A photovoltaic pile location detection device

CN224635951UActive Publication Date: 2026-08-14GUANG DONG ZHAO YANG XIN NENG YUAN YOU XIAN GONG SI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种光伏桩间位置检测装置,以解决上述背景技术中提出装置虽能够得到较好的应用,且能够水平调节测量尺的角度,但通常不便于对调节后的测量尺进行锁止处理,使得测量尺易因外界风力等因素产生转动位移的现象,进而影响装置稳定性的问题

Benefits of technology

[0011]与现有技术相比,本实用新型的有益效果是:该光伏桩间位置检测装置不仅保障了检测装置使用时的稳定性,还保障了检测装置使用时对第一光伏桩与第二光伏桩之间距离的测量效果,而且提高了检测装置安装时的便捷性;

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Abstract

This utility model discloses a photovoltaic pile position detection device, including a detection base, a rotating shaft installed at the bottom of the detection base, a strip seat rotatably installed at the bottom of the rotating shaft, a photovoltaic ground below the detection base, a first photovoltaic pile installed on one side of the top of the photovoltaic ground, and a second photovoltaic pile installed on the other side of the top of the photovoltaic ground, a side seat body provided on one side of the outer wall of one side of the detection base, an arc-shaped groove provided on one side of the inner side of the detection base, both ends of the arc-shaped groove extending to the outside of the detection base, a first locking bolt installed at the top of the detection base at the position of the arc-shaped groove, the bottom end of the first locking bolt passing through the arc-shaped groove and threadedly connected to the top of the strip seat, a placement frame provided at the top of the side seat body, and a measuring ruler installed on the inner side of the placement frame. This utility model not only ensures the stability of the detection device during use, but also ensures the measurement effect of the distance between the first and second photovoltaic piles during use, and improves the convenience of installation of the detection device.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic energy technology, specifically a photovoltaic pile location detection device. Background Technology

[0002] In the construction of photovoltaic power plants, the accurate installation and positioning of photovoltaic piles are crucial. Traditional detection methods mostly rely on manual measurement or the use of rigid rulers of fixed length for rough estimation. These methods are not only time-consuming and labor-intensive, but also have large errors. Especially when the terrain is complex or the photovoltaic piles are tilted, it is difficult to guarantee the accuracy of the measurement. Therefore, it is particularly important to develop a photovoltaic pile position detection device.

[0003] A photovoltaic pile position detection device, as described in reference announcement number CN221593735U, includes: a positioning cone that can be inserted into the top of photovoltaic pile A; a rigid ruler section that is rotatably mounted on the positioning cone; and a deformable ruler section fixed to the end of the rigid ruler section. The positioning cone at the top of photovoltaic pile A serves as the force point and zero point. The deformable ruler section extends from the rigid ruler section to the outside of the partially depressed photovoltaic pile B, making close contact. After being pulled towards photovoltaic pile B, the deformable ruler section deforms and bends, achieving more accurate detection of the position between photovoltaic piles A and B. This solves the problem that a fixed-length rigid ruler can only protrude obliquely from the side of the photovoltaic pile, resulting in a large error in the position detection between piles. As can be seen from the above, although this device can be well applied and the angle of the measuring ruler can be adjusted horizontally, it is usually inconvenient to lock the adjusted measuring ruler. This makes the measuring ruler prone to rotational displacement due to external factors such as wind, thus affecting the stability of the device and often troubling users. Utility Model Content

[0004] The purpose of this utility model is to provide a photovoltaic pile position detection device to solve the problem that although the device proposed in the background art can be applied well and the angle of the measuring ruler can be adjusted horizontally, it is usually not convenient to lock the adjusted measuring ruler, which makes the measuring ruler prone to rotational displacement due to external wind force and other factors, thus affecting the stability of the device.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a photovoltaic pile position detection device, comprising a detection base, a rotating shaft installed at the bottom end of the detection base, a strip seat rotatably installed at the bottom end of the rotating shaft, a photovoltaic ground below the detection base, a first photovoltaic pile installed on one side of the top of the photovoltaic ground, a second photovoltaic pile installed on the other side of the top of the photovoltaic ground, a side seat body provided on the outer wall of one side of the detection base, an arc-shaped groove provided on one side inside the detection base, both ends of the arc-shaped groove extending to the outside of the detection base, a first locking bolt installed at the top of the detection base at the position of the arc-shaped groove, the bottom end of the first locking bolt penetrating the arc-shaped groove and threadedly connected to the top end of the strip seat, a placement frame provided at the top of the side seat body, a measuring ruler installed on the inner side of the placement frame, both ends of the measuring ruler extending to the outside of the placement frame.

[0006] Preferably, the inner wall of the side seat is provided with a plurality of reinforcing ribs, the bottom end of the reinforcing ribs being fixedly connected to the top end of the detection seat. The structural strength between the side seat and the detection seat is improved by setting the reinforcing ribs.

[0007] Preferably, a lower insertion post is installed at the top of the first photovoltaic pile, and an upper support post is provided at the top of the lower insertion post. The top of the upper support post is connected to the bottom of the strip seat. The upper support post and the lower insertion post are arranged to support and place the detection seat.

[0008] Preferably, a scale line is provided on one side of the top of the measuring ruler, and the distance between the first photovoltaic pile and the second photovoltaic pile is measured by setting the scale line.

[0009] Preferably, a second locking bolt is threaded onto the outer wall of one side of the mounting frame. One end of the second locking bolt extends to the inner side of the mounting frame and is provided with a pressure plate. The inner wall of the pressure plate contacts the outer wall of the measuring ruler. The pressure plate is used to abut and fix the measuring ruler.

[0010] Preferably, a second handle is provided on the outer wall of the placement frame away from the second locking bolt, a first handle is provided on the outer wall of the measuring ruler, and a limiting block is provided on the outer wall of the measuring ruler away from the first handle. The limiting block is provided to reduce the measuring ruler from detaching from the outside of the placement frame.

[0011] Compared with the prior art, the beneficial effects of this utility model are: the photovoltaic pile position detection device not only ensures the stability of the detection device during use, but also ensures the measurement effect of the distance between the first photovoltaic pile and the second photovoltaic pile during use, and improves the convenience of the detection device during installation.

[0012] (1) By loosening the first locking bolt, the side seat body is rotated at the top of the rotating shaft on the upper surface of the strip seat, so that the arc groove is rotated outside the first locking bolt. After the detection seat is adjusted to the specified angle, the first locking bolt is tightened to lock the detection seat, thereby reducing the phenomenon of rotational displacement of the measuring scale due to external force factors, thus ensuring the stability of the detection device during use.

[0013] (2) By loosening the second locking bolt, the pressure plate is no longer attached to the outer wall of the measuring ruler. At this time, the measuring ruler is slid inside the frame. After one end of the measuring ruler is pressed against the outer wall of the second photovoltaic pile, the second locking bolt is tightened so that the pressure plate is pressed against the outer wall of the measuring ruler to fix it. The distance between the first photovoltaic pile and the second photovoltaic pile is measured according to the measuring ruler and the scale line. The measurement data of the measuring ruler will not change due to external force factors. This makes it convenient for personnel to record the distance between the first photovoltaic pile and the second photovoltaic pile without having to perform a second measurement, thus ensuring the measurement effect of the distance between the first photovoltaic pile and the second photovoltaic pile when the detection device is used.

[0014] (3) By making the outer diameter of the lower plug equal to the inner diameter of the first photovoltaic pile, the lower plug can be inserted into the top of the first photovoltaic pile, so that the bottom end of the upper support column contacts the top of the first photovoltaic pile, thus enabling the detection seat to be installed quickly, thereby improving the convenience of the detection device during installation. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0016] Figure 2 This utility model Figure 1 Enlarged structural diagram at point A in the middle;

[0017] Figure 3 This is a top view of the detection seat structure of this utility model;

[0018] Figure 4 This is a schematic diagram of the detection seat structure of this utility model from below.

[0019] In the diagram: 1. Detection seat; 2. Side seat body; 3. Reinforcing rib; 4. Arc groove; 5. First locking bolt; 6. Strip seat; 7. First photovoltaic pile; 8. Second photovoltaic pile; 9. Photovoltaic ground; 10. Measuring ruler; 11. Scale line; 12. First handle; 13. Second handle; 14. Limiting block; 15. Placement frame; 16. Second locking bolt; 17. Pressure plate; 18. Rotating shaft; 19. Upper support column; 20. Lower insertion column. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0021] Please see Figure 1-4 An embodiment of this utility model provides a photovoltaic pile position detection device, including a detection base 1, a rotating shaft 18 installed at the bottom end of the detection base 1, a strip seat 6 rotatably installed at the bottom end of the rotating shaft 18, a photovoltaic ground 9 provided below the detection base 1, a first photovoltaic pile 7 installed on one side of the top of the photovoltaic ground 9, a lower insertion post 20 inserted into the top of the first photovoltaic pile 7, an upper support post 19 provided at the top of the lower insertion post 20, and the top of the upper support post 19 connected to the bottom end of the strip seat 6;

[0022] In use, the upper support column 19 and the lower insertion column 20 are used to support and position the detection seat 1.

[0023] A second photovoltaic pile 8 is installed on the other side of the top of the photovoltaic ground 9. A side seat 2 is provided on the outer wall of one side of the detection seat 1. Several reinforcing ribs 3 are provided on the inner wall of the side seat 2. The bottom end of the reinforcing ribs 3 is fixedly connected to the top of the detection seat 1.

[0024] In use, the structural strength between the side seat 2 and the detection seat 1 is improved by setting the reinforcing rib 3;

[0025] An arc-shaped groove 4 is provided on one side inside the detection seat 1. Both ends of the arc-shaped groove 4 extend to the outside of the detection seat 1. A first locking bolt 5 is installed at the top of the detection seat 1 at the position of the arc-shaped groove 4. The bottom end of the first locking bolt 5 passes through the arc-shaped groove 4 and is threadedly connected to the top of the strip seat 6. A component frame 15 is provided at the top of the side seat body 2. A second locking bolt 16 is threadedly installed on the outer wall of one side of the component frame 15. One end of the second locking bolt 16 extends to the inner side of the component frame 15 and is provided with a pressure plate 17. The inner wall of the pressure plate 17 contacts the outer wall of the measuring ruler 10.

[0026] In use, the pressure plate 17 is set to abut and fix the measuring ruler 10;

[0027] A second handle 13 is provided on the outer wall of the frame 15 away from the second locking bolt 16, a first handle 12 is provided on the outer wall of the measuring ruler 10, and a limiting block 14 is provided on the outer wall of the measuring ruler 10 away from the first handle 12.

[0028] In use, the limiting block 14 is set to reduce the measuring ruler 10 from dislodging outside the placement frame 15;

[0029] A measuring ruler 10 is installed on the inner side of the placement frame 15. Both ends of the measuring ruler 10 extend to the outside of the placement frame 15. A scale line 11 is provided on one side of the top of the measuring ruler 10.

[0030] In use, the distance between the first photovoltaic pile 7 and the second photovoltaic pile 8 is measured by setting the scale line 11.

[0031] In this embodiment, the main components of the detection device, including the detection seat 1 and related parts, are quickly installed by first inserting the lower insertion post 20 into the top of the first photovoltaic pile 7, so that the bottom end of the upper support post 19 contacts the top of the first photovoltaic pile 7. Then, by loosening the second locking bolt 16, the pressure plate 17 is no longer attached to the outer wall of the measuring ruler 10. At this time, the measuring ruler 10 slides inside the mounting frame 15, with one end of the measuring ruler 10 abutting against the outer wall of the second photovoltaic pile 8. Then, the second locking bolt 16 is tightened, and the pressure plate 17 is pressed against the outer wall of the measuring ruler 10 to fix it in place. The measurement device can then be installed based on the relationship between the measuring ruler 10 and the engraved... The measuring line 11 measures the distance between the first photovoltaic pile 7 and the second photovoltaic pile 8, and ensures that the measurement data of the measuring ruler 10 does not change due to external forces. This makes it easy for personnel to record the distance between the first photovoltaic pile 7 and the second photovoltaic pile 8 without having to perform a secondary measurement. Finally, by loosening the first locking bolt 5, the top of the rotating shaft 18 located on the upper surface of the strip seat 6 rotates the side seat 2, so that the arc groove 4 rotates outside the first locking bolt 5. After adjusting the detection seat 1 to the specified angle, the first locking bolt 5 is tightened to lock the detection seat 1, thereby reducing the phenomenon of rotational displacement of the measuring ruler 10 due to external forces, thus completing the use of the detection device.

Claims

1. A photovoltaic inter-pile location detection apparatus, characterized by: The device includes a testing seat (1), with a rotating shaft (18) installed at the bottom end of the testing seat (1). A strip seat (6) is rotatably installed at the bottom end of the rotating shaft (18). A photovoltaic ground (9) is provided below the testing seat (1). A first photovoltaic pile (7) is installed on one side of the top of the photovoltaic ground (9), and a second photovoltaic pile (8) is installed on the other side of the top of the photovoltaic ground (9). A side seat (2) is provided on the outer wall of one side of the testing seat (1). An arc-shaped groove (4) is provided on one side inside the testing seat (1). Both ends of the arc-shaped groove (4) extend to the outside of the testing seat (1). The top of the testing seat (1) at the position of the arc-shaped groove (4) is... A first locking bolt (5) is installed, the bottom end of the first locking bolt (5) passes through the arc groove (4) and is threaded to the top end of the strip seat (6). The top end of the side seat body (2) is provided with a placement frame (15). A measuring ruler (10) is installed on the inner side of the placement frame (15). Both ends of the measuring ruler (10) extend to the outside of the placement frame (15). A second locking bolt (16) is threaded on the outer wall of one side of the placement frame (15). One end of the second locking bolt (16) extends to the inner side of the placement frame (15) and is provided with a pressure plate (17). The inner wall of the pressure plate (17) touches the outer wall of the measuring ruler (10).

2. A photovoltaic inter-pile location detection device according to claim 1, wherein: The inner wall of the side seat (2) is provided with several reinforcing ribs (3), and the bottom end of the reinforcing ribs (3) is fixedly connected to the top end of the detection seat (1).

3. A photovoltaic inter-pile location detection device according to claim 1, wherein: The first photovoltaic pile (7) has a lower plug-in column (20) installed at the top of its interior. The top of the lower plug-in column (20) is provided with an upper support column (19). The top of the upper support column (19) is connected to the bottom of the strip seat (6).

4. A photovoltaic inter-pile location detection device according to claim 1, wherein: The measuring ruler (10) has a scale line (11) on one side of its top.

5. A photovoltaic inter-pile location detection device according to claim 1, wherein: The outer wall of the mounting frame (15) away from the second locking bolt (16) is provided with a second handle (13), the outer wall of the measuring ruler (10) is provided with a first handle (12), and the outer wall of the measuring ruler (10) away from the first handle (12) is provided with a limiting block (14).

Citation Information

Patent Citations

  • Position detection device between photovoltaic piles

    CN221593735U