Pollution discharge device of large conical culture pond

By designing a large conical breeding pool sewage discharge device including slide rails, pulleys and decontamination machines, the huge workload and breeding risks of regular cleaning of breeding pools are solved, and the automated cleaning of breeding pools and the maintenance of a good production environment are achieved.

CN222852973UActive Publication Date: 2025-05-13ZHONGSHAN PIONEER ECOLOGICAL AGRI TECH CO LTD
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Patent Information

Application Number
CN202421906226.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-05-13
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

Existing breeding ponds need to be cleaned regularly, resulting in huge workloads and breeding risks, and bacteria are easily introduced during the cleaning process.

Method used

Design a sewage discharge device for a large conical breeding pool, including a conical breeding pool, an outer sewage discharge pipe, an inner sewage pipe, a slide rail, a pulley, a decontamination machine, a water pipe and a signal line, and automatically cleans up sewage through an automated pulley and a decontamination machine.

Benefits of technology

Automatic and efficient cleaning of breeding ponds has been achieved, manual maintenance costs have been reduced, breeding risks have been reduced, and a good production environment has been maintained.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a pollution discharge device of a large conical culture pond, which relates to the field of fishery equipment and mainly comprises a conical culture pond, an outer pollution discharge pipe, an inner pollution discharge pipe, a slide rail, a pulley, a cleaner, a water pipe and a signal line, the outer pollution discharge pipe is fixed with the bottom of the conical culture pond, the bottom of the inner pollution discharge pipe is arranged at the top of the outer pollution discharge pipe, and the inner pollution discharge pipe can rotate freely; one end of the sliding rail is fixed to the top of the inner blow-off pipe, the other end of the sliding rail is suspended, the pulley is placed on the sliding rail, and the cleaner is placed at the bottom of the conical culture pond and connected with the pulley through a water pipe. According to the utility model, the automation and high efficiency of cleaning are realized, the maintenance cost is reduced, and the workload of operators is saved.
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Description

Technical Field

[0001] The utility model relates to the field of fishery equipment, in particular to a sewage discharge device for a large conical breeding pond. Background Art

[0002] As people's living conditions improve, the demand for aquatic products is getting higher and higher. Due to the increasing demand, using breeding ponds to raise aquatic products has become one of the main ways. In order to maintain a good production environment, breeding ponds need to be cleaned regularly, which will generate a huge workload, and people entering the breeding ponds are prone to introduce pathogens, causing unnecessary breeding risks. Utility Model Content

[0003] In order to solve the problems raised in the above background technology, the purpose of the utility model is to provide a sewage discharge device for a large conical culture pond. Through pre-installed equipment, the culture pond can be cleaned automatically and efficiently, which is clean and sanitary and saves labor maintenance costs.

[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a sewage discharge device for a large conical breeding pond, which is mainly composed of a conical breeding pond, an external sewage pipe, an internal sewage pipe, a slide rail, a pulley, a sewage remover, a water pipe, and a signal line. The external sewage pipe is fixed to the bottom of the conical breeding pond, and the bottom of the internal sewage pipe is placed on the top of the external sewage pipe and can rotate freely; one end of the slide rail is fixed to the top of the internal sewage pipe, and the other end is suspended in the air, the pulley is placed on the slide rail, and the sewage remover is placed at the bottom of the conical breeding pond and connected to the pulley through a water pipe.

[0005] The inner diameter of the bottom of the inner sewage pipe is slightly larger than the outer diameter of the outer sewage pipe, so that the inner sewage pipe can be placed on the outer sewage pipe and can rotate freely.

[0006] The slide rail is composed of a rack rail, a cylindrical rail, a sewage trough, and a brush. The rack rail and the cylindrical rail are located on both sides. The brush is located at the cantilever top of the slide rail and contacts the inner side of the conical breeding pool. The cylindrical rail can provide support for the pulley. The slide rail is inclined at 1.5° with the horizontal plane to facilitate the flow of sewage into the sewage pipe. The brush can clean the inner side of the conical breeding pool.

[0007] The pulley consists of a car body, a sewage suction pump, a battery pack, a motor, a PLC controller, and a driving gear. The car body spans the slide rail, the sewage suction pump is installed on the car body, the water inlet is connected to the water inlet pipe, the water outlet is connected to the water outlet pipe, the battery pack, the motor, and the PLC controller are all installed on the car body, the battery pack provides energy for the entire device, the PLC controller provides program signal processing for the entire device, the driving gear center is connected to the motor, and is meshed with the rack rail, the sewage suction pump transmits electricity and data signals through the pump signal line, and the motor transmits electricity and data signals through the motor signal line.

[0008] The dirt remover is composed of a dirt suction vehicle body, a driving motor, and a brush wheel. The dirt suction vehicle body is connected to a water inlet pipe. The driving motor transmits power and data signals through a driving motor signal line. The brush wheel is installed on the dirt suction vehicle body and fits the bottom of the conical breeding pond. The brush wheel is driven to rotate by the driving motor to clean the sludge at the bottom and drive the dirt remover to move, thereby driving the entire slide rail and the inner sewage pipe to rotate along the outer sewage pipe through the water inlet pipe.

[0009] The water pipe consists of an outlet pipe and an inlet pipe. One end of the outlet pipe is connected to the water outlet of the sewage suction pump, and the other end is placed in the sewage tank. One end of the inlet pipe is connected to the water inlet of the sewage suction pump, and the other end is connected to the sewage remover. A fold is arranged in the middle of the inlet pipe, and the length can be changed freely, so that the sewage remover can be close to the bottom of the conical breeding pond under the action of gravity.

[0010] The signal line consists of a pump signal line, a drive motor signal line, and a motor signal line.

[0011] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0012] 1. The utility model has a simple and reasonable structure. By making the inner diameter of the bottom of the inner sewage pipe slightly larger than the outer diameter of the outer sewage pipe, not only the inner sewage pipe can be fixed, but also the inner sewage pipe can be rotated along the outer sewage pipe.

[0013] 2. The utility model is provided with a rack rail, which can stably move the pulley.

[0014] 3. The utility model sets folds in the middle of the water inlet pipe, which can freely change the length, so that the decontamination machine can be close to the bottom of the conical breeding pond under the action of gravity. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The figure is a schematic diagram of the cross-sectional structure of a sewage discharge device for a large conical aquaculture pond.

[0016] Figure 2 The diagram is a top view of the structure of a sewage discharge device for a large conical aquaculture pond.

[0017] Figure 3 The present invention is a schematic diagram of the connection structure of the inner sewage pipe and the outer sewage pipe of a sewage discharge device of a large conical aquaculture pond.

[0018] Figure 4 It is a schematic diagram of the axial structure of a sewage discharge device for a large conical aquaculture pond.

[0019] In the figure: 1-conical culture pond, 11-external sewage pipe, 2-internal sewage pipe, 3-slide rail, 4-pulley, 5-sewage remover, 6-water pipe, 7-signal line, 31-rack rail, 32-cylindrical rail, 33-sewage trough, 34-brush, 41-car body, 42-sewage suction pump, 43-battery pack, 44-motor, 45-PLC controller, 46-driving gear, 51-sewage suction car body, 52-driving motor, 53-brush wheel, 61-outlet pipe, 62-inlet pipe, 71-pump signal line, 72-drive motor signal line, 73-motor signal line. DETAILED DESCRIPTION

[0020] Example

[0021] Please refer to the figure. In the embodiment of the utility model, a sewage discharge device for a large conical culture pond is mainly composed of a conical culture pond 1, an external sewage pipe 11, an internal sewage pipe 2, a slide rail 3, a pulley 4, a dirt remover 5, a water pipe 6, and a signal line 7. The external sewage pipe 11 is fixed to the bottom of the conical culture pond 1, and the bottom of the internal sewage pipe 2 is placed on the top of the external sewage pipe 11 and can rotate freely; one end of the slide rail 3 is fixed to the top of the internal sewage pipe 2, and the other end is suspended in the air, the pulley 4 is placed on the slide rail 3, and the dirt remover 5 is placed at the bottom of the conical culture pond 1 and connected to the pulley 4 through the water pipe 6.

[0022] The inner diameter of the bottom of the inner sewage pipe 2 is slightly larger than the outer diameter of the outer sewage pipe 11, so that the inner sewage pipe 2 can be placed on the outer sewage pipe 11 and can rotate freely.

[0023] The slide rail 3 is composed of a rack rail 31, a cylindrical rail 32, a sewage trough 33, and a brush 34. The rack rail 31 and the cylindrical rail 32 are located on both sides. The brush 34 is located at the top of the cantilever of the slide rail 3 and contacts the inner side of the conical breeding pond 1. The cylindrical rail 32 can provide support for the pulley 4. The slide rail 3 is inclined at 1.5° with the horizontal plane to facilitate the flow of sewage into the sewage pipe 2.

[0024] The pulley 4 is composed of a car body 41, a sewage suction pump 42, a battery pack 43, a motor 44, a PLC controller 45, and a driving gear 46. The car body 41 spans the slide rail 3, the sewage suction pump 42 is installed on the car body 41, the water inlet position is connected to the water inlet pipe 62, the water outlet position is connected to the water outlet pipe 61, the battery pack 43, the motor 44, and the PLC controller 45 are all installed on the car body 41, the battery pack 43 provides energy for the entire device, the PLC controller 45 provides program signal processing for the entire device, the center of the driving gear 46 is connected to the motor 44, and is meshed with the rack rail 31, the sewage suction pump 42 transmits power and data signals through the pump signal line 71, and the motor 44 transmits power and data signals through the motor signal line 73.

[0025] The dirt remover 5 is composed of a dirt suction vehicle body 51, a driving motor 52, and a brush wheel 53. The dirt suction vehicle body 51 is connected to the water inlet pipe 62. The driving motor 52 transmits power and data signals through the driving motor signal line 72. The brush wheel 53 is installed on the dirt suction vehicle body 51 and fits the bottom of the conical breeding pond 1. The brush wheel 53 is driven to rotate by the driving motor 52 to clean the sludge at the bottom and drive the dirt remover 5 to move, and then drive the entire slide rail 3 and the inner sewage pipe 2 to rotate along the outer sewage pipe 11 through the water inlet pipe 62.

[0026] The water pipe 6 is composed of an outlet pipe 61 and an inlet pipe 62. One end of the outlet pipe 61 is connected to the outlet position of the sewage suction pump 42, and the other end is placed in the sewage tank 33. One end of the inlet pipe 62 is connected to the inlet position of the sewage suction pump 42, and the other end is connected to the sewage remover 5. A fold is arranged in the middle of the inlet pipe 62, and the length can be freely changed, so that the sewage remover 5 can be close to the bottom of the conical culture pond 1 under the action of gravity.

[0027] The signal line 7 is composed of a pump signal line 71 , a drive motor signal line 72 , and a motor signal line 73 .

[0028] Usage process

[0029] When the cone culture pond 1 needs to be cleaned, the device is started, the motor 44 of the pulley 4 drives the driving gear 46 to return to the outermost position, the dirt remover 5 and the sewage suction pump 42 start working, and the brush wheel 53 tends to rotate the entire device. After one rotation, the motor 44 is installed to a set distance, and the driving gear 46 drives the pulley 4 to move a set distance toward the center position along the rack rail 31. After completing one circle, the above process is repeated until the entire bottom is cleaned. During this period, the sewage suction pump 42 continues to work, and the sludge swept out from the bottom is continuously discharged from the cone culture pond 1 through the water inlet pipe 62 and the water outlet pipe 61. After completing the cleaning work, the entire device returns to the initial position.

[0030] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A sewage discharge device for a large conical culture pond, mainly comprising a conical culture pond (1), an external sewage discharge pipe (11), an internal sewage discharge pipe (2), a slide rail (3), a pulley (4), a dirt remover (5), a water pipe (6), and a signal line (7), wherein the external sewage discharge pipe (11) is fixed to the bottom of the conical culture pond (1), and the bottom of the internal sewage discharge pipe (2) is placed on the top of the external sewage discharge pipe (11) and can rotate freely; one end of the slide rail (3) is fixed to the top of the internal sewage discharge pipe (2), and the other end is suspended in the air; the pulley (4) is placed on the slide rail (3); the dirt remover (5) is placed at the bottom of the conical culture pond (1) and connected to the pulley (4) through the water pipe (6).

2. A sewage discharge device for a large conical culture pond according to claim 1, characterized in that: The inner diameter of the bottom of the inner sewage pipe (2) is slightly larger than the outer diameter of the outer sewage pipe (11), so that the inner sewage pipe (2) can be placed on the outer sewage pipe (11) and can rotate freely.

3. The sewage discharge device for a large conical culture pond according to claim 1, characterized in that: The slide rail (3) is composed of a rack rail (31), a cylindrical rail (32), a sewage trough (33), and a brush (34). The rack rail (31) and the cylindrical rail (32) are located on both sides. The brush (34) is located at the top of the cantilever of the slide rail (3) and contacts the inner side of the conical culture pond (1). The cylindrical rail (32) can provide support for the pulley (4). The slide rail (3) is inclined at an angle of 1.5° with the horizontal plane, so that sewage can flow into the sewage pipe (2) conveniently.

4. The sewage discharge device for a large conical culture pond according to claim 1, characterized in that: The pulley (4) is composed of a car body (41), a sewage suction pump (42), a battery pack (43), a motor (44), a PLC controller (45), and a driving gear (46). The car body (41) spans the slide rail (3). The sewage suction pump (42) is installed on the car body (41). The water inlet is connected to the water inlet pipe (62), and the water outlet is connected to the water outlet pipe (61). The battery pack (43), the motor (44), and the PLC controller (45) are all installed on the car body (41). The battery pack (43) provides energy for the entire device. The PLC controller (45) provides program signal processing for the entire device. The center of the driving gear (46) is connected to the motor (44) and meshes with the rack rail (31). The sewage suction pump (42) transmits power and data signals through the pump signal line (71), and the motor (44) transmits power and data signals through the motor signal line (73).

5. The sewage discharge device for a large conical culture pond according to claim 1, characterized in that: The dirt remover (5) is composed of a dirt suction vehicle body (51), a driving motor (52), and a brush wheel (53). The dirt suction vehicle body (51) is connected to a water inlet pipe (62). The driving motor (52) transmits power and data signals through a driving motor signal line (72). The brush wheel (53) is installed on the dirt suction vehicle body (51) and fits the bottom of the conical culture pond (1). The brush wheel (53) is driven to rotate by the driving motor (52) to clean the bottom sludge and drive the dirt remover (5) to move, thereby driving the entire slide rail (3) and the inner sewage pipe (2) to rotate along the outer sewage pipe (11) through the water inlet pipe (62).

6. The sewage discharge device for a large conical culture pond according to claim 1, characterized in that: The water pipe (6) is composed of a water outlet pipe (61) and a water inlet pipe (62). One end of the water outlet pipe (61) is connected to the water outlet of the sewage suction pump (42), and the other end is placed in the sewage trough (33). One end of the water inlet pipe (62) is connected to the water inlet of the sewage suction pump (42), and the other end is connected to the sewage remover (5). The water inlet pipe (62) is provided with folds in the middle, and its length can be freely changed, so that the sewage remover (5) can be close to the bottom of the conical culture pond (1) under the action of gravity.

7. The sewage discharge device for a large conical culture pond according to claim 1, characterized in that: The signal line (7) is composed of a pump signal line (71), a drive motor signal line (72), and a motor signal line (73).