Distributed dike safety monitoring equipment

By designing a combined structure of support rods and photovoltaic frames in the embankment safety monitoring equipment, combining adjustment devices and auxiliary devices, the problem of aging and damage to the photovoltaic panels is solved, and the convenient replacement and maintenance of the photovoltaic frames are achieved, and the maintenance of the equipment is improved.

CN222951781UActive Publication Date: 2025-06-06SHANGHAI AIDU ENERGY TECH
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Patent Information

Application Number
CN202422029326.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-06-06
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

In existing embankment safety monitoring equipment, photovoltaic panels are used for a long time to provide power, which is susceptible to external environmental factors to cause aging and damage, which is inconvenient for replacement and maintenance.

Method used

A distributed embankment safety monitoring equipment is designed, using a combined structure of support rods and photovoltaic frames. Through adjustment devices and auxiliary devices, the photovoltaic frames can be replaced and maintained easily.

Benefits of technology

It effectively solves the problem of aging and damage to photovoltaic panels, simplifies the replacement and maintenance process of photovoltaic frames, and improves the maintenance and service life of the equipment.

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Abstract

The utility model relates to the technical field of dike safety monitoring, in particular to distributed dike safety monitoring equipment. Comprising a supporting seat and an auxiliary device, a supporting rod is installed at the upper end of the supporting seat through the auxiliary device, a monitoring device is fixedly connected to the arc surface of the upper end of the supporting rod, a photovoltaic frame is installed on the arc surface of the upper end of the supporting rod, and an adjusting device is arranged on the side, close to the supporting rod, of the photovoltaic frame. The adjusting device comprises a fixing frame, one side of the fixing frame is fixedly connected with the arc surface of the supporting rod, a butt joint plate is inserted into the inner wall of the fixing frame, the bottom end of the butt joint plate is fixedly connected with one side of the photovoltaic frame, and through holes are formed in the two sides of the fixing frame; a connecting frame is fixedly connected to the position, corresponding to the through hole, of the side wall surface of the fixing frame. The distributed embankment safety monitoring equipment provided by the utility model has the advantage that the power supply photovoltaic panel in the embankment safety monitoring equipment can be conveniently replaced and maintained.
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Description

Technical Field

[0001] The utility model relates to the technical field of levee safety monitoring, in particular to a distributed levee safety monitoring device. Background Art

[0002] Existing technologies include a utility model with a publication number of CN220023075U, which discloses an integrated small-scale intelligent sensing device for levee safety monitoring. The patent includes a sensor module, a data acquisition module, a real-time warning module, and a communication module. The sensor module monitors various types of monitoring quantities, and transmits the collected information to the real-time warning module through the communication module. The real-time warning module performs data analysis and real-time warning, and issues action instructions to other modules through the communication module. The utility model can timely detect dangerous situations and maintain levee safety, and realize automatic monitoring, safety evaluation and warning of levees. At the same time, it adopts an integrated assembly method to solve the problem of multi-instrument integration, facilitate the installation and subsequent management of monitoring equipment, and can be widely used in the field of levee engineering safety monitoring technology.

[0003] In the monitoring of embankment safety protection, it was found that in the process of operating and using distributed embankment safety monitoring equipment, since general embankment safety monitoring equipment usually relies on photovoltaic panels for power supply, which is convenient for energy saving and environmental protection, the long-term use of photovoltaic panels is easily affected by external environmental factors, causing aging and damage of the photovoltaic panels, which in turn leads to the inconvenience of replacing and maintaining the photovoltaic panels. Utility Model Content

[0004] The purpose of the utility model is to solve the problem that in the prior art, during the operation and use of distributed embankment safety monitoring equipment, general embankment safety monitoring equipment usually relies on photovoltaic panels for power supply, which is convenient for energy saving and environmental protection. However, long-term use of photovoltaic panels is easily affected by external environmental factors, causing aging and damage of the photovoltaic panels, which makes it inconvenient to replace and maintain the photovoltaic panels.

[0005] In order to solve the above technical problems, the utility model provides a distributed levee safety monitoring device, including: a support seat and an auxiliary device, the upper end of the support seat is installed with a support rod with the help of the auxiliary device, the upper arc surface of the support rod is fixedly connected with a monitoring device, the upper arc surface of the support rod is installed with a photovoltaic frame, the photovoltaic frame and the support rod are close to each other. The side is provided with an adjustment device, the adjustment device includes a fixed frame, one side of the fixed frame is fixedly connected to the arc surface of the support rod, the inner wall of the fixed frame is plugged with a docking plate, the bottom end of the docking plate is connected to one side of the photovoltaic frame The fixing frame is fixedly connected on the side, through holes are provided on both sides of the fixing frame, and a connecting frame is fixedly connected to the position of the through holes on the side wall surface of the fixing frame. The cross-section of the connecting frame is "U"-shaped, and a moving rod is slidably penetrated through the surface of the connecting frame. An extrusion block is fixedly connected to the end of the moving rod close to the through hole, and the surface of the extrusion block is serrated. A number of clamping blocks are fixedly connected to the surfaces of the two sides of the docking plate, and the surface of the extrusion block is clamped with the surface of the clamping block. The arc surface of the moving rod is sleeved with a spring, and the two ends of the spring are respectively fixedly connected to the extrusion block and the moving rod. The effect achieved by the above components is: in the process of using the embankment safety monitoring equipment, the photovoltaic frame installed on the surface of the support pole will be used to assist in providing power support, so that the monitoring equipment can be easily operated. In order to facilitate the replacement and maintenance of the photovoltaic frame due to the influence of the external environment for a long time, the fixed frame on the surface of the support pole is used to connect the docking plate on one side of the photovoltaic frame with the fixed frame, and then the extrusion blocks moving on both sides of the fixed frame are used to connect and limit the fixed blocks on the side walls of the docking plate, so as to effectively and conveniently replace and maintain the entire photovoltaic frame.

[0006] Preferably, the end of the moving rod away from the extrusion block is rotatably connected to a pull ring, and the cross-sectional size of the pull ring is adapted to the cross-sectional size of the moving rod. The above components achieve the effect that when the position of the moving rod is stretched, the pull ring on the surface of the moving rod can be used for auxiliary operation.

[0007] Preferably, a positioning rod is slidably penetrated through the upper surface of the connecting frame, the cross section of the positioning rod is "T" shaped, and a sliding hole is provided on the upper surface of the extrusion block, the cross section size of the sliding hole is adapted to the cross section size of the positioning rod. The effect achieved by the above components is that when the extrusion block is driven by the moving rod to move toward a position away from the clamping block, it can be limited and fixed by means of the positioning rod and the sliding hole provided on the upper surface of the extrusion block.

[0008] Preferably, the upper end surface of the docking plate is in a pointed cone shape, and the cross section of the docking plate is in a "U" shape. The above components achieve the effect that the docking plate with a pointed cone cross section can be conveniently inserted and fixed with the fixing frame.

[0009] Preferably, an auxiliary device is provided on the side where the support rod and the support seat are close to each other, and the auxiliary device includes a plug post, the upper end of the plug post is fixedly connected to the bottom end of the support rod, the upper surface of the support seat is provided with a plug hole, the inner wall of the plug hole is slidably connected to the surface of the plug post, the arc surface of the bottom end of the support rod is fixedly connected to the positioning frame, the inner walls of both ends of the positioning frame are rotatably connected to the rotating plate, the arc surface of the upper end of the support seat is fixedly connected to the connecting plate, the two sides of the connecting plate are clamped with the surface of the rotating plate, the surface of the rotating plate is slidably connected to the sliding plate, the two ends of the sliding plate are threadedly connected to the positioning columns, the surface of the connecting plate is provided with a positioning hole corresponding to the position of the positioning column, and the inner wall of the positioning hole is threadedly connected to the arc surface of the positioning column. The effect achieved by the above-mentioned components is: when the embankment safety monitoring equipment is used for a long time, the monitoring equipment will cause aging and damage. At this time, in order to facilitate the replacement and maintenance of the entire monitoring equipment, the support rod and the support seat in the monitoring equipment are replaced and docked, and the rotating plates and connecting plates on both sides of the positioning frame at the bottom of the support rod are clamped, and then the positioning columns on both sides of the sliding plate on the surface of the rotating plate and the positioning holes on the surface of the connecting plate are used for threaded insertion and limiting. This makes it convenient and quick to disassemble, maintain and limit the entire monitoring equipment.

[0010] Preferably, the surface of the plug is covered with a sealing ring, and the two side surfaces of the sealing ring are respectively in contact with the support rod and the support seat. The effect achieved by the above components is that the sealing ring can better fix the support rod and the support seat when they are plugged in and limited to avoid shaking.

[0011] Preferably, the inner walls on both sides of the positioning frame are sleeved with coil springs, and the two ends of the coil springs are fixedly connected to the positioning frame and the rotating plate respectively. The effect achieved by the above components is that the position of the rotating plate can be limited and fixed by the torsional force generated by the coil springs.

[0012] Compared with the related technologies, the distributed levee safety monitoring equipment provided by the utility model has the following beneficial effects:

[0013] The utility model provides a distributed levee safety monitoring device. When the levee safety monitoring device is used for a long time, the monitoring device will be aged and damaged. At this time, in order to facilitate the replacement and maintenance of the entire monitoring device, the support rod and the support seat in the monitoring device are replaced and connected, and the rotating plates on both sides of the positioning frame at the bottom of the support rod are clamped with the connecting plates, and then the positioning columns on both sides of the sliding plate on the surface of the rotating plate and the positioning holes on the surface of the connecting plate are used for threaded insertion and limiting. By operating the adjusting device, the entire monitoring device can be conveniently and quickly disassembled, maintained and limited.

[0014] During the use of the embankment safety monitoring equipment, the photovoltaic rack installed on the surface of the support pole will be used to assist in providing power support, so that the monitoring equipment can be easily operated. In order to facilitate the replacement and maintenance of the photovoltaic rack due to the influence of the external environment for a long time, the fixed frame on the surface of the support pole is used to plug the docking plate on one side of the photovoltaic rack into the fixed frame, and then the moving extrusion blocks on both sides of the fixed frame are used to lock and limit the fixed blocks on the side walls of the docking plate. Through the operation of the auxiliary device, the entire photovoltaic rack can be effectively and conveniently replaced and maintained. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 A schematic diagram of the structure of a distributed levee safety monitoring device provided by the utility model;

[0016] Figure 2 for Figure 1 A schematic diagram of a partial structure of the three-dimensional structure shown;

[0017] Figure 3 for Figure 1 The structural schematic diagram of the regulating device shown;

[0018] Figure 4 for Figure 3 The schematic diagram of the split structure of the regulating device shown;

[0019] Figure 5 for Figure 1 A schematic diagram of the structure of the auxiliary device shown;

[0020] Figure 6 for Figure 5 Schematic diagram of the disassembled structure of the auxiliary device shown.

[0021] Numbers in the figure: 1. Support seat; 2. Support rod; 3. Photovoltaic frame; 4. Adjustment device; 401. Fixed frame; 402. Docking plate; 403. Moving rod; 404. Spring; 405. Pull ring; 406. Connecting frame; 407. Positioning rod; 408. Block; 409. Extrusion block; 410. Through hole; 5. Auxiliary device; 501. Positioning frame; 502. Rotating plate; 503. Coil spring; 504. Positioning hole; 505. Sliding plate; 506. Positioning column; 507. Connecting plate; 508. Plug column; 509. Plug hole; 510. Sealing ring; 6. Monitoring device. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical solution and advantages of the utility model more clear, the utility model is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.

[0023] The specific implementation of the present utility model is described in detail below in conjunction with specific embodiments.

[0024] See also Figures 1 to 6 A distributed embankment safety monitoring device provided by an embodiment of the utility model includes: a support seat 1 and an auxiliary device 5, a support rod 2 is installed on the upper end of the support seat 1 with the aid of the auxiliary device 5, a monitoring device 6 is fixedly connected to the upper arc surface of the support rod 2, a photovoltaic frame 3 is installed on the upper arc surface of the support rod 2, an adjustment device 4 is provided on the side where the photovoltaic frame 3 and the support rod 2 are close to each other, and an auxiliary device 5 is provided on the side where the support rod 2 and the support seat 1 are close to each other.

[0025] In the embodiments of the present invention, please refer to Figure 3 and Figure 4 The adjusting device 4 includes a fixed frame 401, one side of the fixed frame 401 is fixedly connected to the arc surface of the support rod 2, a docking plate 402 is inserted into the inner wall of the fixed frame 401, and the bottom end of the docking plate 402 is fixedly connected to one side of the photovoltaic frame 3, and through holes 410 are opened on both sides of the fixed frame 401. A connecting frame 406 is fixedly connected to the position of the through hole 410 on the side wall surface of the fixed frame 401. The cross-section of the connecting frame 406 is "U"-shaped, and a moving rod 403 is slidably penetrated on the surface of the connecting frame 406. An extrusion block 409 is fixedly connected to one end of the moving rod 403 close to the through hole 410, and the surface of the extrusion block 409 is serrated. A plurality of card blocks 4 are fixedly connected to the surfaces of both sides of the docking plate 402 08, the surface of the extrusion block 409 is snap-fitted with the surface of the card block 408, the arc surface of the moving rod 403 is sleeved with a spring 404, the two ends of the spring 404 are respectively fixedly connected to the extrusion block 409 and the moving rod 403, the end of the moving rod 403 away from the extrusion block 409 is rotatably connected with a pull ring 405, the cross-sectional size of the pull ring 405 is adapted to the cross-sectional size of the moving rod 403, the upper surface of the connecting frame 406 is slidably penetrated by a positioning rod 407, the cross-sectional size of the positioning rod 407 is "T"-shaped, the upper surface of the extrusion block 409 is provided with a sliding hole, the cross-sectional size of the sliding hole is adapted to the cross-sectional size of the positioning rod 407, the upper end surface of the docking plate 402 is in a pointed cone shape, and the cross-sectional size of the docking plate 402 is in a "U" shape;

[0026] In the embodiments of the present invention, please refer to Figure 5 and Figure 6The auxiliary device 5 includes a plug column 508, the upper end of the plug column 508 is fixedly connected to the bottom end of the support rod 2, a plug hole 509 is provided on the upper surface of the support seat 1, the inner wall of the plug hole 509 is slidably connected to the surface of the plug column 508, the arc surface at the bottom end of the support rod 2 is fixedly connected to a positioning frame 501, the inner walls of both ends of the positioning frame 501 are rotatably connected to a rotating plate 502, the arc surface at the upper end of the support seat 1 is fixedly connected to a connecting plate 507, the two sides of the connecting plate 507 are snap-fitted to the surface of the rotating plate 502, and the surface of the rotating plate 502 is slidably connected There is a sliding plate 505, both ends of the sliding plate 505 are threadedly connected with positioning columns 506, a positioning hole 504 is opened on the surface of the connecting plate 507 at the position corresponding to the positioning column 506, the inner wall of the positioning hole 504 is threadedly connected with the arc surface of the positioning column 506, the surface of the plug column 508 is sleeved with a sealing ring 510, and the two side surfaces of the sealing ring 510 are respectively abutted against the support rod 2 and the support seat 1, and the inner walls of both sides of the positioning frame 501 are sleeved with coil springs 503, and the two ends of the coil spring 503 are respectively fixedly connected to the positioning frame 501 and the rotating plate 502;

[0027] The working principle of a distributed levee safety monitoring device provided by the utility model is as follows: during the use of the levee safety monitoring device, the photovoltaic frame 3 installed on the surface of the support rod 2 will be used to assist in providing power support. In order to facilitate the replacement and maintenance of the photovoltaic frame 3, the fixed frame 401 on the surface of the support rod 2 is used to pull the moving rods 403 on both sides of the fixed frame 401. At this time, the moving rods 403 will slide along the surface of the connecting frame 406, allowing the moving rods 403 to separate the extrusion block 409 on one side of the moving rod 403 from the card block 408 fixed on the side wall of the docking plate 402 with the help of the tensile force generated by the spring 404, and then the docking plate 402 on one side of the photovoltaic frame 3 is plugged into the fixed frame 401. In this process, the positioning rod 407 sliding on the upper surface of the connecting frame 406 is plugged and fixed with the sliding hole opened on the upper surface of the extrusion block 409. At this time, the docking plate 402 on one side of the entire photovoltaic frame 3 will be fixed and limited with the fixed frame 401, so that the entire photovoltaic frame 3 can be effectively and conveniently replaced and maintained.

[0028] When the embankment safety monitoring equipment is used for a long time, in order to facilitate the replacement and maintenance of the entire monitoring equipment, the support rod 2 and the support seat 1 in the monitoring equipment are replaced and connected. First, the plug column 508 at the bottom of the support rod 2 is plugged into the plug hole 509 opened on the surface of the support seat 1, and then the rotating plate 502 on both sides of the positioning frame 501 at the bottom of the support rod 2 is clamped with the connecting plate 507. At the same time, the positioning columns 506 on both sides of the sliding plate 505 on the surface of the rotating plate 502 and the positioning holes 504 opened on the surface of the connecting plate 507 are threadedly plugged in and limited, so as to facilitate and quickly disassemble and maintain the entire monitoring equipment.

[0029] The circuits and controls involved in the present invention are all prior art and will not be described in detail here.

[0030] The above description is only an embodiment of the present invention, and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the specification and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A distributed levee safety monitoring device, characterized in that: include: A support seat (1) and an auxiliary device (5), wherein a support rod (2) is installed on the upper end of the support seat (1) with the aid of the auxiliary device (5), a monitoring device (6) is fixedly connected to the upper arc surface of the support rod (2), a photovoltaic frame (3) is installed on the upper arc surface of the support rod (2), an adjustment device (4) is provided on the side where the photovoltaic frame (3) and the support rod (2) are close to each other, and the adjustment device (4) comprises a fixing frame (401), one side of the fixing frame (401) is fixedly connected to the arc surface of the support rod (2), a docking plate (402) is inserted into the inner wall of the fixing frame (401), the bottom end of the docking plate (402) is fixedly connected to one side of the photovoltaic frame (3), through holes (410) are provided on both sides of the fixing frame (401), and the fixing frame (401) is provided with a plurality of holes (410) on the bottom end of the fixing frame (401). A connecting frame (406) is fixedly connected to the position of the through hole (410) on the side wall surface of the fixed frame (401), the cross section of the connecting frame (406) is "U"-shaped, a moving rod (403) is slidably penetrated through the surface of the connecting frame (406), an extrusion block (409) is fixedly connected to one end of the moving rod (403) close to the through hole (410), the surface of the extrusion block (409) is serrated, a plurality of clamping blocks (408) are fixedly connected to the surfaces of both sides of the docking plate (402), the surface of the extrusion block (409) is clamped with the surface of the clamping block (408), the arc surface of the moving rod (403) is sleeved with a spring (404), and the two ends of the spring (404) are respectively fixedly connected to the extrusion block (409) and the moving rod (403).

2. A distributed levee safety monitoring device according to claim 1, characterized in that: One end of the moving rod (403) away from the extrusion block (409) is rotatably connected to a pull ring (405), and the cross-sectional size of the pull ring (405) is matched with the cross-sectional size of the moving rod (403).

3. A distributed levee safety monitoring device according to claim 1, characterized in that: A positioning rod (407) is slidably penetrated through the upper surface of the connecting frame (406), and the cross section of the positioning rod (407) is "T"-shaped. A sliding hole is opened on the upper surface of the extrusion block (409), and the cross-sectional size of the sliding hole is adapted to the cross-sectional size of the positioning rod (407).

4. A distributed levee safety monitoring device according to claim 1, characterized in that: The upper end surface of the butt joint plate (402) is in the shape of a pointed cone, and the cross section of the butt joint plate (402) is in the shape of a "U".

5. A distributed levee safety monitoring device according to claim 1, characterized in that: An auxiliary device (5) is provided on the side where the support rod (2) and the support seat (1) are close to each other, and the auxiliary device (5) comprises a plug post (508), the upper end of the plug post (508) is fixedly connected to the bottom end of the support rod (2), the upper surface of the support seat (1) is provided with a plug hole (509), the inner wall of the plug hole (509) is slidably connected to the surface of the plug post (508), the arc surface at the bottom end of the support rod (2) is fixedly connected to a positioning frame (501), and the inner walls at both ends of the positioning frame (501) are rotatably connected to a rotating plate (501). 02), a connecting plate (507) is fixedly connected to the arc surface of the upper end of the support seat (1), and the two sides of the connecting plate (507) are snap-fitted to the surface of the rotating plate (502), and the surface of the rotating plate (502) is slidably connected to a sliding plate (505), and both ends of the sliding plate (505) are threadedly connected to positioning columns (506), and a positioning hole (504) is opened on the surface of the connecting plate (507) at a position corresponding to the positioning column (506), and the inner wall of the positioning hole (504) is threadedly connected to the arc surface of the positioning column (506).

6. A distributed levee safety monitoring device according to claim 5, characterized in that: The surface of the plug post (508) is covered with a sealing ring (510), and the two side surfaces of the sealing ring (510) are respectively in contact with the support rod (2) and the support seat (1).

7. A distributed levee safety monitoring device according to claim 5, characterized in that: Coil springs (503) are sleeved on the inner walls of both sides of the positioning frame (501), and the two ends of the coil spring (503) are respectively fixedly connected to the positioning frame (501) and the rotating plate (502).

Citation Information

Patent Citations

  • Integrated small dike safety monitoring intelligent sensing equipment

    CN220023075U