CN205641589U - Integrative module of solar energy graphite alkene 3D thermal -arrest electricity generation - Google Patents

Integrative module of solar energy graphite alkene 3D thermal -arrest electricity generation Download PDF

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Publication number
CN205641589U
CN205641589U CN201620472052.3U CN201620472052U CN205641589U CN 205641589 U CN205641589 U CN 205641589U CN 201620472052 U CN201620472052 U CN 201620472052U CN 205641589 U CN205641589 U CN 205641589U
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sprue
solar energy
thermal
heat
runner
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李洪伟
李博
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Qingdao Huagu Machinery 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • 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
    • Y02E10/60Thermal-PV hybrids

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  • Photovoltaic Devices (AREA)

Abstract

The utility model belongs to the solar heat collection device field especially relates to an integrative module of solar energy graphite alkene 3D thermal -arrest electricity generation. Including the casing, be provided with inlet and liquid outlet on the casing, the casing in be provided with the runner, be provided with heat conduction liquid in the runner. The sprue of runner including be located in the middle of and the branch pipe that is located the sprue both sides, the inlet setting at the lower extreme of sprue, the liquid outlet setting in the upper end of sprue, the one end opening of branch pipe, other end shutoff, the open end and the sprue of branch pipe are linked together, the outside of branch pipe is covered with the solar energy vacuum tube. The outside of branch pipe pipe wall be provided with graphite alkene heat conduction fin. Branch pipe tilt up connects on the sprue. The utility model discloses both the heat that brings with sunshine was collected to the mode of accessible heat exchange, can be the electric energy with the heat energy direct conversion who collects again, both can regard as the heat source, can regard as the power again, had realized thermal -arrest and electricity generation integration.

Description

Solar energy Graphene 3D thermal-arrest power generation integrated module
Technical field
This utility model belongs to solar energy heat collector field, particularly relates to a kind of solar energy Graphene 3D thermal-arrest power generation integrated mould Block.
Background technology
Along with the fast development of global economy, the consumption of the energy also grows with each passing day, and meanwhile, oil, colliery etc. are traditional The reserves of the energy decline year by year, and therefore, in order to ensure the sustainable development of economic society, developing new forms of energy is trend of the times. In civilian new energy technology, solar energy heating technology is that a kind of use cost is low, the energy of supporting technology relative maturity how Efficiently and sufficiently utilize solar energy, improve the research and development focus that photothermal conversion efficiency is also new energy field in recent years.
At present, solar energy heat collection equipment of the prior art uses vacuum tube structure mostly, arranges conductive fluid in vacuum tube, logical The heat that vacuum tube absorbs is conducted and converges in water tank by the mode crossing thermal convection current.This collection hot mode two deficiencies of existence: one It is that collecting efficiency has much room for improvement;Two is directly to contact with conductive fluid owing to vacuum tube is internal, is susceptible to vacuum under severe cold weather The problem of pipe bursting by freezing (the most usually said " booster ").It addition, existing collecting apparatus can only carry out photothermal conversion, it is impossible to enter Row photoelectric conversion, the efficiency of light energy utilization is relatively low.
Summary of the invention
This utility model provides a kind of solar energy Graphene 3D thermal-arrest power generation integrated module, to solve proposition in above-mentioned background technology Problem.
This utility model is solved the technical problem that and is realized by the following technical solutions: this utility model provides a kind of solar energy Graphene 3D thermal-arrest power generation integrated module, including housing, housing is provided with inlet and liquid outlet, arranges in described housing There is runner, in runner, be provided with conductive fluid.Described runner includes being positioned at the sprue of centre and being positioned at the arm of sprue both sides, Described inlet is arranged on the lower end of sprue, and described liquid outlet is arranged on the upper end of sprue, one end of described arm Opening, the other end blocks, and the opening of arm is connected with sprue, and the outside of arm is covered with solar energy vacuum tube.Described The outside of branch pipe wall is provided with Graphene heat transmission fin.Described arm is inclined upwardly and is connected on sprue.On described housing Being provided with condenser groove, described solar energy vacuum tube is positioned at condenser groove.
Described runner includes being positioned at the feed liquor runner of housing upper, being positioned at going out liquid stream road and connecting feed liquor runner of lower housing portion With go out the vertical-sprue in liquid stream road, described inlet is positioned at the inflow end of feed liquor runner, and described liquid outlet is positioned at liquid stream road Outflow end, the upside of the thickness direction of described housing is from top to bottom disposed with Graphene heat-sink shell and Graphene heat-conductivity conducting Layer.Described feed liquor runner and go out liquid stream road and be all obliquely installed, feed liquor runner and go out the folder of the axis in liquid stream road and the horizontal edge of housing Angle is all not less than 5 °.Described vertical-sprue at least two, being provided around of every vertical-sprue is made up of heat accumulating Reservoir.Graphene heat build-up light collecting layer it is provided with on the inwall of every vertical-sprue.The two ends up and down of described vertical-sprue are equal It is provided with water conservancy diversion fillet.
The beneficial effects of the utility model are:
1, this utility model is based on graphene battery principle, and makes full use of the good electrical and thermal conductivity of grapheme material and design, Can collection sunlight brings by the way of heat exchange heat, the heat energy collected can be converted into electric energy, both again Can be as thermal source, again can be as power supply, it is achieved that thermal-arrest and generating integrated.
2, this utility model have employed modularized design, and is platy structure, is inclined at roof etc. also by organizing this device more Scene is spliced into plane, connects each group of device by pipeline simultaneously, just can obtain installing quickly, the big I of collector area is on-demand sets The thermal-arrest plane put.It addition, after processing the gap between spliced each group of device, the thermal-arrest plane being spliced into is permissible Directly replace the roof sheet tile in building, while increasing the building feature of environmental protection, control building cost.
Accompanying drawing explanation
Fig. 1 is the structural representation of embodiment one;
Fig. 2 is the structural representation of arm in embodiment one;
Fig. 3 is the structural representation of embodiment two;
Fig. 4 is the structural representation of embodiment two thickness direction.
In figure: 1-housing, 2-Graphene heat-conductivity conducting layer, 3-Graphene heat-sink shell, 4-inlet, 5-liquid outlet, 6-heat conduction Liquid, 7-condenser groove, 8-solar energy vacuum tube, 9-Graphene heat transmission fin, 10-arm, 11-reservoir, 12-water conservancy diversion fillet.
Detailed description of the invention
Below in conjunction with accompanying drawing, this utility model is described further, figure shown in arrow is the conductive fluid 6 stream in housing 1 Dynamic direction.
Embodiment one:
The present embodiment includes housing 1, housing 1 is provided with inlet 4 and liquid outlet 5, is provided with runner in described housing 1, Conductive fluid 6 it is provided with in runner.Solar energy heat collector of the prior art uses the mode of static heat transfer to carry out thermal-arrest mostly, Thermal energy collecting is inefficient, and this utility model uses dynamic mode, is constantly flowed by conductive fluid 6 and is taken out of by heat, continues And be stored in heat container, heat is constantly taken out of the temperature so that conductive fluid and is increased relative to step-down, the temperature difference inside and outside device, from And accelerate heat absorption speed, improve heat transfer rate and heat exchange efficiency.
Described runner includes being positioned at the sprue of centre and being positioned at the arm 10 of sprue both sides, and described inlet 4 is arranged on The lower end of sprue, described liquid outlet 5 is arranged on the upper end of sprue, the one end open of described arm 10, another end seal Stifled, the opening of arm 10 is connected with sprue, and the outside of arm 10 is covered with solar energy vacuum tube 8.
The present embodiment have employed solar energy vacuum tube 8 structure of the prior art, but owing to prior art is entirely different: existing skill Conductive fluid 6 directly it is filled with, owing to solar energy vacuum tube 8 is the glass that structural strength is relatively low, toughness is poor in vacuum tube in art , there is the hidden danger of bursting by freezing booster when cold weather, and the present embodiment use at arm 10 overcoat solar energy vacuum tube 8 in glass pipe Structure, the conductive fluid 6 being arranged in arm 10 does not directly contact with solar energy vacuum tube 8, eliminates the hidden danger of booster.
The outside of described arm 10 tube wall is provided with Graphene heat transmission fin 9, and Graphene heat transmission fin 9 has good heat absorption Performance and heat conductivility, after solar energy vacuum tube 8 absorbs the heat of sunlight, conduct heat to stone by thermal-radiating mode On ink alkene heat transmission fin 9, then through the tube wall of arm 10, heat is reached in conductive fluid 6.This thermaltransmission mode is with existing The transfer mode relying primarily on conduction of heat in solar energy vacuum tube 8 is compared, and collecting efficiency significantly improves.
Described arm 10 is inclined upwardly and is connected on sprue, works as cold weather, when being unsuitable for using solar energy heat collector, Pipe 10 is obliquely installed and makes the conductive fluid 6 in arm 10 to naturally drain, thus further enhancing of the present utility model antifreeze anti- Cold energy.
Being provided with condenser groove 7 on described housing 1, described solar energy vacuum tube 8 is positioned at condenser groove 7, not by directly The sunlight utilized is irradiated on solar energy vacuum tube 8 after condenser groove 7 reflects and converges again, thus make use of light more fully Can, improve the efficiency of light energy utilization.
Embodiment two:
The present embodiment includes housing 1, housing 1 is provided with inlet 4 and liquid outlet 5, is provided with runner in described housing 1, Conductive fluid 6 it is provided with in runner.These structures are identical with embodiment one, then this repeats no more.
Described runner includes being positioned at the feed liquor runner on housing 1 top, being positioned at going out liquid stream road and connecting feed liquor of housing 1 bottom Runner and the vertical-sprue going out liquid stream road, described inlet 4 is positioned at the inflow end of feed liquor runner, and described liquid outlet 5 is positioned at Go out liquid stream road outflow end.
Runner in the present embodiment uses plate design, and conductive fluid 6 straight forming is arranged on the interior flowing of flat runner in housing 1. Compared with pipe heat exchange mode of the prior art, use flat runner to have a lot of benefit: one be can make of the present utility model Thickness is greatly reduced, lighter, it is simple to installs and transports, and decreases materials during manufacture, meets low-carbon environment-friendly, energy-conservation increasing The themes of the times of effect;Two is when light-receiving area is identical, can be greatly increased effective collector area so that collection thermal efficiency increases further Add;In three runners being planar as make housing 1, the volume of conductive fluid 6 increases with the volume ratio of housing 1, therefore can be more abundant The space in housing 1 that utilizes carry out heat exchange and heat conduction, the thermal efficiency is improved significantly;Four is to use flat runner to make this dress The number of parts put greatly reduces, and structure is simplified, and then this device can be processed by 3D printing technique, thus Improve working (machining) efficiency, also allow for factorial praluction simultaneously.Five is that solar energy vacuum tube 8 is limited by structure and material, uses the longevity Life the most only 5 years, and the present embodiment is hardly damaged, service life longer (with building the same life-span).
The upside of the thickness direction of described housing 1 is from top to bottom disposed with Graphene heat-sink shell 3 and Graphene heat-conductivity conducting Layer 2.Graphene heat-sink shell 3 acts on similar to the solar energy vacuum tube 8 in embodiment one, acts primarily as heat-absorbing action, utilizes stone The heat absorption capacity of ink alkene excellence absorbs heat, and can realize more preferable endothermic effect, and heat absorption efficiency is up to 60%.Graphene heat-conductivity conducting Layer 2 is arranged between Graphene heat-sink shell 3 and conductive fluid 6, and effect has two, and one is the heat absorbed by Graphene heat-sink shell 3 Amount is efficient conducts to conductive fluid 6, the luminous energy not being utilized that double absorption passes through from Graphene heat-sink shell 3 simultaneously, Improve the utilization rate of luminous energy;Two is the Graphene heat-conductivity conducting layer 2 electrode as graphene battery, with leading as electrolyte Hydrothermal solution 6 constitutes graphene battery, graphene battery utilize amount of heat to charge voluntarily after supplying power for outside, it is achieved that this device send out Electricity Functional.
Described feed liquor runner and go out liquid stream road and be all obliquely installed, feed liquor runner and go out the axis in liquid stream road and the horizontal edge of housing 1 Angle is all not less than 5 °.Feed liquor runner and go out liquid stream road and be all obliquely installed and make the conductive fluid 6 in runner to naturally drain, thus Enhance antifreeze cold performance of the present utility model, it is to avoid when disabling, conductive fluid 6 remains in runner, thus prevents severe cold sky The generation of freezing accident under gas.After being obliquely installed, just can not in the region that feed liquor runner and the edge going out liquid stream road and housing 1 surround Utilizing, therefore, angle is excessive, and the utilization rate that can cause housing 1 inner space is too low, and angle is too small can cause liquid stream Dynamic not smooth, draw, through analysis and research repeatedly, the preferred disposition that angle is 5 °.
Described vertical-sprue at least two, the reservoir 11 being provided around being made up of heat accumulating of every vertical-sprue. The setting of reservoir 11 makes the heat of absorption be stored, and can ensure the steady of heat supply and power supply within a certain period of time when sunlight deficiency Qualitative, prevent heat supply and power supply state from undergoing mutation and causing the damage of other associate device.
Graphene heat build-up light collecting layer it is provided with on the inwall of every vertical-sprue.Graphene heat build-up light collecting layer can will absorb heat from Graphene Layer 3 and the light the not being utilized secondary reflection again that passes through of Graphene heat-conductivity conducting layer 2 and convergence, be pointed into Graphene heat absorption the most again Layer 3 and Graphene heat-conductivity conducting layer 2 absorb again, improve the efficiency of light energy utilization and collecting efficiency.
The two ends up and down of described vertical-sprue are provided with water conservancy diversion fillet 12, and water conservancy diversion fillet 12 is complied with the flow direction of conductive fluid 6 and set Meter, the flowing making conductive fluid 6 is more smooth and easy, and flow resistance is less, and then reduces the power consumption of the pump driving conductive fluid 6 flowing, reaches Energy-conservation effect.
This utility model is based on graphene battery principle, and makes full use of the good electrical and thermal conductivity of grapheme material and design, Can collection sunlight brings by the way of heat exchange heat, the heat energy collected can be converted into electric energy, both again Can be as thermal source, again can be as power supply, it is achieved that thermal-arrest and generating integrated.This utility model have employed modularized design, and For platy structure, it is inclined at roof etc. scene is spliced into plane by organizing this device more, connect each group by pipeline simultaneously Device, just can realize installing quick, the thermal-arrest plane of the on-demand setting of the big I of collector area.It addition, to spliced each assembling After gap between putting processes, the thermal-arrest plane being spliced into can directly replace the roof sheet tile in building, is increasing building While the feature of environmental protection, control building cost.

Claims (8)

1. a solar energy Graphene 3D thermal-arrest power generation integrated module, including housing (1), it is characterised in that: on housing (1) It is provided with inlet (4) and liquid outlet (5), is provided with runner in described housing (1), in runner, is provided with conductive fluid (6); Described runner includes being positioned at the sprue of centre and being positioned at the arm (10) of sprue both sides, and described inlet (4) is arranged In the lower end of sprue, described liquid outlet (5) is arranged on the upper end of sprue, the one end open of described arm (10), The other end blocks, and the opening of arm (10) is connected with sprue, and the outside of arm (10) is covered with solar energy vacuum tube (8); The outside of described arm (10) tube wall is provided with Graphene heat transmission fin (9).
A kind of solar energy Graphene 3D thermal-arrest power generation integrated module the most according to claim 1, it is characterised in that: described Arm (10) is inclined upwardly and is connected on sprue.
A kind of solar energy Graphene 3D thermal-arrest power generation integrated module the most according to claim 2, it is characterised in that: described Housing (1) on be provided with condenser groove (7), described solar energy vacuum tube (8) is positioned at condenser groove (7).
A kind of solar energy Graphene 3D thermal-arrest power generation integrated module the most according to claim 3, it is characterised in that: described Runner include being positioned at housing (1) top feed liquor runner, be positioned at housing (1) bottom go out liquid stream road and connection feed liquor stream Road and the vertical-sprue going out liquid stream road, described inlet (4) is positioned at the inflow end of feed liquor runner, described liquid outlet (5) Being positioned at liquid stream road outflow end, the upside of the thickness direction of described housing (1) is from top to bottom disposed with Graphene heat-sink shell And Graphene heat-conductivity conducting layer (2) (3).
A kind of solar energy Graphene 3D thermal-arrest power generation integrated module the most according to claim 4, it is characterised in that: described Feed liquor runner and go out liquid stream road and be all obliquely installed, feed liquor runner and to go out the axis in liquid stream road equal with the angle of the horizontal edge of housing (1) Not less than 5 °.
A kind of solar energy Graphene 3D thermal-arrest power generation integrated module the most according to claim 5, it is characterised in that: described Vertical-sprue at least two, the reservoir (11) being provided around being made up of heat accumulating of every vertical-sprue.
A kind of solar energy Graphene 3D thermal-arrest power generation integrated module the most according to claim 6, it is characterised in that: every Graphene heat build-up light collecting layer it is provided with on the inwall of vertical-sprue.
A kind of solar energy Graphene 3D thermal-arrest power generation integrated module the most according to claim 7, it is characterised in that: described The two ends up and down of vertical-sprue be provided with water conservancy diversion fillet (12).
CN201620472052.3U 2016-05-23 2016-05-23 Integrative module of solar energy graphite alkene 3D thermal -arrest electricity generation Active CN205641589U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105865044A (en) * 2016-05-23 2016-08-17 李洪伟 Solar graphene 3D heat collection and power generation integrated module
CN111578541A (en) * 2019-02-16 2020-08-25 雷达 Wind-light complementary type graphene heat collection device and preparation method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105865044A (en) * 2016-05-23 2016-08-17 李洪伟 Solar graphene 3D heat collection and power generation integrated module
CN105865044B (en) * 2016-05-23 2023-09-08 李洪伟 Solar graphene 3D heat collection and power generation integrated module
CN111578541A (en) * 2019-02-16 2020-08-25 雷达 Wind-light complementary type graphene heat collection device and preparation method thereof

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Effective date of registration: 20200717

Address after: Room 507-8, 5 / F, block D, garden, No.8, Ashe street, Nangang District, Harbin City, Heilongjiang Province

Patentee after: Harbin Shisai Technology Co.,Ltd.

Address before: 163000, No. 7, building 2, No. 5, North District, two North Street, North Street, Daowai District, Heilongjiang, Harbin. 1

Patentee before: Li Hongwei

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20211119

Address after: 163000 room 438, block C4, Daqing Service Outsourcing Industrial Park, No. 6-2, Xinfeng Road, high tech Zone, Daqing City, Heilongjiang Province

Patentee after: Daqing Huagu Technology Co.,Ltd.

Address before: 150000 room 507-8, 5 / F, building D, Garden commercial and residential building, No. 8, Ashe River Street, Nangang District, Harbin, Heilongjiang Province

Patentee before: Harbin Shisai Technology Co.,Ltd.

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20220901

Address after: No. 167, Guanlubu Village, Bolan Town, Jimo Section, Qingdao City, Shandong Province, 266000

Patentee after: Qingdao Huagu Machinery Co.,Ltd.

Address before: 163000 room 438, block C4, Daqing Service Outsourcing Industrial Park, No. 6-2, Xinfeng Road, high tech Zone, Daqing City, Heilongjiang Province

Patentee before: Daqing Huagu Technology Co.,Ltd.

TR01 Transfer of patent right