CN207518248U - A kind of S-shaped cable laying component for photovoltaic plant waterborne - Google Patents

A kind of S-shaped cable laying component for photovoltaic plant waterborne Download PDF

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Publication number
CN207518248U
CN207518248U CN201721465882.4U CN201721465882U CN207518248U CN 207518248 U CN207518248 U CN 207518248U CN 201721465882 U CN201721465882 U CN 201721465882U CN 207518248 U CN207518248 U CN 207518248U
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CN
China
Prior art keywords
floating body
tension spring
floating
cable
mounting assembly
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Withdrawn - After Issue
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CN201721465882.4U
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Chinese (zh)
Inventor
叶筱
梅雷
蒋克勇
王春江
鲁伟
何晓龙
董学曼
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China Energy Engineering Group Anhui Electric Power Design Institute Co Ltd
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China Energy Engineering Group Anhui Electric Power Design Institute Co Ltd
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Priority to CN201721465882.4U priority Critical patent/CN207518248U/en
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Abstract

The utility model is related to a kind of S-shaped cable laying components for photovoltaic plant waterborne, solve water level fluctuation compared with prior art and SEA LEVEL VARIATION is easy to cause the defects of cable is pulled apart.The cable mounting assembly of the utility model includes swimming in several floating bodies and carbon bellows on the water surface, cable is installed in carbon bellows, carbon bellows is mounted on several floating bodies, two sides of floating body are equipped with hollow support rails, hollow support rails are parallel with carbon bellows, steel wire rope is installed in hollow support rails, one end of steel wire rope is mounted on case and becomes on floating platform, the other end of steel wire rope is mounted on photovoltaic array, and tension spring is mounted between adjacent hollow support rails and tension spring covers on a steel cord.The utility model is designed by the laying of S-shaped, and the length redundancy of cable is provided for array displacement caused by water level fluctuation, it is therefore prevented that cable bad caused by array moves.

Description

A kind of S-shaped cable laying component for photovoltaic plant waterborne
Technical field
The utility model is related to photovoltaic technology field waterborne, and specifically a kind of S-shaped for photovoltaic plant waterborne is electric Cable lays component.
Background technology
Water surface photovoltaic power station is widely used in actual environment, and the cable laying of water surface photovoltaic power station is mainly by cable It is placed between array and array, between array and case change floating platform, cable is floated on the surface by floating body.But it is floated by array to inversion boosting There are a certain distance between another array for platform or array, and wave can be generated under the effect of wind-force SEA LEVEL VARIATION based on the water surface Dynamic environmental characteristics can generate opposite displacement between array and array, between array and case change floating platform.When the excessive (wind-force of displacement It is larger, SEA LEVEL VARIATION is larger) when, then cable can be pulled apart, cause the stoppage in transit of photovoltaic plant, increase O&M cost, direct shadow Ring economic well-being of workers and staff.
Therefore, how to be directed to a kind of laying cable passage of design of photovoltaic power station, can protect cable not by aqueous corrosion and It can guarantee that cable is not pulled off during the relative displacement of floating body, have become the technical issues of urgent need solves.
Utility model content
The purpose of this utility model is to be easy to cause cable in order to solve water level fluctuation in the prior art and SEA LEVEL VARIATION and pull The defects of disconnected, provides and a kind of solves the above problems for the S-shaped cable laying component of photovoltaic plant waterborne.
To achieve these goals, the technical solution of the utility model is as follows:
A kind of S-shaped cable laying component for photovoltaic plant waterborne becomes floating platform and light including swimming in the case on the water surface Photovoltaic array further includes the cable mounting assembly swum on the water surface, and one end of cable mounting assembly is mounted on case and becomes on floating platform, electricity The other end of cable mounting assembly is mounted on photovoltaic array, and cable mounting assembly is S-shaped;
The cable mounting assembly includes swimming in several floating bodies and carbon bellows on the water surface, carbon bellows Cable is inside installed with, carbon bellows is mounted on several floating bodies, and two sides of floating body are equipped with hollow support rails, hollow branch Strut is parallel with carbon bellows, and steel wire rope is installed in hollow support rails, and one end of steel wire rope is mounted on case and becomes on floating platform, The other end of steel wire rope is mounted on photovoltaic array, and tension spring and tension spring are mounted between adjacent hollow support rails It covers on a steel cord.
The upper surface of the hollow support rails is higher than the upper surface of floating body, between two hollow support rails of same floating body Pipeline gag lever post is installed, carbon bellows is mounted on pipeline gag lever post by anchor ear.
The quantity of the floating body is 5-8, several floating bodies equal distribution in cable mounting assembly is put.
Slip limit assembly is further included, the cable mounting assembly becomes floating platform by sliding limit assembly mounted on case On;The slip limit assembly includes cylinder, and cylinder is fixedly mounted on case and becomes on floating platform, and cylinder inner surface is equipped with sliding seat And the inner surface of sliding seat and cylinder composition is slidably matched, carbon bellows is mounted on sliding seat.
The sliding seat is semicircle, and the inner surface of cylinder is equipped with limited block.
The quantity of the floating body is 7, and 7 floating bodies are from top to bottom divided into floating body A according to S-shaped, floating body B, floating body C, float Body D, floating body E, floating body F and floating body G, the tension spring length in left side is more than the pulling force bullet on the right side of it between floating body A and floating body B Spring, the tension spring length in left side is more than the tension spring on the right side of it between floating body B and floating body C, floating body C and floating body D it Between left side tension spring length be equal to its on the right side of tension spring, between floating body D and floating body E left side tension spring length Less than the tension spring on the right side of it, the tension spring length in left side is less than the pulling force bullet on the right side of it between floating body E and floating body F Spring, the tension spring length in left side is less than the tension spring on the right side of it between floating body F and floating body G.
Advantageous effect
A kind of S-shaped cable laying component for photovoltaic plant waterborne of the utility model, passes through S compared with prior art The laying design of shape, the length redundancy of cable is provided for array (floating platform) displacement caused by water level fluctuation and SEA LEVEL VARIATION, is prevented Cable bad caused by having stopped array movement.The utility model reduces power station O&M number, improves operational efficiency, has knot Structure is simple, of low cost, service-strong feature.
Description of the drawings
Fig. 1 is the structure top view of cable mounting assembly in the utility model;
Fig. 2 is the connection structure vertical view that cable mounting assembly becomes floating platform with case in the utility model;
Fig. 3 is the connection structure vertical view of cable mounting assembly and photovoltaic array in the utility model;
Fig. 4 is the connection structure vertical view between floating body A and floating body B in the utility model;
Fig. 5 is the structure diagram that limit assembly cylinder is slided in the utility model;
Fig. 6 is the structure diagram of anchor ear in the utility model;
Wherein, 1- casees become floating platform, 2- photovoltaic arrays, 3- cables mounting assembly, 4- floating bodies, 5- carbons bellows, 6- cables, 7- hollow support rails, 8- steel wire ropes, 9- tension springs, 10- pipelines gag lever post, 11- anchor ears, 12- cylinders, 13- sliding seats, 14- Limited block, 15- floating body A, 16- floating body B, 17- floating body C, 18- floating body D, 19- floating body E, 20- floating body F, 21- floating bodies G.
Specific embodiment
The effect of to make to the structure feature of the utility model and being reached, has a better understanding and awareness, to compared with Good embodiment and attached drawing cooperation detailed description, are described as follows:
As shown in Figures 2 and 3, a kind of S-shaped cable laying component for photovoltaic plant waterborne, including swimming on the water surface Case become floating platform 1, photovoltaic array 2 and cable mounting assembly 3, cable mounting assembly 3 is used for cable laying, equally swims in the water surface On.Become on floating platform 1 as shown in Fig. 2, one end of cable mounting assembly 3 is mounted on case, as shown in figure 3, cable mounting assembly 3 is another One end is mounted on photovoltaic array 2.
As shown in Figure 1, in order to generate the phenomenon that cable is pullled because of water level fluctuation (SEA LEVEL VARIATION) between anti-floating body processed, Here, cable mounting assembly 3 is S-shaped.
Cable mounting assembly 3 includes swimming in several floating bodies 4 of the water surface and carbon bellows 5, floating body 4 are used to support electricity Cable, the quantity of floating body 4 can be 5-8.Cable 6 is installed in carbon bellows 5, carbon bellows 5 provides outer layer guarantor for cable 6 Shield.Carbon bellows 5 is mounted on several floating bodies 4, and 5-8 floating body 4 is arranged according to carbon bellows 5 from head to last row, and 5-8 floating The equal distribution in cable mounting assembly 3 of body 4 is put.
As shown in figure 4, two sides of floating body 4 are equipped with hollow support rails 7, hollow support rails 7 and 5 phase of carbon bellows Parallel, the direction at 7 both ends of hollow support rails and carbon bellows 5 are in the same direction.Steel wire rope 8, steel wire rope are installed in hollow support rails 7 8 one end is mounted on case and becomes on floating platform 1, and the other end of steel wire rope 8 is mounted on photovoltaic array 2.Here, the effect of steel wire rope 8 There are two, first, each floating body 4 is stringed together to form overall structure, second is that 8 length of steel wire rope is put to be more than traditional floating body Between length, formed 8 length of steel wire rope redundancy, so as to formed the S-shaped of cable mounting assembly 3 arrangement.In adjacent hollow branch Tension spring 9 is mounted between strut 7 and tension spring 9 is sleeved on steel wire rope 8, i.e., will be formd between each floating body 4 Elasticity is mutually of, the purpose designed in this way is when being swung between floating body 4, to avoid the collision between floating body 4.
In order to facilitate installation of the carbon bellows 5 on floating body 4, the upper surface of hollow support rails 7 can also be designed high In the upper surface of floating body 4.Pipeline gag lever post 10, pipeline gag lever post are installed between two hollow support rails 7 of same floating body 4 10 are located on the cross section of pipeline gag lever post 10.As shown in fig. 6, carbon bellows 5 is mounted on pipeline gag lever post 10 by anchor ear 11 On.
In practical applications, with the fluctuation of the water surface, the S-shaped of cable mounting assembly 3 is also with the certain deformation of generation;Together Reason, since photovoltaic plant waterborne is generally fixed with bank or with underwater fixed, if there is the situation of water level elevation rise, cable The S-shaped of mounting assembly 3 can also generate certain deformation.And the both ends of cable mounting assembly 3 are separately mounted to case and become 1 He of floating platform On photovoltaic array 2, during cable mounting assembly 3 generates deformation, cable mounting assembly 3 becomes 1 (photovoltaic array of floating platform with case 2) if Hard link, then the junction that cable mounting assembly 3 becomes floating platform 1 (photovoltaic array 2) with case is easily caused to find to be broken.It is special It is not that water level fluctuation leads to the deformation of cable mounting assembly 3, it is easier to cause pulling apart for 3 tie point of cable mounting assembly.In order to It prevents the junction that cable mounting assembly 3 becomes floating platform 1 (photovoltaic array 2) with case from finding to be broken, cable can also installed group Part 3 is become mounted on case on floating platform 1 by sliding limit assembly, and similarly, cable mounting assembly 3 can also be by sliding limit assembly On photovoltaic array 2.
As shown in figure 5, sliding limit assembly includes cylinder 12, cylinder 12 is fixedly mounted on case and becomes floating platform 1 (photovoltaic array 2) On.12 inner surface of cylinder is equipped with sliding seat 13 and sliding seat 13 and the inner surface composition of cylinder 12 are slidably matched, sliding seat 13 It can be slidably matched by the existing ways such as ball, sliding groove and the inner surface composition of cylinder 12.Carbon bellows 5, which is mounted on, to be slided On dynamic seat 13, what it is due to access case change floating platform 1 (photovoltaic array 2) is cable 6, herein and protects the carbon bellows 5 of cable 6 straight It connects and slip of the carbon bellows 5 (cable 6) on case change floating platform 1 (photovoltaic array 2) can be realized on sliding seat 13.When When cable mounting assembly 3 encounters water level fluctuation (SEA LEVEL VARIATION) and swung or deformed, it is connected on case and becomes floating platform 1 (photovoltaic array 2) Upper carbon bellows 5 also with being swung, so as to avoid water level fluctuation and pullling for occurring.To carbon bellows 5 Hunting range carries out a restriction, then can sliding seat 13 be designed as semicircle, according to swing on the inner surface of cylinder 12 Range set needs installation limited block 14.
Since cable mounting assembly 3 is S-shaped, in practical applications, the cable between two photovoltaic arrays 2 can be pacified The setting of 3 length of arrangement is longer, then steel wire rope 8 is coordinated to limit into S-shaped.But difficulty is larger during such practical application, in order to more preferable Cable mounting assembly 3 is moulded into S-shaped, also for cause cable mounting assembly 3 more preferably reply water level fluctuation (SEA LEVEL VARIATION) and into Capable deformation.Here, by taking 4 quantity of floating body is 7 as an example, the design of 9 different length of tension spring is carried out.
As shown in Figure 1,7 floating bodies 4 are from top to bottom divided into floating body A15, floating body B16, floating body C17, floating body according to S-shaped D18, floating body E19, floating body F20 and floating body G21.9 length of tension spring in left side is more than it between floating body A15 and floating body B16 The tension spring 9 on right side, it is different by the length of tension spring 9 so that floating body A15 is formed in the up-down direction with floating body B16 Back and forth or left and right dislocation, that is, form the upper design of S-shaped.The tension spring in left side between floating body B16 and floating body C17 9 length are more than the tension spring 9 on the right side of it, similarly and continue the upper design based on S-shaped of floating body A15 and floating body B16. 9 length of tension spring in left side is equal to the tension spring 9 on the right side of it between floating body C17 and floating body D18, forms S-shaped It designs at middle part.9 length of tension spring in left side is less than the tension spring 9 on the right side of it between floating body D18 and floating body E19, floating 9 length of tension spring in left side is less than the tension spring 9 on the right side of it between body E19 and floating body F20, in floating body F20 and floating body G21 Between left side 9 length of tension spring be less than its on the right side of tension spring 9, pass through floating body D18, floating body E19, floating body E19, floating body F20 and floating body G21 to form the lower part design of S-shaped.It is not reciprocity in the length of different location by multiple tension springs 9, it is real The whole S-shaped design of cable mounting assembly 3 is showed.
In actual use, when water surface wind direction is towards a direction, generation S-shaped is curved between multiple floating bodies 4, and floating body A15 is curved If towards left bending, floating body B16 is curved to be changed successively towards right bending, floating body C17 etc.;When wind direction generates variation, floating body A15 bending sides To changing correspondingly, equally, floating body B16, floating body C17 etc. change successively.
The advantages of basic principle, main feature and the utility model of the utility model has been shown and described above.One's own profession The technical staff of industry is it should be appreciated that the present utility model is not limited to the above embodiments, described in above embodiments and description Only the utility model principle, on the premise of not departing from the spirit and scope of the utility model the utility model also have respectively Kind changes and improvements, these changes and improvements are both fallen in claimed the scope of the utility model.The requires of the utility model Protection domain defined by appended claims and its equivalent.

Claims (6)

1. a kind of S-shaped cable laying component for photovoltaic plant waterborne becomes floating platform (1) and light including swimming in the case on the water surface Photovoltaic array (2), it is characterised in that:Further include the cable mounting assembly (3) swum on the water surface, the one of cable mounting assembly (3) End is mounted on case and becomes on floating platform (1), and the other end of cable mounting assembly (3) is mounted on photovoltaic array (2), cable mounting assembly (3) it is S-shaped;
The cable mounting assembly (3) is including swimming in several floating bodies (4) and carbon bellows (5) on the water surface, carbon Cable (6) is installed in bellows (5), carbon bellows (5) is on several floating bodies (4), two sides peace of floating body (4) Equipped with hollow support rails (7), hollow support rails (7) are parallel with carbon bellows (5), and steel is installed in hollow support rails (7) Cord (8), one end of steel wire rope (8) are mounted on case and become on floating platform (1), and the other end of steel wire rope (8) is mounted on photovoltaic array (2) On, tension spring (9) is mounted between adjacent hollow support rails (7) and tension spring (9) is sleeved on steel wire rope (8).
2. a kind of S-shaped cable laying component for photovoltaic plant waterborne according to claim 1, it is characterised in that:Institute State hollow support rails (7) upper surface be higher than floating body (4) upper surface, same floating body (4) two hollow support rails (7) it Between pipeline gag lever post (10) is installed, anchor ear (11) is by carbon bellows (5) on pipeline gag lever post (10).
3. a kind of S-shaped cable laying component for photovoltaic plant waterborne according to claim 1, it is characterised in that:Institute The quantity for stating floating body (4) is 5-8, several floating bodies (4) equal distribution in cable mounting assembly (3) is put.
4. a kind of S-shaped cable laying component for photovoltaic plant waterborne according to claim 1, it is characterised in that:Also Including sliding limit assembly, the cable mounting assembly (3) is become mounted on case on floating platform (1) by sliding limit assembly;Institute The slip limit assembly stated includes cylinder (12), and cylinder (12) is fixedly mounted on case and becomes on floating platform (1), cylinder (12) inner surface peace It is slidably matched equipped with sliding seat (13) and sliding seat (13) and the inner surface composition of cylinder (12), carbon bellows (5) is mounted on On sliding seat (13).
5. a kind of S-shaped cable laying component for photovoltaic plant waterborne according to claim 4, it is characterised in that:Institute The sliding seat (13) stated is semicircle, and the inner surface of the cylinder (12) is equipped with limited block (14).
6. a kind of S-shaped cable laying component for photovoltaic plant waterborne according to claim 3, it is characterised in that:Institute The quantity for stating floating body (4) is 7, and 7 floating bodies (4) are from top to bottom divided into floating body A (15), floating body B (16), floating body C according to S-shaped (17), floating body D (18), floating body E (19), floating body F (20) and floating body G (21), the left side between floating body A (15) and floating body B (16) Tension spring (9) length be more than its on the right side of tension spring (9), between floating body B (16) and floating body C (17) on the left of pulling force Spring (9) length is more than the tension spring (9) on the right side of it, the tension spring in left side between floating body C (17) and floating body D (18) (9) length is equal to the tension spring (9) on the right side of it, and the tension spring (9) in left side is long between floating body D (18) and floating body E (19) Degree is less than the tension spring (9) on the right side of it, and tension spring (9) length in left side is less than between floating body E (19) and floating body F (20) Tension spring (9) on the right side of it, tension spring (9) length in left side is less than its right side between floating body F (20) and floating body G (21) Tension spring (9).
CN201721465882.4U 2017-11-07 2017-11-07 A kind of S-shaped cable laying component for photovoltaic plant waterborne Withdrawn - After Issue CN207518248U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721465882.4U CN207518248U (en) 2017-11-07 2017-11-07 A kind of S-shaped cable laying component for photovoltaic plant waterborne

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721465882.4U CN207518248U (en) 2017-11-07 2017-11-07 A kind of S-shaped cable laying component for photovoltaic plant waterborne

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107994533A (en) * 2017-11-07 2018-05-04 中国能源建设集团安徽省电力设计院有限公司 A kind of S-shaped cable laying component for photovoltaic plant waterborne

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107994533A (en) * 2017-11-07 2018-05-04 中国能源建设集团安徽省电力设计院有限公司 A kind of S-shaped cable laying component for photovoltaic plant waterborne
CN107994533B (en) * 2017-11-07 2024-02-09 中国能源建设集团安徽省电力设计院有限公司 S-shaped cable laying assembly for water photovoltaic power station

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