Water prevention and control measuring scale for geological survey
By introducing filter components and auxiliary mechanisms into the water control measurement ruler, the problem of impurities in geological water affecting measurement data is solved, and the accuracy of measurement data and assembly efficiency are improved.
Patent Information
- Application Number
- CN202422531412.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-18
AI Technical Summary
Impurities in geological water enter directly into the measurement column through the inlet window, causing the movement of the floating block to be affected and causing measurement data deviation.
A geological measurement water control measuring ruler is designed, including a positioning mounting frame, a measurement assembly and a filter assembly. The filter assembly consists of a filter plate, a clamp plate and a limit plate to filter impurities in the geological water. The auxiliary mechanism achieves rapid assembly and limiting through pull handles and springs.
Effectively filter impurities in geological water to prevent them from adhering to the inner wall of the measuring frame, improve the accuracy of measurement data, simplify the assembly process, and ensure the normal movement of the floating ball.
Smart Images

Figure CN223154347U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of geological surveying, in particular to a water control measuring ruler for geological surveying. Background Art
[0002] During the geological survey process, it is necessary to use a water control measuring ruler to measure the water source in the geology, know the depth value of geological water control, facilitate the prevention and control operation of geological water sources, play a role in the safety protection operation of geological survey, and ensure the operation safety.
[0003] Patent No. CN220819115 discloses a water control measuring ruler for geological surveying, including a measuring column and a base arranged on the measuring column, and further including: a floating ruler arranged inside the measuring column; a linkage component arranged inside the measuring column; a connecting component arranged inside the measuring column and located above the linkage component. After the connecting component acts, it presses the linkage component, so that the measuring column is disconnected from the base. The linkage component includes a connecting block, a connecting rod and a movable locking pin. For this water control measuring ruler for geological surveying, after pressing the sliding plate, the position of the connecting block drops through the sliding rod, so that the movable locking pin retracts into the measuring column. After the connection between the measuring column and the base is completed, releasing the sliding plate makes the movable locking pin just embed into the card slot. In this way, the installation operation can be quickly completed during installation, improving the convenience and efficiency of the device during installation and saving more time and effort.
[0004] However, the above-mentioned water control measuring ruler for geological surveying still has the following deficiencies:
[0005] In the above device, geological water directly enters the inside of the measuring column through the water inlet window. Since there are impurities in the geological water, the adhesion of impurities inside the measuring column will affect the movement of the floating block, thus causing deviation in the measurement data. In view of this, we propose a water control measuring ruler for geological surveying. Content of the Utility Model
[0006] The purpose of the utility model is to overcome the deficiencies of the prior art, meet the actual needs, and provide a water control measuring ruler for geological surveying to solve the technical problem that in the above device, geological water directly enters the inside of the measuring column through the water inlet window. Since there are impurities in the geological water, the adhesion of impurities inside the measuring column will affect the movement of the floating block, thus causing deviation in the measurement data.
[0007] To achieve the purpose of the utility model, the technical solution adopted by the utility model is: design a water control measuring ruler for geological surveying, including a positioning and installation frame. A measuring component is arranged in the middle of the top of the positioning and installation frame. A group of filtering components are symmetrically clamped inside the measuring component. A group of auxiliary mechanisms are symmetrically arranged on both sides outside the measuring component;
[0008] The filtering component includes filter plates, and a group of the filter plates are symmetrically clamped inside the measuring component. A clamping plate is fixedly connected to the lower end of the filter plate, a limiting plate is fixedly connected to the upper end of the filter plate, and a group of through holes are formed inside the limiting plate.
[0009] Preferably, a clamping groove matching with the clamping plate is formed at the bottom end inside the measuring component, and the filter plate and the measuring component form a clamping structure through the clamping plate.
[0010] Preferably, the measuring component includes a measuring frame, the measuring frame is arranged at the middle of the top of the positioning and mounting frame, a scale is inserted inside the measuring frame, and a floating ball is connected to the bottom end of the scale.
[0011] Preferably, the auxiliary mechanism includes groove frames, and a group of the groove frames are symmetrically and fixedly arranged on the surface of the measuring frame in the front and back. A pull handle penetrates through the groove frames, and a group of ring plates are fixedly sleeved outside the pull handle, and a spring is connected to one side of the ring plates.
[0012] Preferably, the end of the pull handle penetrates through the side of the measuring frame and is clamped inside the through hole.
[0013] Preferably, the pull handle and the groove frames form an elastic structure through the ring plates and the spring, and the outer wall of the ring plates is attached to the inner wall of the groove frames.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0015] 1. The present utility model effectively filters impurities in geological water through the filter plates, avoids impurities from entering the inside of the measuring frame along with the geological water and adhering to the inner wall of the measuring frame, reduces the influence on the floating ball. The clamping plate can be used as a guiding object to enable the quick assembly between the filter plate and the measuring frame, improve the assembly efficiency, and the cooperation between the limiting plate and the auxiliary mechanism can effectively limit the filter plate and avoid the displacement of the filter plate during the measurement process.
[0016] 2. When the filter plate needs to be cleaned or replaced in the present utility model, pull the pull handle outwards so that the end of the pull handle disengages from the through hole. At this time, there is no restriction inside the filtering component, and it can be directly pulled out upwards to complete the removal. When installing the cleaned or new filtering component, pull the pull handle outwards so that there is no obstruction in the slot of the filtering component, and then insert the cleaned or new filtering component inside the measuring frame. Release the pull handle, and under the influence of the spring resilience, the end of the pull handle pops out and is effectively clamped inside the through hole, realizing the limitation of the cleaned or new filtering component. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is the schematic diagram of the overall structure of the present utility model;
[0018] Figure 2 is the schematic diagram of the partial disassembled structure of the present utility model;
[0019] Figure 3 is a schematic diagram of the partial sectional structure of the present utility model;
[0020] Figure 4 of the present utility model Figure 3 is a schematic diagram of the partial enlarged structure at position A in
[0021] In the figure: 1, positioning and mounting frame; 2, measuring assembly; 3, filtering assembly; 4, auxiliary mechanism;
[0022] 201, measuring frame; 202, scale; 203, floating ball;
[0023] 301, filter plate; 302, clamping plate; 303, limiting plate; 304, through hole;
[0024] 401, groove frame; 402, pull handle; 403, ring plate; 404, spring. Specific embodiments
[0025] The present utility model will be further described below with reference to the accompanying drawings and embodiments:
[0026] A water control surveying ruler for geological surveying, referring to Figures 1 to 4 , includes a positioning and mounting frame 1, a measuring assembly 2 is provided in the middle of the top of the positioning and mounting frame 1, a set of filtering assemblies 3 are symmetrically clamped inside the measuring assembly 2, and a set of auxiliary mechanisms 4 are symmetrically provided on both sides outside the measuring assembly 2;
[0027] The filtering assembly 3 includes a filter plate 301, a set of filter plates 301 are symmetrically clamped inside the measuring assembly 2, a clamping plate 302 is fixedly connected to the lower end of the filter plate 301. Among them, a clamping groove matching the clamping plate 302 is opened at the bottom end inside the measuring assembly 2, and the filter plate 301 forms a clamping structure with the measuring assembly 2 through the clamping plate 302. A limiting plate 303 is fixedly connected to the upper end of the filter plate 301, and a set of through holes 304 are opened inside the limiting plate 303. The present utility model effectively filters impurities in the geological water through the filter plate 301, avoiding impurities from following the geological water into the measuring frame 201 and adhering to the inner wall of the measuring frame 201, reducing the influence on the floating ball 203. The clamping plate 302 can be used as a guiding object to enable the rapid assembly between the filter plate 301 and the measuring frame, improving the assembly efficiency. The cooperation between the limiting plate 303 and the auxiliary mechanism 4 can effectively limit the filter plate 301 to prevent the filter plate 301 from shifting during the measurement process.
[0028] It should be noted that the measuring component 2 includes a measuring frame 201. The measuring frame 201 is arranged at the middle end of the top of the positioning and mounting frame 1. A scale 202 is inserted into the measuring frame 201. A floating ball 203 is connected to the bottom end of the scale 202. In the present utility model, geological water enters the inside of the measuring frame 201 through the filter plate 301 and drives the floating ball 203 to float. The water level is understood by reading the corresponding scale on the scale 202.
[0029] It should be explained that the auxiliary mechanism 4 includes a groove frame 401. A group of groove frames 401 are symmetrically fixed on the surface of the measuring frame 201 in the front and back. A pull handle 402 penetrates through the groove frame 401. Among them, the end of the pull handle 402 penetrates through the side of the measuring frame 201 and is engaged inside the through hole 304. A group of ring plates 403 are fixedly sleeved outside the pull handle 402. A spring 404 is connected to one side of the ring plate 403. Further, the pull handle 402 forms an elastic structure with the groove frame 401 through the ring plate 403 and the spring 404, and the outer wall of the ring plate 403 is attached to the inner wall of the groove frame 401. In the present utility model, when the filter plate 301 needs to be cleaned or replaced, the pull handle 402 is pulled outwards so that the end of the pull handle 402 is separated from the through hole 304. At this time, the inside of the filtering component 3 is not restricted, and it can be directly pulled out upwards to complete the removal. When installing the cleaned or new filtering component 3, the pull handle 402 is pulled outwards so that there is no obstruction in the slot of the filtering component 3. Then, the cleaned or new filtering component 3 is inserted into the inner side of the measuring frame 201. The pull handle 402 is released, and affected by the resilience of the spring 404, the end of the pull handle 402 pops out and is effectively engaged inside the through hole 304, realizing the limitation of the cleaned or new filtering component 3.
[0030] Working principle: The whole device is fixed at the place required for geological measurement through the positioning and mounting frame 1. The filter plate 301 filters impurities in the geological water to prevent the impurities from following the geological water into the inside of the measuring frame 201 and adhering to the inner wall of the measuring frame 201, reducing the influence on the floating ball 203. The geological water enters the inside of the measuring frame 201 through the filter plate 301 and drives the floating ball 203 to float. The water level is understood by reading the corresponding scale on the scale 202. When the filter plate 301 needs to be cleaned or replaced after the measurement, the pull handle 402 is pulled outwards so that the end of the pull handle 402 is separated from the through hole 304. At this time, the inside of the filtering component 3 is not restricted, and it can be directly pulled out upwards to complete the removal. When installing the cleaned or new filtering component 3, the pull handle 402 is pulled outwards so that there is no obstruction in the slot of the filtering component 3. Then, the cleaned or new filtering component 3 is inserted into the inner side of the measuring frame 201. The pull handle 402 is released, and affected by the resilience of the spring 404, the end of the pull handle 402 pops out and is engaged inside the through hole 304, realizing the limitation of the cleaned or new filtering component 3.
[0031] The embodiments disclosed in the present utility model are preferred embodiments, but not limited thereto. Those of ordinary skill in the art can easily understand the spirit of the present utility model based on the above embodiments and make different extensions and changes. As long as they do not depart from the spirit of the present utility model, they are within the protection scope of the present utility model.
Claims
1. A water control measuring ruler for geological survey, comprising a positioning and mounting frame (1), characterized in that, A measuring component (2) is provided at the middle end of the top of the positioning and mounting frame (1). A set of filtering components (3) are symmetrically clamped inside the measuring component (2). A set of auxiliary mechanisms (4) are symmetrically provided on both sides outside the measuring component (2). The filtering component (3) includes filter plates (301). A set of the filter plates (301) are symmetrically clamped inside the measuring component (2). A clamping plate (302) is fixedly connected to the lower end of the filter plate (301). A limiting plate (303) is fixedly connected to the upper end of the filter plate (301). A set of through holes (304) are formed inside the limiting plate (303).
2. The water control surveying ruler for geological survey according to claim 1, wherein A clamping groove matching with the clamping plate (302) is formed at the bottom end inside the measuring component (2). The filter plate (301) and the measuring component (2) form a clamping structure through the clamping plate (302).
3. The water control measuring ruler for geological survey according to claim 1, characterized in that, The measuring component (2) includes a measuring frame (201). The measuring frame (201) is arranged at the middle end of the top of the positioning and mounting frame (1). A scale (202) is inserted inside the measuring frame (201). A floating ball (203) is connected to the bottom end of the scale (202).
4. The water control surveying ruler for geological survey according to claim 3, wherein, The auxiliary mechanism (4) includes groove frames (401). A set of the groove frames (401) are fixedly arranged symmetrically before and after on the surface of the measuring frame (201). A pull handle (402) penetrates through the groove frames (401). A set of ring plates (403) are fixedly sleeved outside the pull handle (402). A spring (404) is connected to one side of the ring plate (403).
5. The water control surveying ruler for geological survey according to claim 4, characterized in that, The end of the pull handle (402) penetrates through the side of the measuring frame (201) and is clamped inside the through hole (304).
6. The water control surveying ruler for geological survey according to claim 4, characterized in that, The pull handle (402) and the groove frame (401) form an elastic structure through the ring plate (403) and the spring (404). The outer wall of the ring plate (403) is attached to the inner wall of the groove frame (401).
Citation Information
Patent Citations
Water prevention and control measuring scale for geological survey
CN220819115U