CN102705998A - Three-purpose solar energy system for steam, power generation and heat storage - Google Patents

Three-purpose solar energy system for steam, power generation and heat storage Download PDF

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Publication number
CN102705998A
CN102705998A CN2012101941747A CN201210194174A CN102705998A CN 102705998 A CN102705998 A CN 102705998A CN 2012101941747 A CN2012101941747 A CN 2012101941747A CN 201210194174 A CN201210194174 A CN 201210194174A CN 102705998 A CN102705998 A CN 102705998A
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China
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valve
solar energy
steam
heat
heat storage
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CN2012101941747A
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CN102705998B (en
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焦家良
陈刚
李岚
灵晓燕
范源
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YUNNAN LONGRUN PHARMACEUTICAL CO Ltd
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YUNNAN LONGRUN PHARMACEUTICAL CO Ltd
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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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/44Heat exchange systems
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/50Energy storage in industry with an added climate change mitigation effect

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Abstract

The invention relates to a three-purpose solar energy system for steam, power generation and heat storage. The system comprises a solar energy collector, a heat storage tank, an electromagnetic heater, a steam generator, a water storage tank, a softened water tank, a temperature difference power generator, a power storage battery, an inverter, a remote controller, a plurality of valves and two pumps. The three-purpose solar energy system can be used for providing solar steam, storing heat and supplying power to an industrial user of which a usage temperature is below 200 DEG C, all parts are mature products produced industrially, the three-purpose solar energy system is low in cost and is convenient to use and maintain, and a set of solar energy system for steam, power generation and heat storage which is efficient and is low in cost is provided for energy saving, emission reduction, clean production of China.

Description

A kind of steam of solar energy, generating, heat accumulation three are used system
Technical field
The present invention relates to technical field of solar, specifically is that a kind of solar energy produces steam, thermo-electric generation, heat accumulation three and uses system.
Background technology
The basic mode of solar energy utilization can be divided into four types of the utilizations of light-heat utilization, light-electricity, light-chemistry utilization, light-biological utilisation.Utilize in the mode at four types of solar energy, the technology of light-heat conversion is the most ripe, and product is also maximum, and cost is relatively low.Use maximum solar collecting devices at present, mainly contain 3 kinds of flat plate collector, vacuum tube collector and concentrating collectors etc.Usually different according to temperature that can reach and purposes, and be divided into 800 ℃ of low temperature utilization (< 200 ℃), middle temperature utilization (200~800 ℃) and high temperature utilizations (> to the solar energy heat utilization).
Solar energy collectors: classification: glass vacuum tube type, plate, glass vacuum tube type is subdivided into all-glass vacuum tube type, heat-tube vacuum tubular type, U type pipe vacuum tube formula.Commonly used is all-glass vacuum tube type, its advantage: safety, energy-saving and environmental protection, economy.Its shortcoming is that volume ratio is huger, glass tube is frangible, assemble incrustation scale in the pipe easily, can not bearing operation.
The application for a patent for invention of one Chinese patent application numbers 201110122865.1 discloses a kind of solar steam power set; What this invention related to is to be made up of solar energy collectors, electric heating equipment, heat storage can, steam generator; Solar heat collector panel or be connected on the inner U type metal heat build-up pipe of solar energy vacuum tube and constitute solar energy collectors; Conductive fluid is arranged in the solar energy collectors, and the conductive fluid outlet of solar energy collectors is connected with the heat storage can inlet, and the heat storage can outlet is connected with the import of solar steam generator; Form the loop, be connected with electric heating equipment and high temperature circulation pump and safety valve between heat storage can and the solar energy collectors.Said solar heat collector panel or be connected on the inner U type metal heat build-up pipe of solar energy vacuum tube and constitute solar energy collectors; Conductive fluid is arranged in the solar energy collectors; The conductive fluid outlet of solar energy collectors is connected with the heat storage can inlet; The heat storage can outlet is connected with the import of solar steam generator, forms the loop.Disclosed herein is a kind of function singleness, the Steam Power Equipment of no solar time system's operation back conductive fluid secondary entering solar energy collectors circulation.
The application for a patent for invention of one Chinese patent application 201110292434.X discloses a kind of device of solar water thermo-electric generation; This invention relates to a kind of semiconductor temperature difference power generating system and solar energy heat build-up system; Semiconductor temperature difference power generating system comprises thermal insulation layer, flat plate heat exchanger, heat insulation layer, radiator, temperature-difference power generation module, conducting strip etc.; Flat plate heat exchanger places on the thermal insulation layer; The conducting strip station is on flat plate heat exchanger, and heat insulation layer places on the conducting strip, and temperature-difference power generation module places on the heat insulation layer; Radiator places on the temperature-difference power generation module, and thermal insulation layer, flat plate heat exchanger, conducting strip, heat insulation layer, temperature-difference power generation module, radiator, stacks successively and be fixed together; Solar energy heat build-up system comprises insulation conduit, lifting support, plate solar heat collector, support, rotary-tray; The two ends of plate solar heat collector are supported on the support respectively and are supported on the lifting support; The two ends of insulation conduit are connected with the plate solar heat collector respectively; Flat plate heat exchanger is delivered to the hot junction of temperature-difference power generation module to heat through conducting strip, and radiator is installed in the cold junction of temperature-difference power generation module.Disclosed herein is that solar energy produces warm water and carries out temperature difference electricity generation device with semiconductor again, i.e. solar energy and semiconductor temperature difference electricity generation device, function singleness.
Summary of the invention
The object of the present invention is to provide a kind of solar energy to produce steam, thermo-electric generation, heat accumulation three and use system, or be used for 200 ℃ of heat source temperatures to use the minimizing carbon emission in the interior industrial enterprise.
Technical scheme of the present invention is: solar energy generation steam, thermo-electric generation, heat accumulation three usefulness systems are made up of solar energy collectors, heat storage can, electromagnetic heater, steam generator, storage tank, softened water tank, thermoelectric generator, accumulate bottle, inverter, remote controller and some valves and two pumps; Its connected mode is: solar energy generation steam, thermo-electric generation, heat accumulation three usefulness systems constitute: solar energy collectors one end is connected with valve a with valve q; Parallelly connected after valve f, heat storage can, the valve h series connection with valve g; End after the parallel connection is connected with the end of valve q, valve k and valve b; The other end is connected with two shunt circuits; Shunt circuit A is that valve i, pump, valve j series connection back are parallelly connected with valve c, and another shunt circuit B is valve p with parallelly connected with valve d again after another pump and valve e are connected; The other end of shunt circuit A is connected with solar energy collectors; The other end of shunt circuit B is connected with valve o with electromagnetic heater; The electromagnetic heater other end is connected with steam generator, and the other end of steam generator is connected with storage tank with the other end of valve b, and the other end of storage tank is connected with an end of thermoelectric generator; This end of thermoelectric generator is connected with the end of valve n, the other end of thermoelectric generator and valve k and valve lConnect, thermoelectric generator also is connected valve with accumulate bottle, the inverter of series connection lThe other end be connected with softened water tank, softened water tank is connected with valve m with water softener again, the other end of valve m is connected with the end of valve n and valve o, above-mentioned electrical equipment and remote controller form open circuit.
Produce steam: accomplished by the operation remote controller, the valve of closing is valve successively l, valve n, valve d, valve h, valve g, valve j, valve k, valve b, valve f, the valve of opening is that valve m, valve o, valve e, valve p, valve c, valve q, valve a realize that the soft water of water softener work, generation flows into softened water tank, behind valve o, valve e, pump, valve p, valve c, solar energy collectors, produces steam by valve q, valve a output successively.
Thermo-electric generation: accomplish by the operation remote controller; The valve of closing is valve m, valve a, valve b, valve f, valve g, valve h, valve i, valve d successively; The valve of opening is valve n, valve o, valve e, pump, valve p, valve c, valve q, valve k successively, and the heating liquid of solar energy collectors produces high temperature energy through valve q, valve k, thermoelectric generator, valve n, valve o, valve e, pump, valve p, valve c closed circuit; Water softener is handled normal-temperature water and is got into softened water tank, valve l, thermoelectric generator, storage tank form cooling water path, produces temperature difference; Thermoelectric generator generating, accumulate bottle store, are exported by inverter when needing alternating current.
Heat accumulation: accomplish by the operation remote controller; The valve of closing is valve a, valve k, valve b, valve g, valve d, valve p, valve c, valve o successively; Solar energy collectors collect heat energy, through valve q, valve f, get into heat storage can (quantity is more than), form closed circuit through valve h, valve j, pump, valve i again, store heat can not used when having solar energy.The heat energy output of heat storage can is owing to added valve g, valve q, valve c, valve j, and the cyclic high-temperature liquid when great advantage is not have solar energy after the electromagnetism heating gets into solar energy collectors without secondary.
Temperature difference electricity generation device and solar energy collectors can be done independent operating.Solar energy collectors and heat storage can parallel running can independently not exported heat energy when having solar energy.Solar energy collectors and steam generator form the loop, and solar energy promptly can independently produce steam, can independently generate electricity again.Heat storage can, electrical heating, steam generator d do not have the solar time to replenish by independent operating.
The present invention can for serviceability temperature 200 ℃ with interior industrial user provide solar steam, again can heat accumulation, power supply can; Used spare and accessory parts are the matured product of suitability for industrialized production; Cost is low; Working service is convenient, for China's energy-saving and emission-reduction and cleaner production provide one overlap high efficiency, low cost solar steam, heat accumulation and thermo-electric generation system.
Description of drawings
Fig. 1 is that solar energy of the present invention produces steam, thermo-electric generation, heat accumulation three and uses the system architecture sketch map.
Among the figure, the 1-valve l, 2-softened water tank, 3-water softener, 4-accumulate bottle, 5-inverter, 6-valve m, 7-thermoelectric generator, 8-valve n, 9-storage tank, 10-valve a, the 11-valve k, 12-solar energy collectors, 13-valve q, the 14-valve b, 15-steam generator, 16-valve f, the 17-valve g, 18-heat storage can, 19-electromagnetic heater, 20-valve h, the 21-valve c, the 22-valve d, the 23-valve o, the 24-valve i, 25-pump, 26-valve j, the 27-valve p, 28-pump, 29-valve e, the 30-remote controller.
The specific embodiment
As shown in Figure 1, solar energy generation steam of the present invention, thermo-electric generation, heat accumulation three usefulness systems are made up of solar energy collectors 12, heat storage can 18, electromagnetic heater 19, steam generator 15, storage tank 9, softened water tank 2, thermoelectric generator 7, accumulate bottle 4, inverter 5, remote controller 30 and some valves and two pumps 25,28; Connected mode is: constitute: solar energy collectors 12 1 ends are connected with valve a 10 with valve q 13; Parallelly connected after valve f 16, heat storage can 18, valve h 20 series connection with valve g17; End after the parallel connection is connected with the end of valve q 13, valve k 11 and valve b14; The other end is connected with two shunt circuits; Shunt circuit A is that valve i 24, pump 25, valve j 26 series connection backs are parallelly connected with valve c 21, and another shunt circuit B is valve p 27 with parallelly connected with valve d 22 again after another pump 28 and valve e 29 are connected; The other end of shunt circuit A is connected with solar energy collectors 12; The other end of shunt circuit B is connected with valve o 23 with electromagnetic heater 19; Electromagnetic heater 19 other ends are connected with steam generator 15, and the other end of steam generator 15 is connected with storage tank 9 with the other end of valve b 14, and the other end of storage tank 9 is connected with an end of thermoelectric generator 7; This end of thermoelectric generator 7 is connected with the end of valve n 8, the other end of thermoelectric generator 7 and valve k 11 and valve l1 connects, and thermoelectric generator 7 also is connected valve with accumulate bottle 4, the inverter 5 of series connection l1 the other end is connected with softened water tank, and softened water tank 2 is connected with valve m 6 with water softener 3 again, and the other end of valve m6 is connected with the end of valve n 8 and valve o 23, and above-mentioned electrical equipment and remote controller 30 form open circuit.
Solar energy collectors are preferentially selected vacuum tube, interior installation U type metal tube for use, by after several series connection again and be unified into thermal source and collect part.The vacuum tube installation method mouth of pipe is downward.

Claims (2)

1. a solar energy generation steam, thermo-electric generation, heat accumulation three are used system, it is characterized in that constituting of this system: be made up of solar energy collectors, heat storage can, electromagnetic heater, steam generator, storage tank, softened water tank, thermoelectric generator, accumulate bottle, inverter, remote controller and some valves and two pumps; Connected mode is: solar energy collectors one end is connected with valve a with valve q; Parallelly connected after valve f, heat storage can, the valve h series connection with valve g; End after the parallel connection is connected with the end of valve q, valve k and valve b; The other end is connected with two shunt circuits, and shunt circuit A is that valve i, pump, valve j series connection back are parallelly connected with valve c, and another shunt circuit B is valve p with parallelly connected with valve d again after another pump and valve e are connected; The other end of shunt circuit A is connected with solar energy collectors; The other end of shunt circuit B is connected with valve o with electromagnetic heater; The electromagnetic heater other end is connected with steam generator, and the other end of steam generator is connected with storage tank with the other end of valve b, and the other end of storage tank is connected with an end of thermoelectric generator; This end of thermoelectric generator is connected with the end of valve n, the other end of thermoelectric generator and valve k and valve lConnect, thermoelectric generator also is connected valve with accumulate bottle, the inverter of series connection lThe other end be connected with softened water tank, softened water tank is connected with valve m with water softener again, the other end of valve m is connected with the end of valve n and valve o, above-mentioned Electrical Appliances & Control device forms open circuit.
2. solar energy generation steam according to claim 1, thermo-electric generation, heat accumulation three are used system; It is characterized in that solar energy collectors select vacuum tube for use; U type metal tube is installed in the vacuum tube, by after several series connection again and be unified into a thermal source and collect part, the vacuum tube installation method mouth of pipe is downward.
CN2012101941747A 2012-06-13 2012-06-13 Three-purpose solar energy system for steam, power generation and heat storage Active CN102705998B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104454408A (en) * 2014-11-08 2015-03-25 江深 Double-feeding type electromagnetic auxiliary heating solar thermal power plant

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1987288A (en) * 2006-11-03 2007-06-27 江苏大学 Solar energy comprehensive utilizing system
US20080276616A1 (en) * 2008-07-14 2008-11-13 Flynn Brian J Thermal energy storage systems and methods
CN102252303A (en) * 2010-12-09 2011-11-23 云南齐裕经济技术发展有限公司 Solar steam power device
CN102355168A (en) * 2011-09-30 2012-02-15 广东工业大学 Solar energy temperature difference generation device
CN202648172U (en) * 2012-06-13 2013-01-02 云南龙润药业有限公司 Solar steam, electricity generation and heat accumulation tri-purpose system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1987288A (en) * 2006-11-03 2007-06-27 江苏大学 Solar energy comprehensive utilizing system
US20080276616A1 (en) * 2008-07-14 2008-11-13 Flynn Brian J Thermal energy storage systems and methods
CN102252303A (en) * 2010-12-09 2011-11-23 云南齐裕经济技术发展有限公司 Solar steam power device
CN102355168A (en) * 2011-09-30 2012-02-15 广东工业大学 Solar energy temperature difference generation device
CN202648172U (en) * 2012-06-13 2013-01-02 云南龙润药业有限公司 Solar steam, electricity generation and heat accumulation tri-purpose system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104454408A (en) * 2014-11-08 2015-03-25 江深 Double-feeding type electromagnetic auxiliary heating solar thermal power plant

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