CN102748198B - Marine physical energy comprehensive conversion power generation system - Google Patents

Marine physical energy comprehensive conversion power generation system Download PDF

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Publication number
CN102748198B
CN102748198B CN201210227770.0A CN201210227770A CN102748198B CN 102748198 B CN102748198 B CN 102748198B CN 201210227770 A CN201210227770 A CN 201210227770A CN 102748198 B CN102748198 B CN 102748198B
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China
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cylinder body
water
working platform
way valve
fixed
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Expired - Fee Related
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CN201210227770.0A
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CN102748198A (en
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丁传明
王振铎
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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
    • Y02E10/30Energy from the sea, e.g. using wave energy or salinity gradient

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  • Other Liquid Machine Or Engine Such As Wave Power Use (AREA)

Abstract

The invention provides a marine physical energy comprehensive conversion power generation system, belonging to the field of marine energy conversion and power generation technology. The marine physical energy comprehensive conversion power generation system comprises a floating working platform, a single frame body fixing base, a first floating ball, a first cylinder body, a first gemel, a single frame body, a first gear pump, a second gear pump, a first water turbine, a drainage cabin, a water storage bin, an electric generator, a second gemel, a second cylinder body, a second floating ball, a main frame body, a main frame body fixing base, a second water turbine, a wind power guide channel, a first rope, a rope fixing pile, a flywheel, a second rope, a third cylinder body, a fourth cylinder body, a third gemel, a cam, an outer shell, a brake pad, a wind direction board and a wind collecting cover. The marine physical energy comprehensive conversion power generation system has the advantages of being stable in structure, complete in protection functions and capable of comprehensively utilizing the wave, tide, ocean current and wind energy of the ocean for generating power. The marine physical energy comprehensive conversion power generation system takes the inexhaustible energy of the nature as power sources, thus realizing clean energy and environmental protection indeed, and reaching the aims of zero pollution and zero emission.

Description

Marine physics energy synthesis conversion power generation system
Technical field
The present invention relates to a kind of marine physics energy synthesis conversion power generation system, belong to ocean energy conversion and technical field of power generation.
Background technique
Existing thermal power generation need to utilize the coal burning generating of nature, has not only caused the significant wastage of the limited energy, and the waste gas that coal burning produces is directly discharged in atmosphere, causes the foul pollution of air, environment is caused to great destruction simultaneously.Existing water generating need to block water and build a dam, and wastes huge manpower and materials and financial resources, and not only limited water resources is little, environment is also caused to great destruction simultaneously.
Summary of the invention
The object of the invention is for solving existing problem, and then a kind of marine physics energy synthesis conversion power generation system is provided.
The object of the invention is to be achieved through the following technical solutions:
A kind of marine physics energy synthesis conversion power generation system, comprise: working platform floats, monomer support body immobilizing foundation, the first ball float, the first cylinder body, the first hinge, monomer support body, the first gear pump, the second gear pump, the first water turbine, draining storehouse, water storing bin, generator, the second hinge, the second cylinder body, the second ball float, main frame body, main frame body immobilizing foundation, the second water turbine, wind-force guide channel, the first hawser, hawser fixing stake, flywheel, the second hawser, the 3rd cylinder body, the 4th cylinder body, the 3rd hinge, cam, frame, brake block, wind direction board, wind-collection cover, bearing and one-way valve, unsteady working platform swims in the region of main frame body, the working platform that floats is fixed on hawser fixing stake by the first hawser, water storing bin and draining storehouse are located at the inside of the working platform that floats, seabed is fixed on monomer support body immobilizing foundation and main frame body basis, and monomer support body and main frame body are individually fixed on monomer support body immobilizing foundation and main frame body immobilizing foundation, evenly arrange and fix on the outside of frame by the 3rd hinges fixing in one end of n the first cylinder body, cam is fixed on the 3rd hinge, the other end of n the first cylinder body is fixed with the first ball float, and one end of the first ball float fixes on monomer support body by the first hinges fixing, six brake blocks of evenly arranging are equipped with in the inside of frame, and frame is sleeved on support unit together with brake block, the water intake up and down of the first cylinder body is connected to one-way valve, the second water turbine is fixed on and floats on working platform, the output shaft of the second water turbine is connected with the second gear pump, the water intake of the second gear pump and water outlet are all connected with one-way valve, wind-force guide channel is fixed on and floats on working platform, and wind-collection cover is fixed on wind-force guide channel by bearing together with wind direction board, flywheel is hingedly fixed in and is floated on working platform by support, one end of the 3rd cylinder body and the 4th cylinder body is connected on the transmission shaft of flywheel, the other end of the 3rd cylinder body and the 4th cylinder body is hingedly fixed in and floats on working platform, the water intake of the 3rd cylinder body and the 4th cylinder body is connected with one-way valve, the water outlet of the 3rd cylinder body and the 4th cylinder body is connected with one-way valve, after one end of the second hawser is fixed on and is also tightly wrapped on flywheel on the working platform that floats, the other end is fixed on the seabed portion of main frame body, the transmission shaft of flywheel is connected with the first gear pump, the water intake of the first gear pump is connected with one-way valve, the water outlet of the first gear pump is connected with one-way valve, the first water turbine is arranged in draining storehouse, and the output shaft of the first water turbine is fastened on the transmission shaft of the generator in working bin, one end of the second cylinder body is hingedly fixed in floats on working platform, the other end of the second cylinder body is connected with the second ball float, the second ball float is fixed on and is floated on working platform by the second hinges fixing, and the water intake of the second cylinder body is connected with one-way valve, and the water outlet of the second cylinder body is connected with one-way valve, described the first ball float and the first cylinder body are 60.
The present invention compared with prior art tool has the following advantages: structural stability, protective function is complete, can fully utilize wave, morning and evening tides, ocean current and the wind energy power of ocean.Power generation system of the present invention is to take from the inexhaustible energy of nature as power source, has really accomplished clean energy resource and environmental protection, has realized zero and has polluted and zero-emission.
Brief description of the drawings
Fig. 1 is the structural representation of marine physics energy synthesis conversion power generation system of the present invention;
Fig. 2 is the side view of marine physics energy synthesis conversion power generation system;
Fig. 3 is the plan view of marine physics energy synthesis conversion power generation system;
Fig. 4 is that the A of Fig. 1 is to view;
Fig. 5 is that the B of Fig. 1 is to view;
Fig. 6 is that the C of Fig. 2 is to view;
Fig. 7 is that the D of Fig. 3 is to view.
Embodiment
Below in conjunction with accompanying drawing, the present invention is described in further detail: the present embodiment is implemented under taking technical solution of the present invention as prerequisite, provided detailed mode of execution, but protection scope of the present invention is not limited to following embodiment.
As shown in Fig. 1~Fig. 7, a kind of marine physics energy synthesis conversion power generation system that the present embodiment provides, comprise: working platform 1 floats, monomer support body immobilizing foundation 2, the first ball float 3, the first cylinder body 4, the first hinge 5, monomer support body 6, the first gear pump 8, the second gear pump 9, the first water turbine 11, draining storehouse 12, water storing bin 13, generator 14, the second hinge 15, the second cylinder body 16, the second ball float 17, main frame body 18, main frame body immobilizing foundation 19, the second water turbine 20, wind-force guide channel 21, the first hawser 23, hawser fixing stake 24, flywheel 26, the second hawser 27, the 3rd cylinder body 28, the 4th cylinder body 29, the 3rd hinge 30, cam 31, frame 32, brake block 33, wind direction board 34, wind-collection cover 35, bearing 36 and one-way valve 37, the working platform 1 that floats swims in the region of main frame body 18, the working platform 1 that floats is fixed on hawser fixing stake 24 by the first hawser 23, water storing bin 13 and draining storehouse 12 are located at the inside of the working platform 1 that floats, seabed is fixed on monomer support body immobilizing foundation 2 and main frame body basis 19, and monomer support body 6 and main frame body 18 are individually fixed on monomer support body immobilizing foundation 2 and main frame body immobilizing foundation 19, evenly arrange and be fixed on the outside of frame 32 by the 3rd hinge 30 in one end of n the first cylinder body 4, cam 31 is fixed on the 3rd hinge 30, one end that the other end of n the first cylinder body 4 is fixed with the first ball float 3, the first ball floats 3 is fixed on monomer support body 6 by the first hinge 5, n the brake block 33 of evenly arranging is equipped with in the inside of frame 32, and frame 32 is sleeved on support unit 6 together with brake block 33, the water intake up and down of the first cylinder body 4 is connected to one-way valve 37, the second water turbine 20 is fixed on and floats on working platform 1, the output shaft of the second water turbine 20 is connected with the second gear pump 9, the water intake of the second gear pump 9 and water outlet are all connected with one-way valve 37, wind-force guide channel 21 is fixed on and floats on working platform 1, and wind-collection cover 35 is fixed on wind-force guide channel 21 by bearing 36 together with wind direction board 34, flywheel 26 is hingedly fixed in and is floated on working platform 1 by support, one end of the 3rd cylinder body 28 and the 4th cylinder body 29 is connected on the transmission shaft of flywheel 26, the other end of the 3rd cylinder body 28 and the 4th cylinder body 29 is hingedly fixed in and floats on working platform 1, the water intake of the 3rd cylinder body 28 and the 4th cylinder body 29 is connected with one-way valve 37, the water outlet of the 3rd cylinder body 28 and the 4th cylinder body 29 is connected with one-way valve 37, after one end of the second hawser 27 is fixed on and is also tightly wrapped on flywheel 26 on the working platform 1 that floats, the other end is fixed on the seabed portion of main frame body 18, the transmission shaft of flywheel 26 is connected with the first gear pump 8, the water intake of the first gear pump 8 is connected with one-way valve 37, the water outlet of the first gear pump 8 is connected with one-way valve 37, the first water turbine 11 is arranged on 12 li, draining storehouse, and the output shaft of the first water turbine 11 is fastened on the transmission shaft of the generator 14 in working bin, one end of the second cylinder body 16 is hingedly fixed in floats on working platform 1, the other end of the second cylinder body 16 is connected with the second ball float 17, the second ball float 17 is fixed on and is floated on working platform 1 by the second hinge 15, the water outlet that the water intake of the second cylinder body 16 is connected with one-way valve 37, the second cylinder bodies 16 is connected with one-way valve 37.
The bottom that the outside in described draining storehouse 12 or draining storehouse are connected to the working platform that floats is provided with drain opening 7.
The bottom of described water storing bin 13 is provided with discharge opening 10.
Further, also comprise yielding rubber 22, described yielding rubber 22 is arranged on above the outer of the working platform 1 that floats.For absorbing the working platform rolling energy across the sea that floats.
Also comprise closed hood 25, described closed hood 25 is fixed on the working platform 1 that floats and covers the second water turbine 20.Be used for sealing water turbine.
Also comprise filter screen 38, the feed-water end that the feed-water end of the one-way valve 37 of the water intake up and down of the feed-water end of described the first gear pump 8 water intake one-way valves 37, the feed-water end of the second gear pump 9 water intake one-way valves 37, the first cylinder body 4, the water intake of the second cylinder body 16 are connected with the feed-water end of one-way valve 37, the 3rd cylinder body 28 and the 4th cylinder body 29 water intake one-way valves 37 is all provided with filter screen 38.For filtering sea.
Working principle:
1, utilize the wave of ocean:
Swim in individual the first ball float 3 of n and second ball float 17 on sea, and unsteady working platform 1 comes interim at wave, individual the first ball float 3 of n and the second ball float 17 and unsteady working platform 1 are subject to wave to promote the impact of energy, individual the first ball float 3 of n and the second ball float 17 move up around the first hinge 5 and the second hinge 15, when mobile, drive the piston of 16 li of the first cylinder body 4 and the second cylinder bodies to move up, seawater enters cylinder body through the lower water intake of the first cylinder body 4 and the second cylinder body 16 from filter screen 38 and one-way valve 37, the seawater that the first cylinder body 4 and the second cylinder body 16 enter in cylinder body from upper water intake simultaneously enters in the water storing bin of the working platform 1 that floats through one-way valve through upper water-out mouth, float working platform 1 in the time that wave arrives to move up, rotate by the second hawser 27 flywheel drivens 26, flywheel 26 drives the first gear pump 8 to rotate, and seawater sucks and enter through one-way valve from drain opening the water storing bin 13 of the working platform 1 that floats from the water intake of the first gear pump 8 through filter screen, one-way valve, the impact that flywheel 26 is rocked by unsteady working platform, flywheel 26 moves down around support bracket fastened hinge, drive the piston of 29 li of the 3rd cylinder body 28 and the 4th cylinder bodies to move down, seawater enters cylinder body through the upper water intake of the 3rd cylinder body 28 and the 4th cylinder body 29 from filter screen and one-way valve, and the seawater that the 3rd cylinder body 28 and the 4th cylinder body 29 enter in cylinder body from lower water intake simultaneously enters in the water storing bin 13 of the working platform 1 that floats through one-way valve through lower outlet, when wave past tense, individual the first ball float 3 of n and the second ball float 17, effect by self gravitation moves down around the first hinge 5 and the second hinge 15, when mobile, drive the piston of 16 li of the first cylinder body 4 and the second cylinder bodies to move down, seawater enters cylinder body through the upper water intake of the first cylinder body 4 and the second cylinder body 16 from filter screen and one-way valve, and simultaneously the first cylinder body 4 and the second cylinder body 16 enter seawater in cylinder body and enter through one-way valve through lower outlet the water storing bin 13 of the working platform 1 that floats from lower water intake, the working platform 1 that floats moves down by the effect of self gravitation, when mobile, rotate by the second hawser 27 flywheel drivens 26, flywheel 26 drives the first gear pump 8 to rotate, and seawater sucks and enter through one-way valve from drain opening the water storing bin 13 of the working platform 1 that floats from the water intake of the first gear pump 8 through filter screen, one-way valve, the impact that flywheel 26 is rocked by unsteady working platform, flywheel 26 moves up around support bracket fastened hinge, drive the piston of 29 li of the 3rd cylinder body 28 and the 4th cylinder bodies to move up, seawater enters cylinder body through the lower water intake of the 3rd cylinder body 28 and the 4th cylinder body 29 from filter screen and one-way valve, the seawater that the 3rd cylinder body 28 and the 4th cylinder body 29 enter in cylinder body from upper water intake simultaneously enters in the water storing bin 13 of the working platform 1 that floats through one-way valve through upper water-out mouth, completes the storage of retaining energy.
2, utilize the ocean current of ocean:
N the second water turbine 20 is fixed on and floats on working platform 1, in the time of marine stream, utilizing the energy of marine stream to promote the second water turbine 20 rotates, the second water turbine 20 drives the second gear pump 9 to rotate, and seawater enters the second gear pump 9 water outlet from the second gear pump 9 again from the water intake of the second gear pump 9 through filter screen and one-way valve and enters the water storing bin 13 of the working platform 1 that floats through one-way valve; Complete the storage of retaining energy.
3, utilize the tide of ocean:
In the time of high tide, the working platform 1 that floats is moved up by the impact of high tide, moving, rotate by the second hawser 27 flywheel drivens 26, flywheel 26 drives the first gear pump 8 to rotate, seawater is through filter screen, and one-way valve sucks and enter through one-way valve from drain opening the water storing bin 13 of the working platform 1 that floats from the water intake of the first gear pump 8; The impact that flywheel 26 is rocked by unsteady working platform, flywheel 26 moves down around support bracket fastened hinge, drive the piston of 29 li of the 3rd cylinder body 28 and the 4th cylinder bodies to move down, seawater enters cylinder body through the upper water intake of the 3rd cylinder body 28 and the 4th cylinder body 29 from filter screen and one-way valve, and the seawater that the 3rd cylinder body 28 and the 4th cylinder body 29 enter in cylinder body from lower water intake simultaneously enters in the water storing bin 13 of the working platform 1 that floats through one-way valve through lower outlet; When tide past tense, the working platform 1 that floats moves down by the effect of self gravitation, when mobile, rotate by the second hawser 27 flywheel drivens 26, flywheel 26 drives the first gear pump 8 to rotate, seawater is through filter screen, and one-way valve sucks and enter through one-way valve from drain opening the water storing bin of the working platform 1 that floats from the water intake of the first gear pump 8; The impact that flywheel 26 is rocked by unsteady working platform, flywheel 26 moves up around support bracket fastened hinge, drive the piston of 29 li of the 3rd cylinder body 28 and the 4th cylinder bodies to move up, seawater enters cylinder body through the lower water intake of the 3rd cylinder body 28 and the 4th cylinder body 29 from filter screen and one-way valve, the seawater that the 3rd cylinder body 28 and the 4th cylinder body 29 enter in cylinder body from upper water intake simultaneously enters in the water storing bin of the working platform 1 that floats through one-way valve through upper water-out mouth, completes the storage of retaining energy.
Be fixed on the frame 32 on monomer support body 6, when tide comes interim, n the impact that the first ball float 3 is strengthened by seawater pressure, n the first ball float 3 turns clockwise drive n the first cylinder body 4 around the first hinge 5 and the 3rd hinge 30, be with moving cam 31 to turn clockwise simultaneously, the brake block of compression 33 is discharged, be subject to the impact of buoyant of sea water, n the first ball float 3 moves up the piston and the frame 32 that drive n the first cylinder body 4 simultaneously, seawater pressure progressively reduces when moving up, n the first ball float 3 is rotated counterclockwise drive n the first cylinder body 4 around the first hinge 5 and the 3rd hinge 30, be with moving cam 31 to be rotated counterclockwise simultaneously, the brake block 33 discharging is compressed gradually, until be fixed on monomer support body 6.In the time of seawater ebb tide, n the first ball float 3 is subject to the impact of self gravitation, n the first ball float 3 is rotated counterclockwise drive n the first cylinder body 4 around the first hinge 5 and the 3rd hinge 30, be with moving cam 31 to be rotated counterclockwise simultaneously, the brake block of compression 33 is discharged, be subject to the impact of self gravitation, n the first ball float 3 moves down the piston and the frame 32 that drive n the first cylinder body 4 simultaneously, the progressively increasing of seawater pressure when moving down, n the first ball float 3 turns clockwise drive n the first cylinder body 4 around the first hinge 5 and the 3rd hinge 30, be with moving cam 31 to turn clockwise simultaneously, the brake block 33 discharging is compressed gradually, until be fixed on monomer support body 6.
4, utilize the sea wind of ocean:
In the time that ocean welcomes sea wind, sea wind drives wind-collection cover 35 to rotate around the bearing 36 being fixed on the wind-force guiding air channel 21 of floating on working platform 1 by blowing wind direction board 34, until wind-collection cover 35 is just to the direction of the wind comes from, wind-force will enter in closed hood 25 by the wind-force air channel 21 of leading, the blade that promotes water turbine 20 rotates water turbine 20, the sea wind that enters 25 li of closed hoods is discharged through the rear portion of closed hood, completes energy acquisition and the transmission of sea wind.
The above; it is only preferably embodiment of the present invention; these embodiments are all the different implementations based under general idea of the present invention; and protection scope of the present invention is not limited to this; any be familiar with those skilled in the art the present invention disclose technical scope in; the variation that can expect easily or replacement, within all should being encompassed in protection scope of the present invention.

Claims (6)

1. a marine physics energy synthesis conversion power generation system, it is characterized in that, comprise: working platform floats, monomer support body immobilizing foundation, the first ball float, the first cylinder body, the first hinge, monomer support body, the first gear pump, the second gear pump, the first water turbine, draining storehouse, water storing bin, generator, the second hinge, the second cylinder body, the second ball float, main frame body, main frame body immobilizing foundation, the second water turbine, wind-force guide channel, the first hawser, hawser fixing stake, flywheel, the second hawser, the 3rd cylinder body, the 4th cylinder body, the 3rd hinge, cam, frame, brake block, wind direction board, wind-collection cover, bearing and one-way valve, unsteady working platform swims in the region of main frame body, the working platform that floats is fixed on hawser fixing stake by the first hawser, water storing bin and draining storehouse are located at the inside of the working platform that floats, seabed is fixed on monomer support body immobilizing foundation and main frame body basis, and monomer support body and main frame body are individually fixed on monomer support body immobilizing foundation and main frame body immobilizing foundation, evenly arrange and fix on the outside of frame by the 3rd hinges fixing in one end of n the first cylinder body, cam is fixed on the 3rd hinge, the other end of n the first cylinder body is fixed with the first ball float, and one end of the first ball float fixes on monomer support body by the first hinges fixing, six brake blocks of evenly arranging are equipped with in the inside of frame, and frame is sleeved on support unit together with brake block, the water intake up and down of the first cylinder body is connected to one-way valve, the second water turbine is fixed on and floats on working platform, the output shaft of the second water turbine is connected with the second gear pump, the water intake of the second gear pump and water outlet are all connected with one-way valve, wind-force guide channel is fixed on and floats on working platform, and wind-collection cover is fixed on wind-force guide channel by bearing together with wind direction board, flywheel is hingedly fixed in and is floated on working platform by support, one end of the 3rd cylinder body and the 4th cylinder body is connected on the transmission shaft of flywheel, the other end of the 3rd cylinder body and the 4th cylinder body is hingedly fixed in and floats on working platform, the water intake of the 3rd cylinder body and the 4th cylinder body is connected with one-way valve, the water outlet of the 3rd cylinder body and the 4th cylinder body is connected with one-way valve, after one end of the second hawser is fixed on and is also tightly wrapped on flywheel on the working platform that floats, the other end is fixed on the seabed portion of main frame body, the transmission shaft of flywheel is connected with the first gear pump, the water intake of the first gear pump is connected with one-way valve, the water outlet of the first gear pump is connected with one-way valve, the first water turbine is arranged in draining storehouse, and the output shaft of the first water turbine is fastened on the transmission shaft of the generator in working bin, one end of the second cylinder body is hingedly fixed in floats on working platform, the other end of the second cylinder body is connected with the second ball float, the second ball float is fixed on and is floated on working platform by the second hinges fixing, and the water intake of the second cylinder body is connected with one-way valve, and the water outlet of the second cylinder body is connected with one-way valve, described the first ball float and the first cylinder body are 60.
2. marine physics energy synthesis conversion power generation system according to claim 1, is characterized in that, the bottom that the outside in described draining storehouse or draining storehouse are connected to the working platform that floats is provided with drain opening.
3. marine physics energy synthesis conversion power generation system according to claim 1, is characterized in that, the bottom of described water storing bin is provided with discharge opening.
4. marine physics energy synthesis conversion power generation system according to claim 1, is characterized in that, also comprises yielding rubber, and described yielding rubber is arranged on above the outer of the working platform that floats.
5. marine physics energy synthesis conversion power generation system according to claim 1, is characterized in that, also comprises closed hood, and described closed hood is fixed on the working platform that floats and covers the second water turbine.
6. marine physics energy synthesis conversion power generation system according to claim 1, it is characterized in that, also comprise filter screen, the feed-water end that the feed-water end of the one-way valve of the water intake up and down of the feed-water end of described the first gear pump water intake one-way valve, the feed-water end of the second gear pump water intake one-way valve, the first cylinder body, the water intake of the second cylinder body are connected with the feed-water end of one-way valve, the 3rd cylinder body and the 4th cylinder body water intake one-way valve is all provided with filter screen.
CN201210227770.0A 2012-07-02 2012-07-02 Marine physical energy comprehensive conversion power generation system Expired - Fee Related CN102748198B (en)

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CN108457806B (en) * 2017-12-13 2020-10-09 浙江海洋大学 Floating type wind-current hybrid power generation platform

Citations (2)

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Publication number Priority date Publication date Assignee Title
CN101769225A (en) * 2008-12-30 2010-07-07 中国海洋大学 Lift-type double floating body tidal power generating platform
CN202611981U (en) * 2012-07-02 2012-12-19 丁传明 Ocean physical energy comprehensive conversion power generation system

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KR100883756B1 (en) * 2008-03-25 2009-02-12 장경수 Complex ocean power system combining sluice power and ocean current power
JP2009270491A (en) * 2008-05-08 2009-11-19 Yoshiyasu Muraoka Ocean current power generating system in english channel

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Publication number Priority date Publication date Assignee Title
CN101769225A (en) * 2008-12-30 2010-07-07 中国海洋大学 Lift-type double floating body tidal power generating platform
CN202611981U (en) * 2012-07-02 2012-12-19 丁传明 Ocean physical energy comprehensive conversion power generation system

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Title
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