Deep mine water transfer and storage equipment

By combining the lifting mechanism and the cleaning components, the problems of water surface sloshing and impurity removal during mine water transfer are solved, achieving stable transportation and efficient processing.

CN119037882BActive Publication Date: 2025-10-28GENERAL PROSPECTING INSTITUTE OF CHINA NATIONAL ADMINISTRATION OF COAL GEOLOGY +1
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Patent Information

Application Number
CN202411311660.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-10-28
Estimated Expiration
2044-09-20

AI Technical Summary

Technical Problem

In existing mine water treatment processes, the space above the water surface cannot be compressed during impurity removal, leading to water sloshing and tank wobbling, which affects the stability and efficiency of the transfer process.

Method used

A lifting mechanism is used to push the movable plate downwards, which limits and fixes the water surface. Combined with the cleaning components, the surface of the water pumping pipe is cleaned, thereby compressing the water surface and settling impurities. The auger and water pump are used for preliminary treatment.

Benefits of technology

It effectively avoids the impact of water surface churning, ensures the stability of the transfer process, and achieves preliminary sedimentation and efficient drainage of mine water, thereby improving transportation and treatment efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a deep mine water transfer and storage device, including a housing. A fixed base is fixed to the top of the housing, and a movable base is movably mounted on the fixed base. Mounting holes are respectively opened on the sides of the housing, and a drain pipe and a water inlet pipe are respectively fixedly installed inside the mounting holes. A sealing cap is rotatably installed at one end of each of the water inlet and drain pipes. In use, the lifting mechanism pushes a movable plate downwards, causing the bottom of the movable plate to contact the water surface. The movable plate limits and fixes the water surface, compressing the space above the water surface, thereby preventing the internal water from churning during housing transfer. Furthermore, the movable plate descends later, and a cleaning component cleans the surface of the pumping pipe, ensuring normal drainage in the future.
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Description

Technical Field

[0001] This invention relates to the field of water transfer and storage equipment, specifically deep mine water transfer and storage equipment. Background Technology

[0002] Mine water refers to all water that seeps into the underground mining space during the coal mining process, and sometimes also contains a small amount of surface water. When the mine water flows through the coal mining face and roadway, it is affected by human activities, and coal and rock powder and some organic matter enter the water. It contains suspended solids, mainly coal and rock powder, as well as soluble inorganic salts. The method of mine water treatment and utilization is to discharge the mine water from the underground water tank, treat it through the regulating pond and various treatment structures on the ground, and then reuse the mine water on the surface after it meets the water reuse quality requirements.

[0003] According to the patent document CN217866109U, a storage device for underground mine water treatment includes a storage device body and a connecting pipe. The connecting pipe is connected to the left side of the storage device body. A connecting frame is fixedly connected to the left side of the inner wall of the connecting pipe. A transmission mechanism is fixedly connected inside the connecting frame. A transmission rod is provided on the right side of the connecting frame. A fixing ring is fixedly connected to the surface of the transmission rod. Fixing frames are fixedly connected to the top and bottom of both sides of the fixing ring. In use, by setting a cleaning hanging plate, the transmission mechanism can drive the cleaning scraper through the transmission rod to scrape and clean the inner wall of the connecting pipe. Regarding the above-mentioned technical solution, although the impurities are cleaned, it cannot compress the space at the top of the water surface while cleaning the impurities. During transfer, the water is prone to shaking, causing the entire tank to swing, which is inconvenient to use. Summary of the Invention

[0004] To address the shortcomings of existing technologies, the present invention aims to provide a deep mine water transfer and storage device to solve the problems mentioned in the background. The present invention features a novel structure. During use, a lifting mechanism pushes a movable plate downwards, causing the bottom of the movable plate to contact the water surface. The movable plate then limits and fixes the water surface, compressing the space above the water surface, thereby preventing the water from churning inside the tank during transfer. Furthermore, the subsequent descent of the movable plate, through a cleaning component, cleans the surface of the pumping pipe, ensuring normal drainage in the later stages.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a deep mine water transfer and storage device, comprising a housing, a fixed base fixed to the top of the housing, a movable base movably mounted on the fixed base, mounting holes respectively opened on the sides of the housing, a drain pipe and a water inlet pipe respectively fixedly mounted inside the mounting holes, a sealing cap rotatably mounted at one end of each of the water inlet pipe and the drain pipe, a positioning pipe and a lifting mechanism respectively fixedly mounted on the top of the housing, and a support plate welded to the side of the movable base.

[0006] Furthermore, a limiting post is welded to the support plate, and a limiting hole is opened on the top of the box body. One end of the limiting post is movably installed inside the limiting hole.

[0007] Furthermore, a support box is fixedly installed on the fixed base, and a sliding groove is opened on the side of the support box. A slider is movably installed inside the sliding groove, and one end of the slider is fixed to the inner wall of the movable base.

[0008] Furthermore, a controller is embedded in the side of the support box, a motor box is fixedly installed inside the support box, a water pump is fixedly installed inside the motor box, a pipe is fixedly installed between the water pump and the motor box, and a heat dissipation vent is opened on the motor box.

[0009] Furthermore, a connecting hose is fixed to one end of the pipe, and a drain pipe is fixed to one end of the connecting hose. The drain pipe is movably installed inside the support box, and a connecting pipe is fixed to the bottom of the motor box.

[0010] Furthermore, a water pumping pipe is fixed to one end of the connecting pipe, a water pumping hole is opened on the water pumping pipe, a filter screen is fixed inside the water pumping hole, and a cleaning component is movably installed on the water pumping pipe.

[0011] Furthermore, the cleaning assembly includes a ring seat with a diagonal rod welded onto it, and a movable plate fixed to one end of the diagonal rod.

[0012] Furthermore, a partition plate is fixedly installed inside the box, and an auger is rotatably installed on the partition plate. A power mechanism is installed on one side of the box, and one end of the auger is installed on the power mechanism.

[0013] Furthermore, a conical seat is fixedly installed at the bottom of the box, and an arc-shaped groove is opened between the conical seats, with the auger rotatably installed between the arc-shaped grooves.

[0014] Furthermore, a positioning post is welded onto the movable plate, the positioning post is movably installed inside the positioning tube, and a sealing ring is fixedly installed on the side of the movable plate.

[0015] The beneficial effects of this invention are:

[0016] 1. In use, the lifting mechanism of this deep mine water transfer and storage equipment pushes the movable plate downward, so that the bottom of the movable plate contacts the water surface. The movable plate limits and fixes the water surface, compressing the space at the top of the water surface, thereby avoiding the impact of the water surface rolling inside during the transfer of the tank. In addition, the movable plate descends later and the cleaning component completes the cleaning of the surface of the water pumping pipe to ensure normal drainage in the later stage.

[0017] 2. In this deep mine water transfer and storage equipment, water enters the interior of the partition plate and the tank through the inlet pipe. Impurities in the water settle downwards under their own gravity and move to the position of the auger through the conical seat. After the water is discharged separately, the auger pushes the impurities out of the drain pipe. The initial sedimentation treatment of impurities in the water is completed at the same time as the mine water is transferred. In addition, the water pump drives the water to pressurize and discharge, which facilitates the faster discharge of water from the tank.

[0018] 3. In this deep mine water transfer and storage equipment, the movable seat protects both the drainage pipe and the controller. The drainage pipe is later pulled outward via a connecting hose, increasing the location of the drainage point. Additionally, the movable seat connects with the limiting post on the support plate and the limiting hole. The connection between the limiting post and the limiting hole enables the limiting and fixing of adjacent boxes, facilitating the transportation and transfer of multiple boxes in the future. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the deep mine water transfer and storage device of the present invention;

[0020] Figure 2 This is a schematic diagram of the structure of the deep mine water transfer and storage device of the present invention after the drainage pipe is opened;

[0021] Figure 3 This is a schematic diagram of the motor housing of the deep mine water transfer and storage device of the present invention;

[0022] Figure 4 This is a side view sectional structural diagram of the box body of the deep mine water transfer and storage device of the present invention;

[0023] Figure 5 This is a side view cross-sectional structural diagram of the drainage pipe of the deep mine water transfer and storage device of the present invention;

[0024] Figure 6 This is a bottom view schematic diagram of the drainage pipe and cleaning components of the deep mine water transfer and storage device of the present invention;

[0025] In the diagram: 1. Box body; 2. Mounting hole; 3. Sealing cover; 4. Water inlet pipe; 5. Fixed base; 6. Movable base; 7. Support plate; 8. Lifting mechanism; 9. Positioning pipe; 10. Limiting hole; 11. Support box; 12. Drain pipe; 13. Controller; 14. Connecting hose; 15. Motor box; 16. Heat dissipation vent; 17. Connecting pipe; 18. Pumping pipe; 19. Pumping hole; 20. Slide groove; 21. Sliding block; 22. Limiting post; 23. Cleaning assembly; 24. Movable plate; 25. Positioning post; 26. Power mechanism; 27. Divider plate; 28. Screw auger; 29. ​​Sewage pipe; 30. Conical seat; 31. Ring seat; 32. Diagonal bar. Detailed Implementation

[0026] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0027] Please see Figures 1 to 6 This invention provides a technical solution: a deep mine water transfer and storage device, including a box 1, a fixed base 5 fixed on the top of the box 1, a movable base 6 movably installed on the fixed base 5, mounting holes 2 respectively opened on the sides of the box 1, a sewage pipe 29 and a water inlet pipe 4 respectively fixedly installed inside the mounting holes 2, a sealing cover 3 rotatably installed at one end of the water inlet pipe 4 and the sewage pipe 29, a positioning pipe 9 and a lifting mechanism 8 respectively fixedly installed on the top of the box 1, a support plate 7 welded to the side of the movable base 6, and the lifting mechanism 8 is an electric linear push rod, which pushes the movable plate 24 to move up and down, and the up and down movement of the movable plate 24 controls the space at the top of the water surface.

[0028] In this embodiment, a limiting post 22 is welded onto the support plate 7, and a limiting hole 10 is opened on the top of the box 1. One end of the limiting post 22 is movably installed inside the limiting hole 10. A support box 11 is fixedly installed on the fixed seat 5. A sliding groove 20 is opened on the side of the support box 11, and a slider 21 is movably installed inside the sliding groove 20. One end of the slider 21 is fixed to the inner wall of the movable seat 6. A controller 13 is embedded in the side of the support box 11. A motor box 15 is fixedly installed inside the support box 11. A water pump is fixedly installed inside the motor box 15. A pipe is fixedly installed between the water pump and the motor box 15. A heat dissipation vent 16 is opened on the motor box 15. The water pump quickly draws water out of the box 1 through the cooperation of the connecting pipe 17 and the water suction pipe 18.

[0029] In this embodiment, a connecting hose 14 is fixed to one end of the pipe, and a drain pipe 12 is fixed to one end of the connecting hose 14. The drain pipe 12 is movably installed inside the support box 11. A connecting pipe 17 is fixed to the bottom of the motor box 15. A water suction pipe 18 is fixed to one end of the connecting pipe 17. A water suction hole 19 is opened on the water suction pipe 18. A filter screen is fixed inside the water suction hole 19. A cleaning component 23 is movably installed on the water suction pipe 18. The cleaning component 23 includes a ring seat 31. A diagonal rod 32 is welded to the ring seat 31. A movable plate 24 is fixed to one end of the diagonal rod 32. The ring seat 31 moves on the filter screen of the water suction hole 19, and the movement scrapes the impurities on the surface of the filter screen downwards.

[0030] In this embodiment, a partition plate 27 is fixedly installed inside the housing 1, and an auger 28 is rotatably installed on the partition plate 27. A power mechanism 26 is installed on one side of the housing 1, and one end of the auger 28 is installed on the power mechanism 26. A conical seat 30 is fixedly installed at the bottom of the housing 1, and an arc-shaped groove is opened between the conical seats 30. The auger 28 is rotatably installed between the arc-shaped grooves. A positioning post 25 is welded on the movable plate 24, and the positioning post 25 is movably installed inside the positioning tube 9. A sealing ring is fixedly installed on the side of the movable plate 24. The power mechanism 26 is a DC motor, which drives the auger 28 to rotate and discharge the impurities settled at the bottom.

[0031] In use, the device first connects the inlet pipe 4 to an external pipe, allowing mine water to enter the housing 1 through the inlet pipe 4. As the mine water enters, the lifting mechanism 8 is activated, causing the movable plate 24 to move upwards. This upward movement of the movable plate 24 provides storage space for the mine water. Once the mine water has entered the housing 1, the lifting mechanism 8 is activated again, pushing the movable plate 24 downwards. The movable plate 24 descends and contacts the top of the water surface. The four corners of the movable plate 24 are supported and limited by positioning posts 25 and positioning pipes 9. After the movable plate 24 reaches the water surface, it reduces the pressure on the top of the water surface. To prevent the top of the container from rolling and impacting during later transportation of the container 1, the movable seat 6 is first moved upwards when the container 1 is placed on the transport equipment, so that the bottom of the limiting post 22 is higher than the top of the container 1. After the adjacent containers 1 are in contact, the movable seat 6 is lowered. After the movable seat 6 is lowered, the support plate 7 pushes the limiting post 22 into the interior of the limiting hole 10. The limiting post 22 and the limiting hole 10 cooperate to limit and fix the adjacent containers 1. The support plate 7 is movably installed between the positioning tubes 9, and the positioning tubes 9 provide left and right limits for the support plate 7. After the well water is moved to the treatment location, the container 1 is lowered from the transport equipment to the ground. The mine water settles inside the container 1, and impurities move downwards due to their own gravity. The impurities slide to both sides through the conical seat 30 into the arc-shaped groove. When it is necessary to extract the mine water, the movable seat 6 is moved upwards. After the movable seat 6 moves upwards, the drain pipe 12 is pulled out from inside the support box 11. After the drain pipe 12 is pulled out, the movable seat 6 is lowered. The drain pipe 12 provides a limiting support for the movable seat 6. The water pump is started, and the water is manually extracted from inside the container 1 through the connecting pipe 17 and the suction pipe 18. As the water level drops, the movable plate 24 moves downward. When the movable plate 24 moves downward, it pushes the ring seat 31 to move on the pumping pipe 18 through the inclined rod 32. The movement causes impurities on the filter screen of the pumping hole 19 to be discharged outward, ensuring normal pumping. When the water level is lower than the height of the bottom pumping hole 19, the water pump stops working and the sealing cover 3 on the sewage pipe 29 is opened. After opening, the power mechanism 26 is started to drive the auger 28 to rotate. The rotation of the auger 28 pushes the impurities between the conical seats 30 outward, thereby realizing the separate discharge of water and impurities and achieving the initial treatment of mine water.

[0032] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the scope of the invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0033] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A deep mine water transfer and storage device, comprising a housing (1), characterized in that: A fixed base (5) is fixed to the top of the box (1), and a movable base (6) is movably installed on the fixed base (5). Mounting holes (2) are opened on the sides of the box (1). A drain pipe (29) and a water inlet pipe (4) are fixedly installed inside the mounting holes (2). A sealing cap (3) is rotatably installed at one end of the water inlet pipe (4) and the drain pipe (29). A positioning tube (9) and a lifting mechanism (8) are fixedly installed on the top of the box (1). The movable base (6) is welded to the sides. A support plate (7) is provided, on which a limiting post (22) is welded. A limiting hole (10) is opened on the top of the box body (1). One end of the limiting post (22) is movably installed inside the limiting hole (10). A support box (11) is fixedly installed on the fixed seat (5). A sliding groove (20) is opened on the side of the support box (11). A slider (21) is movably installed inside the sliding groove (20). One end of the slider (21) is fixed on the inner wall of the movable seat (6). The support box... A controller (13) is embedded in the side of the support box (11). A motor box (15) is fixedly installed inside the support box (11). A water pump is fixedly installed inside the motor box (15). A pipe is fixedly installed between the water pump and the motor box (15). A heat dissipation vent (16) is opened on the motor box (15). A connecting hose (14) is fixed to one end of the pipe. A drain pipe (12) is fixed to one end of the connecting hose (14). The drain pipe (12) is movably installed on the support box (11). Inside, a connecting pipe (17) is fixed to the bottom of the motor housing (15), and a water pumping pipe (18) is fixed to one end of the connecting pipe (17). A water pumping hole (19) is opened on the water pumping pipe (18), and a filter screen is fixed inside the water pumping hole (19). A cleaning component (23) is movably installed on the water pumping pipe (18). The cleaning component (23) includes a ring seat (31), and a diagonal rod (32) is welded on the ring seat (31). A movable plate (24) is fixed to one end of the diagonal rod (32).

2. The deep mine water transfer and storage device according to claim 1, characterized in that: A partition plate (27) is fixedly installed inside the housing (1). An auger (28) is rotatably installed on the partition plate (27). A power mechanism (26) is installed on one side of the housing (1). One end of the auger (28) is installed on the power mechanism (26).

3. The deep mine water transfer and storage device according to claim 2, characterized in that: A conical seat (30) is fixedly installed at the bottom of the box (1), and an arc groove is opened between the conical seats (30). The auger (28) is rotatably installed between the arc grooves.

4. The deep mine water transfer and storage device according to claim 1, characterized in that: A positioning post (25) is welded onto the movable plate (24), and the positioning post (25) is movably installed inside the positioning tube (9). A sealing ring is fixedly installed on the side of the movable plate (24).

Citation Information

Patent Citations

  • Storage device for underground mine water treatment

    CN217866109U

  • Transfer device for sea salt collection

    CN210823358U

  • Purification treatment device for mine water reinjection

    CN218321070U