CN204665738U - Solar association heating and refrigeration system - Google Patents

Solar association heating and refrigeration system Download PDF

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Publication number
CN204665738U
CN204665738U CN201520372980.8U CN201520372980U CN204665738U CN 204665738 U CN204665738 U CN 204665738U CN 201520372980 U CN201520372980 U CN 201520372980U CN 204665738 U CN204665738 U CN 204665738U
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China
Prior art keywords
control valve
storage box
water storage
water
wire
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Withdrawn - After Issue
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CN201520372980.8U
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Chinese (zh)
Inventor
温从众
王照柱
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Maanshan Juli Technology Co Ltd
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Maanshan Juli Technology Co Ltd
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Priority to CN201520372980.8U priority Critical patent/CN204665738U/en
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

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  • Heat-Pump Type And Storage Water Heaters (AREA)

Abstract

The invention discloses a kind of solar photovoltaic water pump heating and refrigeration system, and described system comprises photovoltaic array, photovoltaic charge controller, inverter, water pump, underground conservation pool, cold water storage box, hot water storage box; Described photovoltaic array is connected with photovoltaic charge controller by wire, described photovoltaic charge controller is connected with switch enclosure by wire, described switch enclosure is connected with control mainboard with battery, inverter by wire, and described control mainboard is connected with semiconductor refrigerating main frame with water pump by wire.The advantage of the invention is: plurality of operating modes ensures that the temperature remains within the normal range in indoor, utilize solar electrical energy generation for master, civil power is auxiliary, economize energy, adopt semiconductor cooler heating heated water re-circulation to be main, air-source is auxiliary operational mode, ensure domestic hot water's heating, semiconductor heating and cooling runs does not have noise, and operational efficiency is high, regulates indoor temperature.

Description

Solar association heating and refrigeration system
Technical field
The utility model relates to a kind of solar heating refrigeration system, in particular, relates to a kind of solar photovoltaic water pump heating and refrigeration system.
Background technology
Current Home Heating has several mode: adopt heated by natural gas, heated by natural gas use cost is high, and can not freeze; Adopt air-conditioning heating or refrigeration, the electricity charge use very expensive, and air oxygen detrition after using, people is done not feel like oneself; Have in the north and directly adopt coal radiator to light a fire heating, coal can produce air pollution, and there is carbon monoxide and there is potential safety hazard, and adopt heated by natural gas, natural gas can produce carbon dioxide, aggravation greenhouse effects, and gas price expensive increase financial burden.
Utility model content
The purpose of this utility model is the deficiency for existing product, and the solar association heating and refrigeration system a kind of economize energy being provided, recycling water resource, utilize solar energy to freeze to Home Heating.
Solar association heating and refrigeration system of the present utility model, described system comprises photovoltaic array, photovoltaic charge controller, inverter, water pump, underground conservation pool, cold water storage box, hot water storage box, described photovoltaic array is connected with photovoltaic charge controller by wire, described photovoltaic charge controller is connected with switch enclosure by wire, described switch enclosure is by wire and battery, inverter is connected with control mainboard, described control mainboard is connected with semiconductor refrigerating main frame with water pump by wire, the pumping conduit of described water pump is placed on underground conservation pool inside, described water pump water outlet pipeline is connected with cross valve, described water pump water outlet pipeline is connected with indoor water circulation pipe water inlet end through the 6th control valve, described cross valve one end is connected with the first control valve, the other two ends of described cross valve are connected with the inlet end of cold exchange cycles with the heat exchange circulation of semiconductor refrigerating main frame respectively, described first control valve is connected by pipeline with air source water heater water inlet end, described air source water heater water side is connected with the second control valve, described second control valve is connected with hot water storage box by pipeline, described heat exchange circulation water outlet end is connected with the 5th control valve by pipeline, and described 5th control valve is connected with hot water storage box by pipeline, described cold exchange cycles water outlet end is connected with the 3rd control valve by pipeline, and described 3rd control valve is connected with cold water storage box by pipeline, described cold water storage box is connected with mixing valve by pipeline with hot water storage box, and described mixing valve one end is connected with domestic water tap, the described mixing valve other end is connected with indoor water circulation pipe water inlet, described indoor water circulation pipe delivery port is connected with the 4th control valve, described 4th control valve, the 3rd control valve are connected with water-purifying filter with the 5th control valve, and described water-purifying filter is connected with underground conservation pool.
Be provided with temperature sensor in described air source water heater, described temperature sensor is connected with the second control valve by holding wire.
Be provided with liquid level sensor in described cold water storage box, described liquid level sensor is connected with the 3rd control valve by holding wire.
Be provided with liquid level sensor in described hot water storage box, described liquid level sensor is connected with the 5th control valve by holding wire.
Described cold water storage box and hot water storage box skin are insulating foam layer, and internal layer is vacuum layer, and described cold water storage box and hot water storage box upper end are provided with supercharging air pump.
Electric boiling plate is provided with in described air source water heater and hot water storage box.
Temperature control valve core is provided with in described 5th control valve.
Described semiconductor refrigerating main frame is provided with pressure fan, and described pressure fan is by pipeline and indoor connection.
Be provided with resonance fog system in described pipeline, described resonance fog system is connected with control mainboard by wire.
The beneficial effects of the utility model are: (1) is easy to use, safe and reliable, and structure is simple, and range of application is vast; (2) underground water pump provides low energy consumption operational mode, and the temperature remains within the normal range can to make indoor; (3) utilize solar electrical energy generation for master, civil power is auxiliary, economize energy, adopts semiconductor cooler heating heated water re-circulation to be main, air-source thermal-arrest is auxiliary operational mode, ensure domestic hot water's heating, semiconductor heating and cooling runs does not have noise, and operational efficiency is high, regulate indoor temperature, fog system of shaking can make water fogging conditioning chamber air humidity, increases indoor anion, people is kept fit; (4) heat storage box is adopted to meet domestic water to family; (5) unnecessary electricity can be changed into civil power by inverter, improves income.
Accompanying drawing explanation
Fig. 1 is system architecture schematic diagram of the present utility model.
Fig. 2 is the structural representation of hot water storage box of the present utility model.
In figure: photovoltaic array 1, photovoltaic charge controller 2, battery 3, switch enclosure 4, inverter 5, control mainboard 6, first control valve 7, semiconductor refrigerating main frame 8, water pump 9, underground conservation pool 10, air source water heater 11, second control valve 12, hot water storage box 13, mixing valve 14, cold water storage box 15, the 3rd control valve 16, indoor water circulation pipe 17, the 4th control valve 18, the 5th control valve 19, heat exchange circulation 20, cold exchange cycles 21, cross valve 22, the 6th control valve 23.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described further.
Solar association heating and refrigeration system of the present utility model, described system comprises photovoltaic array 1, photovoltaic charge controller 2, inverter 5, water pump 9, underground conservation pool 10, cold water storage box 15, hot water storage box 13, described photovoltaic array 1 is connected with photovoltaic charge controller 2 by wire, described photovoltaic charge controller 2 is connected with switch enclosure 4 by wire, described switch enclosure 4 is by wire and battery 3, inverter 5 is connected with control mainboard 6, described control mainboard 6 is connected with semiconductor refrigerating main frame 8 with water pump 9 by wire, the pumping conduit of described water pump 9 is placed on underground conservation pool 10 inside, described water pump 9 outlet conduit is connected with cross valve 22, described water pump 9 outlet conduit is connected with indoor water circulation pipe 17 water inlet end through the 6th control valve 23, described cross valve 22 one end is connected with the first control valve 7, described cross valve 22 is connected with the inlet end of cold exchange cycles 21 with the heat exchange circulation 20 of semiconductor refrigerating main frame 8 at two ends in addition respectively, described first control valve 7 is connected by pipeline with air source water heater 11 water inlet end, described air source water heater 11 water side is connected with the second control valve 12, described second control valve 12 is connected with hot water storage box 13 by pipeline, described heat exchange circulation 20 water outlet end is connected with the 5th control valve 19 by pipeline, and described 5th control valve 19 is connected with hot water storage box 13 by pipeline, described cold exchange cycles 21 water outlet end is connected with the 3rd control valve 16 by pipeline, and described 3rd control valve 16 is connected with cold water storage box 15 by pipeline, described cold water storage box 15 is connected with mixing valve 14 by pipeline with hot water storage box 13, and described mixing valve 14 one end is connected with domestic water tap, described mixing valve 14 other end is connected with indoor water circulation pipe 17 water inlet, described indoor water circulation pipe 17 delivery port is connected with the 4th control valve 18, described 4th control valve 18, the 3rd control valve 16 are connected with water-purifying filter with the 5th control valve 19, and described water-purifying filter is connected with underground conservation pool 10.
In described air source water heater 11, temperature sensor is installed, described temperature sensor is connected with the second control valve 12 by holding wire, in air source water heater 11, the coolant-temperature gage of heating does not reach requirement, cannot open temp sensor, continue heating, by the second control valve 12 after temperature reaches, enter hot water storage box 13.
Liquid level sensor is provided with in described cold water storage box 15, described liquid level sensor is connected with the 3rd control valve 16 by holding wire, after cold water storage box 15 water is full, liquid level sensor opens the 3rd control valve 16, makes unnecessary cold water enter into clarifier and enters in low well.
Liquid level sensor is provided with in described hot water storage box 13, described liquid level sensor is connected with the 5th control valve 19 by holding wire, after hot water storage box 13 water is full, liquid level sensor opens the 5th control valve 19, makes unnecessary hot water enter into clarifier and enters in low well.
Described cold water storage box 15 and hot water storage box 13 skin are insulating foam layer, internal layer is vacuum layer, insulating foam layer and vacuum layer be heat accumulation refrigeration effect more, described cold water storage box 15 and hot water storage box 13 upper end are provided with supercharging air pump, supercharging air pump can accelerate water circulation, the indoor temperature of quick adjustment.
Be provided with electric boiling plate in described air source water heater 11 and hot water storage box 13, when not having solar energy, electric boiling plate can meet normal hot water supply by civil power.
Be provided with temperature control valve core in described 5th control valve 19, the water temperature after temperature control valve core ensures semiconductor heating reaches after setting requires and enters hot water storage box 13, does not reach requirement and enters clarifier and enter in low well.
Described semiconductor refrigerating main frame 8 is provided with pressure fan, and described pressure fan is by air supply duct and indoor connection.In air supply duct, be provided with resonance fog system, described resonance fog system is connected with control mainboard by wire.Unnecessary heat energy or cold air can be sent into indoor by pressure fan by air supply duct, resonance fog system can make water fogging conditioning chamber air humidity, increases indoor anion, people is kept fit.
Solar association heating and refrigeration system, comprises following pattern:
Pattern 1 low energy consumption circulation pattern, closes cross valve 22, opens the 4th control valve 18 and the 6th control valve 23, opens water pump 9 and directly enters in indoor water circulation pipe 17 by the water in underground conservation pool 10; The principle that low energy consumption circulation pattern is cool in summer and warm in winter according to underground water, utilizes sun water pump that groundwater mining is entered indoor circulation, makes the temperature that indoor maintenance is comfortable.
Pattern 2 cooling in summer pattern, close the 6th control valve 23, open cross valve 22, the 3rd control valve 16, the 5th control valve 19 and mixing valve 14, open semiconductor refrigerating main frame 8, described semiconductor refrigerating main frame 8 is heated end and is cooled by heat exchange circulation 20, improve the temperature difference of cold exchange cycles 21, cold water enters cold water storage box 15 and mixing valve 14 enters indoor water circulation pipe 17 again through cold exchange cycles 21; Hot water enters hot water storage box 13 through heat exchange circulation 20 and preserves, in hot water storage box 13, the completely rear liquid level sensor of water sends a signal to the 5th control valve 19, water is switched to filter and enters in underground conservation pool 10 by described 5th control valve 19, and hot water storage box 13 and cold water storage box 15 give domestic water tap cold and hot water supply through mixing valve 14; Adopt semiconductor refrigerating, semiconductor refrigerating principle of heating is according to when the thermocouple centering that one block of N-type semiconductor material and one block of P-type semiconductor material are coupled to has electric current to pass through, transfer of heat will be produced between two ends, heat will transfer to the other end from one end, thus the generation temperature difference forms cold and hot end.But semiconductor self exists resistance when electric current will produce heat through semiconductor, thus can affect heat trnasfer.And the heat between two pole plates also can carry out reverse heat trnasfer by air and semi-conducting material self.When cold and hot end reaches a fixed difference difference, when the amount of these two kinds of heat trnasfer is equal, will reach an equalization point, just reverse heat trnasfer is cancelled out each other.Now the temperature of cold and hot end would not continue to change.In order to reach lower temperature, the temperature that the modes such as heat radiation can be taked to reduce hot junction realizes, and adopts water circulation to reduce hot-side temperature, reduces cold junction temperature, and refrigeration is air-cooled better than adopting, and without any noise, is applicable to family and uses.
Mode 3 united heat in winter pattern, close the 6th control valve 23, open cross valve 22, first control valve 7, the 5th control valve 19 and mixing valve 14, open semiconductor refrigerating main frame 8, described semiconductor refrigerating main frame 8 is heated end and is heated by water by heat exchange circulation 20, and hot water enters hot water storage box 13 through the 5th control valve 19; Underground water enters air source water heater 11 through the first control valve 7, and air source water heater 11 is opened the second control valve 12 hot water and entered hot water storage box 13 after utilizing solar energy to be heated by water; Hot water storage box 13 enters indoor water circulation pipe 17 through mixing valve 14 and heats.Semiconductor is adopted winter to heat and air source water heater 11 and city's electrical heating united heat pattern, guarantee indoor temperature.
Three kinds of operational modes, by controlling, mainboard 6 display is real carries out coordinated signals to the opening and closing of each valve, convenient to use.

Claims (9)

1. a solar association heating and refrigeration system, it is characterized in that, described system comprises photovoltaic array (1), photovoltaic charge controller (2), inverter (5), water pump (9), underground conservation pool (10), cold water storage box (15), hot water storage box (13), described photovoltaic array (1) is connected with photovoltaic charge controller (2) by wire, described photovoltaic charge controller (2) is connected with switch enclosure (4) by wire, described switch enclosure (4) is by wire and battery (3), inverter (5) is connected with control mainboard (6), described control mainboard (6) is connected with semiconductor refrigerating main frame (8) with water pump (9) by wire, the pumping conduit of described water pump (9) is placed on underground conservation pool (10) inside, described water pump (9) outlet conduit is connected with cross valve (22), described water pump (9) outlet conduit is connected with indoor water circulation pipe (17) water inlet end through the 6th control valve (23), described cross valve (22) one end is connected with the first control valve (7), described cross valve (22) is connected with the inlet end of cold exchange cycles (21) with the heat exchange circulation (20) of semiconductor refrigerating main frame (8) at two ends in addition respectively, described first control valve (7) is connected by pipeline with air source water heater (11) water inlet end, described air source water heater (11) water side is connected with the second control valve (12), described second control valve (12) is connected with hot water storage box (13) by pipeline, described heat exchange circulation (20) water outlet end is connected with the 5th control valve (19) by pipeline, and described 5th control valve (19) is connected with hot water storage box (13) by pipeline, described cold exchange cycles (21) water outlet end is connected with the 3rd control valve (16) by pipeline, and described 3rd control valve (16) is connected with cold water storage box (15) by pipeline, described cold water storage box (15) is connected with mixing valve (14) by pipeline with hot water storage box (13), and described mixing valve (14) one end is connected with domestic water tap, described mixing valve (14) other end is connected with indoor water circulation pipe (17) water inlet, described indoor water circulation pipe (17) delivery port is connected with the 4th control valve (18), described 4th control valve (18), the 3rd control valve (16) are connected with water-purifying filter with the 5th control valve (19), and described water-purifying filter is connected with underground conservation pool (10).
2. solar association heating and refrigeration system according to claim 1, is characterized in that, described air source water heater is provided with temperature sensor in (11), and described temperature sensor is connected with the second control valve (12) by holding wire.
3. solar association heating and refrigeration system according to claim 1, is characterized in that, is provided with liquid level sensor in described cold water storage box (15), and described liquid level sensor is connected with the 3rd control valve (16) by holding wire.
4. solar association heating and refrigeration system according to claim 1, is characterized in that, is provided with liquid level sensor in described hot water storage box (13), and described liquid level sensor is connected with the 5th control valve (19) by holding wire.
5. solar association heating and refrigeration system according to claim 1, it is characterized in that, described cold water storage box (15) and hot water storage box (13) skin are insulating foam layer, and internal layer is vacuum layer, and described cold water storage box (15) and hot water storage box (13) upper end are provided with supercharging air pump.
6. solar association heating and refrigeration system according to claim 1, is characterized in that, is provided with electric boiling plate in described air source water heater (11) and hot water storage box (13).
7. solar association heating and refrigeration system according to claim 1, is characterized in that, is provided with temperature control valve core in described 5th control valve (19).
8. solar association heating and refrigeration system according to claim 1, is characterized in that, described semiconductor refrigerating main frame (8) is provided with pressure fan, and described pressure fan is by air supply duct and indoor connection.
9. solar association heating and refrigeration system according to claim 8, is characterized in that, be provided with resonance fog system in described air supply duct, described resonance fog system is connected with control mainboard (6) by wire.
CN201520372980.8U 2015-06-03 2015-06-03 Solar association heating and refrigeration system Withdrawn - After Issue CN204665738U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520372980.8U CN204665738U (en) 2015-06-03 2015-06-03 Solar association heating and refrigeration system

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Application Number Priority Date Filing Date Title
CN201520372980.8U CN204665738U (en) 2015-06-03 2015-06-03 Solar association heating and refrigeration system

Publications (1)

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CN204665738U true CN204665738U (en) 2015-09-23

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CN201520372980.8U Withdrawn - After Issue CN204665738U (en) 2015-06-03 2015-06-03 Solar association heating and refrigeration system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104848580A (en) * 2015-06-03 2015-08-19 马鞍山聚力科技有限公司 Solar heating and refrigerating integrated system and utilization method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104848580A (en) * 2015-06-03 2015-08-19 马鞍山聚力科技有限公司 Solar heating and refrigerating integrated system and utilization method thereof

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20150923

Effective date of abandoning: 20170322

C25 Abandonment of patent right or utility model to avoid double patenting