Photovoltaic fence structure

By using photovoltaic engineering piles as the fence foundation, combined with metal ropes and discharge devices, the problems of high construction costs and animal collisions in photovoltaic power plant fences have been solved, achieving low-cost and high-efficiency fence construction and maintenance.

CN223739122UActive Publication Date: 2025-12-30SINOHYDRO BUREAU 12 CO LTD
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Patent Information

Application Number
CN202520213887.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-12-30
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

Existing photovoltaic power plant fences are expensive to construct and are easily damaged by animals, leading to increased maintenance costs. Furthermore, some fenced areas are located outside the designated boundaries, raising land acquisition and resettlement issues.

Method used

Using photovoltaic engineering piles as the fence foundation, combined with metal ropes and discharge devices, animals are repelled by the microcurrent on the metal ropes. Combined with a simple structure and energy storage device, the fence can be reliably fixed and animals can be protected.

Benefits of technology

It reduces the cost of fence construction, improves construction efficiency, reduces the need for land acquisition and relocation, enhances the economy and portability of the fence, solves the problem of animal collisions, and has a simple structure that is easy to install and maintain.

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Abstract

The utility model provides a photovoltaic fence structure, which relates to the technical field of photovoltaic fences, and comprises an engineering pile, a fence vertical plate, a hoop, a metal rope and a discharge device, the hoop adopts two groups of semicircular structures and is fixed through fastening bolts, the hoop is installed on the engineering pile, the fence vertical plate is arranged along the height direction of the engineering pile and is connected with the hoop through a bolt assembly, and the metal rope is connected with the discharge device. Rope connecting point positions are arranged on the fence vertical plates, the metal rope is connected to the rope connecting point positions of the fence vertical plates, and the discharging device is connected with the metal rope, so that the metal rope is provided with micro-current, animals are repelled when approaching and touching the metal rope, and the animals are prevented from impacting and damaging the fence. According to the scheme, the photovoltaic engineering piles are directly used as the fence foundation, fence foundation piles are saved, meanwhile, the red line arrangement problem is solved, the arrangement rate of the engineering piles is increased, and unnecessary extra land subsidence is reduced. When local damage occurs, only the damaged rope needs to be replaced, and overall replacement is not needed.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic fence technology, and in particular to a photovoltaic fence structure. Background Technology

[0002] Current plans typically involve constructing concrete pile foundations, erecting columns on the piles, and then placing wire mesh fencing between the columns. For example, the Guixi project is a reservoir-based photovoltaic project, and the tender documents require fencing around the entire plant area. This fencing is approximately 13 kilometers long, involving a significant amount of construction work and very high implementation costs. Furthermore, some fencing areas are outside the property boundary, raising additional land acquisition and resettlement issues.

[0003] The main drawbacks of this arrangement are: 1. Most of the engineering piles are placed at the edge of the property line. If fence piles are placed outside the engineering piles, it would involve re-acquiring land, increasing costs, and placing them inside the property line would sacrifice the position of the engineering piles, reducing the usable area of ​​the entire photovoltaic zone; 2. If the fence is damaged, the entire section needs to be replaced, lacking economy and portability; 3. The overall fence cost is high, resulting in poor economic efficiency; 4. Due to its location near a village, cattle and sheep frequently damage the fence, leading to increased maintenance costs. This application is made to address these drawbacks. Utility Model Content

[0004] The purpose of this invention is to provide a photovoltaic fence structure that directly uses photovoltaic engineering piles as the fence foundation, thereby reducing fence construction costs and solving the problem of animals damaging the fence.

[0005] To address the aforementioned problems, this utility model provides a photovoltaic fence structure, including engineering piles, fence uprights, clamps, metal ropes, and a discharge device. The clamps are secured with two sets of semi-circular structures using fastening bolts. The clamps are installed on the engineering piles. The fence uprights are positioned along the height of the engineering piles and connected to the clamps via bolt assemblies for fixation. The fence uprights have rope connection points, which can be ear plates, hanging rings, or other structures. The metal rope is connected to the rope connection points on the fence uprights. The discharge device is connected to the metal rope, causing a microcurrent to flow through it. When an animal approaches and touches the rope, the discharge device releases the current to repel it, preventing the animal from damaging the fence.

[0006] Preferably, the rope connection points are several through holes set on the fence uprights, and the metal rope passes through the through holes for fixing. The fixing method can be knotting, welding, or connecting a blocking component with a diameter larger than the through hole.

[0007] Preferably, the end of the metal rope is connected to a rope buckle for fixation. The rope buckle includes a buckle body and a tightening bolt. The metal rope passes through the buckle body and is clamped by the tightening bolt. The diameter of the rope buckle is larger than the diameter of the through hole.

[0008] According to one embodiment of the present invention, the photovoltaic fence structure further includes an energy storage device, which is connected to a discharge device. The two can be installed as an integral unit or separately.

[0009] According to one embodiment of the present invention, the photovoltaic fence structure further includes a photovoltaic power generation module, which is connected to an energy storage device. The photovoltaic power generation module can be a component of a photovoltaic power plant, or it can be set up as a separate photovoltaic power generation module for power supply to the energy storage device.

[0010] Furthermore, the energy storage or discharge device is equipped with a start / stop switch to facilitate timely start / stop when maintaining the fence.

[0011] According to one embodiment of this utility model, at least two sets of clamps are installed on each engineering pile to achieve a reliable fixing effect.

[0012] According to one embodiment of the present invention, the energy storage device and the discharge device are mounted on the clamp.

[0013] According to one embodiment of the present invention, a ladder is provided on the fence upright for easy maintenance.

[0014] According to one embodiment of the present invention, the metal rope is a steel rope.

[0015] According to one embodiment of the present invention, the metal ropes are arranged in parallel or in a crisscross pattern.

[0016] The beneficial effects of this utility model are as follows: This solution directly utilizes photovoltaic engineering piles as the fence foundation, saving on fence foundation piles, solving the problem of boundary line layout, increasing the layout rate of engineering piles, and reducing unnecessary additional land acquisition. It improves the efficiency of fence construction and maintenance, reduces construction costs, and the fence structure is simple, reliably assembled manually, flexible and convenient, highly mobile, easy to install and disassemble, and has high construction safety. The steel ropes are fixed with rope buckles; if local damage occurs, only the damaged rope needs to be replaced, without replacing the entire fence. The arrangement of energy storage and discharge devices effectively solves the problem of collisions with animals such as cattle and sheep, ensuring fence safety. Furthermore, the device can be started using electricity generated by the photovoltaic panels themselves, resulting in high utilization. Attached Figure Description

[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0018] Figure 1 This is a schematic diagram of the overall structure of a photovoltaic fence.

[0019] Figure 2 This is a schematic diagram of the rope knot. Detailed Implementation

[0020] The following description is only intended to disclose the present invention so that those skilled in the art can implement it. The embodiments in the following description are merely examples, and those skilled in the art will conceive of other obvious modifications. The basic principles of the present invention defined in the following description can be applied to other embodiments, modifications, improvements, equivalents, and other solutions that do not depart from the spirit and scope of the present invention.

[0021]

Example 1

[0022] A photovoltaic fence structure, such as Figure 1 It includes engineering piles 1, fence uprights 4, clamps 6, metal ropes 3 and discharge devices 8.

[0023] The photovoltaic engineering pile 1 is directly used as the foundation of the fence (the engineering pile needs to protrude more than 2 meters above the ground). By setting up a simple fixing structure, the fence protection purpose is achieved, while solving the problem of boundary line layout, increasing the layout rate of engineering piles, and reducing unnecessary additional land acquisition. This improves the efficiency of fence construction and operation and maintenance, and reduces construction costs.

[0024] In this embodiment, the metal rope 3 is a steel rope.

[0025] The clamp 6 adopts two sets of semi-circular structures and is fixed by fastening bolts 5. Its inner diameter is consistent with the outer diameter of the engineering pile 1. The clamp 6 is installed on the engineering pile 1, and at least two sets of clamps 6 are set on each engineering pile 1 to achieve a reliable fixing effect.

[0026] The fence upright plate 4 is installed along the height direction of the engineering pile 1 and is connected to the clamp 6 by bolt assembly for fixation. The fence upright plate 4 has rope connection points; in this embodiment, the rope connection points are several through holes on the fence upright plate 4. The metal rope 3 passes through these through holes for fixation, and the end of the metal rope 3 is connected to a rope buckle 2 for fixation. Figure 2 The rope buckle 2 includes a rope buckle body 12 and a tightening bolt 11. The metal rope 3 passes through the rope buckle body 12 and is clamped by the tightening bolt 11. The diameter of the rope buckle 2 is larger than the diameter of the through hole.

[0027] Several metal ropes 3 are arranged in parallel or cross directions. In this embodiment, for example... Figure 1 The parallel arrangement scheme can be further improved by setting vertical ropes between the horizontal metal ropes 3.

[0028] The fence upright plate 4 can be provided with a single row of through holes for installing metal ropes 3, or it can be provided with double rows of holes, with each row of holes staggered to increase the density of metal ropes 3, while avoiding a significant impact on the strength of the fence upright plate 4.

[0029] The fence structure described above utilizes engineering piles, reducing costs. It is also made up of small components, making installation and maintenance easier. The structure is simple, easy to manufacture, and has low manufacturing costs, resulting in significant cost savings compared to conventional solutions.

[0030] The discharge device 8 is connected to the metal rope 3, which carries a microcurrent. When an animal approaches and touches it, the current is released to repel it, preventing the animal from crashing into and damaging the fence. The energy storage device is connected to the discharge device 8; the two can be installed as a single unit or separately. Both the energy storage device and the discharge device 8 are mounted on the clamp 6. The photovoltaic power generation module is connected to the energy storage device. The photovoltaic power generation module can be a component of the photovoltaic power plant or a standalone photovoltaic power generation module powered by the energy storage device.

[0031] Preferably, the energy storage device or discharge device 8 is equipped with a start / stop switch to facilitate timely start / stop when maintaining the fence.

[0032] Preferably, a ladder 9 is provided on the fence upright plate 4. The ladder 9 can be provided on both sides of the fence upright plate 4, or it can be provided only on the side where the rope buckle 2 is provided, so as to facilitate climbing for maintenance when replacing steel ropes.

[0033] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not limit the present invention. The purpose of the present invention has been fully and effectively achieved. The functional and structural principles of the present invention have been shown and explained in the embodiments. Without departing from the stated principles, the implementation of the present invention may have any variations and modifications.

Claims

1. A photovoltaic fence structure, characterized by: The photovoltaic fence structure comprises an engineering pile (1), a fence upright plate (4), a hoop (6), a metal rope (3) and a discharge device (8), the hoop (6) is installed on the engineering pile (1), the fence upright plate (4) is arranged along the height direction of the engineering pile (1) and is connected with the hoop (6), the fence upright plate (4) is provided with a rope connecting point, the metal rope (3) is connected at the rope connecting point of the fence upright plate (4), and the discharge device (8) is connected with the metal rope (3) so that the metal rope (3) has a micro-current.

2. The photovoltaic fence structure of claim 1, wherein: The rope connecting point is a plurality of through holes arranged on the fence upright plate (4), and the metal rope (3) is fixed by penetrating the through holes.

3. The photovoltaic fence structure of claim 2, wherein: The end of the metal rope (3) is connected with a rope buckle (2), the rope buckle (2) comprises a rope buckle body (12) and a tightening bolt (11), the metal rope (3) penetrates the rope buckle body (12), and the metal rope (3) is clamped by the tightening bolt (11).

4. The photovoltaic fence structure according to any one of claims 1-3, wherein: The photovoltaic fence structure further comprises an energy storage device, and the energy storage device is connected with the discharge device (8).

5. The photovoltaic fence structure of claim 4, wherein: The photovoltaic fence structure further comprises a photovoltaic power generation module, and the photovoltaic power generation module is connected with the energy storage device.

6. The photovoltaic fence structure of any one of claims 1-3, wherein: At least two groups of hoops (6) are arranged on each engineering pile (1).

7. The photovoltaic fence structure of claim 5, wherein: The energy storage device and the discharge device (8) are installed on the hoop (6).

8. The photovoltaic fence structure of claim 4, wherein: The fence upright plate (4) is provided with a ladder (9).

9. The photovoltaic fence structure of claim 4, wherein: The metal rope (3) is a steel rope.

10. The photovoltaic corral structure of claim 1, wherein: A plurality of metal ropes (3) are arranged in parallel or cross.