Water body treatment assembly for crayfish breeding

By designing water treatment components for crayfish farming, the problem of turbid water in the farming ponds is addressed using filter screens and filter discs, enabling water recycling, solving the problem of unclear water quality in the farming ponds, improving water safety, and reducing costs.

CN224192740UActive Publication Date: 2026-05-05LUJIANG COUNTY TIANYUN AGRICULTURAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LUJIANG COUNTY TIANYUN AGRICULTURAL TECHNOLOGY CO LTD
Filing Date
2025-06-06
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The water in the existing crayfish farming ponds is turbid, which affects the farming results.

Method used

Design a water treatment component for crayfish farming, including a treatment component and a circulation component. The treatment component uses a filter screen and filter disc inside the treatment cylinder to treat the farming water using physical and biological factors, and the circulation component enables the recycling of water.

Benefits of technology

Ensuring clean and safe water for aquaculture reduces water resource costs and improves aquaculture efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water body treatment assembly for crayfish breeding, and relates to the technical field of crayfish breeding. The device comprises a foundation, a treatment assembly and a circulation assembly, the upper end face of the foundation is provided with a culture pond and a water storage pond, the circulation assembly is arranged on the upper end face of the foundation between the culture pond and the water storage pond, the treatment assembly is arranged in the water storage pond, and the treatment assembly comprises a plurality of treatment cylinders. According to the utility model, through the arrangement of the treatment assembly, in the process of pumping the culture water in the culture pond into the reservoir, the culture water in the water distribution pipe is divided into the plurality of treatment cylinders through the plurality of secondary water pipes, and the culture water in the plurality of treatment cylinders sequentially flows through the filter screens and the filter sheets in the two treatment plates; and the filter screen and the filter sheet can respectively treat physical factors and biological factors of turbid aquaculture water, so that the pumped aquaculture water becomes clean and clear after being treated by the treatment assembly, and the safety of the aquaculture water is ensured.
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Description

Technical Field

[0001] This utility model belongs to the field of crayfish farming technology, and in particular relates to a water treatment component for crayfish farming. Background Technology

[0002] Water treatment structural components refer to various equipment and devices used in the water treatment process to achieve functions such as water purification, filtration, and disinfection. These components play a crucial role in the water treatment process, ensuring that the final output water quality meets usage standards.

[0003] Current technologies for crayfish farming typically employ ponds for centralized feeding. However, during the process of raising crayfish in ponds, the water gradually becomes turbid, which is detrimental to crayfish farming. Therefore, we provide a crayfish farming water treatment component to solve the aforementioned problems. Utility Model Content

[0004] The purpose of this invention is to provide a water treatment component for crayfish farming. By combining the treatment component and the circulation component, the problem of turbid water in the farming pond being detrimental to crayfish farming in the prior art is solved.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution.

[0006] This utility model relates to a water treatment component for crayfish farming, comprising a foundation, a treatment component, and a circulation component. The upper surface of the foundation has a farming pond and a storage pond. The circulation component is located on the upper surface of the foundation between the farming pond and the storage pond. The treatment component is located inside the storage pond. The treatment component includes multiple treatment cylinders. Each treatment cylinder has symmetrically formed limiting grooves on its inner wall. Limiting rods are fixedly connected to the bottom of the inner walls of each limiting groove. Each treatment cylinder has two treatment plates on its inner wall. Limiting sliders corresponding to the limiting grooves are provided on both sides of each treatment plate. A filter screen and a filter sheet are respectively provided at the center of each treatment plate. A first liquid pump is installed on the upper surface of the foundation between the farming pond and the storage pond. The first liquid pump has a pumping pipe at its pumping end and a main water pipe at its outlet end. A branch water pipe is inserted into the other end of the main water pipe. Multiple secondary water pipes are inserted at equal intervals into the side walls of the branch water pipe, and the other ends of the secondary water pipes extend into the multiple treatment cylinders.

[0007] The present invention is further configured such that the circulation component includes a second liquid pump, the pumping end of the second liquid pump is provided with a second pumping pipe, the outlet end of the second liquid pump is provided with an injection pipe, and the ends of the second pumping pipe and the injection pipe opposite to the second liquid pump extend into the water storage tank and the aquaculture tank respectively.

[0008] The present invention is further configured such that pipe fixing ring blocks are symmetrically fixedly connected to the side wall of the aquaculture pond, and the first water pumping pipe and the water injection pipe are respectively slidably inserted into the center of the two pipe fixing ring blocks.

[0009] The present invention is further configured such that valves are installed in each of the plurality of secondary water pipes, and sensors for monitoring water flow rate are installed at the lower ends of each of the plurality of treatment cylinders.

[0010] The present invention is further configured such that each of the multiple processing cylinders has four connecting members on its side wall, each of the multiple connecting members has a threaded hole on its side wall, the inner wall of the water storage tank has multiple threaded grooves that match the threaded holes, and a connecting bolt is provided between each of the multiple threaded holes and the matching threaded grooves.

[0011] The present invention is further configured such that all of the plurality of filter screens are made of polypropylene plastic mesh, and all of the plurality of filter sheets are made of activated carbon cotton blocks or biochemical cotton blocks.

[0012] The present invention is further configured such that the side walls of the two limiting sliders are slidably connected to the inner walls of the corresponding limiting grooves, and the upper end faces of the two limiting sliders are provided with rod holes that match the limiting rods. The two limiting sliders are slidably sleeved on the two limiting rods through the rod holes.

[0013] The present invention is further configured such that the power supply terminals of both the first liquid pump and the second liquid pump are electrically connected to an external power source.

[0014] The present invention has the following beneficial effects.

[0015] 1. This utility model, by setting up a treatment component, allows the aquaculture water in the aquaculture pond to be pumped into the storage tank. During this process, the aquaculture water is diverted into multiple treatment cylinders through multiple secondary water pipes in the distribution pipe. The aquaculture water then flows sequentially through the filter screens and filter plates in two treatment plates within the multiple treatment cylinders. The filter screens and filter plates can respectively treat the physical and biological factors that cause turbidity in the aquaculture water, ensuring that the aquaculture water becomes clean and clear after being treated by the treatment component, thus ensuring the safety of the aquaculture water.

[0016] 2. By setting up a circulation component, the treated aquaculture water is injected back into the aquaculture pond from the storage tank under the action of the circulation component, realizing the recycling of the treated aquaculture water and effectively reducing the cost of using aquaculture water. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0018] Figure 1 A first perspective view of a water treatment component for crayfish farming.

[0019] Figure 2 This is a second perspective view of a water treatment component for crayfish farming.

[0020] Figure 3 This is a schematic diagram of the internal structure of the breeding pond and the storage pond in a water treatment component for crayfish farming.

[0021] Figure 4 This is a breakdown diagram of the internal structure of a treatment component in a crayfish farming water treatment system.

[0022] In the attached diagram: 1. Foundation; 2. Aquaculture pond; 3. Water storage tank; 4. First liquid pump; 5. Second liquid pump; 6. No. 1 pumping pipe; 7. Main water pipe; 8. Branch water pipe; 9. Secondary water pipe; 10. Valve; 11. No. 2 pumping pipe; 12. Water injection pipe; 13. Pipe fixing ring block; 14. Treatment cylinder; 15. Connector; 16. Limiting groove; 17. Limiting rod; 18. Treatment plate; 19. Limiting slider; 20. Filter screen; 21. Filter disc. Detailed Implementation

[0023] The technical solutions of the present utility model will be described below with reference to the accompanying drawings. The described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0024] Example 1

[0025] Please see Figure 1-4 This utility model relates to a water treatment component for crayfish farming, comprising a foundation 1, a treatment component, and a circulation component. A farming pond 2 and a water storage pond 3 are formed on the upper surface of the foundation 1. The circulation component is located on the upper surface of the foundation 1 between the farming pond 2 and the water storage pond 3. The treatment component is located within the water storage pond 3 and includes multiple treatment cylinders 14. Each treatment cylinder 14 has symmetrically formed limiting grooves 16 on its inner wall. Limiting rods 17 are fixedly connected to the bottom of the inner walls of each limiting groove 16. Each treatment cylinder 14 has two treatment plates 18 on its inner wall. Both sides of each treatment plate 18 are provided with limiting sliders 19 corresponding to the limiting grooves 16. Filter screens 20 and filter sheets 21 are respectively provided at the center of the two treatment plates 18. A first liquid pump 4 is installed on the upper surface of the foundation 1 between the breeding pond 2 and the water storage pond 3. A first water pump 4 is provided at the pumping end of the first liquid pump 4. A main water pipe 7 is provided at the outlet end of the first liquid pump 4. A branch water pipe 8 is inserted into the other end of the main water pipe 7. Multiple secondary water pipes 9 are inserted at equal intervals on the side wall of the branch water pipe 8. The other ends of the multiple secondary water pipes 9 extend into multiple treatment cylinders 14 respectively.

[0026] Specifically: The first liquid pump 4 is started to allow the aquaculture water in the aquaculture pond 2 to enter the distribution pipe 8 through the first water pump 6 and the main water pipe 7. The aquaculture water in the distribution pipe 8 is then distributed into multiple treatment cylinders 14 through multiple secondary water pipes 9. The aquaculture water flows through the multiple treatment cylinders 14 in sequence through the filter screen 20 and filter plate 21 in the two treatment plates 18. The filter screen 20 and filter plate 21 can treat the physical and biological factors that cause turbidity in the aquaculture water, respectively, to ensure that the aquaculture water pumped out of the aquaculture pond 2 becomes clean and clear after being treated by the treatment components and enters the water storage tank 3 to wait for the circulation components to work, thus ensuring the safety of the aquaculture water.

[0027] Example 2

[0028] Please see Figure 1-4 Based on Embodiment 1, the circulation assembly includes a second liquid pump 5. A second pumping pipe 11 is installed at the pumping end of the second liquid pump 5, and an injection pipe 12 is installed at the pumping end. The ends of the second pumping pipe 11 and the injection pipe 12, facing away from the second liquid pump 5, extend into the water storage tank 3 and the aquaculture tank 2, respectively. Pipe fixing rings 13 are symmetrically fixed to the side walls of the aquaculture tank 2. The first pumping pipe 6 and the injection pipe 12 are slidably inserted into the centers of the two pipe fixing rings 13. Valves 10 are installed in each of the multiple secondary water pipes 9, and sensors for monitoring water flow velocity can be installed at the lower ends of the multiple treatment cylinders 14. Four connectors 1 are provided on the side walls of each of the multiple treatment cylinders 14. 5. Threaded holes are provided on the side walls of multiple connectors 15, and multiple threaded grooves matching the threaded holes are provided on the inner wall of the water storage tank 3. Connecting bolts are provided between the multiple threaded holes and the matching threaded grooves. Multiple filter screens 20 are all made of polypropylene plastic mesh, and multiple filter sheets 21 can be made of activated carbon cotton blocks or biochemical cotton blocks. The side walls of the two limiting sliders 19 are slidably connected to the inner walls of the corresponding limiting grooves 16. The upper end faces of the two limiting sliders 19 are provided with rod holes matching the limiting rods 17. The two limiting sliders 19 are slidably sleeved on the two limiting rods 17 through the rod holes. The power supply terminals of the first liquid pump 4 and the second liquid pump 5 are electrically connected to an external power source.

[0029] Specifically: By setting up a circulation component, after the water storage tank 3 has accumulated the treated aquaculture water, the second liquid pump 5 can be started, so that its suction end can draw the treated aquaculture water from the water storage tank 3 through the second pumping pipe 11, and then inject it back into the aquaculture tank 2 through the water injection pipe 12 at its outlet end, realizing the recycling of treated aquaculture water and reducing the cost of using aquaculture water; by setting up a pipe fixing ring block 13, the first pumping pipe 6 and the water injection pipe 12 can remain perpendicular in the aquaculture tank 2 and regulate the aquaculture water supply. Water is pumped out to ensure the flow of water in the No. 1 pumping pipe 6 and the water injection pipe 12. Valves 10 and sensors are installed at the lower ends of multiple treatment cylinders 14 to monitor water flow velocity. When the sensor detects a significant difference in the outflow velocity of a particular treatment cylinder 14 compared to the others, it can be determined that a large amount of floating debris has accumulated in the filter screen 20 and filter disc 21 of that treatment cylinder 14. At this point, the valve 10 of the secondary water pipe 9 above that treatment cylinder 14 is manually closed to allow the treatment cylinder to flow smoothly. 14. Remove the floating matter accumulated in the cylinder from the water storage tank 3 and clean it. By setting multiple connectors 15, the treatment cylinder 14 can be manually fixed to the inner wall of the water storage tank 3 by using multiple connecting bolts and threading them into the thread groove from one side of the threaded hole. By setting the filter screen 20 as a polypropylene plastic mesh, polypropylene plastic is inexpensive and lightweight, which can ensure the normal filtration of the filter screen 20 while reducing the cost of use. By setting multiple filter plates 21 as activated carbon cotton blocks or biochemical cotton blocks, multiple filter plates 21 can treat and filter biological factors in aquaculture water. By making the side walls of the two limiting sliders 19 slide and the inner walls of the corresponding limiting grooves 16 respectively, the two treatment plates 18 can be kept horizontal in the treatment cylinder 14 under the action of the limiting sliders 19 and the limiting grooves 16. By making the power supply terminals of the first liquid pump 4 and the second liquid pump 5 electrically connected to the external power supply, the first liquid pump 4 and the second liquid pump 5 can be powered by the external power supply to ensure normal operation.

[0030] The working principle of this utility model is as follows: the first liquid pump 4 is started so that the aquaculture water in the aquaculture pond 2 enters the distribution pipe 8 through the first water pumping pipe 6 and the main water pipe 7. The aquaculture water in the distribution pipe 8 is then distributed into multiple treatment cylinders 14 through multiple secondary water pipes 9. The aquaculture water flows through the filter screen 20 and filter plate 21 in the two treatment plates 18 in sequence. The filter screen 20 and filter plate 21 can treat the physical and biological factors that cause turbidity in the aquaculture water, respectively, to ensure that the aquaculture water after being pumped out of the aquaculture pond 2 becomes clean and clear after being treated by the treatment components and enters the water storage tank 3 to wait for the circulation components to work, thus ensuring the safety of the aquaculture water.

[0031] The preferred embodiments of the present utility model disclosed above are only used to help illustrate the present utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the present utility model to the specific implementation methods described. The present specification selects and specifically describes these embodiments in order to better explain the principle and practical application of the present utility model, so that those skilled in the art can better understand and utilize the present utility model.

Claims

1. A water treatment component for crayfish farming, comprising a foundation (1), a treatment component, and a circulation component, characterized in that: The upper surface of the foundation (1) is provided with a breeding pond (2) and a water storage pond (3). The circulation components are all set on the upper surface of the foundation (1) between the breeding pond (2) and the water storage pond (3). The treatment components are set in the water storage pond (3). The processing assembly includes multiple processing cylinders (14), each of which has a symmetrically formed limiting groove (16) on its inner wall. Each of the multiple limiting grooves (16) has a limiting rod (17) fixedly connected to the bottom of its inner wall. Each of the multiple processing cylinders (14) has two processing plates (18) on its inner wall. Each of the two processing plates (18) has a limiting slider (19) corresponding to the limiting groove (16) on both sides. Each of the two processing plates (18) has a filter screen (20) and a filter sheet (21) respectively at its center. A first liquid pump (4) is installed on the upper surface of the foundation (1) between the breeding pond (2) and the water storage pond (3). A first pump (6) is provided at the pumping end of the first liquid pump (4). A main water pipe (7) is provided at the outlet end of the first liquid pump (4). A branch water pipe (8) is inserted at the other end of the main water pipe (7). Multiple secondary water pipes (9) are inserted at equal intervals on the side wall of the branch water pipe (8). The other ends of the multiple secondary water pipes (9) extend into multiple treatment cylinders (14).

2. The crayfish farming water treatment component according to claim 1, characterized in that: The circulation assembly includes a second liquid pump (5), the pumping end of the second liquid pump (5) is provided with a second pumping pipe (11), the outlet end of the second liquid pump (5) is provided with a water injection pipe (12), and the ends of the second pumping pipe (11) and the water injection pipe (12) opposite to the second liquid pump (5) extend into the water storage tank (3) and the aquaculture tank (2) respectively.

3. The crayfish farming water treatment component according to claim 2, characterized in that: The side wall of the aquaculture pond (2) is symmetrically fixed with pipe fixing ring blocks (13), and the first water pumping pipe (6) and the water injection pipe (12) are respectively slidably inserted into the center of the two pipe fixing ring blocks (13).

4. The crayfish farming water treatment component according to claim 1, characterized in that: Valves (10) are installed in each of the multiple secondary water pipes (9), and sensors for monitoring water flow velocity can be installed at the lower end of each of the multiple treatment cylinders (14).

5. The crayfish farming water treatment component according to claim 1, characterized in that: Each of the multiple processing cylinders (14) has four connecting parts (15) on its sidewalls. Each of the multiple connecting parts (15) has a threaded hole on its sidewall. The inner wall of the water storage tank (3) has multiple threaded grooves that match the threaded holes. Each of the multiple threaded holes and the matching threaded grooves is provided with a connecting bolt.

6. The crayfish farming water treatment component according to claim 1, characterized in that: Each of the multiple filter screens (20) is a polypropylene plastic mesh, and each of the multiple filter sheets (21) can be an activated carbon cotton block or a biochemical cotton block.

7. The crayfish farming water treatment component according to claim 1, characterized in that: The sidewalls of the two limiting sliders (19) are slidably connected to the inner wall of the corresponding limiting groove (16). The upper end face of the two limiting sliders (19) is provided with rod holes that match the limiting rods (17). The two limiting sliders (19) are slidably sleeved on the two limiting rods (17) through the rod holes.

8. The crayfish farming water treatment component according to claim 1, characterized in that: The power supply terminals of the first liquid pump (4) and the second liquid pump (5) are both electrically connected to an external power source.