Pipe gallery structure with filtering function

By designing a pipe gallery structure with filtration function, and using filter screens and guide locking components to expand the filtration area, the problem of impurities in the water entering the water system is solved, and a highly efficient and flexible water filtration and water intake process is achieved.

CN224591489UActive Publication Date: 2026-08-04HAINAN LESSO TECH IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HAINAN LESSO TECH IND CO LTD
Filing Date
2025-06-30
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In existing technologies, impurities in the water entering the water system cause a decline in water quality or blockage of equipment. Existing filtration facilities have a small area, making it difficult to effectively filter and extract water.

Method used

Design a pipe gallery structure with filtration function, including pumping pipe fittings, fixing frame, water intake pipe assembly, sleeve assembly and guide locking component. By using the combination of filter screen and guide locking component, the filtration area is expanded, ensuring that the water flows vertically in the sleeve assembly and avoiding blockage.

Benefits of technology

It increases the water filtration area and flow rate, reduces the probability of pipe blockage, and achieves an efficient and flexible water intake process.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a pipe gallery structure with a filtration function, relating to the field of pipe gallery assembly technology. It includes a pumping pipe fitting, a fixing frame, several water intake pipe assemblies, several sleeve assemblies, and several guide locking components. The pumping pipe fitting is detachably connected to the several water intake pipe assemblies. The fixing frame is used to install the several sleeve assemblies in the water intake area. The water intake pipe assemblies are inserted into the corresponding sleeve assemblies. The guide locking components are sleeved on the outer side of the first end of the sleeve assembly and the outer periphery of the corresponding water intake pipe assembly. The guide locking components are used to guide and stabilize the water intake pipe assemblies. Each sleeve assembly has a filter screen sleeved on its outer side and bottom pipe opening. The filter screen traps impurities in the water outside the sleeve assembly. Filtered water can enter the sleeve assembly from different heights, allowing water filtered at other locations to flow smoothly to the port of the water intake pipe assembly for extraction. This increases the water filtration area and water flow rate, reduces the likelihood of pipe blockage, and achieves efficient and flexible water intake.
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Description

Technical Field

[0001] This utility model relates to the field of pipe gallery assembly technology, and in particular to a pipe gallery structure with a filtration function. Background Technology

[0002] In aquaculture and industrial production, water intake pipes are usually installed in nearby water bodies to draw water. However, the water contains impurities such as silt and suspended solids. Direct extraction of these impurities can cause them to enter the water system directly, affecting the quality of the aquaculture water or the operation of industrial equipment. To achieve filtration, existing sewage pipe filtration facilities are mostly located at the water intake or water consumption end, with a relatively small filtration area. When there are many impurities in the water or after the water intake pipe has been used for a period of time, the water intake or water consumption end may become clogged, requiring interruption of water supply for cleaning. This results in ineffective water intake and affects normal production. Utility Model Content

[0003] The purpose of this invention is to address the shortcomings of the aforementioned technologies by proposing a pipe gallery structure with a filtration function, thereby solving the problems described above.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A pipe gallery structure with filtration function includes a pumping pipe fitting, a fixing frame, several water intake pipe assemblies, several sleeve assemblies, and several guide locking components. The pumping pipe fitting is detachably connected to several of the water intake pipe assemblies. The fixing frame is used to install several of the sleeve assemblies in the water intake area. The water intake pipe assemblies are inserted into the corresponding sleeve assemblies. The guide locking components are sleeved on the outer side of the first end of the sleeve assembly and the outer periphery of the corresponding water intake pipe assembly. The guide locking components are used to guide and stabilize the water intake pipe assemblies. Each sleeve assembly has a filter screen sleeved on its outer side and at its bottom pipe opening.

[0006] Preferably, the sleeve assembly includes several sleeves, the ends of adjacent sleeves are connected in sequence through port reducing sleeves, the lower part of the guide locking member is sleeved on the outside of the first sleeve, and several water inlet holes are provided on the side wall of the sleeve.

[0007] Preferably, the port reducing sleeve includes an outer cylinder and an inner cylinder, the inner cylinder is located inside the outer cylinder, the inner cylinder is connected to the outer cylinder through a connecting ring, and the connecting ring is provided with a plurality of drainage holes along the circumference.

[0008] Preferably, the water intake pipe group includes several water intake pipes, and the ends of adjacent water intake pipes are connected sequentially by connecting straight pipes.

[0009] Preferably, the outer periphery of the connecting straight pipe is provided with an abutment ring, and the ends of the adjacent water intake pipes abut against the upper and lower end surfaces of the abutment ring, respectively.

[0010] Preferably, the guide locking component includes a sleeve, a guide cylinder, a locking sleeve, and a plurality of locking pressure plates. The sleeve is sleeved on the outer side of the first end of the sleeve assembly, and the upper end of the sleeve is connected to the guide cylinder. The plurality of locking pressure plates are equidistantly connected to the upper end of the guide cylinder in the circumferential direction. The locking sleeve is sleeved on the outer side of the water intake pipe assembly, and the locking sleeve is threadedly connected to the guide cylinder, so that the plurality of locking pressure plates are brought together or opened.

[0011] Preferably, the water pumping fitting includes a water pumping pipe and a connecting assembly, the end of the water pumping pipe is detachably connected to the connecting assembly, and the connecting assembly is detachably connected to a plurality of the water intake pipe groups.

[0012] Preferably, the water intake pipe assembly includes a bend joint, several connecting pipes, and several tee joints. The two ends of adjacent tee joints are connected sequentially through corresponding connecting pipes. The first tee joint is connected to the water pumping pipe, and the last tee joint is connected to the bend joint. The free ends of the bend joint and the free ends of the several tee joints are respectively connected to the corresponding water intake pipe assembly.

[0013] Preferably, the fixing frame includes a support frame and a plurality of clamping components for clamping the corresponding sleeve assembly. The clamping components include a fixing arc plate and a mounting arc plate. The fixing arc plate is fixed to the support frame, and the mounting arc plate is bolted to the fixing arc plate.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] The above-described structure is used to fix several sleeve groups in the water. Several water intake pipe groups are assembled on each pumping pipe. Under the action of the guide, the water intake pipe can be quickly and accurately inserted into the corresponding sleeve group to form a pipe gallery structure. In conjunction with the water pump, water is pumped. The filter screen can trap impurities in the water outside the sleeve group, increasing the filtration area of ​​the water. The filtered water can enter the sleeve group from different heights. The water can flow vertically in the sleeve group, allowing the filtered water at other locations to flow smoothly to the port of the water intake pipe group for extraction. This increases the filtration area and water flow rate, making it less likely for the pipe to become blocked, thus achieving efficient and flexible water intake. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of a pipe gallery structure with filtration function according to the present invention.

[0017] Figure 2This is a three-dimensional structural diagram of a pipe gallery structure with filtration function according to the present invention.

[0018] Figure 3 This is a cross-sectional structural diagram of a pipe gallery structure with filtration function according to the present invention;

[0019] Figure 4 for Figure 3 A magnified structural diagram of part A in the middle;

[0020] Figure 5 for Figure 3 A magnified structural diagram of part B in the middle;

[0021] Figure 6 for Figure 3 A magnified structural diagram of part C in the middle;

[0022] Figure 7 for Figure 3 A magnified schematic diagram of a portion of D in the middle;

[0023] Figure 8 for Figure 3 A magnified structural diagram of part E in the middle;

[0024] Figure 9 This is a cross-sectional structural diagram of the port reducing sleeve of this utility model;

[0025] Figure 10 This is a cross-sectional structural diagram of the connecting straight pipe of this utility model;

[0026] Figure 11 This is a front view structural diagram of the pipe bend joint and tee bend of this utility model;

[0027] Figure 12 A structural diagram showing the setup of multiple sets of utility tunnel structures;

[0028] In the diagram, 1. Pumping fitting; 11. Pumping pipe; 12. Connecting assembly; 13. Bend joint; 14. Connecting pipe; 15. T-joint; 2. Fixing frame; 21. Support frame; 22. Clamping assembly; 23. Fixing arc plate; 24. Mounting arc plate; 3. Water intake pipe assembly; 31. Water intake pipe; 32. Connecting straight pipe; 33. Abutment ring; 34. Sealing ring; 4. Sleeve assembly; 41. Sleeve; 42. Port reducing sleeve; 43. Outer cylinder; 44. Inner cylinder; 45. Connecting ring; 46. Water flow hole; 47. Water inlet through hole; 48. Outer extension edge; 49. Water flow channel; 5. Guide locking component; 51. Sleeve; 52. Guide cylinder; 53. Locking sleeve; 54. Locking pressure plate; 6. Filter screen. Detailed Implementation

[0029] To better understand the technical content of this utility model, specific embodiments are provided below, and the utility model will be further described in conjunction with the accompanying drawings.

[0030] Example 1

[0031] See Figures 1 to 12 This utility model provides a pipe gallery structure with filtration function, including a pumping pipe fitting 1, a fixing frame 2, several water intake pipe assemblies 3, several sleeve assemblies 4, and several guide locking components 5. One end of the pumping pipe fitting 1 is connected to a water pump. The pumping pipe fitting 1 is detachably connected to the several water intake pipe assemblies 3, allowing for the replacement of the water intake pipe assemblies 3. The fixing frame 2 is used to install the several sleeve assemblies 4 in the water intake area, fixing the sleeve assemblies 4 in the water intake area. The water intake pipe assemblies 3 are inserted into the corresponding sleeve assemblies 4. The upper part of the sleeve assembly 4 protrudes above the water surface, facilitating the insertion of the water intake pipe 31 into the corresponding sleeve assembly 4. The lower part of the sleeve assembly 4 is submerged in water. The lower end of the water intake pipe assembly 3 is inserted downward into the sleeve assembly 4. The free end of the pumping pipe fitting 1 is connected to the water pump, allowing for the extraction of water through the sleeve assemblies 4. Water enters the water intake pipe group 3 from group 4. The guide locking member 5 is sleeved on the outer side of the first end of the sleeve group 4 and the outer periphery of the corresponding water intake pipe group 3. The guide locking member 5 is used to guide and stabilize the water intake pipe group 3. When the water intake pipe group 3 is inserted into the corresponding sleeve group 4, the guide locking member 5 can limit and guide the water intake pipe group 3. After the water intake pipe group 3 is inserted into the corresponding sleeve group 4, the guide locking member 5 stabilizes the water intake pipe group 3. Each sleeve group 4 is fitted with a filter screen 6 on the outer side and bottom pipe opening, which can filter the water entering the sleeve group 4 and trap impurities in the water outside the filter screen 6. The filter screen 6 covers the outer side and bottom of the sleeve group 4, expands the filtration area of ​​the water, effectively avoids water intake blockage, and achieves efficient and flexible water intake.

[0032] The sleeve assembly 4 includes several sleeves 41. The ends of adjacent sleeves 41 are connected sequentially through port reducing sleeves 42. That is, two adjacent sleeves 41 are inserted into the port reducing sleeves 42 from both ends. The inner diameter of the port reducing sleeves 42 is slightly larger than the outer diameter of the sleeves 41, so that the sleeves 41 are firmly inserted into the port reducing sleeves 42. Different numbers of sleeves 41 can be used according to the actual situation to meet the requirements of different lengths of the sleeve assembly 4. The lower part of the guide locking member 5 is sleeved on the outside of the first sleeve 41. Several water inlet holes 47 are provided on the side wall of the sleeve 41. Water filtered by the filter screen 6 enters the sleeve 41 through several water inlet holes 47.

[0033] The port reducing sleeve 42 includes an outer cylinder 43 and an inner cylinder 44. The inner cylinder 44 is located inside the outer cylinder 43 and is connected to the outer cylinder 43 via a connecting ring 45, thus connecting the outer cylinder 43 and the inner cylinder 44. The outer cylinder 43, the inner cylinder 44, and the connecting ring 45 are integrally formed, and their central axes are collinear. The connecting ring 45 is trumpet-shaped, and its outer periphery at the large-diameter end is provided with an outer extension edge 48. The outer extension edge 48 is connected to the middle of the outer cylinder 43 in the height direction, with the large-diameter end facing down and the small-diameter end facing up. The small-diameter end is connected to the inner cylinder 44. When the sleeve 41 is inserted into the port reducing sleeve 42, the sleeve 41 is located outside the outer cylinder 43. The inner diameter of the outer cylinder 43 is slightly larger than the outer diameter of the sleeve 41. Adjacent sleeves 41 abut from the upper and lower ends respectively. The upper and lower ends of the outer extension 48 are connected to ensure that the adjacent sleeves 41 are inserted into the outer cylinder 43 to the same depth. The inner cylinder 44 is provided for the water intake pipe group 3 to move through. The inner wall of the inner cylinder 44 can limit and guide the water pipe, preventing the water intake pipe group 3 from deviating from the axis of the sleeve group 4. This allows the water intake pipe group 3 to be smoothly inserted into the sleeve group 4 along the axis of the sleeve group 4. The connecting ring 45 is provided with several water flow holes 46 in the circumferential direction, so that there is a water flow channel 49 between the outer cylinder 43 and the inner cylinder 44. This improves the connectivity between different sleeves 41 in the vertical direction, and allows the water filtered at other sleeves 41 to flow smoothly to the water intake pipe 31 and be drawn by it. This can effectively increase the filtration area of ​​the water and further reduce the probability of water intake blockage.

[0034] The water intake pipe assembly 3 includes several water intake pipes 31. The ends of adjacent water intake pipes 31 are connected sequentially by a connecting straight pipe 32. Two adjacent water intake pipes 31 are inserted into the connecting straight pipe 32 from both ends. Different numbers of water intake pipes 31 can be used according to actual conditions to meet the requirements of different lengths of the water intake pipe assembly 3. The outer periphery of the connecting straight pipe 32 is provided with an abutment ring 33. The ends of adjacent water intake pipes 31 abut against the upper and lower end faces of the abutment ring 33, respectively, to ensure that the depth of adjacent water intake pipes 31 inserted into the connecting straight pipe 32 is equal. The connection points between the connecting straight pipe 32, the water intake pipes 31 and the pumping pipe fitting 1 can be further tightened with waterproof tape after connection.

[0035] In use, the fixing frame 2 fixes several sleeve groups 4 in the water intake area. The upper part of the sleeve group 4 protrudes above the water surface, and the lower part of the sleeve group 4 is submerged in the water. The end of the water intake pipe group 3 is inserted into the corresponding sleeve group 4. The guide locking part 5, which is sleeved on the upper end of the sleeve group 4, guides the water intake pipe group 3, allowing the water intake pipe group 3 to be inserted vertically into the sleeve group 4. When the lower end of the water intake pipe group 3 is submerged in the water and no longer pushed down, the upper part of the guide locking part sleeved on the water intake pipe 3 is rotated downward. The guide locking part 5 clamps the water intake pipe group 3, stabilizing the water intake pipe 3. The free end of the pumping pipe 1 is connected to the water pump. When the water pump is started, the water is filtered by the filter screen 6 and enters the sleeve 41 through several water inlet holes 47. The water intake pipe group 3 draws the filtered water from the sleeve 41. Multiple sets of pipe gallery structures can be set in the water intake area according to the actual situation.

[0036] Example 2

[0037] See Figures 1 to 12 The difference between this embodiment and Embodiment 1 is that the guide locking component 5 includes a sleeve 51, a guide cylinder 52, a locking sleeve 53, and several locking pressure plates 54. The sleeve 51 is sleeved on the outer side of the first end of the sleeve assembly 4, and the upper end of the sleeve 51 is connected to the guide cylinder 52. The sleeve 51 and the guide cylinder 52 are integrally formed. When the water intake pipe 31 is inserted into the guide cylinder 52, it plays a guiding role, so that the water intake pipe 31 is vertically inserted into the sleeve 41. Several locking pressure plates 54 are equidistantly connected to the guide cylinder 52 in the circumferential direction. At the upper end, the locking plate 54 has a certain elasticity. The locking sleeve 53 is sleeved on the outside of the water intake pipe assembly 3, that is, the locking sleeve 53 is sleeved on the outer periphery of the water intake pipe 31 at the first end. The lower part of the locking sleeve 53 is cylindrical and has internal threads. The upper diameter of the locking sleeve 53 gradually decreases from bottom to top. The locking sleeve 53 is threadedly connected to the guide cylinder 52. The locking sleeve 53 rotates downward so that several locking plates 54 gather inward to lock the water intake pipe 31 and fix the water intake pipe 3.

[0038] When the end of the water intake pipe assembly 3 is inserted into the sleeve assembly 4, the guide tube 51 sleeved at the beginning of the sleeve assembly 4 can guide the water intake pipe assembly 3, so that the water intake pipe assembly 3 is vertically inserted into the corresponding sleeve 41. When the water intake pipe assembly 3 is inserted to a suitable depth in the sleeve assembly 4 and no longer pushed down, the locking sleeve 53 is rotated downward. The locking sleeve 53 is connected to the external thread on the guide cylinder 52. As the locking sleeve 53 rotates downward continuously, several locking pressure plates 54 converge toward the central axis of the guide cylinder 52, and the several locking pressure plates 54 clamp the water intake pipe assembly 3, thus stabilizing the water intake pipe assembly 3.

[0039] Example 3

[0040] See Figure 1 , 2The difference between this embodiment and embodiment 1 is that the water pumping fitting 1 includes a water pumping pipe 11 and a connecting component 12. The end of the water pumping pipe 11 is detachably connected to the connecting component 12. The connecting component 12 is detachably connected to a plurality of the water intake pipe groups 3. The detachable connection is a plug-in connection.

[0041] The water intake pipe assembly 3 includes a bend joint 13, several connecting pipes 14, and several tee joints 15. The two ends of adjacent tee joints 15 are connected sequentially through corresponding connecting pipes 14. The first tee joint 15 is connected to the pumping pipe 11, and the last tee joint 15 is connected to the bend joint 13. The free ends of the bend joint 13 and the free ends of the several tee joints 15 are respectively connected to the corresponding water intake pipe assembly 3. The connection between the pumping pipe 11, bend joint 13, connecting pipes 14, tee joints 15, and water intake pipe assembly 3 can be sealed with rubber rings or adhesive. After connection, waterproof tape can be used to further tighten them.

[0042] The structure forms a pumping pipe 1 connected to multiple water intake pipe groups 3. The pumping pipe 11 can carry out water intake through multiple water intake pipe groups 3, which can effectively increase the water intake flow and improve the water intake efficiency.

[0043] Example 4

[0044] See Figure 1 , 2 The difference between this embodiment and embodiment 1 is that the fixing frame 2 includes a support frame 21 and several clamping components 22 for clamping the corresponding sleeve group 4. The clamping components 22 include a fixing arc plate 23 and an mounting arc plate 24. The fixing arc plate 23 is fixed to the support frame 21, and the mounting arc plate 24 is bolted to the fixing arc plate 23. The support frame 21 can be fixedly connected to the underwater foundation, pile body or other shore structure. The mounting arc plate 24 cooperates with the fixing arc plate 23 to fix the corresponding sleeve group 4.

[0045] The main pipe material used in this application is PVC-U plastic pipe. This application may also replace it with other pipe materials known in the pipe industry according to usage requirements.

[0046] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A pipe gallery structure with filtration function, characterized in that: The device includes a pumping pipe fitting (1), a fixing frame (2), several water intake pipe assemblies (3), several sleeve assemblies (4), and several guide locking components (5). The pumping pipe fitting (1) is detachably connected to several of the water intake pipe assemblies (3). The fixing frame (2) is used to install several of the sleeve assemblies (4) in the water intake area. The water intake pipe assembly (3) is inserted into the corresponding sleeve assembly (4). The guide locking component (5) is sleeved on the outer side of the first end of the sleeve assembly (4) and the outer periphery of the corresponding water intake pipe assembly (3). The guide locking component (5) is used to guide and stabilize the water intake pipe assembly (3). Each sleeve assembly (4) is fitted with a filter screen (6) on the outer side and at the bottom pipe opening.

2. The pipe gallery structure with filtration function as described in claim 1, characterized in that: The sleeve assembly (4) includes several sleeves (41), and the ends of adjacent sleeves (41) are connected in sequence through port reducing sleeves (42). The lower part of the guide locking member (5) is sleeved on the outside of the first sleeve (41), and several water inlet holes (47) are provided on the side wall of the sleeve (41).

3. A pipe gallery structure with filtration function as described in claim 2, characterized in that: The port reducing sleeve (42) includes an outer cylinder (43) and an inner cylinder (44). The inner cylinder (44) is located inside the outer cylinder (43). The inner cylinder (44) is connected to the outer cylinder (43) through a connecting ring (45). The connecting ring (45) has a plurality of water flow holes (46) along the circumferential direction.

4. A pipe gallery structure with filtration function as described in claim 1, characterized in that: The water intake pipe group (3) includes several water intake pipes (31), and the ends of adjacent water intake pipes (31) are connected in sequence by connecting straight pipes (32).

5. A pipe gallery structure with filtration function as described in claim 4, characterized in that: The outer periphery of the connecting straight pipe (32) is provided with an abutment ring (33), and the ends of the adjacent water intake pipe (31) abut against the upper and lower end surfaces of the abutment ring (33), respectively.

6. A pipe gallery structure with filtration function as described in claim 1, characterized in that: The guide locking component (5) includes a sleeve (51), a guide cylinder (52), a locking sleeve (53), and a plurality of locking pressure plates (54). The sleeve (51) is sleeved on the outer side of the first end of the sleeve assembly (4). The upper end of the sleeve (51) is connected to the guide cylinder (52). The plurality of locking pressure plates (54) are equidistantly connected to the upper end of the guide cylinder (52) along the circumferential direction. The locking sleeve (53) is sleeved on the outer side of the water intake pipe assembly (3). The locking sleeve (53) is threadedly connected to the guide cylinder (52) so that the plurality of locking pressure plates (54) can be brought together or opened.

7. A pipe gallery structure with filtration function as described in claim 1, characterized in that: The water pumping fitting (1) includes a water pumping pipe (11) and a connecting assembly (12). The end of the water pumping pipe (11) is detachably connected to the connecting assembly (12), and the connecting assembly (12) is detachably connected to a plurality of the water intake pipe groups (3).

8. A pipe gallery structure with filtration function as described in claim 7, characterized in that: The water intake pipe assembly (3) includes a bend joint (13), several connecting pipes (14) and several tee joints (15). The two ends of adjacent tee joints (15) are connected in sequence through the corresponding connecting pipes (14). The first tee joint (15) is connected to the water pumping pipe (11), and the last tee joint (15) is connected to the bend joint (13). The free ends of the bend joint (13) and the free ends of the several tee joints (15) are respectively connected to the corresponding water intake pipe assembly (3).

9. A pipe gallery structure with filtration function as described in claim 1, characterized in that: The fixing frame (2) includes a support frame (21) and a plurality of clamping components (22) for clamping the corresponding sleeve group (4). The clamping components (22) include a fixing arc plate (23) and a mounting arc plate (24). The fixing arc plate (23) is fixed on the support frame (21), and the mounting arc plate (24) is bolted to the fixing arc plate (23).