CN223502770U - Photovoltaic support - Google Patents

Photovoltaic support

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Publication number
CN223502770U
CN223502770U CN202422639066.7U CN202422639066U CN223502770U CN 223502770 U CN223502770 U CN 223502770U CN 202422639066 U CN202422639066 U CN 202422639066U CN 223502770 U CN223502770 U CN 223502770U
Authority
CN
China
Prior art keywords
bracket
assembly
pile
cable
support
Prior art date
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.)
Active
Application number
CN202422639066.7U
Other languages
Chinese (zh)
Inventor
王丽华
张涛
徐天宇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Changzhou Trina Solar Energy Co Ltd
Trina Solar Co Ltd
Original Assignee
Changzhou Trina Solar Energy Co Ltd
Trina Solar Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Changzhou Trina Solar Energy Co Ltd, Trina Solar Co Ltd filed Critical Changzhou Trina Solar Energy Co Ltd
Priority to CN202422639066.7U priority Critical patent/CN223502770U/en
Application granted granted Critical
Publication of CN223502770U publication Critical patent/CN223502770U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • 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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  • Photovoltaic Devices (AREA)

Abstract

本实用新型涉及光伏发电技术领域,具体提供一种光伏支架,旨在解决现有柔性光伏支架在遇到大风天气时会产生较大的摆动的问题。为此目的,本实用新型的光伏支架包括:支架组件;安装索组件,其安装在支架组件上;承重索,其安装在支架组件上且位于安装索组件的下方;支撑架,支撑架的顶部和底部分别与安装索组件和承重索连接,以及缆风索,缆风索的顶端和底端分别与支撑架和支架组件连接。本实用新型的光伏支架通过在安装索组件的下方设置承重索,并在承重索与安装索组件之间设置支撑架将二者连接,且通过缆风索将支撑架与支架组件连接,在遇到大风天气时不会产生较大的摆动,有利于保证系统的稳定性和安全性。

This utility model relates to the field of photovoltaic power generation technology, specifically providing a photovoltaic support structure designed to solve the problem of significant swaying of existing flexible photovoltaic supports during windy weather. To this end, the photovoltaic support structure of this utility model includes: a support assembly; a mounting cable assembly mounted on the support assembly; a load-bearing cable mounted on the support assembly and located below the mounting cable assembly; a support frame, with its top and bottom connected to the mounting cable assembly and the load-bearing cable respectively; and a wind cable, with its top and bottom connected to the support frame and the support assembly respectively. By placing a load-bearing cable below the mounting cable assembly and connecting the load-bearing cable and the mounting cable assembly with a support frame, and further connecting the support frame and the support assembly with a wind cable, this photovoltaic support structure prevents significant swaying during windy weather, thus contributing to the stability and safety of the system.

Description

Photovoltaic bracket
Technical Field
The utility model relates to the technical field of photovoltaic power generation, and particularly provides a photovoltaic bracket.
Background
With the construction of the ground photovoltaic power station for many years, the domestic photovoltaic land resources tend to be tense at present, meanwhile, due to the cultivation protection policy, land resources with better topography are fewer and fewer, mountain photovoltaic projects enter more and more fields of view, and compared with the ground photovoltaic projects, the mountain photovoltaic has the adverse conditions of high construction cost, poor component consistency and the like.
With the recent technological update, the use cases of the guy rope type flexible photovoltaic bracket scheme on the photovoltaic power station are more and more, and the cost is further reduced. In the aspect of the actual use effect, the stability and the safety of the flexible photovoltaic bracket are verified to a certain extent, namely the generated energy is improved, and the system is also stable.
However, when extreme weather, such as high winds, is encountered, the flexible photovoltaic bracket can generate larger deformation and larger swing, and the stability and the safety of the system are affected.
Accordingly, there is a need in the art for a new solution to the above-mentioned problems.
Disclosure of utility model
The utility model aims to solve the technical problems, namely the problem that the existing flexible photovoltaic bracket can generate larger swing when encountering windy weather.
In a first aspect, the present utility model provides a photovoltaic support comprising:
A bracket assembly;
a mounting cable assembly mounted on the bracket assembly;
A load-bearing cable mounted on the bracket assembly and positioned below the mounting cable assembly;
the top and the bottom of the supporting frame are respectively connected with the installation cable assembly and the bearing cable, and
The top end and the bottom end of the cable rope are respectively connected with the support frame and the bracket component.
In the preferred technical scheme of the photovoltaic bracket, the bracket component comprises two side pile bracket components which are distributed at intervals along the first direction, at least one middle pile bracket component is arranged between the two side pile bracket components,
The two ends of the installation cable component are respectively connected with the corresponding side pile bracket components, the middle pile bracket component is connected with the installation cable component,
The bearing ropes are arranged between the two side pile bracket components and the middle pile bracket component, two ends of the bearing ropes are respectively connected with the side pile bracket component and the middle pile bracket component,
The bottom end of the cable rope is connected with the side pile bracket component and/or the middle pile bracket component.
In the preferred technical scheme of the photovoltaic bracket, the number of the middle pile bracket components is multiple and the middle pile bracket components are distributed at intervals along the first direction, the bearing cable is arranged between two adjacent middle pile bracket components, two ends of the bearing cable are respectively connected with the corresponding middle pile bracket components, and/or
The photovoltaic support further comprises a connecting assembly, and the bearing cable is connected with the side pile support assembly and/or the middle pile support assembly through the connecting assembly.
In the preferred technical scheme of the photovoltaic support, the connecting assembly comprises a first connecting rod, a second connecting rod and a connecting plate, wherein the bottom ends of the first connecting rod and the second connecting rod are connected with the connecting plate, the top ends of the first connecting rod and the second connecting rod are connected with the side pile support assembly or the middle pile support assembly, the first connecting rod and the second connecting rod extend upwards along the direction away from each other by the connecting plate, the connecting plate is connected with the bearing rope, and the connecting point of the connecting plate and the bearing rope is located between the connecting point of the first connecting rod and the connecting point of the second connecting rod.
In the preferred technical scheme of the photovoltaic bracket, the side pile bracket component comprises a side pile foundation and a side pile bracket arranged at the top of the side pile foundation, the middle pile bracket component comprises a middle pile foundation and a middle pile bracket arranged at the top of the middle pile foundation,
The two ends of the installation cable component are respectively connected with the corresponding side pile brackets, the middle pile brackets are provided with connecting structures, the connecting structures are connected with the installation cable component,
Two ends of the bearing rope are respectively connected with the side pile bracket and the middle pile bracket,
The bottom end of the cable rope is connected with the side pile foundation and/or the middle pile foundation.
In the preferred technical scheme of the photovoltaic support, the side pile foundation comprises a first side pile foundation and a second side pile foundation which are distributed at intervals along a second direction, the second direction is intersected with the first direction, the side pile support comprises a first side pile support arranged at the top end of the first side pile foundation and a second side pile support arranged at the top end of the second side pile foundation,
The installation cable assembly comprises a first installation cable assembly and a second installation cable assembly, wherein the two ends of the first installation cable assembly are respectively connected with the corresponding first side pile brackets, the two ends of the second installation cable assembly are respectively connected with the corresponding second side pile brackets,
The side pile support assembly further comprises a support connecting rod, and two ends of the support connecting rod are respectively connected with the first side pile support and the second side pile support.
In the preferred technical scheme of the photovoltaic support, the support connecting rod comprises a first support connecting rod and a second support connecting rod, two ends of the first support connecting rod are hinged to the first side pile support and the second side pile support respectively, a mounting piece is arranged on the first side pile support, the fixing position of the mounting piece on the first side pile support can be adjusted, and two ends of the second support connecting rod are hinged to the mounting piece and the second side pile support respectively.
In the preferred technical scheme of the photovoltaic bracket, the middle pile bracket comprises a middle pile cross beam and a middle pile diagonal brace,
The connecting structure comprises a first connecting structure and a second connecting structure which are arranged on the middle pile cross beam, the first connecting structure and the second connecting structure are respectively connected with the first installation cable component and the second installation cable component,
The number of the middle pile diagonal braces is multiple and the middle pile diagonal braces are distributed along the length direction of the middle pile cross beam, and the top end and the bottom end of the middle pile diagonal braces are respectively connected with the middle pile cross beam and the middle pile foundation.
In the preferred technical scheme of the photovoltaic support, the support frame comprises a first support rod, a second support rod, a support beam and a connecting piece, wherein the support beam is connected with the installation cable assembly, the connecting piece is connected with the bearing cable, the top end and the bottom end of the first support rod are respectively connected with the support beam and the connecting piece, the top end and the bottom end of the second support rod are respectively connected with the support beam and the connecting piece, the first support rod and the second support rod are extended towards the support beam along the direction away from each other by the connecting piece, and the top end of the cable is connected with the connecting piece.
In the preferred technical scheme of the photovoltaic support, the photovoltaic support further comprises an anchor pulling component, the top end of the anchor pulling component is connected with the support component, and the bottom end of the anchor pulling component is connected with the ground.
Under the condition of adopting the technical scheme, the photovoltaic bracket does not generate larger swing when encountering heavy wind weather, is beneficial to ensuring the stability and the safety of a system, and particularly, the bearing cable is arranged below the installation cable assembly, the support frame is arranged between the bearing cable and the installation cable assembly to connect the bearing cable and the installation cable assembly, when the installation cable assembly receives forward wind pressure, the support frame is beneficial to reducing the downward deformation of the installation cable assembly, and in addition, the support frame is connected with the bracket assembly through the cable, and when the installation cable assembly receives backward wind pressure, the upward deformation of the installation cable assembly is beneficial to reducing, so that the installation cable assembly does not generate larger deformation no matter whether encountering forward wind or backward wind, thereby avoiding generating larger swing.
Furthermore, the middle pile bracket assembly is arranged between the two side pile bracket assemblies, and is connected with the mounting cable assembly and the bearing cable, so that the stability and the safety of the photovoltaic bracket are improved.
Still further, the utility model is more beneficial to improving the stability and safety of the photovoltaic bracket by arranging a plurality of middle pile bracket components between two side pile bracket components.
Still further, the utility model can form a stable triangle structure by enabling the first connecting rod and the second connecting rod to extend upwards from the connecting plates towards the side pile bracket assembly or the middle pile bracket assembly along the direction away from each other, thereby being beneficial to improving the stability of the bearing cable and being more beneficial to inhibiting the deformation of the installation cable assembly.
Furthermore, the plurality of groups of installation cable assemblies are arranged, so that a plurality of rows of solar panels can be installed, the power generation capacity is improved, and in addition, the first side pile support and the second side pile support for respectively fixing the two groups of installation cable assemblies are fixedly connected through the support connecting rod, so that the stability of the first installation cable assembly and the second installation cable assembly is improved.
Still further, the utility model is convenient for adapt to the change of the distance between the first side pile support and the second side pile support caused by construction errors by enabling the two ends of the first support connecting rod to be hinged with the first side pile support and the second side pile support respectively, and is convenient for adjust the angle and the position of the second support connecting rod by adjusting the fixed position of the mounting piece by installing the mounting piece on the first side pile support and enabling the two ends of the second support connecting rod to be hinged with the mounting piece and the second side pile support respectively, so as to better adapt to the change of the distance between the first side pile support and the second side pile support caused by construction errors.
Still further, the utility model is favorable for improving the stability of the installation cable assembly and reducing the cost by fixing the first installation cable assembly and the second installation cable assembly on the same middle pile cross beam.
Still further, the utility model is better in stability and is more beneficial to inhibiting the deformation of the installation cable component by arranging the support frame into a structure similar to a triangle.
Drawings
Preferred embodiments of the present utility model are described below with reference to the accompanying drawings, in which:
FIG. 1 is a schematic structural view of a photovoltaic bracket of the present utility model;
FIG. 2 is an enlarged view at A in FIG. 1;
FIG. 3 is an enlarged view at B in FIG. 1;
Fig. 4 is an enlarged view at C in fig. 1;
Fig. 5 is an enlarged view at D in fig. 4.
List of reference numerals:
1.A side pile bracket assembly; 11, a first side pile foundation, 12, a first side pile bracket, 13, a second side pile foundation, 14, a second side pile bracket, 15, a first bracket connecting rod, 16, a second bracket connecting rod, 121, a first side pile beam, 122, a first supporting upright post, 123, a first diagonal brace, 124, a mounting piece, 141, a second side pile beam, 142, a second supporting upright post, 143 and a second diagonal brace;
2. A middle pile bracket assembly; 21, a middle pile foundation, 22, a middle pile bracket, 221, a middle pile cross beam, 222, a middle pile diagonal bracing, 2211, a first connecting structure, 2212 and a second connecting structure;
3. Installing a cable assembly; 31, a first mounting cable, 32, a second mounting cable;
41. the first bearing rope, 42, the second bearing rope;
5. A support frame; 51, a first supporting rod, 52, a second supporting rod, 53, a supporting cross beam, 54, a connecting piece, 531 and a fixed structure;
6. A cable rope;
7. A hoop;
8. A connection assembly; 81, a first connecting rod, 82, a second connecting rod, 83, a connecting plate;
9. the anchor pulling assembly comprises a fixing column, an anchor pulling assembly and an anchor pulling cable;
10. a solar panel.
Detailed Description
Preferred embodiments of the present utility model are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are merely for explaining the technical principles of the present utility model, and are not intended to limit the scope of the present utility model.
It should be noted that, in the description of the present utility model, terms such as "left", "right", and the like, indicating directions or positional relationships are based on directions or positional relationships shown in the drawings, which are merely for convenience of description, and do not indicate or imply that the apparatus or element must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Furthermore, it should be noted that, in the description of the present utility model, unless explicitly stated and limited otherwise, the terms "disposed," "connected," and "mounted" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected. The specific meaning of the above terms in the present utility model can be understood by those skilled in the art according to the specific circumstances.
Specifically, the utility model provides a photovoltaic bracket, which comprises a bracket assembly, a mounting cable assembly 3, a bearing cable, a support frame 5 and a cable 6, as shown in fig. 1 to 4.
Wherein, support subassembly fixed mounting is on ground (including mountain region), and installation cable subassembly 3 is installed on the support subassembly, and installation cable subassembly 3 is used for installing solar panel 10, and the bearing cable is also installed on the support subassembly to, the bearing cable is located the below of installation cable subassembly 3, and the top and the bottom of support frame 5 are connected with installation cable subassembly 3 and bearing cable respectively, and the top and the bottom of cable rope 6 are connected with support frame 5 and support subassembly respectively.
Through setting up the bearing cable in the below of installation cable subassembly 3 to set up support frame 5 and connect the two between bearing cable and installation cable subassembly 3, when installation cable subassembly 3 receives forward wind pressure, be favorable to reducing the decurrent deflection of installation cable subassembly 3, in addition, be connected support frame 5 and bracket component through cable rope 6, when installation cable subassembly 3 receives dorsad wind pressure, be favorable to reducing the decurrent deflection of installation cable subassembly 3.
The top and bottom ends of the guy wires 6 are connected to the support frame 5 and the bracket assembly, respectively, i.e. the guy wires 6 extend from the support frame 5 obliquely downwards towards the bracket assembly, i.e. the connection end of the guy wires 6 to the bracket assembly is lower than the connection end of the guy wires 6 to the support frame 5.
Preferably, as shown in fig. 1, the bracket assembly of the present utility model comprises two side pile bracket assemblies 1 which are spaced apart along a first direction (X direction shown in fig. 1), and at least one middle pile bracket assembly 2 is arranged between the two side pile bracket assemblies 1.
It should be noted that only the side stake holder assembly 1 on the right side is shown in fig. 1, the side stake holder assembly 1 on the left side is not shown, and the structures of both side stake holder assemblies 1 are preferably arranged to be identical.
It should be noted that, between two side pile bracket assemblies 1, only one middle pile bracket assembly 2 may be provided, or a plurality of middle pile bracket assemblies 2 may be provided, and this specific number of middle pile bracket assemblies 2 may be adjusted and changed without departing from the principle and scope of the present utility model, and those skilled in the art may flexibly adjust the number of middle pile bracket assemblies 2 according to the length and design requirements of the installation cable assembly 3 in practical application.
Furthermore, it should be noted that whether one pile carrier assembly 2 is provided or a plurality of pile carrier assemblies 2 are provided, the two side pile carrier assemblies 1 and the one or more pile carrier assemblies 2 are preferably equally spaced along the first direction.
As shown in fig. 1, the installation cable assembly 3 extends along the first direction, two ends of the installation cable assembly 3 are respectively connected with the corresponding side pile bracket assemblies 1, and the middle pile bracket assembly 2 is connected with the installation cable assembly 3. That is, the left end of the installation cable assembly 3 is connected with the side pile support assembly 1 located on the left side, the right end of the installation cable assembly 3 is connected with the side pile support assembly 1 located on the right side, and the installation cable assembly 3 is connected with the middle pile support assembly 2 in a position close to the middle, a plurality of connection points are arranged along the length direction of the installation cable assembly 3, and stability is better.
As shown in fig. 1, a bearing rope is arranged between the two side pile bracket assemblies 1 and the middle pile bracket assembly 2, and two ends of the bearing rope are respectively connected with the side pile bracket assemblies 1 and the middle pile bracket assembly 2.
The load-bearing cables also extend in the first direction, at least two load-bearing cables are arranged in the first direction, one load-bearing cable is arranged between the left side pile support assembly 1 and the middle pile support assembly 2, one load-bearing cable is also arranged between the right side pile support assembly 1 and the middle pile support assembly 2, and in addition, in the case of a plurality of middle pile support assemblies 2, the load-bearing cables are also preferably arranged between two adjacent middle pile support assemblies 2, and two ends of the load-bearing cables are respectively connected with the corresponding middle pile support assemblies 2.
It should be noted that at least one supporting frame 5 is disposed between each bearing cable and the installation cable assembly 3, that is, at least one supporting frame 5 is disposed between the side pile support assembly 1 and the middle pile support assembly 2 on the left side, at least one supporting frame 5 is also disposed between the side pile support assembly 1 and the middle pile support assembly 2 on the right side, and of course, a plurality of supporting frames 5 are preferably disposed between each bearing cable and the installation cable assembly 3, and the plurality of supporting frames 5 are distributed at intervals along the first direction.
Illustratively, as shown in fig. 1 and 4, two supporting frames 5 are disposed between each bearing cable and the mounting cable assembly 3, and the two supporting frames 5 are spaced apart along the X direction.
As shown in fig. 1, the bottom end of the guy wires 6 are connected to the side stake holder assembly 1 and/or the center stake holder assembly 2.
That is, the support frame 5 may be connected to the side stake holder assembly 1 by the guy wires 6, or the support frame 5 may be connected to the center stake holder assembly 2 by the guy wires 6, or the support frame 5 may be connected to both the side stake holder assembly 1 and the center stake holder assembly 2 by the guy wires 6.
In example 1, one support frame 5 is provided between the side stake holder assembly 1 and the middle stake holder assembly 2, and the distance between the support frame 5 and the side stake holder assembly 1 is equal to the distance between the support frame 5 and the middle stake holder assembly 2, in which case only one cable 6 may be provided, the support frame 5 may be connected to the side stake holder assembly 1 or the middle stake holder assembly 2 by the cable 6, or two cables 6 may be provided, one cable 6 connecting the support frame 5 to the side stake holder assembly 1 and the other cable 6 connecting the support frame 5 to the middle stake holder assembly 2.
Example 2, two support frames 5 (denoted as first support frame and second support frame) are provided between the side stake support assembly 1 and the middle stake support assembly 2, the first support frame being close to the side stake support assembly 1 and the second support frame being close to the middle stake support assembly 2, in which case two guy wires 6 may be provided, one guy wire 6 connecting the first support frame with the side stake support assembly 1 and the other guy wire 6 connecting the second support frame with the middle stake support assembly 2.
Preferably, as shown in fig. 1, the number of the middle pile bracket assemblies 2 is multiple and the middle pile bracket assemblies are distributed at intervals along the first direction, a bearing rope is arranged between two adjacent middle pile bracket assemblies 2, and two ends of the bearing rope are respectively connected with the corresponding middle pile bracket assemblies 2.
The two adjacent middle pile bracket assemblies 2 are correspondingly provided with a supporting frame 5 and a cable rope 6, and the specific setting mode is referred to the description and is not repeated here.
Preferably, as shown in fig. 1 to 3, the photovoltaic bracket of the present utility model further comprises a connection assembly 8, and the load-bearing cable is connected with the side pile bracket assembly 1 and/or the middle pile bracket assembly 2 through the connection assembly 8.
That is, the connection member 8 may be provided only between the load-bearing cable and the side pile bracket assembly 1, the load-bearing cable may be connected to the side pile bracket assembly 1 through the connection member 8, or the connection member 8 may be provided only between the load-bearing cable and the center pile bracket assembly 2, the load-bearing cable may be connected to the center pile bracket assembly 2 through the connection member 8, or the connection member 8 may be provided between the load-bearing cable and both the side pile bracket assembly 1 and the center pile bracket assembly 2.
The bearing cable is connected with the side pile bracket assembly 1 through the connecting assembly 8 in fig. 2, and the bearing cable is connected with the middle pile bracket assembly 2 through the connecting assembly 8 in fig. 3.
Preferably, as shown in fig. 2, the connection assembly 8 includes a first connection rod 81, a second connection rod 82, and a connection plate 83, wherein bottom ends of the first connection rod 81 and the second connection rod 82 are connected to the connection plate 83, top ends of the first connection rod 81 and the second connection rod 82 are connected to the side pile bracket assembly 1 (specifically connected to the first side pile beam 121 or the second side pile beam 141 as will be described later), the first connection rod 81 and the second connection rod 82 are extended upward in a direction away from each other by the connection plate 83, the connection plate 83 is connected to the load-bearing cable, and a connection point of the connection plate 83 to the load-bearing cable is located between connection points of the first connection rod 81 and the second connection rod 82.
Wherein the first and second connection bars 81 and 82 are connected by the connection plate 83 extending upwards in a direction away from each other, i.e. towards the side pile bracket assembly 1, the first and second connection bars 81 and 82 being arranged approximately V-shaped in a top view.
As shown in fig. 2, an intermediate position of the connecting plate 83 is provided with a connecting hole, one end of the bearing cable passes through the connecting hole and is fixedly connected with the connecting plate 83 through an anchor, two sides of the connecting hole are respectively provided with a connecting hole, the bottom end of the first connecting rod 81 passes through the connecting hole, a part of the first connecting rod 81 passing through the connecting hole is provided with threads, and a nut matched with the threads in a threaded manner is installed to prevent the first connecting rod 81 from falling out of the connecting hole, the second connecting rod 82 and the connecting plate 83 adopt the same connecting mode, two connecting holes are arranged on the side pile bracket assembly 1, and the connecting holes connected with the first connecting rod 81 and the connecting holes connected with the second connecting rod 82 are distributed at intervals along the direction perpendicular to the first direction.
As shown in fig. 3, the connection assembly 8 is disposed between the load cable and the middle pile bracket assembly 2, and the top ends of the first connection rod 81 and the second connection rod 82 of the connection assembly 8 are connected to the middle pile bracket assembly 2 (specifically, to the middle pile cross beam 221 as will be described later), and the first connection rod 81 and the second connection rod 82 extend upward toward the middle pile bracket assembly 2 in a direction away from each other by the connection plate 83.
Preferably, as shown in fig. 1 to 3, the side pile bracket assembly 1 includes a side pile foundation and a side pile bracket provided at the top of the side pile foundation, and the middle pile bracket assembly 2 includes a middle pile foundation 21 and a middle pile bracket 22 provided at the top of the middle pile foundation 21.
Wherein, the side pile foundation and the middle pile foundation 21 are both preferably arranged as cement columns, and the cement columns are vertically arranged.
As shown in fig. 2 and 3, two ends of the installation cable assembly 3 are respectively connected with corresponding side pile brackets, and a connecting structure is arranged on the middle pile bracket 22 and is connected with the installation cable assembly 3.
Illustratively, a fixing plate is arranged on the side pile support, a fixing hole is arranged on the fixing plate, one end of a mounting rope of the mounting rope assembly 3 penetrates through the fixing hole and is fixed through an anchorage device, the connecting structure comprises two plate-shaped structures which extend upwards from the top of the middle pile support 22, the distance between the two plate-shaped structures is equal to or slightly larger than the diameter of the mounting rope, the mounting rope is positioned between the two plate-shaped structures, the middle pile support 22 is supported at the bottom of the mounting rope, through holes are formed in the plate-shaped structures, bolts which are horizontally arranged sequentially penetrate through the two through holes are arranged, and the bolts are positioned on the mounting rope to prevent the mounting rope from falling out from between the two plate-shaped structures.
As shown in fig. 2 and 3, both ends of the load-bearing cable are connected to the side and center pile brackets 22, respectively.
Illustratively, two ends of the load-bearing cable are connected with the side pile bracket and the middle pile bracket 22 through the connection assembly 8, respectively, as shown in fig. 2, the first connection rod 81 and the second connection rod 82 of the connection assembly 8 disposed between the load-bearing cable and the side pile bracket are connected with the side pile bracket, as shown in fig. 3, and the first connection rod 81 and the second connection rod 82 of the connection assembly 8 disposed between the load-bearing cable and the middle pile bracket 22 are connected with the middle pile bracket 22.
As shown in fig. 2 and 3, the bottom end of the guy wires 6 is connected to the side and/or center pile foundations 21.
Illustratively, as shown in fig. 2 and 3, anchor ears 7 are mounted on both the side pile foundation and the center pile foundation 21, and the bottom ends of the guy wires 6 are connected to the anchor ears 7.
Preferably, as shown in fig. 1 and 2, the side pile foundation comprises a first side pile foundation 11 and a second side pile foundation 13 which are distributed at intervals along a second direction, the second direction is intersected with the first direction, the side pile supports comprise a first side pile support 12 arranged at the top end of the first side pile foundation 11 and a second side pile support 14 arranged at the top end of the second side pile foundation 13, the installation cable assembly 3 comprises a first installation cable assembly and a second installation cable assembly, two ends of the first installation cable assembly are respectively connected with the corresponding first side pile supports 12, and two ends of the second installation cable assembly are respectively connected with the corresponding second side pile supports 14.
As shown in fig. 1, a row of solar panels 10 is installed on the first installation cable assembly, and a row of solar panels 10 is also installed on the second installation cable assembly, and two rows of solar panels 10 are all installed.
The first mounting cable assembly preferably includes two mounting cables, denoted as first mounting cables 31, spaced apart, the load bearing cable located below the first mounting cables 31 is denoted as first load bearing cable 41, the first load bearing cable 41 is located between the two first mounting cables 31, the two first mounting cables 31 are located at the same height, and the solar panels 10 mounted on the two first mounting cables 31 are disposed horizontally, although it is also possible to dispose the two first mounting cables 31 at different heights, and thus the solar panels 10 mounted on the two first mounting cables 31 are disposed obliquely, preferably with the two first mounting cables 31 being disposed at the same height.
Similarly to the first mounting cable assembly, the second mounting cable assembly also preferably includes two mounting cables spaced apart and denoted as second mounting cables 32, the load-bearing cable located below the second mounting cables 32 is denoted as second load-bearing cable 42, the second load-bearing cable 42 is located between the two second mounting cables 32 as seen in the Y direction, the two second mounting cables 32 are located at the same height, and the solar panels 10 mounted on the two second mounting cables 32 are arranged horizontally, however, the two second mounting cables 32 may also be arranged at different heights, and thus the solar panels 10 mounted on the two second mounting cables 32 are arranged obliquely, preferably the two second mounting cables 32 are located at the same height, and further preferably both the two first mounting cables 31 and the two second mounting cables 32 are located at the same horizontal height.
It should be noted that the second direction is disposed to intersect the first direction, that is, an included angle is formed between the first direction and the second direction, which may be 90 degrees, 85 degrees or 80 degrees, preferably, the second direction is disposed to be 90 degrees, that is, the second direction is perpendicular to the first direction, and as seen in fig. 1 and 2, the X direction is the first direction, the Y direction is the second direction, and the first side pile foundation 11 and the second side pile foundation 13 are spaced apart along the Y direction.
Preferably, as shown in fig. 1 and 2, the side pile bracket assembly 1 further comprises a bracket link, both ends of which are connected to the first side pile bracket 12 and the second side pile bracket 14, respectively.
As shown in fig. 2, the first pile bracket 12 includes a first pile beam 121, a first supporting column 122 and a first diagonal brace 123, the first pile beam 121 is disposed along the Y direction, the first mounting cable 31 and the first bearing cable 41 are both connected with the first pile beam 121, the first supporting column 122 is disposed vertically, the bottom end of the first supporting column 122 is fixedly connected with or integrally disposed with the top end of the first pile foundation 11, the top end of the first supporting column 122 is supported below the first pile beam 121, the number of the first diagonal braces 123 is two and are respectively disposed at two sides of the first supporting column 122, the bottom ends of the first diagonal braces 123 are connected with the first supporting column 122 or the first pile foundation 11, and two ends of the first pile beam 121 are respectively connected with the top ends of the two diagonal braces 123, so that the first pile beam 121 and the two diagonal braces 123 form an approximately triangular structure.
Similar to the first side pile bracket 12, the second side pile bracket 14 includes a second side pile beam 141, a second supporting column 142 and a second diagonal brace 143, the second side pile beam 141 is disposed along the Y direction, the second mounting cable 32 and the second load-bearing cable 42 are both connected with the second side pile beam 141, the second supporting column 142 is disposed vertically, the bottom end of the second supporting column 142 is fixedly connected with or integrally disposed with the top end of the second side pile foundation 13, the top end of the second supporting column 142 is supported below the second side pile beam 141, the number of the second diagonal braces 143 is two and is respectively located at two sides of the second supporting column 142, the bottom ends of the second diagonal braces 143 are connected with the second supporting column 142 or the second side pile foundation 13, and two ends of the second side pile beam 141 are respectively connected with the top ends of the two second diagonal braces 143, and the second side pile beam 141 and the two diagonal braces 143 form an approximately triangular structure.
Wherein the first diagonal brace 123 and the second diagonal brace 143 between the first side pile foundation 11 and the second side pile foundation 13 are connected by a bracket link.
Preferably, as shown in fig. 2, the bracket connecting rod comprises a first bracket connecting rod 15 and a second bracket connecting rod 16, two ends of the first bracket connecting rod 15 are respectively hinged with the first side pile bracket 12 and the second side pile bracket 14, a mounting piece 124 is arranged on the first side pile bracket 12, the fixing position of the mounting piece 124 on the first side pile bracket 12 can be adjusted, and two ends of the second bracket connecting rod 16 are respectively hinged with the mounting piece 124 and the second side pile bracket 14.
The first bracket link 15 is disposed approximately horizontally, two ends of the first bracket link 15 are hinged to the top end of the first diagonal brace 123 and the top end of the second diagonal brace 143, the second bracket link 16 is disposed obliquely, the mounting member 124 is fixedly mounted on the first diagonal brace 123 and is located at a position below the middle of the first diagonal brace 123, the bottom end of the second bracket link 16 is hinged to the mounting member 124, the top end of the second bracket link 16 is hinged to the top end of the second diagonal brace 143, the fixing position of the mounting member 124 can be adjusted along the length of the first diagonal brace 123, for example, the cross section of the first diagonal brace 123 is circular, the mounting member 124 is a clamp, the clamp is fixed on the first diagonal brace 123 in a locked state, and when the fixing position of the clamp needs to be adjusted, the clamp is loosened, the clamp is moved along the length direction of the first diagonal brace 123, and then the clamp is screwed down.
Preferably, as shown in fig. 1 and 3, the middle pile bracket 22 includes a middle pile cross beam 221 and middle pile diagonal braces 222, the number of the middle pile diagonal braces 222 being plural and distributed along the length direction of the middle pile cross beam 221, and the top and bottom ends of the middle pile diagonal braces 222 being connected with the middle pile cross beam 221 and the middle pile foundation 21, respectively.
Illustratively, the middle pile cross beam 221 extends along the Y direction, the connecting structure on the middle pile support 22 for connecting with the installation cable assembly 3 is disposed on the middle pile cross beam 221, the connecting structure includes a first connecting structure 2211 and a second connecting structure 2212, the first connecting structure 2211 and the second connecting structure 2212 are respectively connected with the first installation cable assembly and the second installation cable assembly, the first installation cable assembly includes two first installation cables 31, the second installation cable assembly includes two second installation cables 32, two first connecting structures 2211 and two second connecting structures 2212 are disposed at the top of the middle pile cross beam 221, the two first connecting structures 2211 and the two second connecting structures 2212 are distributed at intervals along the length direction of the middle pile cross beam 221, the number of middle pile diagonal struts 222 is four, the bottom of the middle pile cross beam 221 is respectively provided with one connecting portion at positions corresponding to the two first connecting structures 2211 and the two second connecting structures 2212, the top ends of the four middle pile diagonal struts 222 are respectively connected with the corresponding connecting portions, two middle pile struts 222 are disposed at the bottom ends of the two middle pile struts 21 and 222, and the two foundation diagonal struts 21 are simultaneously connected with the top ends of the two foundation diagonal piles 21, and the foundation support struts 222 are also disposed at the bottom ends of the foundation support struts 21.
That is, only one center pillar brace assembly 2 is provided in the Y direction, and both the first and second installation cable assemblies are supported by the center pillar cross member 221 of the center pillar brace assembly 2.
Preferably, as shown in fig. 3 and 4, the supporting frame 5 includes a first supporting bar 51, a second supporting bar 52, a supporting beam 53 and a connecting piece 54, the supporting beam 53 is connected with the installation cable assembly 3, the connecting piece 54 is connected with the load cable, the top and bottom ends of the first supporting bar 51 are connected with the supporting beam 53 and the connecting piece 54, respectively, the top and bottom ends of the second supporting bar 52 are connected with the supporting beam 53 and the connecting piece 54, the first supporting bar 51 and the second supporting bar 52 are extended toward the supporting beam 53 by the connecting piece 54 in a direction away from each other, and the top end of the cable 6 is connected with the connecting piece 54.
The mounting cable assembly 3 includes a first mounting cable assembly and a second mounting cable assembly, the first mounting cable assembly includes two first mounting cables 31, the second mounting cable assembly includes two second mounting cables 32, a supporting frame 5 is disposed between the two first mounting cables 31 and the first bearing cables 41, and denoted as a first supporting frame, a supporting frame 5 is also disposed between the two second mounting cables 32 and the second bearing cables 42, and denoted as a second supporting frame, a supporting beam 53 of the first supporting frame is integrally disposed with a supporting beam 53 of the second supporting frame, the supporting beam 53 extends along the Y direction, four evenly distributed fixing structures 531 are disposed at the top of the supporting beam 53 along the length direction thereof, the four fixing structures 531 are respectively connected with the two first mounting cables 31 and the two second mounting cables 32, a connecting portion is disposed at each of the bottom of the supporting beam 53 at positions corresponding to the four fixing structures 531, and the four connecting portions are respectively connected with the first supporting rods 51 and the second supporting rods 52 of the first supporting frame and the first supporting rods 51 and the second supporting rods 52 of the second supporting frame.
The first support rod 51 and the second support rod 52 are arranged in a V-shape, the top ends of the first support rod 51 and the second support rod 52 are connected through a support cross beam 53, and the support frame 5 approximates to a triangle.
Preferably, as shown in fig. 1 and 2, the photovoltaic bracket of the present utility model further comprises a pull anchor assembly 9, wherein the top end of the pull anchor assembly 9 is connected with the bracket assembly, and the bottom end of the pull anchor assembly 9 is connected with the ground.
Illustratively, as shown in fig. 1 and 2, the anchor assembly 9 includes four fixing columns 91 disposed vertically and four anchor lines 92 disposed obliquely, bottom ends of the four anchor lines 92 are respectively connected with top ends of the corresponding fixing columns 91, top ends of two anchor lines 92 are respectively connected with two ends of a first side pile beam 121 of the first side pile bracket 12, and top ends of the remaining two anchor lines 92 are respectively connected with two ends of a second side pile beam 141 of the second side pile bracket 14.
Those skilled in the art will appreciate that while some embodiments herein include some features but not others included in other embodiments, combinations of features of different embodiments are meant to be within the scope of the application and form different embodiments. For example, in the claims of the present application, any of the claimed embodiments may be used in any combination.
Thus far, the technical solution of the present utility model has been described in connection with the preferred embodiments shown in the drawings, but it is easily understood by those skilled in the art that the scope of protection of the present utility model is not limited to these specific embodiments. Equivalent modifications and substitutions for related technical features may be made by those skilled in the art without departing from the principles of the present utility model, and such modifications and substitutions will fall within the scope of the present utility model.

Claims (10)

1. A photovoltaic bracket, comprising:
A bracket assembly;
a mounting cable assembly mounted on the bracket assembly;
A load-bearing cable mounted on the bracket assembly and positioned below the mounting cable assembly;
the top and the bottom of the supporting frame are respectively connected with the installation cable assembly and the bearing cable, and
The top end and the bottom end of the cable rope are respectively connected with the support frame and the bracket component.
2. The photovoltaic module of claim 1, wherein the module comprises two side stake modules spaced apart along the first direction, at least one center stake module disposed between two side stake modules,
The two ends of the installation cable component are respectively connected with the corresponding side pile bracket components, the middle pile bracket component is connected with the installation cable component,
The bearing ropes are arranged between the two side pile bracket components and the middle pile bracket component, two ends of the bearing ropes are respectively connected with the side pile bracket component and the middle pile bracket component,
The bottom end of the cable rope is connected with the side pile bracket component and/or the middle pile bracket component.
3. The photovoltaic bracket according to claim 2, wherein the number of the middle pile bracket components is plural and the middle pile bracket components are distributed at intervals along the first direction, the bearing rope is arranged between two adjacent middle pile bracket components, and two ends of the bearing rope are respectively connected with the corresponding middle pile bracket components, and/or
The photovoltaic support further comprises a connecting assembly, and the bearing cable is connected with the side pile support assembly and/or the middle pile support assembly through the connecting assembly.
4. A photovoltaic bracket according to claim 3, wherein the connection assembly comprises a first connection rod, a second connection rod and a connection plate, the bottom ends of the first connection rod and the second connection rod are connected with the connection plate, the top ends of the first connection rod and the second connection rod are connected with the side pile bracket assembly or the middle pile bracket assembly, the first connection rod and the second connection rod extend upwards from the connection plate in a direction away from each other, the connection plate is connected with the load-bearing cable, and a connection point of the connection plate and the load-bearing cable is located between the connection point of the first connection rod and the second connection rod.
5. The photovoltaic bracket of claim 2, wherein the side pile bracket assembly comprises a side pile foundation and a side pile bracket arranged at the top of the side pile foundation, the middle pile bracket assembly comprises a middle pile foundation and a middle pile bracket arranged at the top of the middle pile foundation,
The two ends of the installation cable component are respectively connected with the corresponding side pile brackets, the middle pile brackets are provided with connecting structures, the connecting structures are connected with the installation cable component,
Two ends of the bearing rope are respectively connected with the side pile bracket and the middle pile bracket,
The bottom end of the cable rope is connected with the side pile foundation and/or the middle pile foundation.
6. The photovoltaic module of claim 5, wherein the side pile foundation comprises a first side pile foundation and a second side pile foundation spaced apart along a second direction, the second direction intersecting the first direction, the side pile foundation comprising a first side pile foundation at a top end of the first side pile foundation and a second side pile foundation at a top end of the second side pile foundation,
The installation cable assembly comprises a first installation cable assembly and a second installation cable assembly, wherein the two ends of the first installation cable assembly are respectively connected with the corresponding first side pile brackets, the two ends of the second installation cable assembly are respectively connected with the corresponding second side pile brackets,
The side pile support assembly further comprises a support connecting rod, and two ends of the support connecting rod are respectively connected with the first side pile support and the second side pile support.
7. The photovoltaic bracket of claim 6, wherein the bracket link comprises a first bracket link and a second bracket link, wherein two ends of the first bracket link are respectively hinged to the first side stake bracket and the second side stake bracket, a mounting piece is arranged on the first side stake bracket, a fixing position of the mounting piece on the first side stake bracket can be adjusted, and two ends of the second bracket link are respectively hinged to the mounting piece and the second side stake bracket.
8. The photovoltaic bracket of claim 6, wherein the center pillar bracket comprises a center pillar cross member and a center pillar diagonal brace,
The connecting structure comprises a first connecting structure and a second connecting structure which are arranged on the middle pile cross beam, the first connecting structure and the second connecting structure are respectively connected with the first installation cable component and the second installation cable component,
The number of the middle pile diagonal braces is multiple and the middle pile diagonal braces are distributed along the length direction of the middle pile cross beam, and the top end and the bottom end of the middle pile diagonal braces are respectively connected with the middle pile cross beam and the middle pile foundation.
9. The photovoltaic bracket of any of claims 1-8, wherein the support frame comprises a first support bar, a second support bar, a support beam, and a connector, the support beam is connected with the mounting cable assembly, the connector is connected with the load-bearing cable, the top and bottom ends of the first support bar are connected with the support beam and the connector, respectively, the top and bottom ends of the second support bar are connected with the support beam and the connector, respectively, the first support bar and the second support bar extend from the connector in a direction away from each other toward the support beam, and the top end of the cable is connected with the connector.
10. The photovoltaic bracket of any of claims 1-8 further comprising a draw anchor assembly, a top end of the draw anchor assembly being connected to the bracket assembly and a bottom end of the draw anchor assembly being connected to the ground.
CN202422639066.7U 2024-10-30 2024-10-30 Photovoltaic support Active CN223502770U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422639066.7U CN223502770U (en) 2024-10-30 2024-10-30 Photovoltaic support

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422639066.7U CN223502770U (en) 2024-10-30 2024-10-30 Photovoltaic support

Publications (1)

Publication Number Publication Date
CN223502770U true CN223502770U (en) 2025-10-31

Family

ID=97483414

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422639066.7U Active CN223502770U (en) 2024-10-30 2024-10-30 Photovoltaic support

Country Status (1)

Country Link
CN (1) CN223502770U (en)

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