Accident pool crack real-time monitoring device

By designing a real-time monitoring device for cracks in the accident pool, and utilizing tensile sensors and data analysis modules, the device enables real-time monitoring of displacement of the pool wall or bottom. This solves the problem of low efficiency in traditional monitoring methods and improves the safety and service life of the accident pool.

CN223910655UActive Publication Date: 2026-02-13CCCC TDC ENVIRONMENTAL PROTECTION DREDGING
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Patent Information

Application Number
CN202520129300.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-02-13
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Traditional monitoring methods rely on regular manual inspections, which are inefficient and make it difficult to achieve real-time and accurate monitoring of cracks and leaks in accident pools, affecting safety and service life.

Method used

Design a real-time monitoring device for cracks in an accident pool. The device monitors the displacement of the pool wall or bottom using a tension sensor, transmits tension information to a data analysis module using a data transmission module, and issues an early warning when the tension exceeds a predetermined range. Combined with a limit component, the length of the pull rope can be adjusted to achieve efficient monitoring and handling.

Benefits of technology

It enables real-time and accurate monitoring of cracks and leaks in the accident pool, improving safety and service life, and possesses efficient and intelligent monitoring and maintenance capabilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of crack monitoring, and particularly relates to an accident pool crack real-time monitoring device which comprises a monitoring box body, a monitoring assembly is arranged in the monitoring box body, and the monitoring assembly comprises a middle plate fixedly connected in the monitoring box body and tension sensors symmetrically installed on the two sides of the middle plate. Pressure plates are respectively mounted on the surfaces, far away from each other, of the two tension sensors; when the displacement of the pool wall or the pool bottom is monitored, the tension sensor transmits the received tension information to the data analysis module through the data transmission module, and if the tension range exceeds the preset range, the analysis result is sent to the external early warning processing module, so that the problem that the crack and leakage of the accident pool are difficult to monitor and process in real time is effectively solved; and the method has relatively high practicability and innovativeness.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of crack monitoring, specifically relates to an accident pool crack real -time monitoring device. BACKGROUND

[0002] With the rapid development of social economy and the acceleration of urbanization, large concrete pools play an increasingly important role in agricultural irrigation, industrial water and municipal water supply, however, due to various factors such as foundation settlement, material aging, water pressure, etc., cracks and leakage problems are prone to occur, which seriously affect its use effect and service life.

[0003] The traditional monitoring method often relies on artificial regular inspection, which is not only inefficient, but also difficult to realize real-time and accurate discovery of potential cracks and leakage, resulting in difficulty in effectively guaranteeing the safety and reliability of the accident pool, and also affecting its service life.

[0004] Therefore, an accident pool crack real-time monitoring device is designed to solve the above problems. UTILITY MODEL CONTENTS

[0005] To solve the problems in the background art, the utility model provides an accident pool crack real-time monitoring device, which transmits the tension information received by the tension sensor to the data analysis module through the data transmission module when displacement occurs on the pool wall or pool bottom, and sends the analysis result to the external early warning processing module when the tension range exceeds the predetermined range, effectively solving the problem of real-time monitoring and processing of cracks and leakage of the accident pool, and having high practicality and innovation.

[0006] To achieve the above purpose, the utility model provides the following technical scheme: an accident pool crack real-time monitoring device, comprising a monitoring box body, a monitoring assembly is arranged in the inside of the monitoring box body, the monitoring assembly comprises a middle plate fixedly connected in the inside of the monitoring box body and tension sensors symmetrically installed on both sides of the middle plate, one side of the two tension sensors away from each other is respectively provided with a pressure plate, one side of the two pressure plates away from the tension sensor is fixedly connected with a first spring, one end of the two first springs away from the pressure plate is fixedly connected with a limiting box, a wire wheel is arranged above each limiting box, and the surface of the wire wheel is wound with a pull rope.

[0007] As an optimal accident pool crack real-time monitoring device of the utility model, an axle is inserted into the inside of the wire wheel, the axle is fixedly connected with the wire wheel, a bearing is installed in the inside of the limiting box, the axle is inserted into the inside of the bearing, the axle is rotatably connected with the limiting box through the bearing, and a data transmission module and a data analysis module are installed on one side of the middle plate.

[0008] The utility model provides an accident pool crack real -time monitoring device optimizes, the bottom surface fixed connection of limit case has T type sliding block, T type sliding block inserts in the T type sliding slot that opens in the inside of monitoring box body, T type sliding block and monitoring box body slidingly connected.

[0009] The utility model provides an accident pool crack real -time monitoring device optimizes, the both sides of monitoring box body are opened with first rectangle slot, and every first rectangle slot's inside all installs two guide wheels, every pull rope all is located between two guide wheels, pull rope's one end fixed connection is connected with limiting disc far away from wire reel.

[0010] The utility model provides an accident pool crack real -time monitoring device optimizes, the upper surface of monitoring box body is opened with two second rectangle slot, the axle rod passes through second rectangle slot and extends to the outside of monitoring box body.

[0011] The utility model provides an accident pool crack real -time monitoring device optimizes, the bottom surface fixed connection of monitoring box body has support rod, the bottom fixed connection of support rod has location disc.

[0012] The utility model provides an accident pool crack real -time monitoring device optimizes, the surface of monitoring box body is provided with limiting component, limiting component includes two rectangle housings of symmetry fixed connection on the upper surface of monitoring box body and square inner plate of inserting in the inside of rectangle housing, square inner plate and rectangle housing slidingly connected, the inside of rectangle housing is provided with second spring, and the both ends of second spring are fixedly connected with square inner plate and monitoring box body, the top of square inner plate is provided with hollow rod, the inside insertion of hollow rod has pin, and the bottom fixed connection of pin is in the upper surface of square inner plate, and hollow rod and pin swing -together, the bottom fixed connection of hollow rod has six pronged plug, and six pronged plug inserts in the six pronged slot that opens in the top of axle rod, and six pronged plug and axle rod slidingly connected.

[0013] Compared with the prior art, the application has the beneficial effects that: the monitoring assembly is added to the application, displacement of the pool wall and the pool bottom is monitored, the first spring is stretched, tension is applied to the tension sensor, the tension information received by the tension sensor is transmitted to the data analysis module through the data transmission module, the data analysis module quickly and accurately analyzes the received data, and the analysis result is sent to the external early warning processing module when the tension range perceived by the tension sensor exceeds the predetermined range, thereby effectively solving the problem that the pool crack and leakage are difficult to be monitored and processed in real time, and the application has high practicability and innovation, and the limiting assembly is added, the hollow rod is pulled upward, the six-ribbed plug can slide out of the inside of the six-ribbed slot, the length of the pull rope extending out of the inside of the monitoring box body is adjusted, the hollow rod is pulled, the six-ribbed plug is inserted into the inside of the six-ribbed slot, and the position of the shaft rod is fixed, that is, the position between the pull rope and the monitoring box body is fixed, and the convenience of the device in use is improved. BRIEF DESCRIPTION OF DRAWINGS

[0014] The accompanying drawings are used to provide a further understanding of the application, and constitute a part of the specification, and are used to explain the application together with embodiments of the application, and do not constitute a limitation to the application. In the drawings:

[0015] Figure 1 It is a schematic view of the overall structure of the application;

[0016] Figure 2 It is a schematic view of the overall structure of the application Figure 1 It is a sectional view of A-A in the application;

[0017] Figure 3 It is a schematic view of the overall structure of the application Figure 2 It is an enlarged view of A in the application;

[0018] Figure 4 It is a schematic view of the structure of the line wheel and the shaft rod in the application;

[0019] Figure 5 It is a schematic view of the structure of the first spring and the limiting box in the application;

[0020] Figure 6 It is a schematic view of the structure of the second spring and the square inner plate in the application;

[0021] In the drawings:

[0022] 1, monitoring box body;

[0023] 2, monitoring assembly; 21, T-shaped slider; 22, T-shaped sliding groove; 23, bearing; 24, shaft; 25, limiting box; 26, wire wheel; 27, guide wheel; 28, first rectangular groove; 29, pull rope; 210, limiting disc; 211, middle plate; 212, tension sensor; 213, first spring; 214, data transmission module; 215, second rectangular groove; 216, pressure plate; 217, support rod; 218, positioning disc; 219, data analysis module;

[0024] 3, limiting assembly; 31, rectangular shell; 32, square inner plate; 33, second spring; 34, pin; 35, hollow rod; 36, hexagonal plug; 37, hexagonal socket. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0026] As shown in the drawings; Figures 1 to 6 As shown in the drawings;

[0027] An accident pool crack real-time monitoring device, comprising a monitoring box body 1.

[0028] In the embodiment: the traditional monitoring mode often relies on artificial regular inspection, and this mode is not only inefficient, but also difficult to realize real-time and accurate discovery of potential cracks and leakage conditions, so that the safety and reliability of the accident pool are difficult to be effectively guaranteed, and the service life is also affected. In order to solve this technical problem, the monitoring assembly 2 and the limiting assembly 3 are added on this basis.

[0029] Further, the monitoring assembly 2 comprises a T-shaped slider 21, a T-shaped sliding groove 22, a bearing 23, a shaft 24, a limiting box 25, a wire wheel 26, a guide wheel 27, a first rectangular groove 28, a pull rope 29, a limiting disc 210, a middle plate 211, a tension sensor 212, a first spring 213, a data transmission module 214, a second rectangular groove 215, a pressure plate 216, a support rod 217, a positioning disc 218 and a data analysis module 219.

[0030] As shown in the drawings; Figures 1 to 6 As shown in the drawings;

[0031] Combining the above: the inside of the monitoring box 1 is provided with a monitoring assembly 2, the monitoring assembly 2 comprises a middle plate 211 fixedly connected in the monitoring box 1, and two tension sensors 212 symmetrically installed on both sides of the middle plate 211, one side of the two tension sensors 212 away from each other is respectively provided with a pressing disc 216, one side of the two pressing discs 216 away from the tension sensor 212 is fixedly connected with a first spring 213, one end of the two first springs 213 away from the pressing disc 216 is fixedly connected with a limiting box 25, the upper side of each limiting box 25 is provided with a wire wheel 26, the surface of the wire wheel 26 is wound with a pull rope 29, one side of the middle plate 211 is provided with a data transmission module 214 and a data analysis module 219, the inside of the wire wheel 26 is inserted with a shaft rod 24, the shaft rod 24 and the wire wheel 26 are fixedly connected, the inside of the limiting box 25 is provided with a bearing 23, the shaft rod 24 is inserted in the inside of the bearing 23, the shaft rod 24 is rotatably connected with the limiting box 25 through the bearing 23, the upper surface of the monitoring box 1 is provided with two second rectangular grooves 215, the shaft rod 24 penetrates through the second rectangular grooves 215 and extends to the outside of the monitoring box 1, the bottom surface of the monitoring box 1 is fixedly connected with a supporting rod 217, the bottom end of the supporting rod 217 is fixedly connected with a positioning disc 218.

[0032] In this implementation plan: For the accident pool, the monitoring box 1 is placed in a suitable location, such as the pool wall or bottom, areas prone to cracking. After the accident pool is completed, it is generally monitored by ultrasonic testing. The construction unit will inform the accident pool of which parts are prone to cracking based on the geographical environment and the test report. Cracks are common in accident pools. Cracks smaller than 0.5mm can generally be used without further cracking. When a large through crack appears, it needs to be repaired in time. When a large through crack appears at the bottom of the pool, the water in the pool will seep into the ground, and the liquid level will drop slowly, which is generally not easy to detect. Therefore, this device has a good detection effect on large cracks in the accident pool. First, the position of the positioning plate 218 is fixed by screws and the surface holes of the positioning plate 218. When a crack appears in the pool wall or bottom, as the crack increases, the crack will spread to both sides or one side. Pulling the pull rope 29 actuates the reel 26, applying force to it. The reel 26, under this force, moves the T-shaped slider 21 and the limit box 25. As the limit box 25 moves, the first spring 213 is stretched, thus applying tension to the tension sensor 212. The tension sensor 212 transmits the received tension information to the data analysis module 219 via the data transmission module 214. The data analysis module 219 performs rapid and accurate analysis of the received data. If an anomaly is detected, such as the tension range sensed by the tension sensor 212 exceeding a predetermined range, indicating a potential crack problem, the analysis results are immediately sent to the external early warning processing module. The external early warning processing module issues an alarm, notifies relevant personnel, and initiates corresponding processing procedures, such as dispatching maintenance personnel for on-site inspection and repair, thereby achieving efficient and intelligent monitoring and maintenance of the accident pool.

[0033] Furthermore:

[0034] In an optional embodiment, a T-shaped slider 21 is fixedly connected to the bottom surface of the limiting box 25. The T-shaped slider 21 is inserted into a T-shaped groove 22 opened inside the monitoring box 1, and the T-shaped slider 21 and the monitoring box 1 are slidably connected.

[0035] In this embodiment: the T-shaped slider 21 has a T-shaped combined structure, which makes it easy to install inside the T-shaped slide groove 22. Under the restriction of the T-shaped slider 21, the limiting box 25 can only move horizontally, so that when the pull rope 29 is subjected to external tension, the tension is better applied to the tension sensor 212.

[0036] Furthermore:

[0037] In an optional embodiment, first rectangular grooves 28 are formed on both sides of the monitoring box 1, and two guide wheels 27 are installed in each first rectangular groove 28. Each pull rope 29 is located between the two guide wheels 27, and the end of the pull rope 29 away from the wire wheel 26 is fixedly connected to a limiting disc 210.

[0038] In the present embodiment: and make two limiting disc 210 installed in the key parts of the accident pool, limiting disc 210 with a round hole inside, can be through the rivet to realize the limiting disc 210 and pool wall or pool bottom connection, such as the area prone to cracking both sides, pull rope 29 between the two guide wheels 27, thereby reducing the friction resistance in the process of moving pull rope 29.

[0039] Further more:

[0040] In an optional embodiment, a limiting assembly 3 is arranged on the surface of the monitoring box 1. The limiting assembly 3 includes two rectangular housings 31 fixedly connected to the upper surface of the monitoring box 1 and a square inner plate 32 inserted into the rectangular housing 31. The square inner plate 32 and the rectangular housing 31 are slidingly connected. The interior of the rectangular housing 31 is provided with a second spring 33, the two ends of the second spring 33 are fixedly connected with the square inner plate 32 and the monitoring box 1 respectively. The upper side of the square inner plate 32 is provided with a hollow rod 35, the interior of the hollow rod 35 is inserted with a pin 34, the bottom end of the pin 34 is fixedly connected to the upper surface of the square inner plate 32, the hollow rod 35 and the pin 34 are movably connected, the bottom surface of the hollow rod 35 is fixedly connected with a hexagonal plug 36, the hexagonal plug 36 is inserted into a hexagonal insertion slot 37 formed at the top end of the shaft 24, and the hexagonal plug 36 and the shaft 24 are slidingly connected.

[0041] In the present embodiment: when installing the device, pull the hollow rod 35 upwards, the hollow rod 35 drives the square inner plate 32 to slide in the interior of the rectangular housing 31 through the pin 34 in the process of movement, so that the second spring 33 is stretched. With the movement of the hollow rod 35, the hexagonal plug 36 can slide out of the interior of the hexagonal insertion slot 37, and the hollow rod 35 is rotated, so that the hexagonal plug 36 is rotated to the outside of the shaft 24. At this time, the pull rope 29 can be pulled to make the wire wheel 26 rotate, so that the pull rope 29 wound on the surface of the wire wheel 26 is constantly deepened from the surface of the wire wheel 26 until the limiting disc 210 is fixed at a suitable position, and at the same time, the pull rope 29 can be wound on the surface of the wire wheel 26 to realize the storage of the pull rope 29, thereby realizing the adjustment of the length of the pull rope 29 extending out of the interior of the monitoring box 1. Pull the hollow rod 35 to make the hexagonal plug 36 inserted into the interior of the hexagonal insertion slot 37, thereby realizing the fixation of the position of the shaft 24, that is, realizing the fixation of the position between the pull rope 29 and the monitoring box 1, and improving the convenience of the device in use.

[0042] Working principle: in actual use, first of all, the monitoring box 1 is placed in a suitable position, such as the pool wall, the pool bottom and other areas prone to cracks, and the position of the positioning disc 218 is fixed through the cooperation of the screw and the surface insertion hole of the positioning disc 218, and the two limiting discs 210 are installed in the key parts of the accident pool. The limiting disc 210 is provided with a circular hole, which can be connected with the pool wall or the pool bottom through rivets, such as the two sides of the area prone to cracks. When the pool wall or the pool bottom cracks, the two sides or one side of the crack is pulled by the pull rope 29 to pull the wire wheel 26, and the wire wheel 26 drives the T-shaped sliding block 21 and the limiting box 25 to move when subjected to the force, and the first spring 213 is stretched when the limiting box 25 moves, and the tension is applied to the tension sensor 212;

[0043] The tension sensor 212 transmits the tension information received to the data analysis module 219 through the data transmission module 214. The data analysis module 219 quickly and accurately analyzes the received data. Once the data is found to be abnormal, such as when the tension range perceived by the tension sensor 212 exceeds the predetermined range, it indicates that there may be a crack problem. The analysis result is immediately sent to the external warning processing module, the external warning processing module issues an alarm, notifies the relevant personnel, and starts the corresponding processing program, such as dispatching maintenance personnel for on-site inspection and repair, etc., thereby realizing efficient and intelligent monitoring and maintenance of the accident pool.

[0044] Through monitoring the displacement of the pool wall and the pool bottom, the first spring 213 is stretched, and the tension is applied to the tension sensor 212. The tension sensor 212 transmits the tension information received to the data analysis module 219 through the data transmission module 214. The data analysis module 219 quickly and accurately analyzes the received data. If the tension range perceived by the tension sensor 212 exceeds the predetermined range, the analysis result is sent to the external warning processing module, effectively solving the problem that the cracks and leakage of the accident pool are difficult to monitor and process in real time, and having high practicality and innovation.

[0045] When the device is installed, the hollow rod 35 is pulled upward, the hollow rod 35 drives the square inner plate 32 to slide in the inside of the rectangular shell 31 through the pin 34 during the movement, and then the second spring 33 is stretched, with the movement of the hollow rod 35, the hexagonal plug 36 can slide out from the inside of the hexagonal slot 37, and the hollow rod 35 is rotated, so that the hexagonal plug 36 is rotated to the outside of the shaft 24, at this time, the pull rope 29 can be pulled, the wire wheel 26 is rotated, the pull rope 29 wound on the surface of the wire wheel 26 is continuously deepened from the surface of the wire wheel 26, until the limiting disc 210 is fixed at a suitable position, and at the same time, the pull rope 29 can be wound on the surface of the wire wheel 26, the pull rope 29 is stored, and then the length of the pull rope 29 extending from the inside of the monitoring box 1 is adjusted, the hollow rod 35 is pulled, the hexagonal plug 36 is inserted into the inside of the hexagonal slot 37, and then the position of the shaft 24 is fixed, that is, the position between the pull rope 29 and the monitoring box 1 is fixed, and the convenience of the device in use is improved.

[0046] Finally, it should be noted that: the above only for the preferred embodiments of the utility model have described, and not for limiting the utility model, although the utility model is described in detail with reference to the foregoing embodiments, for the person skilled in the art, it still can modify the technical scheme recorded in the foregoing each embodiment, or equivalent replacement to part of technical features. Any modification, equivalent replacement, improvement, etc. that is made within the spirit and principles of the utility model, should be included in the protection scope of the utility model.

Claims

1. A real-time monitoring device for cracks in a containment basin, comprising a monitoring box (1), characterized by: The inside of the monitoring box (1) is provided with a monitoring assembly (2), the monitoring assembly (2) comprises a middle plate (211) fixedly connected in the monitoring box (1), and tension sensors (212) symmetrically installed on both sides of the middle plate (211), one side of the two tension sensors (212) away from each other is respectively provided with a pressure plate (216), one side of the two pressure plates (216) away from the tension sensor (212) is fixedly connected with a first spring (213), one end of the two first springs (213) away from the pressure plate (216) is fixedly connected with a limiting box (25), and the upper side of each limiting box (25) is provided with a wire wheel (26), and the surface of the wire wheel (26) is wound with a pull rope (29).

2. The real-time monitoring device for pool cracking in accidents as claimed in claim 1 wherein: The inside of the wire wheel (26) is provided with a shaft rod (24), the shaft rod (24) and the wire wheel (26) are fixedly connected, the inside of the limiting box (25) is provided with a bearing (23), the shaft rod (24) is inserted into the inside of the bearing (23), the shaft rod (24) is rotatably connected with the limiting box (25) through the bearing (23), and the side of the middle plate (211) is provided with a data transmission module (214) and a data analysis module (219).

3. The real-time monitoring device for pool cracking of accidents according to claim 1, characterized in that: The bottom surface of the limiting box (25) is fixedly connected with a T-shaped sliding block (21), the T-shaped sliding block (21) is inserted into a T-shaped sliding groove (22) formed in the inside of the monitoring box (1), and the T-shaped sliding block (21) and the monitoring box (1) are slidably connected.

4. The real-time monitoring device for pool fire crack according to claim 1, characterized in that: The two sides of the monitoring box (1) are respectively provided with a first rectangular groove (28), and two guide wheels (27) are installed in each first rectangular groove (28), each pull rope (29) is located between the two guide wheels (27), and one end of the pull rope (29) away from the wire wheel (26) is fixedly connected with a limiting disc (210).

5. The real-time monitoring device for pool fire crack according to claim 2, characterized in that: The upper surface of the monitoring box (1) is provided with two second rectangular grooves (215), the shaft rod (24) penetrates the second rectangular grooves (215) and extends to the outside of the monitoring box (1).

6. The real-time monitoring device for pool fire crack according to claim 1, characterized in that: The bottom surface of the monitoring box (1) is fixedly connected with a supporting rod (217), and the bottom end of the supporting rod (217) is fixedly connected with a positioning disc (218).

7. The real-time monitoring device for pool fire crack according to claim 1, characterized in that: The surface of the monitoring box (1) is provided with a limiting assembly (3), the limiting assembly (3) comprises two rectangular shells (31) fixedly connected on the upper surface of the monitoring box (1) and a square inner plate (32) inserted in the rectangular shell (31), the square inner plate (32) and the rectangular shell (31) are slidingly connected, the inside of the rectangular shell (31) is provided with a second spring (33), the two ends of the second spring (33) are fixedly connected with the square inner plate (32) and the monitoring box (1) respectively, the upper side of the square inner plate (32) is provided with a hollow rod (35), the inside of the hollow rod (35) is inserted with a pin (34), the bottom end of the pin (34) is fixedly connected with the upper surface of the square inner plate (32), the hollow rod (35) and the pin (34) are movably connected, the bottom surface of the hollow rod (35) is fixedly connected with a hexagonal plug (36), the hexagonal plug (36) is inserted into a hexagonal slot (37) formed at the top end of the shaft (24), and the hexagonal plug (36) and the shaft (24) are slidingly connected.