CN201973778U - Solar heating and domestic hot water supplying integrated system - Google Patents
Solar heating and domestic hot water supplying integrated system Download PDFInfo
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- CN201973778U CN201973778U CN2011200803115U CN201120080311U CN201973778U CN 201973778 U CN201973778 U CN 201973778U CN 2011200803115 U CN2011200803115 U CN 2011200803115U CN 201120080311 U CN201120080311 U CN 201120080311U CN 201973778 U CN201973778 U CN 201973778U
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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
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/20—Solar thermal
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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
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/70—Hybrid systems, e.g. uninterruptible or back-up power supplies integrating renewable energies
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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
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
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Abstract
The utility model discloses a solar heating and domestic hot water supplying integrated system, which comprises a solar heat-collecting circular module, a heat-storing and heat-insulating water tank, a domestic hot water supplying module, a heating module and a central control system; the solar heat-collecting circular module comprises a plurality of solar heat collectors, a solar heat supplying tube, a solar heat exchange coiled pipe and a solar circulating tube; the solar heat exchange coiled pipe is positioned in the heat-storing and heat-insulating water tank; one end of the solar heat supply tube and one end of the solar circulating tube are respectively connected with two ends of the solar heat exchange coiled pipe; the other end of the solar circulating tube is connected with a liquid inlet of the solar heat collector; the other end of the solar heat supply tube is connected with a liquid outlet of the solar heat collector; a temperature sensor T1 is mounted on the solar heat supply tube at the liquid outlet of the solar heat collector; a heat-collecting circular water pump B1 is mounted on the solar circulating tube; and a pressure sensor P2 and a temperature sensor T2 are mounted in the heat-storing and heat-insulating water tank. The solar heating and domestic hot water supplying integrated system has the advantages of favorable effect, energy economization and wide application range.
Description
Technical field
The utility model relates to the system of a kind of heating and domestic hot-water supply, relates in particular to the integral system that a kind of solar energy carries out heating and domestic hot-water supply.
Background technology
The energy of heating system employing at present has coal, oil, combustion gas, and a heating season can consume a large amount of energy.In addition, heating need be built different systems with the domestic hot-water, the cost height, and management is inconvenient.Use at present the solar water heater domestic hot-water supply, energy-conservation but winter especially evening poor effect, and winter or evening the solar heat-collection plate easy freezing.
The utility model content
The technical problems to be solved in the utility model provides a kind of effective, energy savings, cost solar heating and domestic hot-water supply integral system low, applied widely.
For solving the problems of the technologies described above, the utility model adopts following technical scheme:
A kind of solar heating and domestic hot-water supply integral system, comprise solar energy heating circulation module, the heat-storage heat-preserving water pot, the domestic hot-water supply module, the heating module, central control system, wherein solar energy heating circulation module comprises some solar thermal collectors, the solar-heating pipe, the solar heat-exchange coil pipe, the solar energy circulation pipe, the solar heat-exchange coil pipe is positioned at the heat-storage heat-preserving water pot, the solar-heating pipe, one end of solar energy circulation pipe links to each other with the two ends of solar heat-exchange coil pipe respectively, the solar energy circulation pipe other end links to each other with the inlet of solar thermal collector, the solar-heating pipe other end links to each other with the liquid outlet of solar thermal collector, on the solar-heating pipe at solar thermal collector liquid outlet place temperature sensor T1 is housed, be connected to liquid-feeding tube on the solar-heating pipe, thermal-arrest water circulating pump B1 is housed on the solar energy circulation pipe, pressure sensor P2 and temperature sensor T2 are housed in the heat-storage heat-preserving water pot
The domestic hot-water supply module comprises domestic hot-water's heat exchange coil, the running water water inlet pipe, the hot water feed pipe, the hot-water circulation pipe, electric heater, domestic hot-water's heat exchange coil is installed in the heat-storage heat-preserving water pot, domestic hot-water's heat exchange coil one end links to each other with the first hot water subfeeder, the other end links to each other with the first hot water circuit arm, the first hot water subfeeder other end links to each other with hot water feed pipe water inlet, pump B4 is housed on the hot water feed pipe successively, pressure switch, first electric heater, temperature sensor T5, the hot water feed pipe other end links to each other with user side, hot water feed pipe water side also is connected to the hot-water circulation pipe, hot-water circulation pipe's other end links to each other with the first hot water circuit arm, magnetic valve F1 is housed on the hot-water circulation pipe, be connected to the running water water inlet pipe on the hot-water circulation pipe of magnetic valve F1 rear end, magnetic valve F2 is housed on the running water water inlet pipe
The heating module comprises the heating feed pipe, some radiators, the heating return pipe, heating water water inlet pipe, heating feed pipe water inlet end communicates with the heat-storage heat-preserving water pot, the water side communicates with radiator, the radiator other end links to each other with the heating return pipe, heating return pipe water side communicates with the heat-storage heat-preserving water pot, gate valve V1 is housed on the heating feed pipe successively, second electric heater, temperature sensor T4, pump B2 is housed on the heating return pipe successively, gate valve V2, be connected to heating water water inlet pipe on the heating return pipe of pump B2 front end, heating small pump B3 is housed on the heating water water inlet pipe
The water inlet of hot water feed pipe links to each other with the water inlet end of heating feed pipe by the second hot water subfeeder, hot-water circulation pipe's delivery port links to each other with the water side of heating return pipe by the second hot water circuit arm, on the second hot water subfeeder gate valve V3 is housed, on the second hot water circuit arm gate valve V4 is housed
Central control system receives the signal of temperature sensor T1, T2, T4, T5 and pressure sensor P2, the keying of control pump B1, B2, B3, B4 and magnetic valve F1, F2, temperature sensor T5 links to each other with first electric heater by holding wire and controls the keying of first electric heater, temperature sensor T4 opens and closes by holding wire control second electric heater that links to each other with second electric heater, and pressure switch is by the holding wire control pump B4 keying that links to each other with pump B4.
Solar heating of the present utility model and domestic hot-water supply integral system, the backwater sparge pipe is equipped with in the bottom in the wherein said heat-storage heat-preserving water pot, the backwater sparge pipe is a ring tube, has some water jets on the backwater sparge pipe, and heating return pipe water side communicates with the backwater sparge pipe.
Solar heating of the present utility model and domestic hot-water supply integral system are equipped with pressure sensor P1 on the wherein said heating return pipe, and pressure sensor P1 links to each other with heating small pump B3 and controls the keying of heating small pump B3.
The utility model solar heating and domestic hot-water supply integral system adopt nuisanceless energy solar energy to replace coal, gas, the wet goods energy, energy savings; Heating and heat supply water are made as integral system, switch, save cost, convenient management according to seasonal variations; When water temperature had the uniform temperature difference in water temperature in the solar thermal collector and the heat-storage heat-preserving water pot, water circulated, and prevented that the night solar thermal collector is freezing.In addition, solar energy heat collecting module adopts anti-icing fluid as carrier, to satisfy the normal use in winter.System adopts intelligent mode of heating, and when cloudy sunshine is not enough, or when not having evening the sun that heat is provided, first electric heater and second electric heater all utilize the heat supply of low ebb electricity, and be effective, reduces expenses.Applied widely, be particularly useful for tens0000 square metres small size heating, independently villa district, sunlight campus, office space etc.
Description of drawings
Fig. 1 is the schematic diagram of the utility model solar heating and domestic hot-water supply integral system.
The specific embodiment
As shown in Figure 1, the utility model solar heating and domestic hot-water supply integral system comprise solar energy heating circulation module, heat-storage heat-preserving water pot 1, domestic hot-water supply module, heating module, central control system 2, wherein solar energy heating circulation module comprises some solar thermal collectors 31, solar-heating pipe 32, solar heat-exchange coil pipe 33, solar energy circulation pipe 34, and solar heat-exchange coil pipe 33 is positioned at heat-storage heat-preserving water pot 1.Solar thermal collector shown in the figure 31 is 8, one end of solar-heating pipe 32, solar energy circulation pipe 34 links to each other with the two ends of solar heat-exchange coil pipe 33 respectively, solar energy circulation pipe 34 other ends link to each other with the inlet of solar thermal collector 31, solar-heating pipe 32 other ends link to each other with the liquid outlet of solar thermal collector 31, on the solar-heating pipe 32 at solar thermal collector 31 liquid outlet places temperature sensor T1 is housed, is connected to liquid-feeding tube 35 on the solar-heating pipe 32.Thermal-arrest water circulating pump B1 is housed on the solar energy circulation pipe 34.
Pressure sensor P2 and temperature sensor T2 are housed in the heat-storage heat-preserving water pot 1.Backwater sparge pipe 11 is equipped with in the bottom in the heat-storage heat-preserving water pot 1, and backwater sparge pipe 11 is a ring tube, has some water jets on the backwater sparge pipe 11.
The domestic hot-water supply module comprises big capacity domestic hot-water heat exchange coil 41, running water water inlet pipe 42, hot water feed pipe 43, hot-water circulation pipe 44, first electric heater 45, and big capacity domestic hot-water heat exchange coil 41 is installed in the heat-storage heat-preserving water pot 1.Big capacity domestic hot-water heat exchange coil 41 1 ends link to each other with the first hot water subfeeder 46, the other end links to each other with the first hot water circuit arm 47, the first hot water subfeeder, 46 other ends link to each other with hot water feed pipe 43 water inlets, pump B4, pressure switch 48, first electric heater 45, temperature sensor T5 are housed on the hot water feed pipe 43 successively, hot water feed pipe 43 other ends link to each other with shower 49 grades and use for the user, hot water feed pipe 43 water sides also are connected to hot-water circulation pipe 44, and hot-water circulation pipe's 44 other ends link to each other with the first hot water circuit arm 47.Magnetic valve F1 is housed on the hot-water circulation pipe 44.Be connected to running water water inlet pipe 42 on the hot-water circulation pipe 44 of the magnetic valve F1 port of export, magnetic valve F2 is housed on the running water water inlet pipe 42.
The heating module comprises heating feed pipe 51, some radiators 52, heating return pipe 53, heating water water inlet pipe 54, heating feed pipe 51 1 ends communicate with heat-storage heat-preserving water pot 1, the other end communicates with radiator 52, radiator 52 other ends link to each other with heating return pipe 53, and heating return pipe 53 other ends communicate with backwater sparge pipe 11.Gate valve V1, second electric heater 55, temperature sensor T4 are housed on the heating feed pipe 51 successively.Pressure sensor P1, pump B2, gate valve V2 are housed on the heating return pipe 53 successively, are connected to heating water water inlet pipe 54 on the heating return pipe 53 of pressure sensor P1 entrance point, heating small pump B3 is housed on the heating water water inlet pipe 54.
The water inlet of hot water feed pipe 43 links to each other with the water inlet end of heating feed pipe 51 by the second hot water subfeeder 57, hot-water circulation pipe 44 delivery port links to each other with the water side of heating return pipe 53 by the second hot water circuit arm 58, on the second hot water subfeeder 57 gate valve V3 is housed, on the second hot water circuit arm 58 gate valve V4 is housed.
Central control system 2 receives the signal of temperature sensor T1, T2, T4, T5 and pressure sensor P1, P2, the keying of control pump B1, B2, B3, B4 and magnetic valve F1, F2, temperature sensor T5 links to each other with first electric heater 45 by holding wire and controls 45 keyings of first electric heater.Temperature sensor T4 links to each other with second electric heater 55 by holding wire and controls 55 keyings of second electric heater.Pressure switch 48 opens and closes by the holding wire control pump B4 that links to each other with pump B4.
The course of work of the utility model solar heating and domestic hot-water supply integral system is as follows:
Solar thermal collector 31 makes anti-icing fluid absorb heat, and anti-icing fluid enters solar heat-exchange coil pipe 33 through solar-heating pipe 32, and the water with in the heat transferred heat-storage heat-preserving water pot 1 flow to solar thermal collector 31 through solar energy circulation pipe 34 then, recycles.
Demineralized water is adopted in heating, during winter heating, demineralized water enters heating return pipe 53 from heating water water inlet pipe 54, deliver to backwater sparge pipe 11 by pump B2, spray in the heat-storage heat-preserving water pot 1, after water in the heat-storage heat-preserving water pot 1 absorbs the heat of solar heat-exchange coil pipe 33, enter radiator 52 through heating feed pipe 51 and be indoor heating, the water after the cooling enters heating return pipe 53 and recycles.To detect the temperature of water in the heat-storage heat-preserving water pot 1 than temperature sensor T2 high more than 10 ℃ the time for the temperature of anti-icing fluid in temperature sensor T1 detects solar thermal collector 31, and thermal-arrest water circulating pump B1 starts automatically; When the temperature difference between the two during less than 5 ℃, B1 is out of service.Automatically move by pressure sensor P1 and pressure sensor P2 control heating small pump B3, keep system pressure constant.Temperature in temperature sensor T4 detects heating feed pipe 51 is during less than 55 ℃, second electric heater 55 is opened automatically, and when temperature reached 65 ℃, second electric heater 55 cut out automatically, make water temperature maintain 55-65 ℃, the user can adjust this temperature range according to demand.
During Winter heat supply water, gate valve V3, V4 are closed conditions.Running water enters hot-water circulation pipe 44 from running water water inlet pipe 42, enters domestic hot-water's heat exchange coil 41 through the first hot water circuit arm 47, absorbs heat after the first hot water subfeeder 46 enters hot water feed pipe 43, for the user provides hot water.
During summer, need not heating, so closing gate valve V1, V2, gate valve V3, V4 opened.Running water enters hot-water circulation pipe 44 from running water water inlet pipe 42, enter backwater sparge pipe 11 through the second hot water circuit arm 58, heating return pipe 53, after spraying into the heat that absorbs solar heat-exchange coil pipe 33 in the heat-storage heat-preserving water pot 1, enter hot water feed pipe 43 through heating feed pipe 51, the second hot water subfeeder 57, use for the user.Part water also can enter big capacity domestic hot-water heat exchanger tube 41 through the first hot water circuit arm 47, enters hot water feed pipe 43 from the first hot water subfeeder 46 then, and big capacity domestic hot-water heat exchanger tube 41 is played a protective role.Pressure sensor P2 detects the water level in the heat-storage heat-preserving water pot 1, and control magnetic valve F2 opens and closes, and F2 starts supplementing water when water level is low.When water temperature was lower than 40 ℃ in temperature sensor T5 detects hot water feed pipe 43, magnetic valve F1 opened, and pump B4 starts automatically; When water temperature reached 45 ℃ in temperature sensor T5 detects hot water feed pipe 43, magnetic valve F1 closed, and pump B4 is out of service, thereby guaranteed that the interior water temperature of hot water feed pipe is between 40-45 ℃.When temperature sensor T5 detected water temperature and is lower than 40 ℃, first electric heater started automatically, and when temperature sensor T5 detected water temperature and is higher than 45 ℃, first electric heater cut out.When the user used hot water, hot water feed pipe 43 internal pressures reduced, and pressure switch 48 control pump B4 start, for the user provides hot water.
The utility model solar heating and domestic hot-water supply integral system are compared with existing heating and hot-water supply system, have the following advantages:
1, adopting nuisanceless can solar energy be main energy sources, and electric energy is a supplementary energy, replaces coal, gas, the wet goods energy, energy savings;
2, heating and heat supply water are made as integral system, switch, save cost, convenient management according to seasonal variations;
3, solar energy heat collecting module all exchanges to the heat-storage heat-preserving water pot with heat, winter heating water is used for heating after entering and absorbing heat in the heat-storage heat-preserving water pot, running water is undertaken using for the user after the heat exchange by the water in domestic hot-water's heat exchange coil and the heat-storage heat-preserving water pot, solar energy heat collecting module daytime with unnecessary thermal energy storage in the heat-storage heat-preserving water pot, for the heat supply in evening provides possibility, thereby guarantee to provide heat energy to heating module and domestic hot-water supply module continuously.
4, solar energy heat collecting module adopts the operation of temperature difference endless form, and the storage of solar energy that the mode by forced circulation absorbs heat collector is in the heat-storage heat-preserving water pot.When water temperature had the uniform temperature difference in water temperature in the solar thermal collector and the heat-storage heat-preserving water pot, water circulated, and prevented that the night solar thermal collector is freezing.In addition, solar energy heat collecting module adopts anti-icing fluid as carrier, to satisfy the normal use in winter.
5, system adopts intelligent mode of heating, and when cloudy sunshine is not enough, or when not having evening the sun that heat is provided, first electric heater and second electric heater all utilize the heat supply of low ebb electricity, and be effective, reduces expenses.
6, applied widely, be particularly useful for tens0000 square metres small size heating, independently villa district, sunlight campus, office space etc.Solar energy is mainly used owing to only need heating daytime in the office space, therefore uses the utility model extremely suitable.
Above-described embodiment is described preferred implementation of the present utility model; be not that scope of the present utility model is limited; under the prerequisite that does not break away from the utility model design spirit; various distortion and improvement that those of ordinary skills make the technical solution of the utility model all should fall in the definite protection domain of the utility model claims.
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN2011200803115U CN201973778U (en) | 2011-03-24 | 2011-03-24 | Solar heating and domestic hot water supplying integrated system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN2011200803115U CN201973778U (en) | 2011-03-24 | 2011-03-24 | Solar heating and domestic hot water supplying integrated system |
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| CN201973778U true CN201973778U (en) | 2011-09-14 |
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| CN2011200803115U Expired - Fee Related CN201973778U (en) | 2011-03-24 | 2011-03-24 | Solar heating and domestic hot water supplying integrated system |
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Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106839072A (en) * | 2017-01-13 | 2017-06-13 | 周世敏 | Solar electrothermal association type domestic energy-saving heating system |
| CN107327892A (en) * | 2017-08-04 | 2017-11-07 | 内蒙古旭宸能源有限公司 | Solar energy optical-thermal heat-collection heat-supply pipeline |
| CN108488873A (en) * | 2017-11-21 | 2018-09-04 | 国网冀北节能服务有限公司 | A kind of multi-mode multipurpose photo-thermal offset-type electrical heating energy supplying system and method |
| CN110986137A (en) * | 2019-12-24 | 2020-04-10 | 西安建筑科技大学 | A distributed solar heating system and method |
| CN115628560A (en) * | 2022-09-30 | 2023-01-20 | 华能曲阜热电有限公司 | A power plant solar energy medium and low temperature thermal coupling hot water supply system |
| CN115704225A (en) * | 2021-07-20 | 2023-02-17 | 赛莱默欧洲有限公司 | Integrated pump station anti-freezing system based on photovoltaic water circulation |
-
2011
- 2011-03-24 CN CN2011200803115U patent/CN201973778U/en not_active Expired - Fee Related
Cited By (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106839072A (en) * | 2017-01-13 | 2017-06-13 | 周世敏 | Solar electrothermal association type domestic energy-saving heating system |
| CN107327892A (en) * | 2017-08-04 | 2017-11-07 | 内蒙古旭宸能源有限公司 | Solar energy optical-thermal heat-collection heat-supply pipeline |
| CN108488873A (en) * | 2017-11-21 | 2018-09-04 | 国网冀北节能服务有限公司 | A kind of multi-mode multipurpose photo-thermal offset-type electrical heating energy supplying system and method |
| CN110986137A (en) * | 2019-12-24 | 2020-04-10 | 西安建筑科技大学 | A distributed solar heating system and method |
| CN110986137B (en) * | 2019-12-24 | 2021-07-06 | 西安建筑科技大学 | A distributed solar heating system and method |
| CN115704225A (en) * | 2021-07-20 | 2023-02-17 | 赛莱默欧洲有限公司 | Integrated pump station anti-freezing system based on photovoltaic water circulation |
| CN115628560A (en) * | 2022-09-30 | 2023-01-20 | 华能曲阜热电有限公司 | A power plant solar energy medium and low temperature thermal coupling hot water supply system |
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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: 20110914 Termination date: 20130324 |