CN102315791A - Composite type generating system - Google Patents

Composite type generating system Download PDF

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Publication number
CN102315791A
CN102315791A CN2010102155742A CN201010215574A CN102315791A CN 102315791 A CN102315791 A CN 102315791A CN 2010102155742 A CN2010102155742 A CN 2010102155742A CN 201010215574 A CN201010215574 A CN 201010215574A CN 102315791 A CN102315791 A CN 102315791A
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CN
China
Prior art keywords
unit
power generation
combined power
housing
air
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CN2010102155742A
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Chinese (zh)
Inventor
林文章
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Epoch Energy Technology Corp
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Epoch Energy Technology Corp
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Priority to CN2010102155742A priority Critical patent/CN102315791A/en
Publication of CN102315791A publication Critical patent/CN102315791A/en
Pending legal-status Critical Current

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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
    • Y02E10/50Photovoltaic [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
    • Y02E10/70Wind energy
    • Y02E10/74Wind turbines with rotation axis perpendicular to the wind direction
    • 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
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/36Hydrogen production from non-carbon containing sources, e.g. by water electrolysis

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  • Electrolytic Production Of Non-Metals, Compounds, Apparatuses Therefor (AREA)
  • Wind Motors (AREA)

Abstract

The invention relates to a composite type generating system, comprising a shell unit, a power unit, a rotating unit, at least one hydrogen-oxygen generating unit and a burning unit, wherein a solar generator of the power unit is utilized for converting the received sunlight into electric energy so as to drive the hydrogen-oxygen generating unit to generate hydrogen-oxygen mixed gas without any polluting substance; and then, a furnace seat of the burning unit is matched for burning the hydrogen-oxygen mixed gas to generate rising gas flow, so that a fan of the rotating unit rotates to drive a kinetic energy generator of the power unit to generate electric energy. By the mode, the energy of the sunlight can be converted into the mechanical kinetic energy so as to drive the kinetic energy generator of the power unit to generate power, and further the better power generation efficiency can be obtained.

Description

The combined power generation system
Technical field
The present invention relates to a kind of electricity generation system, particularly relate to a kind of combined power generation system.
Background technology
Because the fossil fuel reserves of the earth are limited; Face the stage that exhausts at last; Therefore the exploitation of new forms of energy or green energy resource just becomes present stage all circles' target of actively making great efforts with promoting, for example wind energy, waterpower, solar energy, give birth to the renewable energy resources such as mass-energy, underground heat, atmosphere heat energy, or as used heat, discarded object can etc. the recovery energy; Through constantly improving the production model of the above-mentioned energy; In the hope of can reaching accessory substance with low cost, nonpollution environment, and take inexhaustible target, and then can substitute the technology of traditional thermal power generation and nuclear energy power generation gradually.
Technology with solar energy and wind power generation is comparatively ripe at present; And be used widely, but singlely be easier to receive the restriction of natural environment, the for example hours of daylight of alternation of day and night with solar power generation or wind power generation; And seasonal monsoon Influences on Wind Velocity; And can't give full play to the usefulness of its generating, in order to address the above problem, there is the dealer to develop a kind of energy resource system of combined type; As shown in Figure 1; Be No. 200806882 " environmental protection cyclicity wind-water complementary type water regeneration energy resource system " open case of TaiWan, China, this regeneration energy resource system comprises one can provide wind energy unit that the hydraulic source unit 11, of current can provide wind energy 12, a compress cell 13, a converting unit 14, and a cycling element 15.
Convert the current and the wind energy that capture to mechanical kinetic energy through this converting unit 14; And then utilize this mechanical kinetic energy to drive an electric organ 16 and generate electricity; But because that the wind drum pump 18 of the hydraulic pump of circulating water flow 17 and circulation wind energy can drive the horsepower of fluid is big more, its acquisition cost is just high more, and said pump 17,18 needs the running maintenance maintenance; The manpower and the expense that expend are higher; So this regeneration energy resource system is easier to because of the cost-benefit lower pump of use cost 17,18 of considering, the horsepower that drives fluid is limited to, and then the electricity generation efficiency of this regeneration energy resource system is restricted.
Summary of the invention
The object of the present invention is to provide a kind of combined power generation system that can promote electricity generation efficiency.
Combined power generation of the present invention system comprises an outer cover unit, power unit, rotating unit, at least one oxyhydrogen generation unit, and a fuel element.
This outer cover unit comprises that is a hollow casing; This housing defines the flowing space that can supply circulation of air; And this housing has one and is formed at upper limb and can the outlet of the derivation of the air in this flowing space be reached air guide hole that at least one is communicated with this flowing space and can imports outside air.
This power unit comprises a plurality of solar cell arrays that are laid on this housing and can the sunlight that receive be converted to electric energy, and a kinetic energy electric organ that is arranged in this housing and can mechanical kinetic energy be converted to electric energy.
This rotating unit comprises a rotating shaft that connects this kinetic energy electric organ and can drive this kinetic energy electric organ running, and a plurality of intervals are arranged on the fan in this rotating shaft.
This oxyhydrogen generation unit comprises an electrolysis tank that is loaded with electrolyte; Reach the electrode slice that the multi-disc compartment of terrain is arranged in this electrolysis tank and is electrically connected on said solar cell array, each electrode slice can borrow this electrolyte of electric energy electrolysis of said solar cell array output to produce hydrogen and oxygen gas mixture.
This fuel element is arranged in this housing and comprises that at least one can use hydrogen and oxygen gas mixture to produce the stove seat of thermal source as combustion gas, and this stove seat is used for heating the air of this flowing space and produces ascending air, and then drives said fan rotation.
The object of the invention and solve its technical problem and also can adopt following technical measures further to realize.
Preferably, aforesaid combined power generation system, the wherein interior cross section of this housing convergent from lower to upper.
Preferably; Aforesaid combined power generation system; Wherein this housing is the multiaspect taper and also has a plurality of inclined planes; The air guide hole that this flowing space of said connection also can import outside air is a plurality of and corresponding with said inclined plane setting, and said solar cell array correspondence is laid on the said inclined plane.
Preferably; Aforesaid combined power generation system; Wherein this combined power generation system also comprises one and can outside air be directed to the guide unit in this flowing space; This guide unit has a plurality of pedestals that are arranged on corresponding inclined plane and are communicated with corresponding air guide hole, and a plurality ofly is arranged on the corresponding pedestal and can outside air be guided into the guiding impeller in this flowing space.
Preferably, aforesaid combined power generation system, wherein this outer cover unit also comprises a lid that is arranged on this housing upper limb and can hides this outlet.
Preferably, aforesaid combined power generation system, wherein this power unit also comprises an electric storage means that is electrically connected this kinetic energy electric organ and can stores the electric energy that this kinetic energy electric organ produced.
Preferably, aforesaid combined power generation system, wherein this oxyhydrogen generation unit also comprises a gas bomb that is communicated with this electrolysis tank, is used to store the hydrogen and oxygen gas mixture that electrolysis produces.
Preferably; Aforesaid combined power generation system; Wherein each solar cell array comprises that one can absorb sunlight with the solar panels that convert electric energy to, an accumulate spare that is electrically connected these solar panels and can stores electric energy; And a control piece that is electrically connected this accumulate spare, this control piece can be controlled the electric energy of the electrode slice that exports this oxyhydrogen generation unit to.
Beneficial effect of the present invention is: utilize and convert the sunlight that receives to electric energy; Produce the hydrogen and oxygen gas mixture that does not have any polluter and can drive this oxyhydrogen generation unit; Cooperate the stove seat hydrogen combusted oxygen gas mixture of this fuel element again and produce ascending air; Make said fan rotation and drive this kinetic energy electric organ and produce electric energy; Mode can become kinetic energy with the energy indirect conversion of sunlight and drive this kinetic energy electric organ generating whereby, and then can obtain preferable electricity generation efficiency and have environmental benefit.
Description of drawings
Fig. 1 is a system block diagrams, the connection relationship of each member in TaiWan, China is described No. 200806882 " environmental protection cyclicity wind-water complementary type water regeneration energy resource system " open case;
Fig. 2 is a schematic side view, and the internal structure of first preferred embodiment of combined power generation of the present invention system is described;
Fig. 3 is a schematic top plan view, aid illustration Fig. 2, explanation for ease, the structure of omission solar cell array among the figure;
Fig. 4 is a schematic perspective view, and the connection relationship between solar cell array, oxyhydrogen generation unit and the fuel element of this first preferred embodiment is described;
Fig. 5 is a flow chart, and the power conversion flow process of this first preferred embodiment is described;
Fig. 6 is a schematic side view, and the internal structure of second preferred embodiment of combined power generation of the present invention system is described.
Embodiment
Below in conjunction with accompanying drawing and embodiment the present invention is elaborated.Before the present invention is described in detail, be noted that in following description, similar elements is represented with identical numbering.
Like Fig. 2, shown in Figure 3, first preferred embodiment of combined power generation of the present invention system comprises an outer cover unit 2, a power unit 3, a rotating unit 4, two oxyhydrogen generation units 5, and a fuel element 6.
This outer cover unit 2 comprises that one is hollow casing 21; And define one and supply the flowing space 22 of circulation of air; This housing 21 has the outlet 23 that is formed at upper limb and is communicated with this flowing space 22 and can the air in this flowing space 22 be derived, and four air guide holes 24 that are communicated with these flowing spaces 22 and can import outside air.
In the present embodiment, this housing 21 is the pyramidal four sides of similar butt taper kenel, and this housing 21 has four inclined planes 211; Said four air guide holes 24 are respectively formed on the said inclined plane 211, and the kenel that is noted that this housing 21 also can be coniform or multiaspect taper; As long as the interior cross section of this housing 21 is convergents from lower to upper; And the air in this flowing space 22 is pushed from lower to upper, and shown in arrow among Fig. 2 202, flow toward this outlet 23, make the effect that produces collection wind in this housing 21; And then can strengthen the rotating speed that increases this rotating unit 4 through increasing inner blast and speed air flow.
This power unit 3 comprises that a plurality of correspondences are laid on the inclined plane 211 of this housing 21 and can be arranged on the solar cell array 31, that the sunlight that receives converts electric energy in this housing 21 and can mechanical kinetic energy be converted to the kinetic energy electric organ 32 of electric energy, and one is electrically connected this kinetic energy electric organ 32 and can stores the electric storage means 33 of the electric energy that this kinetic energy electric organ 32 produced.
This rotating unit 4 comprises that one connects this kinetic energy electric organ 32 and can drive the rotating shaft 41 that this kinetic energy electric organ 32 turns round; And a plurality of intervals are arranged on the fan 42 in this rotating shaft 41; The rotation of this rotating shaft 41 can make these kinetic energy electric organ 32 inner coils (figure does not show) form induced electromotive force and produce electric energy; And then store in this electric storage means 33 because the internal structure and the start principle of this kinetic energy electric organ 32, for those skilled in the art can think easily and; So do not give unnecessary details, no longer draw yet at this.
As shown in Figure 4 (is convenient explanation; Only illustrate four solar cell arrays 31 among the figure; An and oxyhydrogen generation unit 5); Each solar cell array 31 comprises that one can absorb the accumulate spare 312 that sunlight is electrically connected these solar panels 311 with the solar panels 311, that convert electric energy to and can stores electric energy, and the control piece 313 of electrical connection this accumulate spare 312; Process for semi-conducting material at these solar panels 311 that are noted that each solar cell array 31, promote the potential energy of the atom outer-shell electron in the semiconductor with the energy of sunlight; Let electronics from atom, dissociate out; The free electron that dissociates out has negative electrical charge, and free coming from by the atom behind the electronics then forms hole (having positive charge); Just form potential difference between free electron here and hole, to produce electric energy.
Each oxyhydrogen generation unit 5 comprises that one is loaded with the electrode slice 52 that the electrolysis tank 51 of electrolyte 54, a plurality of compartment of terrain are arranged in this electrolysis tank 51 and are electrically connected on the control piece 313 of said solar cell array 31; And one be communicated with this electrolysis tank 51 and be used to store the gas bomb 53 of the hydrogen and oxygen gas mixture that electrolysis goes out; Each electrode slice 52 can produce hydrogen and oxygen gas mixture by this electrolyte 54 of electrolysis, and the control piece 313 of said solar cell array 31 can be controlled the electric energy of the electrode slice 52 that exports each oxyhydrogen generation unit 5 to.
Like Fig. 2, shown in Figure 4; This fuel element 6 is arranged in this housing 21 and comprises two stove seats 61 (only drawing among Fig. 4), and the hydrogen and oxygen gas mixture that each stove seat 61 can use corresponding gas bomb 53 is as combustion gas, is used for heating the air of this flowing space 22 and produces the ascending air shown in Fig. 2 arrow 202; And then drive 42 rotations of said fan; What further specify is that the user can design one or more oxyhydrogen generation units 5 according to the actual demand of hydrogen and oxygen gas mixture, in addition; Along with the change of the size (size of the flowing space 22) of this housing 21 or the difference of the air heat degree in this flowing space 22; Can be provided with the stove seat 61 of specific quantity, therefore through increasing the quantity of said stove seat 61, the firing rate that just can make the air in this flowing space 22 sooner or temperature higher.
According to said structure, and cooperate shown in Figure 5ly, the present invention utilizes the conversion of multiple natural energy; To reach the effect of generating, at first, after receiving sunlight, said solar cell array 31 produces electric energy; To provide said oxyhydrogen generation unit 5 electrolysis to produce hydrogen and oxygen gas mixture; The stove seat 61 of this fuel element 6 can make the hydrogen and oxygen gas mixture burning, and the air in this flowing space 22 is heated, and then a large amount of hot-airs is flowed and the ascending air of generation shown in Fig. 2 arrow 202 toward this outlet 23; And then the air pressure in this flowing space 22 is reduced; The higher outside air of air pressure is flowed into and the generation convection current in this housing 21 from said air guide hole 24 shown in arrow 201, said fan 42 is constantly blown and these rotating shaft 41 rotations of interlock by ascending air, and then make this kinetic energy electric organ 32 produced electric energy by these rotating shaft 41 drives.
Through above-mentioned design, combined power generation of the present invention system has the following advantages compared to existing regeneration energy resource system really:
1. electricity generation efficiency is higher: be restricted because of considering of cost makes the horsepower of pump compared to background technology; Be not easy to promote effectively electricity generation efficiency; And the present invention can utilize quantity, the volume that increases said fan 42; Or set up the flow of wind-guiding 24 with the ascending air that promotes this flowing space 22, convert more electric energy to produce bigger wind energy.
2. simple in structure: owing to generate electricity and to pressurize through compress cell 13 convection cells again in the background technology; Just have these converting unit 14 generatings of enough power drives; And must utilize 15 pairs of current of cycling element and wind energy to reclaim, thereby cause inner power generation cycle complex structure, in comparison; The present invention is through the generation mode of hydrogen combusted oxygen gas mixture generation ascending air, and structure is comparatively simple.
3. has environmental benefit: because the present invention utilizes solar cell array 31, the oxyhydrogen generation unit 5 generation ascending air that matches with fuel element 6; And then drive this kinetic energy electric organ 32 and rotate; Can exempt a large amount of generating waters, thereby reach the environmental benefit that is different from background technology.
As shown in Figure 6; Second preferred embodiment for combined power generation of the present invention system; Identical with the disclosed structure of first preferred embodiment haply; Different places are: this outer cover unit 2 comprises that also one is arranged on these housing 21 upper limbs and can hides the lid 25 of this outlet 23, is used to avoid environmental contaminants or rainwater to fall into this housing 21 inside, further protects the facility in this housing 21.
In addition; This combined power generation system also comprises one can be directed to the guide unit 7 in this flowing space 22 through said air guide hole 24 with outside air; This guide unit 7 has four and is arranged on the corresponding inclined plane 211 and the pedestal 71 that is communicated with corresponding air guide hole 24; And four be arranged on the corresponding pedestal 71 and can outside air be directed into the guiding impeller 72 (because of the visual angle relation, only showing two among the figure) in the flowing space 22 via said air guide hole 24, because said guiding impeller 72 can increase the air quantity of the outside air of importing; Relatively can improve the flow of ascending air, and then promote the rotating speed of said fan 42 and increase energy output.
In sum; The utilization of combined power generation of the present invention system converts the sunlight that receives to electric energy; Produce the hydrogen and oxygen gas mixture that does not have any polluter and can drive this oxyhydrogen generation unit 5; Cooperate these fuel element 6 hydrogen combusted oxygen gas mixtures again and produce ascending air, make said fan 42 rotate and drive this kinetic energy electric organ 32 generation electric energy, mode becomes the power conversion of sunlight mechanical kinetic energy and drives kinetic energy electric organ 32 to generate electricity whereby; Can obtain preferable generating effect and have environmental benefit, so can reach the object of the invention really.

Claims (8)

1. a combined power generation system is characterized in that, this combined power generation system comprises:
An outer cover unit; Comprise that is a hollow casing; This housing defines the flowing space that can supply circulation of air; And this housing has one and is formed at upper limb and can the outlet of the derivation of the air in this flowing space be reached air guide hole that at least one is communicated with this flowing space and can imports outside air;
A power unit comprises a plurality of solar cell arrays that are laid on this housing and can the sunlight that receive be converted to electric energy, and a kinetic energy electric organ that is arranged in this housing and can mechanical kinetic energy be converted to electric energy;
A rotating unit comprise a rotating shaft that connects this kinetic energy electric organ and can drive this kinetic energy electric organ running, and a plurality of intervals is arranged on the fan in this rotating shaft;
At least one oxyhydrogen generation unit; Comprise an electrolysis tank that is loaded with electrolyte; Reach the electrode slice that the multi-disc compartment of terrain is arranged in this electrolysis tank and is electrically connected on said solar cell array, each electrode slice can borrow this electrolyte of electric energy electrolysis of said solar cell array output to produce hydrogen and oxygen gas mixture;
A fuel element is arranged in this housing and comprises that at least one can use hydrogen and oxygen gas mixture to produce the stove seat of thermal source as combustion gas, and this stove seat is used for heating the air of this flowing space and produces ascending air, and then drives said fan rotation.
2. combined power generation according to claim 1 system, it is characterized in that: the interior cross section of this housing is convergent from lower to upper.
3. combined power generation according to claim 2 system; It is characterized in that: this housing is the multiaspect taper and also has a plurality of inclined planes; The air guide hole that this flowing space of said connection also can import outside air is a plurality of and corresponding with said inclined plane setting, and said solar cell array correspondence is laid on the said inclined plane.
4. combined power generation according to claim 3 system; It is characterized in that: this combined power generation system also comprises one can be directed to the guide unit in this flowing space with outside air; This guide unit has a plurality of pedestals that are arranged on corresponding inclined plane and are communicated with corresponding air guide hole, and a plurality ofly is arranged on the corresponding pedestal and can outside air be guided into the guiding impeller in this flowing space.
5. according to the described combined power generation of arbitrary claim system in the claim 1 to 4, it is characterized in that: this outer cover unit also comprises a lid that is arranged on this housing upper limb and can hides this outlet.
6. according to the described combined power generation of arbitrary claim system in the claim 1 to 4, it is characterized in that: this power unit also comprises an electric storage means that is electrically connected this kinetic energy electric organ and can stores the electric energy that this kinetic energy electric organ produced.
7. according to the described combined power generation of arbitrary claim system in the claim 1 to 4, it is characterized in that: this oxyhydrogen generation unit also comprises a gas bomb that is communicated with this electrolysis tank, is used to store the hydrogen and oxygen gas mixture that electrolysis produces.
8. according to the described combined power generation of arbitrary claim system in the claim 1 to 4; It is characterized in that: each solar cell array comprises that one can absorb sunlight with the solar panels that convert electric energy to, an accumulate spare that is electrically connected these solar panels and can stores electric energy; And a control piece that is electrically connected this accumulate spare, this control piece can be controlled the electric energy of the electrode slice that exports this oxyhydrogen generation unit to.
CN2010102155742A 2010-07-02 2010-07-02 Composite type generating system Pending CN102315791A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105225705A (en) * 2015-10-28 2016-01-06 中国工程物理研究院材料研究所 There is the non-active hydrogen recombiner and uses thereof of wind-powered electricity generation, thermoelectricity translation function

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020182946A1 (en) * 2001-05-29 2002-12-05 Eitaro Tanaka Power generation plant ship
CN1997859A (en) * 2004-04-23 2007-07-11 Msc能量私人有限公司 Structure and methods using multi-systems for electricity generation and water desalination
US20070235326A1 (en) * 2006-03-29 2007-10-11 Wen-Chang Lin Solar-powered oxyhydrogen generating system
CN101225800A (en) * 2008-02-01 2008-07-23 王瑞明 Concentration solar wind power generation method
CN101303176A (en) * 2007-05-09 2008-11-12 张润忠 Solar heat power generation system
CN201821293U (en) * 2010-09-14 2011-05-04 友荃科技实业股份有限公司 Compound power generation system

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020182946A1 (en) * 2001-05-29 2002-12-05 Eitaro Tanaka Power generation plant ship
CN1997859A (en) * 2004-04-23 2007-07-11 Msc能量私人有限公司 Structure and methods using multi-systems for electricity generation and water desalination
US20070235326A1 (en) * 2006-03-29 2007-10-11 Wen-Chang Lin Solar-powered oxyhydrogen generating system
CN101303176A (en) * 2007-05-09 2008-11-12 张润忠 Solar heat power generation system
CN101225800A (en) * 2008-02-01 2008-07-23 王瑞明 Concentration solar wind power generation method
CN201821293U (en) * 2010-09-14 2011-05-04 友荃科技实业股份有限公司 Compound power generation system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105225705A (en) * 2015-10-28 2016-01-06 中国工程物理研究院材料研究所 There is the non-active hydrogen recombiner and uses thereof of wind-powered electricity generation, thermoelectricity translation function

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Application publication date: 20120111