CN208285241U - Photovoltaic generating system waterborne - Google Patents

Photovoltaic generating system waterborne Download PDF

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Publication number
CN208285241U
CN208285241U CN201821041163.4U CN201821041163U CN208285241U CN 208285241 U CN208285241 U CN 208285241U CN 201821041163 U CN201821041163 U CN 201821041163U CN 208285241 U CN208285241 U CN 208285241U
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CN
China
Prior art keywords
piston
fixedly connected
kickboard
spring
generating system
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201821041163.4U
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Chinese (zh)
Inventor
赵建云
黄玙
冯玫
刘宗
陈纬
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Guizhou Daqin Photovoltaic Agriculture Technology Co Ltd
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Guizhou Daqin Photovoltaic Agriculture Technology Co Ltd
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Priority to CN201821041163.4U priority Critical patent/CN208285241U/en
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Publication of CN208285241U publication Critical patent/CN208285241U/en
Expired - Fee Related 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

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Abstract

The utility model relates to technical field of photovoltaic power generation, and disclose photovoltaic generating system waterborne, including kickboard, the lower section of kickboard is equipped with several floating drums, several floating drums are uniformly and equidistantly distributed in the lower section of kickboard in matrix, and fixing seat there are four being uniformly and equidistantly fixedly connected on the barrel of floating drum, it is fixedly connected with first spring jointly between two adjacent fixing seats of the adjacent floating drum of every two, the upper end of floating drum offers damping trough, the slot bottom of damping trough is fixedly connected with piston cylinder, piston is slidably connected on the interior casing wall of piston cylinder, piston is fixedly connected with piston rod far from one end of piston cylinder cylinder bottom, piston rod runs through the cylinder top of piston cylinder far from one end of piston and upwardly extends.This can negatively affect small, applied widely photovoltaic generating system waterborne to water-bed ecological environment, can reduce the negative effect to water-bed ecological environment, and reduce the adverse effect caused by photovoltaic generating system when the water surface shakes.

Description

Photovoltaic generating system waterborne
Technical field
The utility model relates to technical field of photovoltaic power generation, photovoltaic generating system specially waterborne.
Background technique
A long-standing problem is when PV battery is as current source, by every in the exploitation of high performance solar panels String PV battery electricity is limited by the worst PV battery of performance.Similarly, when solar panel is connected in series, one Solar panel array is showed worst solar panel by it and limits.Therefore, typical solar panel may It performs poor in other solar panel differences for the array that the output power of the solar panel is supported with it.Cause This, the ability for the solar energy conversion being emitted on PV battery, solar panel or array is limited, and these solar batteries The heat that the physical integrity of plate may dissipate by exposure to non-switched solar energy is damaged.
Multiple PV batteries in a string may due to manufacturing and operating with inconsistent in environmental condition and expressively each other It is different.For example, manufacture on it is inconsistent may cause two in other respects identical PV battery have different output features. PV battery electricity is also influenced by external factor, such as shelter and operation temperature.Therefore, in order to most effectively utilize PV Battery, each PV battery is based on its efficiency by manufacturer, its desired temperature shows and other attributes are cased or is classified, and Solar battery is created with the PV battery efficiency of similar (if not identical).Construct solar panel before in this way to battery into The failure of row classification can lead to LITHIUM BATTERY mismatch and solar panel is performed poor.However, this assembly line assorting process is time-consuming, at high cost It is high, and large stretch of area in factory floor is occupied (because of solar simulator and auto-sequencing and recrater (such as electroluminescent hair Photoimaging systems) must have the feature of PV battery), but it is most important for the efficiency for improving solar panel
The cardinal principle of photovoltaic power generation is the photoelectric effect of semiconductor.When on photon irradiation to metal, its energy can be with It is all absorbed by some electronics in metal, the energy of Electron absorption is sufficiently large, and metal inside gravitation can be overcome to do work, leave metal Surface escapes, and becomes photoelectron.Silicon atom has 4 outer-shell electrons, if being mixed with the original of 5 outer-shell electrons in pure silicon Son such as phosphorus atoms, just become N-type semiconductor;If being mixed with the atom such as boron atom of 3 outer-shell electrons in pure silicon, p-type is formed Semiconductor.When p-type and N type junction are combined, contact surface just will form potential difference, become solar battery.Work as solar irradiation After being mapped to P-N junction, hole is mobile from the polar region P toward the polar region N, and electronics is mobile from the polar region N to the polar region P, forms electric current.
As traditional energy is increasingly exhausted, utilization of new energy resources makes rapid progress.The distribution and use of especially photovoltaic plant are deposited In apparent irrationality.The land resource that Developing west China builds photovoltaic plant is abundant, but photovoltaic power generation is in locality But it cannot dissolve completely, outer defeated there is also difficulties;And in the eastern developed area, electric power resource is in short supply, needs to build a large amount of Photovoltaic plant, but land resource is deficient.Therefore such uncoordinated situation can pay the utmost attention to take distributed power station build into The reasonable adjustment of row, promotes eastern and western regions electricity consumption to reach reasonable equilibrium.
In addition in surface construction photovoltaic plant, water surface power plant construction is also a feasible road.Photovoltaic power generation waterborne System can be built in the big area of China coast electricity consumption or part island, and the system is mounted on sea or lake surface, It is not take up valuable land resource, is a kind of very promising photovoltaic application.Existing photovoltaic generating system waterborne is mainly pacified Dress mode be it is fixedly mounted, i.e., in waters after casting cement stake, photovoltaic bracket and photovoltaic module are installed on concrete stake.It should The shortcomings that mounting means, is that concrete stake has negative effect to water-bed ecological environment, and is only applicable to the waters of certain depth of water.
Utility model content
(1) the technical issues of solving
In view of the deficiencies of the prior art, the utility model provides photovoltaic generating system waterborne, has to water-bed ecological ring The advantages that border negative effect is small, applied widely solves photovoltaic generating system waterborne in the prior art and uses concrete stake to water Bottom ecological environment has negative effect, and the problem of be only applicable to the waters of certain depth of water.
(2) technical solution
To realize the above-mentioned purpose small, applied widely to the negative effect of water-bed ecological environment, the utility model is provided such as Lower technical solution: photovoltaic generating system waterborne, including kickboard, the lower section of the kickboard are equipped with several floating drums, described in several Floating drum is uniformly and equidistantly distributed in the lower section of kickboard in matrix, and is uniformly and equidistantly fixedly connected with four on the barrel of the floating drum A fixing seat is fixedly connected with first spring, institute between two adjacent fixing seats of the adjacent floating drum of every two jointly The upper end for stating floating drum offers damping trough, and the slot bottom of the damping trough is fixedly connected with piston cylinder, the interior casing wall of the piston cylinder On slidably connect piston, the piston is fixedly connected with piston rod far from one end of piston cylinder cylinder bottom, and the piston rod is separate One end of piston is run through the cylinder top of piston cylinder and is upwardly extended, and is fixedly connected on the lower end of kickboard, and the upper end of the floating drum is closed Symmetrically offer dashpot in damping trough, the slot bottom of the dashpot is fixedly connected with second spring, the second spring it is another One end is fixedly connected with buffer bar, and the buffer bar passes through the notch of dashpot far from one end of second spring and upwardly extends, And it is fixedly connected on the lower end of kickboard, photovoltaic module is installed in the kickboard.
Preferably, several anti-collision barrels open at one end, institute are uniformly and equidistantly connected in the upright side walls of the kickboard The open end for stating anti-collision barrel is arranged far from kickboard, and the cylinder bottom in the anti-collision barrel is fixedly connected with third spring, the third bullet The other end of spring is fixedly connected with Crashworthy plate, and the Crashworthy plate is fixedly connected with crash bar far from one end of third spring, described Crash bar passes through the open end of anti-collision barrel far from one end of Crashworthy plate and extends outwardly, and is fixedly connected with buffer board.
Preferably, piston groove is offered on the annular sidewall of the piston, and piston ring is arranged in the piston groove, it is described Piston ring packing is slidably connected on the interior casing wall of piston cylinder.
Preferably, the buffer bar is symmetrically connected with sliding block, the buffering on the bar wall of one end position of second spring The sliding slot to match with sliding block is symmetrically offered on the correspondence cell wall of slot, the sliding block is slidably connected in corresponding sliding slot.
Preferably, there are two limited block, two pieces of institutes for fixed symmetrical connection on opening end position barrel for the anti-collision barrel It is symmetrical about crash bar to state limited block.
Preferably, the sliding block offers rolling groove far from one end of buffer bar, is equipped with the rolling rolled in the rolling groove Pearl, the ball pass through the notch of rolling groove far from one end of rolling groove slot bottom and extend outwardly, and ball rolling is connected to pair It answers on the slot bottom of sliding slot.
Preferably, the 4th spring is fixedly connected at the top center of the piston cylinder, the 4th spring is far from piston One end of cylinder is fixedly connected on the lower surface of kickboard, and the 4th spring, which is set on piston rod, to be arranged.
Preferably, the sphere diameter of the ball is greater than the slot diameter of rolling groove notch.
(3) beneficial effect
Compared with prior art, the utility model provides photovoltaic generating system waterborne, have it is following the utility model has the advantages that
1, photovoltaic generating system waterborne, by the way that fixing seat, the first spring, damping trough, piston cylinder, piston, piston is arranged Bar, dashpot, second spring and buffer bar are avoided using the buoyancy of floating drum as the supporter of photovoltaic generating system using water Mud stake reduces negative effect to water-bed ecological environment, adjacent when power of the floating drum by horizontal direction when the water surface shakes Floating drum between by squeeze and stretch the first spring, the power of horizontal direction is offset, when floating drum is by vertical direction When power, kickboard is moved downward, drive piston rod and buffer bar synchronize move downward, band piston is compressed when piston rod moves downward The shaking force of a part of vertical direction of air consumption in piston cylinder, simultaneous buffering bar compress second spring, and second spring occurs Elastic deformation consumes the shaking force of another part vertical direction, greatly reduces when the water surface shakes to photovoltaic power generation Adverse effect caused by system.
2, the photovoltaic generating system waterborne, by the way that anti-collision barrel, third spring, Crashworthy plate, crash bar and buffer board is arranged, when For kickboard when floating strikes object on the water surface, buffer board collides object first, and crash bar is driven to move into anti-collision barrel, into And the third spring in Crashworthy plate compression anti-collision barrel is driven, third spring occurs elastic deformation and consumes to impact force, reduces Impact force suffered by kickboard, into reducing caused by photovoltaic generating system adverse effect when kickboard is hit.
Detailed description of the invention
Fig. 1 be the utility model proposes photovoltaic power generation system structure schematic diagram waterborne;
Fig. 2 is the enlarged drawing of the part A in Fig. 1;
Fig. 3 is the enlarged drawing of the part B in Fig. 1;
Fig. 4 is the enlarged drawing of C portion in Fig. 3.
In figure: 1 kickboard, 2 floating drums, 3 fixing seats, 4 first springs, 5 damping troughs, 6 piston cylinders, 7 pistons, 8 piston rods, 9 are delayed Jet-bedding, 10 second springs, 11 buffer bars, 12 photovoltaic modulies, 13 anti-collision barrels, 14 third springs, 15 Crashworthy plates, 16 crash bars, 17 Buffer board, 18 piston grooves, 19 piston rings, 20 sliding blocks, 21 sliding slots, 22 limited blocks, 23 rolling grooves, 24 balls, 25 the 4th springs.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-4, photovoltaic generating system waterborne, including kickboard 1 are please referred to, the lower section of kickboard 1 is equipped with several floating drums 2, if Dry floating drum 2 is uniformly and equidistantly distributed in the lower section of kickboard 1 in matrix, and is uniformly and equidistantly fixedly connected on the barrel of floating drum 2 There are four fixing seat 3, it is fixedly connected with first spring jointly between two adjacent fixing seats 3 of the adjacent floating drum 2 of every two 4, the upper end of floating drum 2 offers damping trough 5, and the slot bottom of damping trough 5 is fixedly connected with piston cylinder 6, slides on the interior casing wall of piston cylinder 6 Dynamic to be connected with piston 7, piston 7 is fixedly connected with piston rod 8 far from one end of 6 cylinder bottom of piston cylinder, and piston rod 8 is far from piston 7 One end is run through the cylinder top of piston cylinder 6 and is upwardly extended, and is fixedly connected on the lower end of kickboard 1, and the upper end of floating drum 2 is about damping trough 5 symmetrically offer dashpot 9, and the slot bottom of dashpot 9 is fixedly connected with second spring 10, and the other end of second spring 10 is fixed to be connected It is connected to buffer bar 11, buffer bar 11 passes through the notch of dashpot 9 far from one end of second spring 10 and upwardly extends, and fixed company It connects and photovoltaic module 12 is installed on the lower end of kickboard 1, kickboard 1, using the buoyancy of floating drum 2 as the support of photovoltaic generating system Object avoids reducing the negative effect to water-bed ecological environment, when the water surface shakes, floating drum 2 is by level side using concrete stake To power when, by squeezing and stretching the first spring 4 between adjacent floating drum 2, the power of horizontal direction is offset, floating drum is worked as When 2 power by vertical direction, kickboard 1 is moved downward, drive piston rod 8 and buffer bar 11 synchronize move downward, piston rod 8 to Shaking force with a part of vertical direction of air consumption in 7 compression piston cylinder 6 of piston when lower movement, simultaneous buffering bar 11 are pressed Contracting second spring 10, second spring 10 occur elastic deformation, consume to the shaking force of another part vertical direction, greatly Reduce the adverse effect caused by photovoltaic generating system when the water surface shakes.
Several anti-collision barrels 13 open at one end are uniformly and equidistantly connected in the upright side walls of kickboard 1, anti-collision barrel 13 Open end is arranged far from kickboard 1, and the cylinder bottom in anti-collision barrel 13 is fixedly connected with third spring 14, and the other end of third spring 14 is solid Surely it is connected with Crashworthy plate 15, Crashworthy plate 15 is fixedly connected with crash bar 16 far from one end of third spring 14, and crash bar 16 is separate One end of Crashworthy plate 15 passes through the open end of anti-collision barrel 13 and extends outwardly, and is fixedly connected with buffer board 17, when kickboard 1 is in water When floating strikes object on face, buffer board 17 collides object first, drives crash bar 16 to move into anti-collision barrel, and then band Dynamic Crashworthy plate 15 compresses the third spring 14 in anti-collision barrel 13, and third spring 14 occurs elastic deformation and consumes to impact force, Impact force suffered by kickboard 1 is reduced, into the adverse effect caused by photovoltaic generating system when reducing the shock of kickboard 1.
Piston groove 18 is offered on the annular sidewall of piston 7, piston ring 19 is arranged in piston groove 18, and piston ring 19 seals It is slidably connected on the interior casing wall of piston cylinder 6, increases the airtightness of gas in piston cylinder 6 by piston ring 19.
Buffer bar 11 is symmetrically connected with sliding block 20, the correspondence of dashpot 9 on the bar wall of 10 1 end position of second spring The sliding slot 21 to match with sliding block 20 is symmetrically offered on cell wall, sliding block 20 is slidably connected in corresponding sliding slot 21, buffer bar Band movable slider 20 moves in sliding slot 21 when 11 movement, so that the movement of buffer bar 11 is more stable.
There are two limited blocks 22, two pieces of limited blocks 22 to close for fixed symmetrical connection on opening end position barrel for anti-collision barrel 13 Symmetrically in crash bar 16, prevent Crashworthy plate 15 from popping up anti-collision barrel 13.
Sliding block 20 offers rolling groove 23 far from one end of buffer bar 11, and the ball 24 rolled, rolling are equipped in rolling groove 23 Pearl 24 passes through the notch of rolling groove 23 far from one end of 23 slot bottom of rolling groove and extends outwardly, and the rolling of ball 24 is connected to correspondence On the slot bottom of sliding slot 21, sliding block 20 is reduced by ball 24 and moves suffered frictional resistance in sliding slot 21.
The 4th spring 25 is fixedly connected at the top center of piston cylinder 6, the one end of the 4th spring 25 far from piston cylinder 6 is solid Surely it is connected to the lower surface of kickboard 1, the 4th spring 25, which is set on piston rod 8, to be arranged, and the 4th bullet is compressed when kickboard 1 moves downward Spring 25, further strengthens damping effect.
The sphere diameter of ball 24 is greater than the slot diameter of 23 notch of rolling groove, prevents ball 24 from skidding off rolling groove 23.
In conclusion the photovoltaic generating system waterborne, using the buoyancy of floating drum 2 as the supporter of photovoltaic generating system, It avoids reducing the negative effect to water-bed ecological environment, when the water surface shakes, floating drum 2 is by horizontal direction using concrete stake Power when, by squeezing and stretching the first spring 4 between adjacent floating drum 2, the power of horizontal direction is offset, when floating drum 2 When power by vertical direction, kickboard 1 is moved downward, drive piston rod 8 and buffer bar 11 synchronize move downward, piston rod 8 to Shaking force with a part of vertical direction of air consumption in 7 compression piston cylinder 6 of piston when lower movement, simultaneous buffering bar 11 are pressed Contracting second spring 10, second spring 10 occur elastic deformation, consume to the shaking force of another part vertical direction, greatly Reduce the adverse effect caused by photovoltaic generating system when the water surface shakes;When kickboard 1 floats on the water surface strikes object, Buffer board 17 collides object first, and crash bar 16 is driven to move into anti-collision barrel, and then Crashworthy plate 15 is driven to compress anti-collision barrel Third spring 14 in 13, third spring 14 occur elastic deformation and consume to impact force, reduce and hit suffered by kickboard 1 Power is hit, into the adverse effect caused by photovoltaic generating system when reducing the shock of kickboard 1.
It should be noted that the terms "include", "comprise" or its any other variant are intended to the packet of nonexcludability Contain, so that the process, method, article or equipment for including a series of elements not only includes those elements, but also including Other elements that are not explicitly listed, or further include for elements inherent to such a process, method, article, or device. In the absence of more restrictions, the element limited by sentence "including a ...", it is not excluded that including the element Process, method, article or equipment in there is also other identical elements.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.

Claims (8)

1. photovoltaic generating system waterborne, including kickboard (1), it is characterised in that: the lower section of the kickboard (1) is equipped with several floating drums (2), several described floating drums (2) are uniformly and equidistantly distributed in the lower section of kickboard (1), and the barrel of the floating drum (2) in matrix On be uniformly and equidistantly fixedly connected there are four fixing seat (3), two adjacent fixing seats (3) of the adjacent floating drum (2) of every two Between be fixedly connected with first spring (4) jointly, the upper end of the floating drum (2) offers damping trough (5), the damping trough (5) slot bottom is fixedly connected with piston cylinder (6), slidably connects piston (7), the work on the interior casing wall of the piston cylinder (6) Plug (7) is fixedly connected with piston rod (8) far from one end of piston cylinder (6) cylinder bottom, and the one of the piston rod (8) separate piston (7) End is run through the cylinder top of piston cylinder (6) and is upwardly extended, and is fixedly connected on the lower end of kickboard (1), and the upper end of the floating drum (2) is closed It is symmetrically offered dashpot (9) in damping trough (5), the slot bottom of the dashpot (9) is fixedly connected with second spring (10), described The other end of second spring (10) is fixedly connected with buffer bar (11), the one end of the buffer bar (11) far from second spring (10) Across dashpot (9) notch and upwardly extend, and be fixedly connected on the lower end of kickboard (1), light be installed on the kickboard (1) It lies prostrate component (12).
2. photovoltaic generating system waterborne according to claim 1, it is characterised in that: in the upright side walls of the kickboard (1) Several anti-collision barrels open at one end (13) are uniformly and equidistantly connected with, the open end of the anti-collision barrel (13) is far from kickboard (1) It is arranged, the cylinder bottom in the anti-collision barrel (13) is fixedly connected with third spring (14), and the other end of the third spring (14) is solid Surely it being connected with Crashworthy plate (15), the Crashworthy plate (15) is fixedly connected with crash bar (16) far from the one end of third spring (14), The crash bar (16) passes through the open end of anti-collision barrel (13) far from the one end of Crashworthy plate (15) and extends outwardly, and is fixedly connected There are buffer board (17).
3. photovoltaic generating system waterborne according to claim 1, it is characterised in that: on the annular sidewall of the piston (7) It offers piston groove (18), is arranged with piston ring (19) in the piston groove (18), piston ring (19) sealing is slidably connected On the interior casing wall of piston cylinder (6).
4. photovoltaic generating system waterborne according to claim 1, it is characterised in that: the buffer bar (11) is close to the second bullet It is symmetrically connected with sliding block (20) on the bar wall of (10) one end position of spring, is symmetrically offered on the correspondence cell wall of the dashpot (9) The sliding slot (21) to match with sliding block (20), the sliding block (20) are slidably connected in corresponding sliding slot (21).
5. photovoltaic generating system waterborne according to claim 2, it is characterised in that: the anti-collision barrel (13) is close to open end There are two limited block (22), two pieces of limited blocks (22) are mutually right about crash bar (16) for fixed symmetrical connection on the barrel of position Claim.
6. photovoltaic generating system waterborne according to claim 4, it is characterised in that: the sliding block (20) is far from buffer bar (11) one end offers rolling groove (23), and the ball (24) rolled is equipped in the rolling groove (23), and the ball (24) is remote One end from rolling groove (23) slot bottom passes through the notch of rolling groove (23) and extends outwardly, and ball (24) rolling is connected to correspondence On the slot bottom of sliding slot (21).
7. photovoltaic generating system waterborne according to claim 1, it is characterised in that: the top center of the piston cylinder (6) Place is fixedly connected with the 4th spring (25), and the 4th spring (25) is fixedly connected on kickboard (1) far from the one end of piston cylinder (6) Lower surface, the 4th spring (25), which is set on piston rod (8), to be arranged.
8. photovoltaic generating system waterborne according to claim 6, it is characterised in that: the sphere diameter of the ball (24) is greater than rolling The slot diameter of dynamic slot (23) notch.
CN201821041163.4U 2018-07-03 2018-07-03 Photovoltaic generating system waterborne Expired - Fee Related CN208285241U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821041163.4U CN208285241U (en) 2018-07-03 2018-07-03 Photovoltaic generating system waterborne

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Application Number Priority Date Filing Date Title
CN201821041163.4U CN208285241U (en) 2018-07-03 2018-07-03 Photovoltaic generating system waterborne

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Publication Number Publication Date
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109774875A (en) * 2019-03-01 2019-05-21 中国船舶科学研究中心(中国船舶重工集团公司第七0二研究所) A kind of Very large floating structure passive type slows down the device of relative rotation
CN112173024A (en) * 2020-10-26 2021-01-05 吉安音妍电子科技有限公司 Photovoltaic power generation system
CN113135275A (en) * 2021-05-23 2021-07-20 中广核新能源蚌埠有限公司 Water surface photovoltaic boat mooring platform
CN117465621A (en) * 2023-11-01 2024-01-30 天津大学 Floating platform structure suitable for offshore floating type photovoltaic system

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109774875A (en) * 2019-03-01 2019-05-21 中国船舶科学研究中心(中国船舶重工集团公司第七0二研究所) A kind of Very large floating structure passive type slows down the device of relative rotation
CN109774875B (en) * 2019-03-01 2021-01-29 中国船舶科学研究中心(中国船舶重工集团公司第七0二研究所) Device for passively slowing down relative rotation of ultra-large floating body
CN112173024A (en) * 2020-10-26 2021-01-05 吉安音妍电子科技有限公司 Photovoltaic power generation system
CN112173024B (en) * 2020-10-26 2021-09-14 上海神洁环保科技股份有限公司 Photovoltaic power generation system
CN113135275A (en) * 2021-05-23 2021-07-20 中广核新能源蚌埠有限公司 Water surface photovoltaic boat mooring platform
CN117465621A (en) * 2023-11-01 2024-01-30 天津大学 Floating platform structure suitable for offshore floating type photovoltaic system
CN117465621B (en) * 2023-11-01 2024-05-14 天津大学 Floating platform structure suitable for offshore floating type photovoltaic system

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Granted publication date: 20181225