Hydrogeological water level observer

By designing a hydrogeological water level observation instrument, the problem of water level probes being bumped and knocked in the borehole was solved by using a fixed plate, guiding components, and buffer components, thus improving the service life and convenience of the device.

CN223581115UActive Publication Date: 2025-11-21重庆一三六地质队
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Patent Information

Application Number
CN202423296554.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-21
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In existing hydrogeological water level observation technologies, water level probes are prone to collisions with the inner wall of the borehole when inserted, leading to damage and affecting their service life.

Method used

A hydrogeological water level observation device was designed, which includes a water level probe, a fixing plate, wires, a clamping assembly, a guiding assembly, and a buffer assembly. Through the combination of these components, the water level probe is stably guided and buffered in the middle of the borehole, reducing bumps and damage.

Benefits of technology

This effectively avoids contact between the water level probe and the inner wall of the borehole, reducing bumps and scratches, improving the service life and convenience of the device, and enhancing its adaptability and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of water level observation, and particularly relates to a hydrogeological water level observer which comprises a water level probe. The top end of the water level probe is fixedly connected with a wire; a clamping assembly is arranged on the outer side wall of the water level probe; the water level probe is connected with a fixed disc through a clamping assembly; a guide assembly is arranged on the outer side wall of the fixed disc; a buffering assembly is arranged in the middle of the fixing disc. The outer side wall of the wire rod is provided with a component force assembly. According to the step, a water level observer structure is formed by arranging a water level probe, a fixing disc, a wire rod, a clamping assembly, a guiding assembly and a buffering assembly, the water level probe is located in the middle of a drill hole when placed in the drill hole, and the situation that the water level probe is in contact with the inner side wall of the drill hole or collides with the inner side wall of the drill hole when placed in the drill hole is avoided; damage to the water level probe caused by collision of the water level probe is reduced, and the service life of the device is prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the water level observation technical field, specifically is a hydrogeological water level observer. BACKGROUND

[0002] Hydrogeological survey is through detailed investigation and research, comprehensively understands the hydrogeological condition of a region, and is important to the utilization of water resources.

[0003] Hydrogeological survey includes underground hydrology survey and ground hydrology survey, and the underground hydrology survey mainly investigates the change condition of underground water in different time periods in a year, including water level change, flowing direction and chemical composition, when surveying water level change, first drilling is carried out in the specified area, and then the water level observer is placed into the drill hole to measure.

[0004] In the existing hydrogeological water level observation technology, when the water level monitoring probe is placed into the drill hole, the probe swings and collides with the inner side wall of the drill hole, which can cause the water level probe to be scratched or damaged.

[0005] Therefore, the utility model provides a hydrogeological water level observer. UTILITY MODEL CONTENT

[0006] In order to make up for the deficiency of the prior art, at least one technical problem in the background art is solved.

[0007] The utility model solves the technical scheme that the technical problem adopts: a hydrogeological water level observer, including water level probe, water level probe top fixedly connected with wire material, water level probe outer side wall is equipped with clamping assembly, water level probe is connected with fixed disc through clamping assembly, fixed disc outer side wall is equipped with guide assembly, fixed disc middle part is equipped with buffer assembly, wire material outer side wall is equipped with component of force, this step is through the setting of water level probe, fixed disc, wire material, clamping assembly, guide assembly and buffer assembly, and the water level observer structure is formed, the water level probe is placed in the drill hole, the water level probe is in the middle part of the drill hole, the water level probe is placed in the drill hole and contacts or collides with the inner side wall of the drill hole, the situation is solved, the situation that the water level probe is damaged due to the collision of the water level probe is reduced, and the service life of the device is improved.

[0008] Preferably, the guide assembly comprises a first connecting rod, a second connecting rod, a roller, a guide rod and a first spring; the first connecting rod is hinged to the outer side wall of the fixed disc; a plurality of groups of the first connecting rod are arranged on the outer side wall of the fixed disc and are symmetrically arranged; the second connecting rod is hinged to the end of the first connecting rod away from the fixed disc; the roller is hinged to the end of the pair of second connecting rods away from the first connecting rod; one end of the guide rod is fixedly connected to the side wall of the roller close to the second connecting rod; the other end of the guide rod is slidably connected to the middle part of the fixed disc; the first spring is sleeved on the outer side wall of the guide rod; this step, by the arrangement of the first connecting rod, the second connecting rod, the roller, the guide rod and the first spring, forms a water level probe guide structure, realizes the function that the water level probe is in the middle part of the drilling hole, solves the problem that the water level probe is knocked against the inner side wall of the drilling hole when put into the drilling hole, reduces the situation that the water level probe is scratched or damaged, reduces the situation that the water level probe swings in the drilling hole, and improves the convenience of the water level probe when moving in the drilling hole.

[0009] Preferably, the clamping assembly comprises a top rod, a second spring and a V-shaped clamping block; the top rod is slidably connected to the inner side wall of the fixed disc; a pair of the top rods are arranged on the inner side wall of the fixed disc and are symmetrically arranged; the V-shaped clamping block is fixedly connected to the end of the top rod close to each other; one end of the second spring is fixedly connected to the end of the top rod away from the V-shaped clamping block; the other end of the second spring is fixedly connected to the inside of the fixed disc; this step, by the arrangement of the top rod, the second spring and the V-shaped clamping block, forms a water level probe clamping structure, realizes the function that the water level probe is clamped and fixed in the fixed disc, solves the problem that the clamps need to be replaced when fixing the water level probe of different sizes in the middle part of the fixed disc, improves the adaptability of the device, and improves the stability of the water level probe when fixed in the middle part of the fixed disc.

[0010] Preferably, the buffer assembly comprises a supporting leg, a damping spring and a foot disc; the supporting leg is slidably connected to the middle part of the fixed disc; a plurality of groups of the supporting leg are arranged in the middle part of the fixed disc; the foot disc is fixedly connected to the bottom end of the supporting leg; the damping spring is sleeved on the outer side wall of the supporting leg close to the foot disc; this step, by the arrangement of the supporting leg, the damping spring and the foot disc, forms a device buffer structure, realizes the function of buffering when the device falls to the ground, reduces the situation that the water level probe is damaged due to impact with the bottom of the drilling hole, and improves the service life of the device.

[0011] Preferably, the force component assembly comprises a fixed ring and a pull rope; the fixed ring is detachably installed on the outer side wall of the wire; a pair of the fixed rings are arranged on the outer side wall of the wire and are symmetrically arranged; the pair of fixed rings are connected by fixed bolts; one end of the pull rope is fixedly connected to the outer side wall of the fixed ring; the other end of the pull rope is fixedly connected to the top of the fixed disc; a plurality of groups of the pull rope are arranged on the top of the fixed disc; this step, by the arrangement of the fixed ring and the pull rope, forms a force component structure, improves the stability of the fixed disc when moving in the drilling hole, and reduces the situation that the fixed disc is inclined.

[0012] Preferably, the V-shaped clamping block is fixedly connected to the gasket away from the side wall of the ejector rod; the gasket is provided in pairs on the side wall of the V-shaped clamping block and is symmetrically arranged; through the arrangement of the gasket, the gasket is in contact with the outer side wall of the water level probe, the friction force of the V-shaped clamping block when clamping the water level probe is increased, the situation that the water level probe falls off is reduced, and the stability of the water level probe during work is improved.

[0013] Preferably, the top of the fixing disc is fixedly connected with an elastic cloth; the elastic cloth is made of an elastic material; the water level probe is installed to pass through the middle part of the elastic cloth, the elastic cloth wraps the outer side wall of the wire, blocks the falling debris in the drill hole, and reduces the situation that the debris or foreign matters enter between the fixing disc and the water level probe to cause abnormal wear of the parts.

[0014] The hydrogeological water level observer has the following beneficial effects:

[0015] 1. The hydrogeological water level observer, through the arrangement of the water level probe, the fixing disc, the wire, the clamping assembly, the guide assembly and the buffer assembly, the water level observation structure is formed, the water level probe is placed in the middle part of the drill hole when the water level probe is placed in the drill hole, the situation that the water level probe contacts or collides with the inner side wall of the drill hole is solved, the situation that the water level probe is damaged due to collision is reduced, and the service life of the device is improved.

[0016] 2. The hydrogeological water level observer, through the arrangement of the first connecting rod, the second connecting rod, the roller, the guide rod and the first spring, the water level probe guide structure is formed, the function that the water level probe is in the middle position in the drill hole is realized, the situation that the water level probe contacts or collides with the inner side wall of the drill hole when the water level probe is placed in the drill hole is solved, the situation that the water level probe is scratched or damaged is reduced, the situation that the water level probe swings in the drill hole is reduced, and the convenience of the water level probe when moving in the drill hole is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] The utility model will be further described in connection with the drawings.

[0018] Figure 1 It is the perspective view of the utility model;

[0019] Figure 2 It is the structure schematic view that the utility model cooperates with the fixed disc of the supporting leg;

[0020] Figure 3 It is the structure schematic view that the utility model cooperates with the fixed disc of V-shaped clamping block;

[0021] Figure 4 It is the structure schematic view that the utility model cooperates with the fixed disc of the roller.

[0022] In the figure: 1, water level probe; 11, fixed disc; 12, first connecting rod; 13, second connecting rod; 14, roller; 15, guide rod; 16, first spring; 17, wire; 2, top rod; 21, second spring; 22, V-shaped clamping block; 3, support leg; 31, damping spring; 32, foot disc; 4, fixed ring; 41, pull rope; 5, gasket; 6, elastic cloth. DETAILED DESCRIPTION

[0023] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments.

[0024] As shown in Figures 1 to 4 The utility model discloses a hydrogeological water level observer, including water level probe 1;Water level probe 1 top fixedly connected with wire 17;Water level probe 1 outer wall is equipped with clamping assembly;Water level probe 1 is connected with fixed disc 11 through clamping assembly;Fixed disc 11 outer wall is equipped with guide assembly;Fixed disc 11 middle part is equipped with buffer assembly;Wire 17 outer wall is equipped with force component;In working, water level probe 1 is installed in the middle part of fixed disc 11 through clamping assembly, when using, fixed disc 11 and water level probe 1 are placed into the borehole, and guide assembly contacts the inner wall of borehole, when water level probe 1 is placed downward, guide assembly guides water level probe 1, so that water level probe 1 does not contact the inner wall of borehole, when water level probe 1 reaches the bottom of borehole, buffer assembly buffers and supports fixed disc 11 and water level probe 1;This step is through the setting of water level probe 1, fixed disc 11, wire 17, clamping assembly, guide assembly and buffer assembly, and the water level observer structure is formed, water level probe 1 is placed in the middle part of borehole when water level probe 1 is placed into the borehole, the situation that water level probe 1 contacts or collides with the inner wall of borehole when water level probe 1 is placed into the borehole is solved, the situation that water level probe 1 is damaged due to collision is reduced, and the service life of the device is improved.

[0025] As shown in Figure 1 And Figure 4As shown, the guide assembly comprises a first connecting rod 12, a second connecting rod 13, a roller 14, a guide rod 15 and a first spring 16; the first connecting rod 12 is hinged on the outer side wall of the fixed disc 11; a plurality of groups of the first connecting rod 12 are arranged on the outer side wall of the fixed disc 11, and are symmetrically arranged; the second connecting rod 13 is hinged on the end of the first connecting rod 12 away from the fixed disc 11; the roller 14 is hinged on the end of a pair of second connecting rods 13 away from the first connecting rod 12; one end of the guide rod 15 is fixedly connected to the side wall of the roller 14 close to the second connecting rod 13; the other end of the guide rod 15 is slidingly connected to the middle part of the fixed disc 11; the first spring 16 is sleeved on the outer side wall of the guide rod 15; in working, the fixed disc 11 is put into the drill hole, the roller 14 contacts with the inner side wall of the drill hole and extrudes the guide rod 15 to move to the middle part of the fixed disc 11, the first spring 16 is compressed, the first connecting rod 12 and the second connecting rod 13 are close to each other, and the first spring 16 reacts on the roller 14 to make the roller 14 closely contact with the inner side wall of the drill hole, when the water level probe 1 moves in the drill hole, the roller 14 rolls on the inner side wall of the drill hole to make the water level probe 1 be in the middle part of the drill hole; through the arrangement of the first connecting rod 12, the second connecting rod 13, the roller 14, the guide rod 15 and the first spring 16, the guide structure of the water level probe 1 is formed, the function that the water level probe 1 is in the middle part of the drill hole is realized, the situation that the water level probe 1 is knocked against the inner side wall of the drill hole when put into the drill hole is solved, the situation that the water level probe 1 is scratched or damaged is reduced, the situation that the water level probe 1 swings in the drill hole is reduced, and the convenience of the water level probe 1 when moving in the drill hole is improved.

[0026] As shown, Figures 1 to 3 the clamping assembly comprises a top rod 2, a second spring 21 and a V-shaped clamping block 22; the top rod 2 is slidingly connected to the inner side wall of the fixed disc 11; a pair of top rods 2 are arranged on the inner side wall of the fixed disc 11, and are symmetrically arranged; the V-shaped clamping block 22 is fixedly connected to the end of the top rod 2 close to each other; one end of the second spring 21 is fixedly connected to the end of the top rod 2 away from the V-shaped clamping block 22; the other end of the second spring 21 is fixedly connected to the inside of the fixed disc 11; in working, when the water level probe 1 is installed in the middle part of the fixed disc 11, the water level probe 1 is put between a pair of V-shaped clamping blocks 22, the second spring 21 pushes the top rod 2 to be close to the water level probe 1, the V-shaped clamping block 22 clamps and fixes the water level probe 1, and the V-shaped clamping block 22 can adapt to water level probes 1 of different sizes; through the arrangement of the top rod 2, the second spring 21 and the V-shaped clamping block 22, the clamping structure of the water level probe 1 is formed, the function that the water level probe 1 is clamped and fixed in the fixed disc 11 is realized, the situation that the clamps need to be replaced when water level probes 1 of different sizes are fixed in the middle part of the fixed disc 11 is solved, the adaptability of the device is improved, and the stability of the water level probe 1 when fixed in the middle part of the fixed disc 11 is improved.

[0027] As shown, Figure 2As shown, the buffer assembly includes the leg 3, the damping spring 31 and the foot plate 32; the leg 3 is slidingly connected in the middle of the fixed disc 11; the leg 3 is provided with multiple groups in the middle of the fixed disc 11; the foot plate 32 is fixedly connected at the bottom end of the leg 3; the damping spring 31 is sleeved on the outer side wall of the leg 3 close to the foot plate 32; in working, when the water level probe 1 approaches the bottom of the borehole, the foot plate 32 first contacts the bottom, the damping spring 31 buffers the impact when the device falls, and the leg 3 slides in the middle of the fixed disc 11; this step, through the setting of the leg 3, the damping spring 31 and the foot plate 32, forms the buffer structure of the device, realizes the function of buffering when the device falls, reduces the damage of the water level probe 1 caused by the impact between the water level probe 1 and the bottom of the borehole, and improves the service life of the device.

[0028] As shown in the Figure 2 , the force component assembly includes the fixed ring 4 and the pull rope 41; the fixed ring 4 is detachably installed on the outer side wall of the wire 17; the fixed ring 4 is provided with a pair of fixed rings 4 on the outer side wall of the wire 17, and the fixed rings 4 are symmetrically arranged; the pair of fixed rings 4 are connected by fixed bolts; one end of the pull rope 41 is fixedly connected to the outer side wall of the fixed ring 4; the other end of the pull rope 41 is fixedly connected to the top of the fixed disc 11; the pull rope 41 is provided with multiple groups on the top of the fixed disc 11; in working, a pair of fixed rings 4 are installed on the outer side wall of the wire 17 to adjust the position of the fixed ring 4 on the outer side wall of the wire 17, so that the pull rope 41 is taut, and the fixed bolts are used for fixing, when put into the fixed disc 11, the pull rope 41 disperses the pulling force, keeping the balance of the fixed disc 11; this step, through the setting of the fixed ring 4 and the pull rope 41, forms the force component structure, improves the stability of the fixed disc 11 when moving in the borehole, and reduces the inclination of the fixed disc 11.

[0029] As shown in the Figure 3 , the V-shaped clamp block 22 is fixedly connected to the gasket 5 away from the side wall of the ejector pin 2; the gasket 5 is provided with a pair of gaskets 5 on the side wall of the V-shaped clamp block 22, and the gaskets 5 are symmetrically arranged; in working, when the V-shaped clamp block 22 clamps the water level probe 1, the gasket 5 contacts the outer side wall of the water level probe 1, increasing the friction between the V-shaped clamp block 22 and the water level probe 1; this step, through the setting of the gasket 5, the gasket 5 contacts the outer side wall of the water level probe 1, increasing the friction when the V-shaped clamp block 22 clamps the water level probe 1, reducing the falling of the water level probe 1, and improving the stability of the water level probe 1 in working.

[0030] As shown in the Figure 1 , the fixed disc 11 is fixedly connected with the elastic cloth 6 on the top; the elastic cloth 6 is made of elastic material; in working, the water level probe 1 is installed through the middle of the elastic cloth 6, the elastic cloth 6 wraps the outer side wall of the wire 17, blocks the falling debris in the borehole, and reduces the abnormal wear of the parts caused by the debris or foreign matter entering between the fixed disc 11 and the water level probe 1.

[0031] When working, the water level probe 1 is installed in the middle of the fixed disc 11 through the clamping assembly, when using, the fixed disc 11 and the water level probe 1 are placed into the drill hole, the guide assembly is in contact with the inner wall of the drill hole, when the water level probe 1 is placed downward, the guide assembly guides the water level probe 1, so that the water level probe 1 is not in contact with the inner wall of the drill hole, when the water level probe 1 reaches the bottom of the drill hole, the buffer assembly buffers and supports the fixed disc 11 and the water level probe 1, the fixed disc 11 is placed into the drill hole, the roller 14 is in contact with the inner wall of the drill hole and extrudes the guide rod 15 to move to the middle of the fixed disc 11, the first spring 16 is compressed, the first connecting rod 12 and the second connecting rod 13 are close to each other, the first spring 16 reacts on the roller 14, so that the roller 14 is close to the inner wall of the drill hole, when the water level probe 1 moves in the drill hole, the roller 14 rolls on the inner wall of the drill hole, so that the water level probe 1 is in the middle position of the drill hole, when the water level probe 1 is installed in the middle of the fixed disc 11, the water level probe 1 is placed between a pair of V-shaped clamping blocks 22, the second spring 21 pushes the top rod 2 to be close to the water level probe 1, so that the V-shaped clamping block 22 clamps and fixes the water level probe 1, the V-shaped clamping block 22 can adapt to water level probes 1 of different sizes, when the water level probe 1 approaches the bottom of the drill hole, the foot disc 32 first contacts the bottom, the damping spring 31 buffers the impact when the device falls, the supporting leg 3 slides in the middle of the fixed disc 11, a pair of fixed rings 4 are installed outside the wire 17, the position of the fixed ring 4 is adjusted outside the wire 17, so that the pull rope 41 is taut, the fixed bolt is used for fixing, when being placed into the fixed disc 11, the pull rope 41 disperses the tension and keeps the balance of the fixed disc 11, when the V-shaped clamping block 22 clamps the water level probe 1, the gasket 5 is in contact with the outer wall of the water level probe 1, so that the friction between the V-shaped clamping block 22 and the water level probe 1 is increased, when the water level probe 1 is installed, the elastic cloth 6 passes through the middle of the elastic cloth 6, the elastic cloth 6 wraps the outer wall of the wire 17 and blocks the falling debris in the drill hole, so that the situation that the debris or foreign matters enter between the fixed disc 11 and the water level probe 1 and cause abnormal wear of parts is reduced.

[0032] The basic principle, main features and advantages of the utility model are shown and described above. The skilled in the art should understand that the utility model is not limited by the above examples, the above examples and the description in the specification are only to illustrate the principle of the utility model, under the premise of not departing from the spirit and scope of the utility model, the utility model will also have various changes and improvements, these changes and improvements all fall into the scope of the utility model claimed to be protected. The scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. A hydrogeological water level observer comprising a water level probe (1); characterized in that: The water level probe (1) top fixedly connected with wire (17); The water level probe (1) outer wall is equipped with clamping assembly;The water level probe (1) is connected with fixed disc (11) through clamping assembly;The fixed disc (11) outer wall is equipped with guide assembly;The fixed disc (11) middle part is equipped with buffer assembly;The wire (17) outer wall is equipped with force component.

2. A hydrogeological water level observer according to claim 1, characterized in that: The guide assembly includes first connecting rod (12), second connecting rod (13), roller (14), guide rod (15) and first spring (16);The first connecting rod (12) is hinged in the fixed disc (11) outer wall;The first connecting rod (12) is set in multiple groups on the fixed disc (11) outer wall, and is symmetrically arranged;The second connecting rod (13) is hinged in the end of the first connecting rod (12) away from the fixed disc (11);The roller (14) is hinged in the end of a pair of second connecting rods (13) away from the first connecting rod (12);The guide rod (15) one end is fixedly connected in the roller (14) near the side wall of the second connecting rod (13);The guide rod (15) the other end is slidingly connected in the middle part of the fixed disc (11);The first spring (16) is sleeved on the outer wall of the guide rod (15).

3. A hydrogeological water level observer according to claim 1, characterized in that: The clamping assembly includes top rod (2), second spring (21) and V-shaped clamp block (22);The top rod (2) is slidingly connected in the inner side wall of the fixed disc (11);The top rod (2) is arranged in a pair of symmetrically on the inner side wall of the fixed disc (11);The V-shaped clamp block (22) is fixedly connected in the end of the top rod (2) close to each other;The second spring (21) one end is fixedly connected in the end of the top rod (2) away from the V-shaped clamp block (22);The second spring (21) the other end is fixedly connected in the inside of the fixed disc (11).

4. The hydrogeological water level observer according to claim 1, characterized in that: The buffer assembly includes leg (3), damping spring (31) and foot disc (32);The leg (3) is slidingly connected in the middle part of the fixed disc (11);The leg (3) is arranged in multiple groups in the middle part of the fixed disc (11);The foot disc (32) is fixedly connected in the bottom end of the leg (3);The damping spring (31) is sleeved on the outer wall of the leg (3) close to the foot disc (32).

5. The hydrogeological water level observer according to claim 1, characterized in that: The force component includes fixed ring (4) and pull rope (41);The fixed ring (4) is detachably mounted on the outer wall of the wire (17);The fixed ring (4) is arranged in a pair of symmetrically on the outer wall of the wire (17);A pair of fixed ring (4) is connected by fixed bolt;The pull rope (41) one end is fixedly connected in the outer wall of the fixed ring (4);The pull rope (41) the other end is fixedly connected in the top of the fixed disc (11);The pull rope (41) is arranged in multiple groups in the top of the fixed disc (11).

6. A hydrogeological water level observer according to claim 3, characterized in that: The V-shaped clamp block (22) away from the side wall of the top rod (2) is fixedly connected in the gasket (5);The gasket (5) is arranged in a pair of symmetrically on the side wall of the V-shaped clamp block (22).

7. The hydrogeological water level observer according to claim 1, characterized in that: The fixed disc (11) top is fixedly connected with elastic cloth (6);The elastic cloth (6) is made of elastic material.