Wind-deformation-resistant photovoltaic support

By introducing a combination structure of reinforcing ribs, diverter plates, and step-down plates into the photovoltaic support system, the deformation problem of the photovoltaic support system under strong winds is solved, achieving higher stability and wind resistance, and protecting the photovoltaic panels.

CN224054155UActive Publication Date: 2026-03-27OULIN GRP (HEBEI) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Photovoltaic support structures have poor wind resistance and are prone to deformation when encountering strong winds, which can damage the photovoltaic panels.

Method used

A wind-resistant photovoltaic support structure was designed. Through the combination of reinforcing ribs, diverting plates and pressure reducing plates, the connection stability between the supports is enhanced, and the wind force is diverted to reduce the impact of wind on the supports.

Benefits of technology

It improves the stability of the photovoltaic support structure, reduces the possibility of deformation, enhances the wind resistance of the support structure, and protects the photovoltaic panels from damage.

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Abstract

The utility model belongs to the technical field of photovoltaic supports, and particularly relates to a wind-deformation-resistant photovoltaic support, which comprises a first hoop and a second hoop, a bottom support and a rear connecting frame are respectively mounted on two sides of the first hoop, a front mounting frame is connected between the bottom support and the rear connecting frame, a support frame is mounted on one side of the front mounting frame, and a wind-deformation-resistant photovoltaic support is mounted on the other side of the front mounting frame. Reinforcing ribs are connected between the first hoop piece and the second hoop piece, and connecting transverse rods are arranged at the two ends of the front mounting frame. According to the photovoltaic support, the connecting effect between the rod bodies in the photovoltaic support can be enhanced, two adjacent photovoltaic supports are connected, so that the stability of the photovoltaic support is improved, wind power impacting the photovoltaic support is shunted, the impact force on the photovoltaic support is reduced, the possibility of deformation of the photovoltaic support is further reduced, and the service life of the photovoltaic support is prolonged. The connecting effect between the first hoop piece and the second hoop piece and the mounting column is enhanced, the possibility of displacement is reduced through the traction force of the reinforcing ribs, the upper support is pulled, and the stability of the photovoltaic support is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to photovoltaic support technical field, concretely relates to a wind deformation resistance photovoltaic support. BACKGROUND

[0002] Photovoltaic power station mainly collects energy through photovoltaic cell panel and carries out energy conversion, and the photovoltaic cell panel is installed on the photovoltaic support, and then the photovoltaic support transmits loads such as self weight and wind load to the soil around the foundation through the foundation connected to the lower part of the photovoltaic support, for a photovoltaic power station, a large number of photovoltaic cell panels need to be installed, that is, a large number of photovoltaic support foundations need to be configured, when the weather is windy, the wind resistance of the photovoltaic support is poor, generally, the photovoltaic panel is installed obliquely, and the photovoltaic support is mostly a triangular support structure matched with the photovoltaic panel, when the wind force on the rear side of the photovoltaic support is large, the resistance effect to the wind force is poor, and the wind force will directly impact the photovoltaic panel and the support, resulting in the problem of deformation of the photovoltaic support. SUMMARY

[0003] The utility model provides a wind deformation resistance photovoltaic support, can strengthen the connecting effect between the pole bodies in the photovoltaic support, links two adjacent photovoltaic supports, thereby increasing the stability of the photovoltaic support, shunts the wind force impacting the photovoltaic support, reduces the impact force on the photovoltaic support, and further reduces the possibility of deformation of the photovoltaic support.

[0004] The utility model provides the following technical scheme: a wind deformation resistance photovoltaic support, including first hoop piece and second hoop piece, first hoop piece both sides are installed with bottom support and rear connecting frame respectively, bottom support with rear connecting frame between be connected with front mounting frame, front mounting frame one side is installed with support frame, first hoop piece with second hoop piece between be connected with reinforcing rib, front mounting frame both ends all are provided with connecting cross rod, connecting cross rod one side is provided with a plurality of shunt plate, adjacent two rear connecting frames between be provided with windproof frame, windproof frame one side is provided with a plurality of voltage reducing plate, and windproof frame both sides all are provided with a plurality of limiting hole.

[0005] Wherein, first hoop piece with second hoop piece one end all is provided with two connecting pieces, first hoop piece with second hoop piece between be connected with two reinforcing rib, reinforcing rib both ends are fixed with adjacent side connecting piece installation respectively.

[0006] Wherein, rear connecting frame one side is provided with link groove, windproof frame is installed between two link grooves through connecting piece.

[0007] Wherein, a plurality of shunt plate is equidistantly arranged on one side of the connecting cross rod, and a plurality of shunt plates and the connecting cross rod are integrated.

[0008] The connecting cross bar is provided with mounting pieces at both ends of one side, the front mounting frame is provided with matching connection grooves at both ends, and the front mounting frame is mounted and fixed with the connecting cross bar through the connection grooves and the mounting pieces.

[0009] The several pressure reduction plates are arranged at intervals on one side of the windproof frame, and both ends of the pressure reduction plate are fixedly connected with the windproof frame.

[0010] The pressure reduction plate is arranged in a parallelogram structure, and one side of the pressure reduction plate is equal in length to the width of the windproof frame.

[0011] The utility model discloses the beneficial effects are:

[0012] The novel photovoltaic support can strengthen the connecting effect between the rods, connect two adjacent photovoltaic supports, increase the stability of the photovoltaic support, distribute the wind force impacting the photovoltaic support, reduce the impact force on the photovoltaic support, further reduce the possibility of deformation of the photovoltaic support, strengthen the connecting effect between the first hoop, the second hoop and the mounting column, reduce the possibility of displacement of the reinforcing rib through the traction force, pull the upper support, and increase the stability of the photovoltaic support.

[0013] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a whole structure schematic diagram of the utility model;

[0015] Figure 2 It is a three-dimensional structure schematic diagram of the windproof frame in the utility model;

[0016] Figure 3 It is a whole structure schematic diagram of the connecting cross bar in the utility model;

[0017] Figure 4 It is the utility model Figure 1 A part enlarged view in the utility model.

[0018] In the drawing: 1, first hoop; 11, bottom support; 12, rear connecting frame; 121, connection groove; 13, front mounting frame; 14, support frame; 2, second hoop; 21, reinforcing rib; 211, connecting piece; 3, connecting cross bar; 31, flow distribution plate; 32, mounting piece; 4, windproof frame; 41, pressure reduction plate; 42, limiting hole. DETAILED DESCRIPTION

[0019] Please refer to Figures 1-4The utility model provides the following technical scheme: including first hoop piece 1 and second hoop piece 2, first hoop piece 1 both sides are equipped with bottom support 11 and rear connecting frame 12 respectively, and the front mounting frame 13 is connected between bottom support 11 and rear connecting frame 12, and the support frame 14 is installed in one side of front mounting frame 13, and the reinforcing rib 21 is connected between first hoop piece 1 and second hoop piece 2, and the connecting cross bar 3 is arranged in both ends of front mounting frame 13, and a plurality of flow dividing plates 31 are arranged in one side of connecting cross bar 3, and the windbreak 4 is arranged between adjacent two rear connecting frames 12, and a plurality of voltage reduction plates 41 are arranged in one side of windbreak 4, and a plurality of limiting holes 42 are formed in both sides of windbreak 4.

[0020] In the embodiment: the main body structure of the photovoltaic support is formed by setting first hoop piece 1, second hoop piece 2, bottom support 11, rear connecting frame 12, front mounting frame 13 and support frame 14, the reinforcing rib 21 is connected between first hoop piece 1 and second hoop piece 2, the reinforcing rib 21 is set to connect first hoop piece 1 and second hoop piece 2, increase the connecting effect between first hoop piece 1 and second hoop piece 2, the connecting cross bar 3 is arranged in both ends of front mounting frame 13, a plurality of flow dividing plates 31 are arranged in one side of connecting cross bar 3, the adjacent two front mounting frames 13 are connected by setting connecting cross bar 3 and a plurality of flow dividing plates 31, and the connecting effect between the supports is increased, the wind force from the front direction of the photovoltaic panel is divided by a plurality of flow dividing plates 31, the impact force of the wind on the photovoltaic panel is reduced, and the stability of the photovoltaic support is increased, the windbreak 4 is arranged between adjacent two rear connecting frames 12, a plurality of voltage reduction plates 41 are arranged in one side of windbreak 4, and a plurality of limiting holes 42 are formed in both sides of windbreak 4, the structure for protecting the rear side of the photovoltaic support is formed by setting windbreak 4 and a plurality of voltage reduction plates 41, the adjacent two rear connecting frames 12 are connected, the wind force from the rear side of the photovoltaic panel is divided by a plurality of voltage reduction plates 41, the gap between a plurality of voltage reduction plates 41 is kept, the photovoltaic panel can normally radiate heat, is not connected with the back thereof, and in windy weather, the connecting effect between front mounting frame 13 and bottom support 11 is increased by windbreak 4 and a plurality of voltage reduction plates 41, the impact force of the wind on the photovoltaic support is reduced, the possibility of deformation of the photovoltaic support is reduced, the connecting effect between the rods in the photovoltaic support is strengthened, the adjacent two photovoltaic supports are connected, the stability of the photovoltaic support is increased, the wind force impacting the photovoltaic support is divided, the impact force on the photovoltaic support is reduced, the possibility of deformation of the photovoltaic support is further reduced, the connecting effect between first hoop piece 1, second hoop piece 2 and the mounting column is strengthened, the possibility of displacement of the reinforcing rib 21 is reduced by the traction force of the reinforcing rib 21, the upper support is pulled, and the stability of the photovoltaic support is increased.

[0021] The first hoop piece 1 and the second hoop piece 2 are symmetrically provided with two connecting pieces 211 at one end, and two reinforcing ribs 21 are connected between the first hoop piece 1 and the second hoop piece 2, and the two ends of the reinforcing rib 21 are respectively fixed with the adjacent side connecting piece 211; by setting the connecting piece 211, the reinforcing rib 21 is connected, so that the first hoop piece 1, the second hoop piece 2 and the reinforcing rib 21 are stably connected.

[0022] The rear connecting frame 12 is provided with a connecting groove 121 on one side, and the windproof frame 4 is installed between the two connecting grooves 121 through connecting pieces; by setting the connecting groove 121, the rear connecting frame 12 is connected, and the connection effect of the rear connecting frame 12 is better.

[0023] A plurality of flow dividing plates 31 are arranged at intervals on one side of the connecting cross bar 3, and the plurality of flow dividing plates 31 and the connecting cross bar 3 are formed as an integral structure; so that the wind power flow dividing structure composed of the plurality of flow dividing plates 31 and the connecting cross bar 3 is more stable and not easy to break after being impacted by wind power.

[0024] The connecting cross bar 3 is provided with a mounting piece 32 at both ends on one side, and the front mounting frame 13 is provided with a connecting groove matched with the mounting piece 32 at both ends, and the front mounting frame 13 and the connecting cross bar 3 are fixedly installed through the connecting groove and the mounting piece 32; by setting the mounting piece 32, the connecting cross bar 3 is installed between the two front mounting frames 13, which is more convenient when assembling the photovoltaic support.

[0025] A plurality of pressure reducing plates 41 are arranged at intervals on one side of the windproof frame 4, and the two ends of the pressure reducing plate 41 are fixedly connected with the windproof frame 4; by setting a plurality of pressure reducing plates 41 on the windproof frame 4, a structure for protecting the rear side of the photovoltaic support is formed, the adjacent two rear connecting frames 12 are connected, and the plurality of pressure reducing plates 41 divide the wind power from the rear side of the photovoltaic panel.

[0026] The pressure reducing plate 41 is provided in a parallelogram structure, and the length of one side of the pressure reducing plate 41 is equal to the width of the windproof frame 4; so that the two ends of the pressure reducing plate 41 are sharp structures, and the flow dividing effect of the end of the pressure reducing plate 41 is better in weather with strong wind.

[0027] The utility model discloses a working principle and use flow: this novel through setting reinforcing rib 21, the first hoop piece 1, the second hoop piece 2 between the link, increase the first hoop piece 1 with the connecting effect between the second hoop piece 2, both ends of front mounting bracket 13 are provided with the connecting crosspiece 3, and the connecting crosspiece 3 one side is provided with a plurality of flow dividing plate 31, through setting connecting crosspiece 3 with a plurality of flow dividing plate 31, the adjacent two front mounting bracket 13 are connected, increase the connecting effect between the support, through a plurality of flow dividing plate 31 to the wind power from the photovoltaic panel front direction is shunted, reduce the impact force of wind power to photovoltaic panel, thereby increase the stability of photovoltaic support, and the adjacent two rear connecting frame 12 between being provided with windbreak 4, and windbreak 4 one side is provided with a plurality of voltage reduction plate 41, and windbreak 4 both sides all are provided with a plurality of limiting hole 42, through setting windbreak 4 with a plurality of voltage reduction plate 41, the structure of the photovoltaic support rear side is protected, the adjacent two rear connecting frame 12 are linked, a plurality of voltage reduction plate 41 are shunted to the wind power from the photovoltaic panel rear side, and a plurality of voltage reduction plate 41 keep the clearance between, make photovoltaic panel can normally heat dissipation, not with its back connection, and in windy weather, windbreak 4 with a plurality of voltage reduction plate 41 increase the connecting effect between front mounting bracket 13 and bottom support 11, reduce the impact force of wind power to photovoltaic support, thereby reduce the possibility of photovoltaic support deformation.

Claims

1. A wind deformation resistant photovoltaic support comprising a first hoop (1) and a second hoop (2), characterized in that: The first hoop piece (1) is respectively provided with a bottom support (11) and a rear connecting frame (12) on both sides, a front mounting frame (13) is connected between the bottom support (11) and the rear connecting frame (12), a supporting frame (14) is mounted on one side of the front mounting frame (13), a reinforcing rib (21) is connected between the first hoop piece (1) and the second hoop piece (2), the connecting cross rod (3) is provided at both ends of the front mounting frame (13), a plurality of flow distribution plates (31) are provided on one side of the connecting cross rod (3), a windproof frame (4) is provided between adjacent two rear connecting frames (12), a plurality of pressure reduction plates (41) are provided on one side of the windproof frame (4), and a plurality of limiting holes (42) are formed on both sides of the windproof frame (4).

2. A wind-induced deformation resistant photovoltaic rack in accordance with claim 1, wherein: The first hoop piece (1) and the second hoop piece (2) are symmetrically provided with two connecting pieces (211) at one end, two reinforcing ribs (21) are connected between the first hoop piece (1) and the second hoop piece (2), and the reinforcing ribs (21) are respectively mounted and fixed with the connecting pieces (211) on the adjacent side at both ends.

3. A wind-induced deformation resistant photovoltaic rack in accordance with claim 1, wherein: The rear connecting frame (12) is provided with a connecting groove (121) on one side, and the windproof frame (4) is mounted between the two connecting grooves (121) through connecting pieces.

4. A wind-induced deformation resistant photovoltaic rack in accordance with claim 1, wherein: A plurality of flow distribution plates (31) are equally spaced on one side of the connecting cross rod (3), and the flow distribution plates (31) and the connecting cross rod (3) are formed as an integral structure.

5. A wind-induced deformation resistant photovoltaic rack in accordance with claim 1, wherein: Mounting pieces (32) are provided at both ends on one side of the connecting cross rod (3), the front mounting frame (13) is provided with a connecting groove matched with the mounting piece (32) at both ends, and the front mounting frame (13) and the connecting cross rod (3) are mounted and fixed through the connecting groove and the mounting piece (32).

6. A wind-induced deformation resistant photovoltaic rack in accordance with claim 1, wherein: A plurality of pressure reduction plates (41) are equally spaced on one side of the windproof frame (4), and the pressure reduction plates (41) are fixedly connected with the windproof frame (4) at both ends.

7. A wind resistant, deformation resistant photovoltaic mounting assembly according to claim 1, wherein: The pressure reduction plate (41) is provided as a parallelogram structure, and the length of one side of the pressure reduction plate (41) is equal to the width of the windproof frame (4).