Anchoring support, flexible photovoltaic support and photovoltaic power station

By adopting a combined structure of an anchoring matrix and a mounting frame in the flexible photovoltaic bracket, the problems of large space occupied by the anchoring structure and poor structural stability in the prior art are solved, and a smaller space occupied and higher structural reliability are achieved.

CN222868819UActive Publication Date: 2025-05-13HEFEI SUNGROW RENEWABLE ENERGY SCI & TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421533082.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-05-13
Estimated Expiration
2034-06-28

AI Technical Summary

Technical Problem

The anchor structure of the existing flexible photovoltaic brackets occupies a large space, and under long-term loading, it is easy to increase the bending moment and shear stress of the support column, reducing structural stability and reliability.

Method used

A combined structure of an anchoring base and a mounting frame is adopted, wherein the anchoring base is connected to at least two anchor columns through a connecting beam, and the mounting frame forms a stable frame structure through a first fixing rod, a second fixing rod and a top rod. The anchor structure is used to anchor the support cables to reduce space occupied and improve structural stability.

Benefits of technology

It effectively reduces the overall space occupied by the flexible photovoltaic bracket, improves the usability and reliability of the anchor bracket, and enhances the stable support and anchoring effect of the support cable.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222868819U_ABST
    Figure CN222868819U_ABST
Patent Text Reader

Abstract

The utility model discloses an anchoring support, a flexible photovoltaic support and a photovoltaic power station, and relates to the technical field of photovoltaic supports, the anchoring support comprises an anchoring base body and a mounting frame body, the anchoring base body comprises at least two anchoring columns and a connecting cross beam, and the connecting cross beam is connected with one ends of the at least two anchoring columns; the mounting frame body comprises a first fixing rod, a second fixing rod and a top rod, one end of the first fixing rod and one end of the second fixing rod are connected to the connecting cross beam in a spaced mode, and the top rod is connected with the other end of the first fixing rod and the other end of the second fixing rod; and the mounting frame body is used for connecting and fixing a supporting cable of the flexible photovoltaic bracket. According to the technical scheme provided by the utility model, the overall occupied space of the flexible photovoltaic support is reduced, and the usability and reliability of the anchoring support are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic brackets, and in particular to an anchor bracket, a flexible photovoltaic bracket and a photovoltaic power station. Background Art

[0002] In related technologies, photovoltaic power stations can use flexible photovoltaic brackets to support and fix photovoltaic modules, so that photovoltaic power stations can be better built in large-span environments such as lakes and mountainous areas.

[0003] Existing flexible photovoltaic brackets can usually be provided with installation cables extending in the east-west direction and support cables extending in the north-south direction, so that photovoltaic components can be installed on the installation cables, and the support cables are used to connect and support multiple side-by-side installation cables to ensure that the flexible photovoltaic brackets stably support the photovoltaic components.

[0004] However, in the existing flexible photovoltaic brackets, an anchoring structure is usually formed by combining support columns spaced a certain distance apart with a pedestal or a large-diameter pile foundation, and the support cables are passed through the support columns and connected to the pedestal or the large-diameter pile foundation to fix the ends of the support cables. As a result, the flexible photovoltaic bracket usually needs to utilize the site space outside the coverage area of ​​the photovoltaic module to install the anchoring structure, resulting in a larger overall space occupied by the flexible photovoltaic bracket; and the anchoring structure is prone to increase the bending moment and shear stress of the support column itself under the long-term load of the support cable, causing damage to the support column, thereby reducing the overall structural stability and reliability of the flexible photovoltaic bracket. Utility Model Content

[0005] The main purpose of the utility model is to propose an anchor bracket, a flexible photovoltaic bracket and a photovoltaic power station, aiming to use the anchor bracket to fix the end of the installation cable, reduce the overall occupied space of the flexible photovoltaic bracket, and improve the usability and reliability of the anchor bracket.

[0006] To achieve the above-mentioned purpose, the anchoring bracket proposed in the utility model includes an anchoring base and a mounting frame, the anchoring base includes at least two anchoring columns and a connecting beam, the connecting beam connects one end of at least two anchoring columns; the mounting frame includes a first fixing rod, a second fixing rod and a top rod, one end of the first fixing rod and one end of the second fixing rod are connected to the connecting beam at intervals, the top rod connects the other end of the first fixing rod and the other end of the second fixing rod, and the mounting frame is used to connect and fix the support cables of the flexible photovoltaic bracket.

[0007] In one embodiment, the mounting frame is provided with a cable fixing member, the cable fixing member is connected to the mounting frame and is disposed between the first fixing rod and the second fixing rod, and the cable fixing member is used to connect and fix the longitudinal supporting cable.

[0008] In one embodiment, the fixing cable is connected to the first fixing rod or the second fixing rod.

[0009] In one embodiment, the mounting frame further includes a reinforcing rod, which connects the first fixing rod and the second fixing rod and is disposed between the connecting crossbeam and the top rod.

[0010] In one embodiment, the reinforcing rod, the first fixing rod, the second fixing rod and the connecting crossbeam enclose a support space, and the mounting frame is provided with a first supporting member, which is arranged in the support space and connected to the inner wall surface of the support space.

[0011] In one embodiment, the mounting frame is further provided with a cross bar and a second supporting member, the cross bar is provided between the reinforcing rod and the connecting beam, and connects the first fixing rod and the second fixing rod, the cross bar divides the supporting space into a first chamber and a second chamber, the first supporting member is provided in the first chamber, the second supporting member is provided in the second chamber, and is connected to the inner wall surface of the second chamber.

[0012] In one embodiment, the mounting frame further includes a cable passing member connected to end surfaces of the first fixing rod and the second fixing rod facing away from the connecting cross beam, and the cable passing member is used to clamp the installation cable.

[0013] In one embodiment, the first fixing rod is obliquely connected to the connecting crossbeam, the second fixing rod is obliquely connected to the connecting crossbeam, and the first fixing rod and the second fixing rod are arranged in an "eight" shape.

[0014] The utility model also proposes a flexible photovoltaic bracket, the flexible photovoltaic bracket includes at least two component fixing frame groups and at least one support frame group, the component fixing frame group includes an installation cable and at least two cable mounts, and the support frame group includes a support cable and at least two anchoring brackets as described above. The installation cable is connected to at least two of the cable mounts, the support cable is connected to at least two of the anchoring brackets, the extension direction of the support cable is set at an angle to the extension direction of the installation cable, and the support cable is connected to the installation cable.

[0015] The utility model also proposes a photovoltaic power station, which includes a photovoltaic component and a flexible photovoltaic bracket. The flexible photovoltaic bracket is the flexible photovoltaic bracket mentioned above, and the photovoltaic component is installed on the flexible photovoltaic bracket.

[0016] The technical solution of the utility model forms an anchoring matrix by connecting at least two anchoring columns with a connecting crossbeam, so that the anchoring matrix can better support the mounting frame and make the anchoring matrix more convenient to install at the construction location of the photovoltaic power station. By connecting the first fixing rod and the second fixing rod of the mounting frame to the connecting crossbeam at intervals, and connecting the top rod at the end of the first fixing rod and the end of the second fixing rod, the mounting frame can form a more stable and reliable frame structure, and then the anchoring structure can be used to anchor the supporting cables of the photovoltaic power station, so as to achieve better support and anchoring effect of the anchoring structure on the supporting cables, which is conducive to better reducing the occupied space of the flexible photovoltaic bracket and effectively improving the practicality and reliability of the anchoring bracket. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying creative work.

[0018] Figure 1 A schematic structural diagram of an embodiment of a flexible photovoltaic support provided by the utility model;

[0019] Figure 2 A side view of an embodiment of an anchor bracket provided by the utility model;

[0020] Figure 3 A side view of another embodiment of the anchor bracket provided by the utility model;

[0021] Figure 4 A side view of another embodiment of the anchor bracket provided by the utility model;

[0022] Figure 5 A side view of another embodiment of the anchor bracket provided by the utility model.

[0023] Description of Figure Numbers:

[0024] 1000, flexible photovoltaic support; 100, anchoring support; 10, anchoring base; 11, anchoring column; 13, connecting beam; 30, mounting frame; 31, first fixing rod; 33, second fixing rod; 35, top rod; 37, reinforcing rod; 391, first supporting member; 393, cross rod; 395, second supporting member; 30a, fixing cable; 30b, passing cable; 21, installing cable; 23, supporting cable; 400, cable mount.

[0025] The realization of the purpose, functional features and advantages of the utility model will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0027] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back...), the directional indications are only used to explain the relative position relationship, movement status, etc. between the components in a certain specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0028] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the utility model, the descriptions of "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of technical features indicated. Therefore, the features limited to "first" and "second" may explicitly or implicitly include at least one of the features. In addition, if "and / or" or "and / or" appears in the full text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or solutions that satisfy both A and B. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by the utility model.

[0029] In the existing flexible photovoltaic bracket, the anchoring structure is usually formed by combining support columns with a certain distance and a cap or a large-diameter pile foundation, so that the support cable passes through the support column and is connected to the cap or the large-diameter pile foundation to fix the end of the support cable, so that the flexible photovoltaic bracket usually needs to use the site space outside the coverage of the photovoltaic module to install the anchoring structure, resulting in a large overall space occupied by the flexible photovoltaic bracket; and the anchoring structure is easy to increase the bending moment and shear stress of the support column under the long-term load of the support cable, resulting in damage to the support column, reducing the overall structural stability and reliability of the flexible photovoltaic bracket. In view of the above problems, the utility model proposes an anchoring bracket 100.

[0030] See also Figures 1 to 5In one embodiment of the utility model, the anchoring bracket 100 includes an anchoring base 10 and a mounting frame 30, the anchoring base 10 includes at least two anchoring columns 11 and a connecting beam 13, the connecting beam 13 connects one end of at least two anchoring columns 11; the mounting frame 30 includes a first fixing rod 31, a second fixing rod 33 and a top rod 35, one end of the first fixing rod 31 and one end of the second fixing rod 33 are connected to the connecting beam 13 at intervals, the top rod 35 connects the other end of the first fixing rod 31 and the other end of the second fixing rod 33, and the mounting frame 30 is used to connect and fix the supporting cable 200 of the flexible photovoltaic bracket 1000.

[0031] In this embodiment, the photovoltaic power station can utilize the first fixing rod 31 and the second fixing rod 33 of the anchor bracket 100 to support the cable 23 extending in the north-south direction, and a connector can be provided on the support cable 23 to connect the installation cable 21, which is beneficial to better improve the supporting force of the installation cable 21, so that the flexible photovoltaic bracket 1000 can better support and fix the photovoltaic components, thereby ensuring the stable and reliable operation of the photovoltaic power station.

[0032] Among them, the flexible photovoltaic bracket 1000 can be provided with at least two anchor brackets 100 at intervals along the extension direction of the support cable 23, so that the end of the support cable 23 can be connected to the first fixing rod 31 or the second fixing rod 33, or an anchor sleeve can be provided on the first fixing rod 31 or the second fixing rod 33 to clamp the end of the support cable 23, so that the anchor bracket 100 can be used in the flexible photovoltaic bracket 1000 to connect the anchor support cable 23, and ensure the support effect of the support cable 23 on the installation cable 21. By making the anchor bracket 100 support and connect the installation frame 30 using the anchoring matrix 10, the anchoring matrix 10 can be connected to at least two anchoring columns 11 using the connecting crossbeam 13 to ensure the stable installation of the anchoring matrix 10 at the construction location of the photovoltaic power station. The construction method of using multiple anchoring columns 11 can increase the supporting force of the anchoring matrix 10 by providing multiple small-sized columns, which is conducive to more convenient installation of the anchoring column 11 and reduces the installation difficulty of the anchor bracket 100. At this time, by connecting the first fixing rod 31 and the second fixing rod 33 of the mounting frame 30 at intervals on the connecting beam 13 supported by a plurality of anchoring columns 11, and connecting the first fixing rod 31 and the second fixing rod 33 by using the top rod 35, the mounting frame 30 can form a frame structure with high structural strength under the support of the anchoring base 10, and effectively improve the overall support strength of the anchoring bracket 100. Furthermore, by connecting the support cable 23 to the anchoring bracket 100, the support cable 23 can be more stably fixed by using the high-strength overall structure of the anchoring bracket 100, and the stable support of the support cable 23 by the anchoring bracket 100 is ensured, and there is no need to set a cap or a large-diameter pile foundation on the outside of the anchoring bracket 100 to connect the end of the support cable 23, which is conducive to better reducing the overall occupied space of the flexible photovoltaic bracket 1000, facilitating the layout and setting of the flexible photovoltaic bracket 1000, and further improving the practicality and reliability of the anchoring structure.

[0033] The technical solution of the utility model forms an anchoring base 10 by connecting at least two anchoring columns 11 with a connecting crossbeam 13, so that the anchoring base 10 can better support the mounting frame 30, and the anchoring base 10 can be more conveniently installed at the construction location of the photovoltaic power station. By connecting the first fixing rod 31 and the second fixing rod 33 of the mounting frame 30 to the connecting crossbeam 13 at intervals, and connecting the top rod 35 at the end of the first fixing rod 31 and the end of the second fixing rod 33, the mounting frame 30 can form a more stable and reliable frame structure, and then the anchoring structure can be used to anchor the supporting cable 23 of the photovoltaic power station, so as to achieve better support and anchoring effect of the anchoring structure on the supporting cable 23, which is conducive to better reducing the occupied space of the flexible photovoltaic bracket 1000 and effectively improving the practicality and reliability of the anchoring bracket 100.

[0034] See also Figures 2 to 5In the embodiment of the utility model, the mounting frame 30 is provided with a cable fixing member 30 a, which is connected to the mounting frame 30 and disposed between the first fixing rod 31 and the second fixing rod 33 . The cable fixing member 30 a is used to connect and fix the supporting cable 23 .

[0035] In this embodiment, the anchor bracket 100 can be installed with a cable fixing member 30a such as an anchor sleeve, an anchor clamp or an anchor clip on the mounting frame 30. The cable fixing member 30a can be set corresponding to the wire diameter of the support cable 23, so that the anchor bracket 100 can clamp and fix the support cable 23 with the cable fixing member 30a, better maintain the tension of the support cable 23 on the flexible photovoltaic bracket 1000, and further improve the connection stability and reliability of the anchor bracket 100 and the support cable 23. Among them, the cable fixing member 30a can be connected to the first fixing rod 31 or the second fixing rod 33 by welding or bolt connection, or other connecting members connected to the mounting frame 30 can be set between the first fixing rod 31 and the second fixing rod 33 to fix the cable fixing member 30a, so as to ensure that the mounting frame 30 can be more stably and reliably connected to the cable fixing member 30a, better improve the connection stability and reliability of the cable fixing member 30a to the support cable 23, and further improve the practicality and reliability of the anchor bracket 100.

[0036] In the embodiment of the present invention, the cable fixing member 30 a is passed through and connected to the first fixing rod 31 or the second fixing rod 33 .

[0037] In this embodiment, the anchor bracket 100 can have an installation hole on the first fixing rod 31 or the second fixing rod 33. At this time, the fixing cable 30a can be passed through and installed at the installation hole. The fixing cable 30a and the first fixing rod 31 or the second fixing rod 33 can be installed and fixed by welding or bolting, so that the fixing cable 30a can be stably connected to the first fixing rod 31 or the second fixing rod 33, which is beneficial to using the installation frame 100 to better improve the fixing stability of the fixing cable 30a on the supporting cable 23, so that the supporting cable 23 can be more stably and reliably connected to the anchor bracket 100, so as to achieve a more stable and reliable supporting effect of the flexible photovoltaic bracket 1000 on the photovoltaic module, and further improve the practicality and reliability of the anchor bracket 100.

[0038] See also Figures 2 to 5 In an embodiment of the present utility model, the mounting frame 30 further includes a reinforcing rod 37 , which connects the first fixing rod 31 and the second fixing rod 33 and is disposed between the connecting beam 13 and the top rod 35 .

[0039] In this embodiment, the first fixing rod 31 and the second fixing rod 33 are connected between the top rod 35 and the connecting beam 13 by using the reinforcing rod 37. The reinforcing rod 37 can be used to support the first fixing rod 31 and the second fixing rod 33 to prevent the first fixing rod 31 and the second fixing rod 33 from being subjected to relative forces, which may cause deformation of the mounting frame 100. Furthermore, under the action of the reinforcing rod 37, the overall structural strength of the mounting frame 30 is better improved, so that the anchor bracket 100 can more stably support the supporting cable 23, further improving the structural stability and reliability of the anchor bracket 100.

[0040] Among them, when the anchor bracket is provided with a fixing cable piece 30a for connecting and fixing the supporting cable 23, the fixing cable piece 30a can be connected to the reinforcing rod 37 by welding or bolt connection, so that the fixing cable piece 30a can be more stably and reliably connected and installed on the mounting frame 30, which is conducive to better improving the fixing effect of the fixing cable piece 30a on the supporting cable 23, and further improving the overall structural stability and reliability of the anchor bracket 100.

[0041] Further, two reinforcing rods 37 may be provided on the mounting frame 30. The two reinforcing rods 37 may be provided between the top rod 35 and the connecting cross beam 13 at a certain interval, and both ends of the two reinforcing rods 37 are connected to the first fixing rod 31 and the second fixing rod 33. Under the action of the two reinforcing rods 37, the overall structural strength of the mounting frame 30 may be further improved, deformation of the mounting frame 30 may be better avoided, and the structural stability and reliability of the anchor bracket 100 may be improved. At this time, when the anchor bracket 100 uses the cable fixing member 30a to connect and fix the supporting cable 23, the interval between the two reinforcing rods 37 may be set corresponding to the width of the cable fixing member 30a, so that the cable fixing member 30a may be stably provided between the two reinforcing rods 37, and the cable fixing member 30a may be connected to the two reinforcing rods 37 at the same time, which is conducive to better improving the installation stability and reliability of the cable fixing member 30a on the mounting frame 30, better improving the supporting force of the cable fixing member 30a on the supporting cable 23, and further improving the structural stability and reliability of the anchor bracket 100.

[0042] See also Figures 2 to 5 In an embodiment of the utility model, the reinforcing rod 37, the first fixing rod 31, the second fixing rod 33 and the connecting beam 13 enclose a support space, and the mounting frame 30 is provided with a first supporting member 391, and the supporting member 391 is arranged in the support space and connected to the inner wall surface of the support space.

[0043] In this embodiment, by connecting the reinforcing rod 37 between the first fixing rod 31 and the second fixing rod 33 for structural reinforcement, the reinforcing rod 37, the first fixing rod 31, the second fixing rod 33 and the connecting beam 13 can be enclosed to form a support space. At this time, the mounting frame 30 can be provided with a first supporting member 391 in the support space. The first supporting member 391 can be a plate or a pillar connecting the reinforcing rod 37 with the first fixing rod 31 and / or the second fixing rod 33, or can be a plate or a pillar connecting the connecting beam 13 with the first fixing rod 31 and / or the second fixing rod 33, or can be a plate or a pillar connecting the reinforcing rod 37 and the connecting beam 13, etc., so that under the action of the first supporting member 391, the inner wall surface of the support space can be connected for support, so as to better prevent the mounting frame 100 from being deformed with a certain probability due to a certain external force, thereby improving the overall structural stability of the mounting frame 30, and also being conducive to improving the connection stability and reliability between the mounting frame 30 and the anchoring substrate 10, further improving the practicality and reliability of the anchoring bracket 100. In addition, the support member 39 can also be a supporting web connected to the connection between the first fixing rod 31 and / or the second fixing rod 33 and the reinforcing rod 37 or the connecting beam 13, so that the connection point of the mounting frame 30 and the connection point of the anchoring base 10 and the mounting frame 30 can utilize the support member 39 to better improve the connection stability and reliability, which is conducive to better avoiding deformation of the anchoring bracket 100 and further improving the practicality and reliability of the anchoring bracket 100.

[0044] Furthermore, the first support member 391 may be a rod or web inclined with respect to the connecting crossbeam 13, so that the first support member 391 can stably connect the first fixing rod 31 and the connecting crossbeam 13 or the reinforcing rod 37, or connect the second fixing rod 33 and the connecting crossbeam 13 or the reinforcing rod 37, or the first support member 391 may be connected to the reinforcing rod 37 or the connecting crossbeam 13 by a vertical rod similar to a V-shape or an X-shape, and simultaneously connect the first fixing rod 31 and the second fixing rod 33. In addition, the first support member 391 may be connected to the inner wall surface of the supporting space to form a plurality of triangular support structures, which may better enhance the overall structural strength of the mounting frame 30, and at the same time, may better improve the connection stability and reliability of the mounting frame 30 and the anchoring substrate 10, which is conducive to better preventing the mounting frame 30 from being deformed, and further improving the overall structural stability and reliability of the anchoring bracket 100.

[0045] See also Figure 4 and Figure 5In an embodiment of the utility model, the mounting frame 30 is further provided with a cross bar 393 and a second supporting member 395. The cross bar 393 is arranged between the reinforcing rod 37 and the connecting beam 13, and connects the first fixing rod 31 and the second fixing rod 33. The cross bar divides the supporting space into a first chamber and a second chamber. The first supporting member 391 is arranged in the first chamber, and the second supporting member 395 is arranged in the second chamber and connected to the inner wall surface of the second chamber.

[0046] In this embodiment, the support member 39 may include a cross bar 393. By connecting the first fixing rod 31 and the second fixing rod 33 by using the cross bar 393, the first fixing rod 31 and the second fixing rod 33 can be better supported by the cross bar 393, so as to prevent the first fixing rod 31 and the second fixing rod 33 from being subjected to relative forces and causing a certain probability of causing deformation of the mounting frame 30, further improving the overall structural strength of the mounting frame 30, and improving the structural stability and reliability of the anchor bracket 100. In particular, when the lengths of the first fixing rod 31 and the second fixing rod 33 are small, only one cross bar 393 can be used to support the mounting frame 30. When the lengths of the first fixing rod 31 and the second fixing rod 33 are large, the support member 39 may be provided with at least two cross bars 393 arranged at intervals between the reinforcing rod 37 and the connecting cross beam 13 along the height direction of the anchor bracket 100, which is conducive to better improving the overall structural strength of the mounting frame 30 under the support of multiple cross bars 393, and further improving the overall structural stability and reliability of the anchor bracket 100.

[0047] In addition, the cross bar 393 is arranged in the support space to divide the support space into a first chamber and a second chamber. At this time, the first support member 391 can be installed in the first chamber, and the first support member 391 is connected to the inner wall surface of the first chamber to achieve support for the first chamber, thereby preventing the mounting frame 30 from deforming in the first chamber and ensuring the overall structural stability of the anchor bracket 100. By arranging the second supporting member 395 in the second chamber, the second supporting member 395 can be used to connect the inner wall surface of the second chamber for support. The second supporting member 395 can be a plate or a pillar connecting the cross bar 393 and the first fixing rod 31 and / or the second fixing rod 33, or can be a plate or a pillar connecting the connecting beam 13 and the first fixing rod 31 and / or the second fixing rod 33, or can be a plate or a pillar connecting the cross bar 393 and the connecting beam 13, etc., so that under the action of the second supporting member 395, the inner wall surface of the second chamber can be connected for support, so as to better prevent the mounting frame 30 from being deformed in the second chamber, and further improve the overall structural stability and reliability of the mounting frame 30.

[0048] Furthermore, the second support member 395 can be a rod or web that is inclined and connected to the cross beam 13. The second support member 395 can be used to connect the first fixed rod 31 and the reinforcing rod 37 or the cross bar 393, or the second support member 395 can be used to connect the second fixed rod 33 and the reinforcing rod 37 or the cross bar 393, or the second support member 395 can be used to connect the reinforcing rod 37 and the cross bar 393, or the second support member 395 can be used to connect the reinforcing rod 37 and the cross bar 393, or the second support member 395 can be made to use a V-shaped or X-shaped vertical rod to connect to the reinforcing rod 37 or the connecting cross beam 13, and at the same time connect the first fixed rod 31 and the second fixed rod 33, so that the second support member 395 can be connected to the inner wall surface of the second chamber to form a plurality of triangular support structures, which can better enhance the overall structural strength of the mounting frame 30, which is beneficial to better prevent the mounting frame 30 from deformation, and further improve the overall structural stability and reliability of the anchor bracket 100. Secondly, when the mounting frame 30 is provided with at least two cross bars 393, the second support member 395 can also be arranged between at least any two adjacent cross bars 393, so that the second support member 395 can connect the cross bar 393 with the first fixed rod 31 and / or the second fixed rod 33, or the second support member 395 can connect the two cross bars 393, thereby better enhancing the overall structural strength of the mounting frame 30, which is conducive to better preventing the mounting frame 30 from deformation, and further improving the overall structural stability and reliability of the anchor bracket 100.

[0049] See also Figures 2 to 5 In an embodiment of the utility model, the mounting frame 30 further comprises a cable member 30 b, which is connected to the end surfaces of the first fixing rod 31 and the second fixing rod 33 facing away from the connecting beam 13 , and the cable member 30 b is used to clamp the installation cable 21 .

[0050] In this embodiment, by setting a cable piece 30b on the end faces of the first fixing rod 31 and the second fixing rod 33, the cable piece 30b can be a clamp or a clip set corresponding to the cable diameter of the installation cable 21. The cable piece 30b can be used to tighten and fix the installation cable 21 on the end faces of the first fixing rod 31 and the second fixing rod 33 facing away from the connecting beam 13, thereby realizing the supporting effect of the anchor bracket 100 on the installation cable 21, which is conducive to better improving the bearing and supporting force of the installation cable 21 on the photovoltaic component, so that the flexible photovoltaic bracket 1000 can more stably and reliably support and fix the photovoltaic component, ensure the stable and reliable operation of the photovoltaic power station, and further improve the practicality and reliability of the anchoring structure.

[0051] See also Figures 2 to 5 In an embodiment of the utility model, the first fixing rod 31 is obliquely connected to the connecting beam 13, the second fixing rod 33 is obliquely connected to the connecting beam 13, and the first fixing rod 31 and the second fixing rod 33 are arranged in an "eight" shape.

[0052] In this embodiment, the first fixing rod 31 and the second fixing rod 33 can be connected to the connecting beam 13 at a relative inclination, so that the first fixing rod 31 and the second fixing rod 33 can form a structural setting similar to an "eight" shape. At this time, by using the top rod 35 to connect the first fixing rod 31 and the second fixing rod 33, the first fixing rod 31 and the second fixing rod 33 obliquely connected to the connecting beam 13 can be used to better improve the connection stability and reliability between the mounting frame 30 and the connecting beam 13, which is beneficial to better avoid the mounting frame 30 from being deformed due to a large load, and further improve the overall structural stability and reliability of the anchor bracket 100.

[0053] The utility model also proposes a flexible photovoltaic bracket 1000, which includes at least two component fixing frame groups and at least one support frame group, wherein the support frame group includes a support cable 23 and at least two anchoring brackets 100. The specific structure of the anchoring bracket 100 refers to the above-mentioned embodiment. Since the flexible photovoltaic bracket 1000 adopts all the technical solutions of all the above-mentioned embodiments, it has at least all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be repeated here one by one.

[0054] Among them, the component fixing frame group includes an installation cable 21 and at least two cable mounts 400, the installation cable 21 is connected to at least two cable mounts 400, the support cable 23 is connected to at least two anchor brackets 100, the extension direction of the support cable 23 is set at an angle to the extension direction of the installation cable 21, and the support cable 23 is connected to the installation cable 21.

[0055] See also Figure 1 It can be understood that the flexible photovoltaic support 1000 can combine at least two cable mounts 400 and the installation cable 21 to form a component fixing frame group, so that the cable mount 400 of each component fixing frame group can stably connect the two ends of the installation cable 21, maintain a certain tension of the installation cable 21, and achieve stable support for the photovoltaic component. The photovoltaic support can also combine at least two anchoring supports 100 and support cables 23 to form a support frame group, so that the anchoring supports 100 of each support frame group can stably connect the two ends of the support cable 23, and maintain a certain tension of the support cable 23. At this time, by extending the support cable 23 and the installation cable 21 at an angle, a connector can be set on the support cable 23 to connect the installation cables 21 of at least two component fixing frame groups, and then the installation cable 21 can be better supported under the action of the support cable 23 and the anchoring support 100, so that the photovoltaic component can be more stably and reliably installed and fixed on the installation cable 21, ensuring the stable and reliable operation of the photovoltaic power station.

[0056] Furthermore, under the supporting effect of the support frame group on at least two component fixing frame groups, at least two component fixing frame groups can be arranged side by side in the north-south direction, so that multiple photovoltaic components can be stably installed on the component fixing frame group in a certain array arrangement, thereby ensuring the stable operation of the photovoltaic power station. In addition, when the length of the installation cable is large, the flexible photovoltaic bracket 1000 can increase the number of support frame groups, and arrange multiple support frame groups side by side in the east-west direction, and then multiple support frame groups can be used to support and support the installation cable 21, thereby further improving the structural stability and reliability of the flexible photovoltaic bracket 1000.

[0057] The utility model also proposes a photovoltaic power station, which includes photovoltaic components and a flexible photovoltaic bracket 1000. The specific structure of the flexible photovoltaic bracket 1000 refers to the above-mentioned embodiment. Since the photovoltaic power station adopts all the technical solutions of all the above-mentioned embodiments, it has at least all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be described one by one here.

[0058] The above description is only an exemplary embodiment of the present invention, and does not limit the patent scope of the present invention. All equivalent structural changes made by using the contents of the present invention specification and drawings under the technical concept of the present invention, or directly / indirectly applied in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. An anchor bracket, characterized in that: include: An anchoring matrix, the anchoring matrix comprising at least two anchoring columns and a connecting beam, the connecting beam connecting one end of the at least two anchoring columns; and The mounting frame includes a first fixing rod, a second fixing rod and a top rod, one end of the first fixing rod and one end of the second fixing rod are connected to the connecting beam at an interval, the top rod connects the other end of the first fixing rod and the other end of the second fixing rod, and the mounting frame is used to connect and fix the supporting cables of the flexible photovoltaic bracket.

2. The anchor bracket according to claim 1, characterized in that: The mounting frame is provided with a cable fixing member, which is connected to the mounting frame and arranged between the first fixing rod and the second fixing rod, and is used for connecting and fixing a supporting cable.

3. The anchor bracket according to claim 2, characterized in that: The fixing cable is passed through and connected to the first fixing rod or the second fixing rod.

4. The anchor bracket according to claim 1, characterized in that: The mounting frame also includes a reinforcing rod, which connects the first fixing rod and the second fixing rod and is arranged between the connecting crossbeam and the top rod.

5. The anchor bracket according to claim 4, characterized in that: The reinforcing rod, the first fixing rod, the second fixing rod and the connecting crossbeam enclose a supporting space, and the mounting frame is provided with a first supporting member, which is arranged in the supporting space and connected to the inner wall surface of the supporting space.

6. The anchor bracket according to claim 5, characterized in that: The mounting frame is also provided with a cross bar and a second supporting member, wherein the cross bar is provided between the reinforcing rod and the connecting cross beam and connects the first fixing rod and the second fixing rod, and the cross bar divides the supporting space into a first chamber and a second chamber, the first supporting member is provided in the first chamber, and the second supporting member is provided in the second chamber and connected to the inner wall surface of the second chamber.

7. The anchor bracket according to any one of claims 1 to 6, characterized in that: The mounting frame further comprises a cable passing member connected to the end surfaces of the first fixing rod and the second fixing rod facing away from the connecting cross beam, and the cable passing member is used for clamping the installation cable.

8. The anchor bracket according to any one of claims 1 to 6, characterized in that: The first fixing rod is obliquely connected to the connecting crossbeam, the second fixing rod is obliquely connected to the connecting crossbeam, and the first fixing rod and the second fixing rod are arranged in an "eight" shape.

9. A flexible photovoltaic support, characterized in that: The flexible photovoltaic support comprises at least two component fixing frame groups and at least one support frame group, the component fixing frame group comprises installation cables and at least two cable mounts, and the support frame group comprises support cables and at least two anchoring brackets as described in any one of claims 1 to 8; The installation cable is connected to at least two of the cable mounts, the support cable is connected to at least two of the anchor brackets, the extension direction of the support cable is arranged at an angle to the extension direction of the installation cable, and the support cable is connected to the installation cable.

10. A photovoltaic power station, characterized in that: The photovoltaic power station comprises a photovoltaic module and a flexible photovoltaic bracket, wherein the flexible photovoltaic bracket is the flexible photovoltaic bracket according to claim 9, and the photovoltaic module is installed on the flexible photovoltaic bracket.