEG C, controller 4 controlled circulation pump 3 is started working, and the medium in heat collector 1 is taken to the heat exchange coil 10 in heat storage water tank 2, carries out heat exchange with the water in heat storage water tank 2; Temperature difference T in the temperature in heat collector 1 and heat storage water tank 2
0-T
1during <5 DEG C, controller 4 controlled circulation pump 3 quits work, and circulate thermal-arrest and so forth, until the water in heat storage water tank 2 meets the requirements of temperature.
When not having sunlight to irradiate, closing circulating pump 3, directly manually booting the air energy circulatory system and cold water is directly added in heat storage water tank 2, the water in heat storage water tank 2 can be heated with air, meet the requirements of temperature.
High temperature protection of the present utility model: if the temperature T of heat collector 1
0higher than 115 DEG C or heat storage water tank 2 temperature of lower T
1during higher than 75 DEG C, now system is in high temperature protection state, and circulating pump 3 is automatically out of service, avoids the heat sensitive component in system to damage by high temperature impact.
Antifreeze function of the present utility model: if the temperature T of heat collector
0during lower than design temperature, then system starts antifreeze circulation automatically, and both circulating pump 3 started circulation, as the temperature T of heat collector 1
0when reaching design temperature, antifreeze circulation is out of service.
Solar energy heating heats with air-source and combines by the utility model, eliminate conventional water heaters electric heating function, to make the consumed energy lower when obtaining same volume hot water amount, the low-temperature receiver simultaneously utilizing fan coil the acting of air-source system to be produced and thermal source regulate indoor temperature, have the advantage of economize energy, environmental protection.The utility model solve, place restriction not enough at solar irradiation and environment temperature too low in, separated type solar and air source heat pump heating efficiency low, and the problem that heating cost is high, can provide sufficient low-temperature receiver and thermal source simultaneously to indoor.
The above-mentioned embodiment of the utility model, just illustrates, is not only, and all changes within the scope of the utility model or in equivalent scope of the present utility model are all surrounded by the utility model.
Claims (6)
1. a separated type solar and air source heat pump hybrid system, it is characterized in that: comprise heat collector (1), heat storage water tank (2), air source heat pump system and fan coil (7), heat exchange coil (10) is set in described heat storage water tank (2), described heat exchange coil (10) two ends are connected with exporting with heat collector (1) import with connecting line II (12) respectively by connecting line I (11), connecting line II (12) is provided with circulating pump (3) and expansion drum (13), described heat collector (1) exit arranges the first temperature sensor (8), second temperature sensor (9) is set in heat storage water tank (2), first temperature sensor (8) and the second temperature sensor (9) open and close with controller (4) connection control circulating pump (3), described air source heat pump system comprises air source heat pump off-premises station A (5) and air source heat pump off-premises station B (6), and air source heat pump off-premises station B (6) is connected with heat storage water tank (2) by pipeline, described heat storage water tank (2) top is provided with plate type heat exchanger (17), and fan coil (7) links together with air source heat pump off-premises station A (5) by plate type heat exchanger (17).
2. separated type solar according to claim 1 and air source heat pump hybrid system, is characterized in that: the heat exchange coil (10) in described heat storage water tank (2) is using anti-icing fluid as circulatory mediator.
3. separated type solar according to claim 1 and air source heat pump hybrid system, is characterized in that: the top of described heat storage water tank (2) is provided with safety valve (16).
4. separated type solar according to claim 1 and air source heat pump hybrid system, it is characterized in that: the hot water outlet (15) of described heat storage water tank (2) is arranged on the top of heat storage water tank (2), cooling water inlet (14) be arranged on heat storage water tank (2) bottom, to be connected with water supply pipe and to push up ability of swimming supply water for adopting.
5. separated type solar according to claim 4 and air source heat pump hybrid system, is characterized in that: described cooling water inlet (14) is front arranges pressure charging valve or pressure-reducing valve with running water junction.
6. the separated type solar according to any one of claim 1-5 and air source heat pump hybrid system, is characterized in that: on the roof that described heat collector (1) is disposed in the outdoor or balcony, heat storage water tank (2) water place disposed in the interior.
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104534685A (en) * | 2015-01-14 | 2015-04-22 | 力诺瑞特(上海)新能源有限公司 | Split type solar energy and air source heat pump combining system |
CN106642682A (en) * | 2017-01-10 | 2017-05-10 | 珠海格力电器股份有限公司 | Multifunctional heat pump system with air energy and solar energy coupled |
WO2020228159A1 (en) * | 2019-05-13 | 2020-11-19 | 马鞍山市博浪热能科技有限公司 | Hot water control system for multiple compound energy source pressure-bearing modules |
CN113063172A (en) * | 2021-04-02 | 2021-07-02 | 广东纽恩泰新能源科技发展有限公司 | Air source heat pump system with solar energy and electric heating and control method |
-
2015
- 2015-01-14 CN CN201520023335.5U patent/CN204404560U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104534685A (en) * | 2015-01-14 | 2015-04-22 | 力诺瑞特(上海)新能源有限公司 | Split type solar energy and air source heat pump combining system |
CN106642682A (en) * | 2017-01-10 | 2017-05-10 | 珠海格力电器股份有限公司 | Multifunctional heat pump system with air energy and solar energy coupled |
WO2020228159A1 (en) * | 2019-05-13 | 2020-11-19 | 马鞍山市博浪热能科技有限公司 | Hot water control system for multiple compound energy source pressure-bearing modules |
CN113063172A (en) * | 2021-04-02 | 2021-07-02 | 广东纽恩泰新能源科技发展有限公司 | Air source heat pump system with solar energy and electric heating and control method |
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C14 | Grant of patent or utility model | ||
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TR01 | Transfer of patent right |
Effective date of registration: 20230302 Address after: No. 30766, Jingshi East Road, Licheng District, Jinan City, Shandong Province Patentee after: SHANDONG LINUO PARADIGMA Co.,Ltd. Address before: Building 5, No. 738, Huaqing Road, Qingpu District, Shanghai, 201707 Patentee before: Linuo Ritter (Shanghai) New Energy Co.,Ltd. |