Water body detection device for penaeus vannamei culture

By introducing lifting and cleaning mechanisms into the water body detection device for shrimp farming in South America, the detection probe is automatically cleaned, and the pollution problem of detectors is solved, ensuring the accuracy of detection and avoiding breeding losses.

CN223259712UActive Publication Date: 2025-08-22HAINAN CHANGJIANG MINBEN FISHERY CO LTD
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Patent Information

Application Number
CN202422413069.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-22
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

In the prior art, the detector is easily contaminated by dirty bacteria after being placed in water for a long time, resulting in inaccurate detection values ​​and affecting the health status of shrimp farming in South America.

Method used

A water body detection device for South American shrimp farming is designed, including a lifting mechanism and a cleaning mechanism. The bristles on the cleaning brush are driven by the cylinder to contact the detection probe, and the waterproof motor is used to drive the bristles to rotate and clean the dirty bacteria on the surface of the probe.

Benefits of technology

It realizes automatic cleaning of the detection probe at fixed time intervals to prevent the adhesion of dirty bacteria, ensure the accuracy of the detection value, and avoid unnecessary breeding losses.

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    Figure CN223259712U_ABST
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Abstract

The water body detection device comprises a floating seat, a lifting mechanism is arranged at the lower end of the inner side of a fixing frame, the lifting mechanism comprises an air cylinder fixedly connected to the lower end of the inner side of the fixing frame, the upper end of the air cylinder is fixedly connected with a lifting seat, and a cleaning mechanism is arranged on the lifting seat. The cleaning mechanism comprises a waterproof motor fixedly connected to the middle of the lower end in the lifting base. Compared with the prior art, the device has the advantages that the lower ends of the detection probes can be cleaned at fixed time intervals, the air cylinder drives the bristles on the cleaning brush to make contact with the lower ends of the multiple detection probes during cleaning, then the waterproof motor is started to drive the cleaning brush to rotate, and the lower ends of the detection probes are cleaned through the bristles; the situation that dirt and infectious microbes are attached to the probe, consequently, the numerical value detected by the detector is not accurate, and unnecessary loss is brought to penaeus vannamei breeding is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of aquaculture water body detection, in particular to a water body detection device for aquaculture of South American shrimp. Background Art

[0002] The whiteleg shrimp (Penaeus vannamei), also known as white shrimp or white shrimp, is a species of shrimp in the family Penaeidae, order Decapoda. It has a thin carapace, a light bluish-gray body color, and small spots on its surface. As a highly sought-after, high-yield shrimp species in the aquaculture industry, it boasts high economic and nutritional value and is highly sought after. Its cultivation is now widespread nationwide, with freshwater domestication and cultivation already achieved. It is poised to replace Macrobrachium rosenbergii aquaculture and become a key component of the aquaculture industry. The aquaculture water system is crucial for this, requiring rigorous testing and control to ensure the healthy growth of the shrimp.

[0003] The water body detection technology field described in announcement number CN219016288U, specifically, relates to a water body detection device for prawn aquaculture, comprising a floating plate, a limiting ring is provided at the center of the upper surface of the floating plate, a control box is provided in the middle of the limiting ring, an electric telescopic rod is provided on the upper surface of the control box, a telescopic arm is provided at the end of the electric telescopic rod, and the telescopic arm passes through the limiting ring and the floating plate in sequence, a detector is provided at the end of the telescopic arm, a detection platform is provided above the electric telescopic rod, and a warning light is provided on the top of the detection platform; the water body detection device for prawn aquaculture, the limiting ring is installed on the floating plate, which is convenient for plugging and installing the control box, the cooperation of the electric telescopic rod, with the cooperation of the telescopic arm, adjusts the end detector to move up and down, and detects water bodies of different depths in the aquaculture pond, a warning light is installed on the detection platform, and the detection status is displayed in real time, which is convenient for the user to observe and use in real time, and the lifting rod is used to facilitate manual lifting of the entire device, convenient for moving and carrying, and convenient for carrying and use, but the existing technology still has defects:

[0004] In the prior art, the entire device is placed in the prawn breeding pond that needs to be tested, and the extension or contraction of the telescopic arm on the electric telescopic rod is manually controlled to allow the detector to detect the water conditions at different depths in real time. However, if the detector is left in the water for a long time, dirt and bacteria will adhere to the probe, resulting in inaccurate detection values ​​of the detector, which will affect the normal detection values ​​of the water body, thereby posing a hidden danger to shrimp farming and even unnecessary losses. Utility Model Content

[0005] The technical problem to be solved by the utility model is to overcome the above-mentioned defects and provide a water body detection device for South American shrimp aquaculture.

[0006] In order to solve the above technical problems, the technical solution provided by the present invention is: a water body detection device for South American shrimp farming, comprising:

[0007] A floating seat, wherein a through groove is provided in the middle of the floating seat;

[0008] A control box, wherein the control box is fixedly connected to the middle of the upper end of the floating seat, and the lower end of the control box is inserted into the middle of the through slot;

[0009] A wire pipe, which is plugged into the middle of the lower end of the control box;

[0010] A through hole is provided in the middle of the lower end of the control box to cooperate with the wire tube;

[0011] A sealing plug fixedly connected to the middle of the through hole;

[0012] A fixing frame, the fixing frame being fixedly connected to the lower end of the wire tube;

[0013] Detection probes, a plurality of the detection probes are fixedly inserted in the middle of the fixing frame;

[0014] A lifting mechanism is provided at the inner lower end of the fixing frame, the lifting mechanism comprising a cylinder fixedly connected to the inner lower end of the fixing frame, and the upper end of the cylinder is fixedly connected to a lifting seat;

[0015] A protective mechanism, wherein the protective mechanism is arranged on the fixing frame;

[0016] A cleaning mechanism is provided on a lifting seat, and includes a waterproof motor fixedly connected to the middle of the lower end of the lifting seat, a sealing sleeve is inserted in the middle of the upper end of the lifting seat, the upper end of the waterproof motor is fixedly connected to a connecting shaft, the connecting shaft passes through the middle of the sealing sleeve, the upper end of the connecting shaft is fixedly connected to a cleaning brush, and the upper end of the cleaning brush is provided with a row of several evenly distributed bristles.

[0017] As an improvement, the upper end of the detection probe is fixedly connected to a wire, the wire is arranged inside the wire tube, and the upper end of the wire passes through the sealing plug and is connected to the inside of the control box.

[0018] As an improvement, the interior of the floating seat is a hollow structure.

[0019] As an improvement, the protection mechanism includes:

[0020] A sealing seat, the sealing seat is fixedly connected to the inner lower end of the fixing frame, and the cylinder is arranged inside the sealing seat;

[0021] An elastic telescopic sleeve is fixedly connected between the sealing seat and the lifting seat, and the elastic telescopic sleeve is sleeved on the upper end of the cylinder.

[0022] As an improvement, a connecting line is provided on one side of the upper end of the control box.

[0023] As an improvement, connecting seats are fixedly connected to the middle of both sides of the upper end of the floating seat, and lifting handles are rotatably connected between the connecting seats at both ends.

[0024] The advantage of the present invention over the prior art is that a fixed time interval can be set to clean the lower end of the detection probe in the present invention. During cleaning, the cylinder drives the bristles on the cleaning brush to contact the lower ends of multiple detection probes, and then the waterproof motor is started to drive the cleaning brush to rotate, so that the lower ends of the detection probes are cleaned by the bristles, thereby preventing dirt and bacteria from adhering to the probes, resulting in inaccurate values ​​detected by the detector and causing unnecessary losses to South American shrimp farming. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 The utility model is a structural schematic diagram of a water body detection device for South American shrimp farming.

[0026] Figure 2 yes Figure 1 Enlarged view of area A in the middle.

[0027] Figure 3 The utility model is a right view of a water body detection device for South American shrimp farming.

[0028] Figure 4 yes Figure 3 Schematic diagram of the cross section at AA in the middle.

[0029] Figure 5 yes Figure 4 Enlarged view of area B in the middle.

[0030] As shown in the figure: 1. Floating seat; 2. Through groove; 3. Control box; 4. Wire tube; 5. Through hole; 6. Sealing plug; 7. Fixing bracket; 8. Detection probe; 9. Lifting mechanism; 91. Cylinder; 92. Lifting seat; 10. Protective mechanism; 101. Sealing seat; 102. Elastic telescopic sleeve; 11. Cleaning mechanism; 111. Waterproof motor; 112. Sealing sleeve; 113. Connecting shaft; 114. Cleaning brush; 115. Bristles; 12. Wire; 13. Connecting wire; 14. Connecting seat; 15. Lifting handle. DETAILED DESCRIPTION

[0031] The present invention will be described in further detail below with reference to the accompanying drawings.

[0032] A water body detection device for South American shrimp farming includes a floating seat 1. The floating seat 1 has a hollow structure inside, a through groove 2 is provided in the middle of the floating seat 1, a control box 3 is fixedly connected to the middle of the upper end of the floating seat 1, and a connecting line 13 is provided on one side of the upper end of the control box 3. The connecting line 13 is used to connect to an external terminal device. Connecting seats 14 are fixedly connected to the middle of both sides of the upper end of the floating seat 1, and a lifting handle 15 is rotatably connected between the connecting seats 14 at both ends, so that the device can be easily carried into the South American shrimp farming pond.

[0033] The lower end of the control box 3 is inserted in the middle of the through groove 2, and a wire tube 4 is fixedly inserted in the middle of the lower end of the control box 3. A through hole 5 is opened in the middle of the lower end of the control box 3 for use with the wire tube 4; a sealing plug 6 is fixedly connected to the middle of the through hole 5, and a fixing frame 7 is fixedly connected to the lower end of the wire tube 4. A number of detection probes 8 are inserted in the middle of the fixing frame 7. The various detection probes 8 respectively measure the pH value, dissolved oxygen, ammonia nitrogen, nitrite, total alkalinity, transparency, etc. of the water in the South American shrimp breeding pond. When the multiple detection probes 8 are installed, the lower ends are at the same height for subsequent cleaning. The upper end of the detection probe 8 is fixedly connected to a wire 12, which is arranged inside the wire tube 4. The upper end of the wire 12 passes through the sealing plug 6 and is connected to the inside of the control box 3. A main controller is provided in the control box 3, and the wire 12 is electrically connected to the main controller for power supply and signal transmission. The detection probe 8 transmits the detection data to the main controller in the control box 3 through the wire 12 for processing.

[0034] A lifting mechanism 9 is provided at the lower inner end of the fixed frame 7, and the lifting mechanism 9 includes a cylinder 91 fixedly connected to the lower inner end of the fixed frame 7, and a lifting seat 92 is fixedly connected to the upper end of the cylinder 91. A protective mechanism 10 is provided on the fixed frame 7, and the protective mechanism 10 includes a sealing seat 101 and an elastic telescopic sleeve 102. The sealing seat 101 is fixedly connected to the lower inner end of the fixed frame 7, and the cylinder 91 is arranged inside the sealing seat 101. The elastic telescopic sleeve 102 is fixedly connected between the sealing seat 101 and the lifting seat 92, and the elastic telescopic sleeve 102 is sleeved on the upper end of the cylinder 91. When the cylinder 91 is extended and retracted to drive the lifting seat 92 to rise and fall, the elastic telescopic sleeve 102 follows the extension and retraction. The sealing seat 101 and the elastic telescopic sleeve 102 seal the cylinder 91 for waterproofing, and the connecting wires of the cylinder 91 are also sealed at the position where they are plugged into the sealing seat 101.

[0035] A cleaning mechanism 11 is provided on the lifting seat 92. The cleaning mechanism 11 includes a waterproof motor 111 fixedly connected to the middle of the lower end of the lifting seat 92. A sealing sleeve 112 is inserted in the middle of the upper end of the lifting seat 92. The upper end of the waterproof motor 111 is fixedly connected to a connecting shaft 113. The connecting shaft 113 passes through the middle of the sealing sleeve 112. The upper end of the connecting shaft 113 is fixedly connected to a cleaning brush 114. A row of several evenly distributed bristles 115 are provided on the upper end of the cleaning brush 114. The cylinder 91 drives the bristles 115 on the cleaning brush 114 to contact the lower ends of multiple detection probes 8, and then starts the waterproof motor 111 to drive the cleaning brush 114 to rotate. The lower end of the detection probe 8 is cleaned by the bristles 115 to prevent dirt and bacteria from adhering to the probe, resulting in inaccurate values ​​detected by the detector, which brings unnecessary losses to South American shrimp farming.

[0036] The bristles 115 are a single row of soft bristles, and external impurities and bacteria are not easy to adhere to them and are difficult to fall off, affecting the cleaning of the detection probe 8. The soft bristles will not cause damage to the detection probe 8.

[0037] When the utility model is implemented, Figure 1-5 As shown, when in use, the handle 15 is pulled to facilitate the portable placement of the device into the South American shrimp breeding pond, and the device is placed in the breeding water. Multiple detection probes 8 respectively measure the pH value, dissolved oxygen, ammonia nitrogen, nitrite, total alkalinity, transparency, etc. of the water in the South American shrimp breeding pond. The detection probe 8 transmits the detection data to the main controller in the control box 3 through the wire 12 for processing. The main controller transmits the detection results to the external terminal device through the connecting line 13 for display, which is convenient for the operator to view the detection structure.

[0038] The lower end of the detection probe 8 is cleaned at a fixed time interval. During cleaning, the cylinder 91 drives the bristles 115 on the cleaning brush 114 to contact the lower ends of multiple detection probes 8, and then the waterproof motor 111 is started to drive the cleaning brush 114 to rotate. The bristles 115 are used to clean the lower end of the detection probe 8 to prevent dirt and bacteria from adhering to the probe, resulting in inaccurate values ​​detected by the detector and causing unnecessary losses to South American shrimp farming.

[0039] The electrical components and main controller appearing in this article can be conventional known devices that can be used for control of computers, etc. The specific implementation methods disclosed in this disclosure omit the detailed description of known functions and known components. To ensure the compatibility of the equipment, the operating methods used are consistent with the parameters of marketed equipment.

[0040] The above description of the present invention and its embodiments is non-limiting. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if a person skilled in the art is inspired by the above, and does not deviate from the purpose of the present invention, without inventive design, a structure and embodiment similar to the technical solution should fall within the scope of protection of the present invention.

[0041] The information disclosed in this background technology section is only intended to enhance understanding of the overall background of the invention and should not be regarded as an admission or any form of suggestion that the information constitutes the prior art already known to a person skilled in the art.

Claims

1. A water body detection device for South American shrimp farming, characterized in that: include: A floating seat (1), wherein a through groove (2) is provided in the middle of the floating seat (1); A control box (3), wherein the control box (3) is fixedly connected to the middle of the upper end of the floating seat (1), and the lower end of the control box (3) is inserted into the middle of the through groove (2); A wire tube (4), wherein the wire tube (4) is plugged into the middle of the lower end of the control box (3); A through hole (5), the through hole (5) is provided in the middle of the lower end of the control box (3) and is used in conjunction with the wire tube (4); A sealing plug (6), wherein the sealing plug (6) is fixedly connected to the middle of the through hole (5); A fixing frame (7), wherein the fixing frame (7) is fixedly connected to the lower end of the wire tube (4); Detection probes (8), wherein a plurality of the detection probes (8) are fixedly inserted in the middle of the fixing frame (7); A lifting mechanism (9), the lifting mechanism (9) is arranged at the lower end of the inner side of the fixed frame (7), the lifting mechanism (9) comprises a cylinder (91) fixedly connected to the lower end of the inner side of the fixed frame (7), and the upper end of the cylinder (91) is fixedly connected to a lifting seat (92); A protective mechanism (10), wherein the protective mechanism (10) is arranged on the fixing frame (7); A cleaning mechanism (11) is provided on a lifting seat (92), comprising a waterproof motor (111) fixedly connected to the middle of the lower end of the lifting seat (92), a sealing sleeve (112) inserted in the middle of the upper end of the lifting seat (92), a connecting shaft (113) fixedly connected to the upper end of the waterproof motor (111), the connecting shaft (113) passing through the middle of the sealing sleeve (112), a cleaning brush (114) fixedly connected to the upper end of the connecting shaft (113), and a row of a plurality of evenly distributed bristles (115) provided on the upper end of the cleaning brush (114).

2. The water detection device for South American shrimp farming according to claim 1, characterized in that: The upper end of the detection probe (8) is fixedly connected to a wire (12), the wire (12) is arranged inside the wire tube (4), and the upper end of the wire (12) passes through the sealing plug (6) and is connected to the inside of the control box (3).

3. The water detection device for South American shrimp farming according to claim 1, characterized in that: The interior of the floating seat (1) is a hollow structure.

4. The water detection device for South American shrimp farming according to claim 1, characterized in that: The protection mechanism (10) comprises: A sealing seat (101), wherein the sealing seat (101) is fixedly connected to the inner lower end of the fixing frame (7), and the cylinder (91) is arranged inside the sealing seat (101); An elastic telescopic sleeve (102) is fixedly connected between the sealing seat (101) and the lifting seat (92), and the elastic telescopic sleeve (102) is sleeved on the upper end of the cylinder (91).

5. The water detection device for South American shrimp farming according to claim 1, characterized in that: A connecting line (13) is provided on one side of the upper end of the control box (3).

6. The water detection device for South American shrimp farming according to claim 1, characterized in that: Connecting seats (14) are fixedly connected to the middle of both sides of the upper end of the floating seat (1), and lifting handles (15) are rotatably connected between the connecting seats (14) at both ends.

Citation Information

Patent Citations

  • Water body detection device for culture of Rogowski shrimps

    CN219016288U