CN204963253U - Solar thermal energy electricity generation thermal -arrest heat -retaining device - Google Patents

Solar thermal energy electricity generation thermal -arrest heat -retaining device Download PDF

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Publication number
CN204963253U
CN204963253U CN201520594104.XU CN201520594104U CN204963253U CN 204963253 U CN204963253 U CN 204963253U CN 201520594104 U CN201520594104 U CN 201520594104U CN 204963253 U CN204963253 U CN 204963253U
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China
Prior art keywords
control valve
heat
thermal
conduction oil
temperature jar
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CN201520594104.XU
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许世森
裴杰
徐越
郑建涛
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Huaneng Clean Energy Research Institute
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Huaneng Clean Energy Research Institute
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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
    • 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
    • Y02E10/46Conversion of thermal power into mechanical power, e.g. Rankine, Stirling or solar thermal engines

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  • Engine Equipment That Uses Special Cycles (AREA)

Abstract

The utility model provides a solar thermal energy electricity generation thermal -arrest heat -retaining device, high temperature jar, oily water heat exchanger, low temperature jar, conduction oil pump, first control valve, solar energy collection field, second control valve establish ties in proper order and constitute a return circuit, and parallelly connected on the pipeline on conduction oil pump and first control valve both sides have the third control valve, parallelly connected fourth control valve on the pipeline of second control valve and high temperature jar, and the top of the one end of fourth control valve and high temperature jar is linked together, four control valves are used for the operational mode with night on switched systems daytime, the flow direction of third control valve, first control valve parallel control low temperature jar working medium, the flow direction of second control valve, fourth control valve parallel control high temperature jar working medium, can run on thermal -arrest heat -retaining operational mode and the shut down at the night mode of preventing frostbite on daytime, in this system in the thermal -arrest field thermal -collecting tube be in the unloading state with the connecting tube at night, do not need natural gas boiler frostproofing, utilize pressure differential to sweep the thermal -collecting tube in addition, do not need consumption of electric energy.

Description

A kind of solar energy thermal-power-generating heat-collecting heat-storage device
Technical field
The utility model belongs to solar energy heat utilization technical field, is specifically related to a kind of solar energy thermal-power-generating heat-collecting heat-storage device.
Background technology
China is the country of an energy based on coal, and extensively a large amount of use of coal brings tremendous influence to environment and global climate, and haze and increasingly sharpening of greenhouse effects threaten the existence of the mankind.In order to improve the living environment of the mankind, the ratio of fossil energy in China's energy resource structure must be reduced, greatly develop regenerative resource.
Solar energy is a kind of very clean regenerative resource, and the solar energy reaching earth surface for 1 year is about 5.5 × 10 26j, is equivalent to 10 of the energy total amount that the current mankind consume for a year 4doubly.Therefore, solar energy can be regarded as inexhaustible, nexhaustible new forms of energy.Estimate according to International Energy Agency, the proportion accounting for global power supply to the year two thousand fifty solar electrical energy generation will reach more than 25%.
Solar energy resources to have daytime night without, therefore solar energy thermal-power-generating stands in night generally all will shut down, and after the shutdown, must carry out antifreeze to the heat absorption working medium in solar energy heat-collection field, the measures of prevent freezing of configuration natural gas boiler adds cost of electricity-generating, reduces economy.
Summary of the invention
In order to solve the problem; the purpose of this utility model is to provide a kind of solar energy thermal-power-generating heat-collecting heat-storage device; system can run on the heat-collecting heat-storage operational mode on daytime and the shutdown anti-freezing pattern at night; in this system, in heat collecting field, thermal-collecting tube and connecting pipe are in emptying state at night; do not need natural gas boiler antifreeze; and utilize pressure reduction to purge thermal-collecting tube, do not need to consume electric energy.
In order to achieve the above object, the technical solution adopted in the utility model is:
A kind of solar energy thermal-power-generating heat-collecting heat-storage device, comprise high-temperature tank 10, high-temperature tank 10, oil water heat exchange device 1, cryogenic tank 3, Heat-transfer Oil Pump 4, first control valve 6, solar energy heat-collection field 7, second control valve 9 are followed in series to form a loop, the pipeline on Heat-transfer Oil Pump 4 and the first control valve 6 both sides is parallel with the 3rd control valve 5, the 4th control valve 8 in parallel on the pipeline of the second control valve 9 and high-temperature tank 10, and one end of the 4th control valve 8 is connected with the top of high-temperature tank 10.
In described series loop, the connection position of pressure pan 10 is in bottom or bottom.
In high-temperature tank 10, conduction oil is in the saturation state of HTHP.
In cryogenic tank 3, conduction oil is in the undersaturated condition of low-temp low-pressure.
Compared with prior art, in the utility model scheme, thermal-arrest loop and heat release loop are independent separately, and be independent of each other, heat release loop can produce stable steam, ensure that the power output of generating set is completely controllable; Utilizing the pressure reduction between high-temperature tank and cryogenic tank to make high temperature heat conductive oil from flowing through oil water heat exchange device, producing the steam of each thermal parameter, utilizing conduction oil steam blowing thermal-collecting tube, all do not need to consume electric energy, effectively can reduce station service power consumption rate; Because thermal-collecting tube is in emptying state, do not need configuration natural gas boiler antifreeze.
Accompanying drawing explanation
Accompanying drawing is the utility model structural representation figure.
Detailed description of the invention
Embodiment of the present utility model is described in detail below in conjunction with accompanying drawing.
A kind of solar energy thermal-power-generating heat-collecting heat-storage device as shown in the figure, comprise high-temperature tank 10, high-temperature tank 10, oil water heat exchange device 1, cryogenic tank 3, Heat-transfer Oil Pump 4, first control valve 6, solar energy heat-collection field 7, second control valve 9 are followed in series to form a loop, the pipeline on Heat-transfer Oil Pump 4 and the first control valve 6 both sides is parallel with the 3rd control valve 5, the 4th control valve 8 in parallel on the pipeline of the second control valve 9 and high-temperature tank 10, and one end of the 4th control valve 8 is connected with the top of high-temperature tank 10.
In described series loop, the connection of pressure pan is in bottom or bottom.
In high-temperature tank 10, conduction oil is in the saturation state of HTHP.
In cryogenic tank 3, conduction oil is in the undersaturated condition of low-temp low-pressure.
Solar energy heat-collection field 7 can be paraboloid trough type or linear Fresnel formula, is mainly used to focusing sunlight, solar energy is converted to heat energy.
Heat-conductive-oil high-temperature tank 10 and cryogenic tank 3 are used to store heat, ensure the stable of system output power when solar irradiation fluctuates; In high-temperature tank 10, conduction oil is in the saturation state of HTHP; In cryogenic tank 3, conduction oil is in the undersaturated condition of low-temp low-pressure.
Heat-transfer Oil Pump 4 is power resources of whole series loop.
Oil water heat exchange device 1 is the connection of solar energy heating, heat reservoir and steam power system, and high temperature heat conductive oil produces steam by oil water heat exchange device 1 heated feed water.
Four control valves are used to the operational mode at switched system daytime and night, the flow direction of the 3rd control valve 5, first control valve 6 Parallel Control cryogenic tank 3 working medium, the flow direction of the second control valve 9, the 4th control valve 8 Parallel Control high-temperature tank 10 working medium.
Operation principle of the present utility model is: when daytime, solar irradiation condition was better, closed control valve the 3rd control valve 5, the 4th control valve 8, open the first control valve 6, second control valve 9, low temperature conduction oil in cryogenic tank 3 is pumped into slot type or Fresnel solar energy heat-collection field 7 by Heat-transfer Oil Pump 4, be stored in high-temperature tank 10 after heating, conduction oil is in the saturation state of HTHP.When intensity of solar radiation changes, by regulating the flow of Heat-transfer Oil Pump 4, keep the conduction oil temperature substantially constant entering high-temperature tank 10, in guarantee high-temperature tank 10, conduction oil temperature is stable.Utilizing the pressure reduction between high-temperature tank 10 and cryogenic tank 3 to make high temperature heat conductive oil from flowing through oil water heat exchange device 1, producing the steam of corresponding thermal parameter.
After collecting system shutdown at night, for avoiding conduction oil to solidify in thermal-collecting tube and connecting pipe, adopt scheme emptying for the conduction oil in thermal-collecting tube.After collecting system is shut down; closed control valve first control valve 6, second control valve 9; opening controlling valve the 3rd control valve 5 and the 4th control valve 8 successively; in high-temperature tank 10, conduction oil saturated vapor enters heat collecting field 7 under the driving of pressure reduction; conduction oil in thermal-collecting tube is blown into cryogenic tank 3; after completing purging, closed control valve 8 and 5 successively.In purge, part conduction oil meeting flash distillation in high-temperature tank 10, supplement conduction oil steam, the temperature and pressure of high-temperature tank 10 remains unchanged substantially, and conduction oil steam can liquefy as conduction oil after entering cryogenic tank 3, can not cause the rising of pressure.
Embodiment one
To adopt biphenyl-biphenyl ether conduction oil as the operational mode of heat accumulation and heat accumulation working medium illustrative system.By day, closed control valve the 3rd control valve 5, the 4th control valve 8, open the first control valve 6, second control valve 9, the conduction oil of 110 DEG C in cryogenic tank 3 is pumped into slot type or Fresnel solar energy heat-collection field 7 by Heat-transfer Oil Pump 4, be stored in high-temperature tank 10 after being heated to 380 DEG C, conduction oil is in saturation state, and corresponding saturation pressure is about 0.8MPa.When solar irradiance changes, by regulating the flow of Heat-transfer Oil Pump 4, keeping the conduction oil temperature entering high-temperature tank 10 to be about 380 DEG C, realizing the stable of conduction oil temperature in high-temperature tank 10.Utilizing the pressure reduction between high-temperature tank 10 and cryogenic tank 3 to make high temperature heat conductive oil from flowing through oil water heat exchange device 1, producing the steam of corresponding thermal parameter.
After night, collecting system was shut down; close the first control valve 6, second control valve 9; open the 3rd control valve 5, the 4th control valve 8 successively; in high-temperature tank 10, conduction oil saturated vapor enters heat collecting field 7 under the driving of pressure reduction; conduction oil in thermal-collecting tube is blown into cryogenic tank 3; after completing purging, closed control valve 8 and 5 successively.In purge, part conduction oil meeting flash distillation in high-temperature tank 10, supplement conduction oil steam, the temperature and pressure of high-temperature tank 10 remains unchanged substantially, and conduction oil steam can liquefy as conduction oil after entering cryogenic tank 3, can not cause the rising of pressure.

Claims (2)

1. a solar energy thermal-power-generating heat-collecting heat-storage device, comprise high-temperature tank (10), it is characterized in that, high-temperature tank (10), oil water heat exchange device (1), cryogenic tank (3), Heat-transfer Oil Pump (4), first control valve (6), solar energy heat-collection field (7), second control valve (9) is followed in series to form a loop, the pipeline on Heat-transfer Oil Pump (4) and the first control valve (6) both sides is parallel with the 3rd control valve (5), the 4th control valve (8) in parallel on the pipeline of the second control valve (9) and high-temperature tank (10), and one end of the 4th control valve (8) is connected with the top of high-temperature tank (10).
2. a kind of solar energy thermal-power-generating heat-collecting heat-storage device according to claim 1, is characterized in that, in described series loop, the connection position of pressure pan (10) is in bottom or bottom.
CN201520594104.XU 2015-08-03 2015-08-03 Solar thermal energy electricity generation thermal -arrest heat -retaining device Active CN204963253U (en)

Priority Applications (1)

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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105004073A (en) * 2015-08-03 2015-10-28 中国华能集团清洁能源技术研究院有限公司 Solar heat collection and storage system for power generation
CN105157252A (en) * 2015-08-21 2015-12-16 中国东方电气集团有限公司 Fused salt heat compensation control method for slot type solar-thermal power generation system
CN108644864A (en) * 2018-05-11 2018-10-12 武汉理工大学 Based on grease hierarchical solar heating method and device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105004073A (en) * 2015-08-03 2015-10-28 中国华能集团清洁能源技术研究院有限公司 Solar heat collection and storage system for power generation
CN105157252A (en) * 2015-08-21 2015-12-16 中国东方电气集团有限公司 Fused salt heat compensation control method for slot type solar-thermal power generation system
CN108644864A (en) * 2018-05-11 2018-10-12 武汉理工大学 Based on grease hierarchical solar heating method and device

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