Fishing-light complementary low-carbon smart fishing ground
By combining photovoltaic modules and sewage treatment systems in offshore fish farms, the problem of insufficient energy supply has been solved, self-sufficient clean energy supply and carbon emissions have been reduced, and the stability of the fish farms and the cleanliness of the water have been improved.
Patent Information
- Application Number
- CN202422855878.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Existing offshore fisheries have insufficient energy supply when in use, requiring staff to configure additional energy equipment on the sea surface, increasing maintenance costs and leading to carbon emissions.
It adopts a fish-photovoltaic complementary design, uses photovoltaic panels to convert solar energy into electricity, and stores the electricity through inverters and batteries. At the same time, sewage discharge components are set up to collect aquaculture waste to reduce pollution and carbon emissions.
It achieves self-sufficient clean energy supply, reduces dependence on traditional energy and carbon emissions, improves the stability and operating efficiency of the device, and ensures the sustainable development of the water body.
Smart Images

Figure CN223349380U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fish farms, and more specifically, relates to a low-carbon smart fish farm with complementary fish and light. Background Art
[0002] With the increasing demand for aquatic products, people have set up artificial fish farms. These fish farms are areas specially set up, managed and controlled for breeding aquatic animals such as fish and shellfish. Through artificial fish farms, various aquatic products can be provided more efficiently to meet market demand and ensure good quality and sustainable production.
[0003] A further search revealed that the Chinese utility model patent with patent application number CN202323087034.2 provides an intelligent offshore fishery. During use, the movement of the slider can drive the movement of other components. These movements will trigger the control panel to send a signal, thereby causing the drainage buoy to raise the main frame. At the same time, the rise of the main frame can be further controlled by the draft monitoring mechanism. This allows the device to prevent the control console on the fishery from being eroded by seawater, thereby increasing the service life of the fishery and reducing the maintenance cost of the fishery. However, the intelligent offshore fishery may face the problem of insufficient energy supply during operation, and staff are required to configure additional energy equipment on the sea surface to solve this problem. Utility Model Content
[0004] In order to solve the above technical problems, the utility model provides a low-carbon smart fishery with fish-light complementarity to solve the technical problem in the existing technology that the existing offshore fisheries are not adequately supplied with energy during use and require staff to carry out additional energy configuration on the sea surface, which increases the maintenance cost of the equipment and increases carbon emissions.
[0005] The purpose and efficacy of the low-carbon smart fish farm with fish-light complementarity in this utility model are achieved by the following specific technical means:
[0006] A low-carbon smart fishery with complementary fish and photovoltaic systems includes a main frame, an assembly frame is provided on the main frame, and multiple groups of positioning columns are evenly provided on the main frame. Positioning seats are provided at the bottom end of the assembly frame corresponding to the multiple groups of positioning columns, and the multiple groups of positioning seats are respectively provided on the multiple groups of positioning columns. A photovoltaic component is also provided on the top of the assembly frame; a card slot is also provided on the inner side surface of the main frame, and a barrier net is detachably provided in the card slot, and the barrier net is connected to a sewage discharge component.
[0007] The above technical solution further includes that the photovoltaic assembly includes a distribution box, and an assembly table is provided at one end of the assembly rack away from the main frame. The distribution box is provided on the assembly table, and an inverter and multiple groups of batteries are also provided in the distribution box, and the inverter is electrically connected to the multiple groups of batteries.
[0008] The above technical solution further includes that a plurality of groups of first mounting seats are evenly arranged on the assembly table, photovoltaic panels are arranged in the plurality of groups of first mounting seats, and the plurality of groups of photovoltaic panels are electrically connected to the inverter.
[0009] The above technical solution further includes that a second mounting seat is provided at one end of the assembly table away from the main frame, one end of the connecting rod is rotatably provided in the second mounting seat, and a counterweight ball is provided at the other end of the connecting rod.
[0010] The above technical solution further includes that the sewage discharge component includes a sewage pump, and a first sewage discharge outlet is also opened at the bottom of the barrier net, and one end of the sewage pump is connected to the first sewage discharge outlet.
[0011] The above technical solution further includes that a sewage tank is provided on one side of the main frame, a water inlet is provided at the bottom of the sewage tank, and the other end of the sewage pump is connected to the water inlet through a sewage pipe; a second sewage outlet is also provided on the other side of the sewage tank.
[0012] The above technical solution further includes that a plurality of groups of floating plates are evenly and sequentially arranged in a ring shape on the circumference of the main frame, and a plurality of groups of suspension balls are fixedly connected to the bottom of the main frame.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] 1. Solar energy can be converted into electrical energy through multiple photovoltaic panels in the photovoltaic module. Because the multiple photovoltaic panels are electrically connected to the inverter, the electricity generated by the multiple photovoltaic panels can be stored in the battery through the inverter, which makes the device self-sufficient and avoids wasting other energy. The setting of the sewage discharge component can collect waste such as animal feces generated during breeding, thereby reducing pollution to the surrounding water bodies, thereby achieving the goal of reducing carbon emissions, allowing the water bodies to be sustainably developed, and further increasing the practicality of the device.
[0015] 2. The main frame is also equipped with floating plates and suspension balls, which provide the device with the necessary buoyancy to maintain a stable floating state in the water. The design of the floating plates and suspension balls effectively reduces the device's weight in water while providing sufficient buoyancy to ensure that the device does not sink or tilt in the water. In addition, the counterweight ball installed in the assembly table is located at the center of the device, effectively balancing the device's center of gravity and increasing its stability, providing a key guarantee for its stable operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic structural diagram of the utility model after assembly.
[0017] Figure 2 It is a schematic diagram of the structure of the utility model after being disassembled.
[0018] Figure 3 yes Figure 2 Schematic diagram of the enlarged structure of area a.
[0019] Figure 4 It is a structural diagram of the main frame of the utility model.
[0020] Figure 5 It is a structural schematic diagram of the assembly rack of the utility model.
[0021] In the figure, the corresponding relationship between the component names and the drawing numbers is as follows:
[0022] 1. Main frame; 2. Assembly frame; 3. Barrier net; 4. Distribution box; 5. Sewage pump; 101. Positioning column; 102. Positioning seat; 103. Card slot; 201. Assembly table; 202. Inverter; 203. Battery; 301. First mounting seat; 302. Photovoltaic panel; 401. Second mounting seat; 402. Connecting rod; 403. Counterweight ball; 501. First sewage outlet; 601. Sewage tank; 602. Water inlet; 603. Sewage pipe; 604. Second sewage outlet; 701. Float; 702. Suspended ball. DETAILED DESCRIPTION
[0023] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following embodiments are used to illustrate the technical solution of the present invention, but are not intended to limit the scope of protection of the present invention.
[0024] Example:
[0025] like Figures 1 to 5As shown, the utility model provides a low-carbon smart fish farm with complementary fish and photovoltaic. An assembly rack 2 is provided on the main frame 1. A plurality of groups of positioning columns 101 are evenly provided on the main frame 1. Positioning seats 102 are provided at the bottom end of the assembly rack 2 corresponding to the plurality of groups of positioning columns 101. The plurality of groups of positioning seats 102 are respectively provided on the plurality of groups of positioning columns 101. Photovoltaic components are also provided on the top of the assembly rack 2. A card slot 103 is also provided on the inner side surface of the main frame 1. A barrier net 3 is detachably provided in the card slot 103. The barrier net 3 is connected to the sewage discharge component. The assembly rack 2 enables the photovoltaic components to efficiently utilize the space of the main frame 1, which not only provides a stable support structure, but also maximizes the utilization of photovoltaic components. It saves space resources; the arrangement of multiple groups of positioning columns 101 and positioning seats 102 enables the assembly rack 2 to be firmly fixed on the main frame 1, ensuring the stability of the entire system. At the same time, a detachable barrier net 3 is arranged in the slot 103, which is convenient for maintenance and cleaning, and is connected to the sewage discharge component to effectively collect aquaculture waste and keep the water clean. By arranging the assembly rack 2 and photovoltaic components on the main frame 1, the complementary use of fishery and solar power generation systems is achieved. The photovoltaic components can convert solar energy into electrical energy, provide clean and renewable energy for the fishery, reduce dependence on traditional energy, and also reduce carbon emissions, thereby achieving the goal of low-carbon intelligence.
[0026] like Figures 1 to 3 As shown, multiple groups of floating plates 701 are evenly arranged in a circular shape around the circumference of the main frame 1, and multiple groups of suspended balls 702 are fixedly connected to the bottom of the main frame 1; the floating plates 701 and suspended balls 702 arranged on the main frame 1 have the function of providing rising buoyancy, so that the device can maintain a stable floating state in the water, which effectively reduces the weight of the device in the water and provides it with sufficient buoyancy support to ensure that the device will not sink or tilt; at the same time, the multiple groups of floating plates 701 also provide a relatively stable foothold for the staff, so that the staff can conveniently carry out maintenance or monitoring of the device, thereby increasing the practicality of the device.
[0027] like Figure 2 and Figure 5As shown, the photovoltaic module includes a distribution box 4. An assembly platform 201 is further provided at one end of the assembly rack 2 away from the main frame 1. The distribution box 4 is provided on the assembly platform 201. The distribution box 4 is further provided with an inverter 202 and a plurality of battery groups 203. The inverter 202 and the plurality of battery groups 203 are electrically connected. The assembly platform 201 is also evenly provided with a plurality of first mounting seats 301. The plurality of first mounting seats 301 are each provided with a photovoltaic panel 302. The plurality of photovoltaic panels 302 are electrically connected to the inverter 202. By providing the assembly rack 2, the assembly platform 201, and the two sets of mounting seats, the installation process of the photovoltaic module becomes more convenient and efficient, which helps to reduce labor and time costs and increase installation speed. It also facilitates future maintenance and replacement of the photovoltaic module, allowing operators to complete installation tasks more easily and reducing possible errors and delays.
[0028] The distribution box 4 is placed on the assembly table 201. The distribution box 4 is additionally provided with a storage cavity inside. The storage cavity contains an inverter 202 and multiple groups of batteries 203. The inverter 202 can be of the Mercer PH1000 PRO series. Multiple groups of photovoltaic panels 302 connected in parallel are connected to the inverter 202 in the distribution box 4, and the inverter 202 is connected to multiple groups of batteries 203. This helps to more effectively manage and monitor the electrical system of the photovoltaic module, and is beneficial for operators to monitor and control the photovoltaic module system. Through this layout, the electrical connection and debugging of the photovoltaic panels 302 can be achieved more conveniently, thereby improving the reliability and stability of the system. At the same time, the photovoltaic panels 302 can also convert solar energy into electrical energy. Because multiple groups of photovoltaic panels 302 are connected in parallel and are electrically connected to the inverter 202 provided in the distribution box 4, the electrical energy generated by the multiple groups of photovoltaic panels 302 can be stored in the battery 203 after being transformed by the inverter 202. This is a renewable energy source. Compared with traditional fossil energy, the use of photovoltaic panels 302 is more environmentally friendly, reduces greenhouse gas emissions and resource consumption, and thus increases the practicality of the device.
[0029] A second mounting seat 401 is also provided at the end of the assembly table 201 away from the main frame 1, and one end of the connecting rod 402 is rotatably set in the second mounting seat 401, and a counterweight ball 403 is also provided at the other end of the connecting rod 402; through the connecting rod 402 and the counterweight ball 403, additional weight can be added to the end of the assembly table 201 away from the main frame 1, thereby improving the stability of the entire system. The presence of the counterweight ball 403 can balance the center of gravity of the system, and in turn ensure the central balance point of the device in the water area, prevent the system from tilting or instability, and ensure the stable operation of the device in the water; and the connecting rod 402 can be rotatably set in the second mounting seat 401, which allows the counterweight ball 403 to be adjusted or replaced as needed, which is convenient for maintenance and operation.
[0030] like Figure 1 、 Figure 2 and Figure 4 As shown, the sewage discharge assembly includes a sewage pump 5. A first sewage outlet 501 is also provided at the bottom of the barrier net 3, with one end of the sewage pump 5 connected to the first sewage outlet 501. A sewage tank 601 is also provided on one side of the main frame 1. A water inlet 602 is provided at the bottom of the sewage tank 601, and the other end of the sewage pump 5 is connected to the water inlet 602 via a sewage pipe 603. A second sewage outlet 604 is also provided on the other side of the sewage tank 601. By providing the first sewage outlet 501 and the second sewage outlet 604, and connecting the sewage pump 5 and the water inlet 602, the sewage discharge and treatment system is conveniently achieved. This layout of the sewage discharge assembly allows sewage to be quickly and efficiently pumped away and discharged smoothly, ensuring the hygienic and smooth operation of the system. At the same time, it also allows waste to be quickly removed after it is generated, avoiding problems that may cause water pollution and improving the operating efficiency and stability of the entire system. In addition, the connection method between the sewage pump 5 and the water inlet 602 also helps to accurately control the flow direction and treatment process of the waste, providing a more convenient and reliable method for waste treatment.
[0031] The specific usage and function of this embodiment are as follows:
[0032] During use, the user can place the device directly in the water and place a fishing net over the main frame 1 for operation. Workers can stand on a floating plate 701 connected to the main frame 1 to operate the device. This not only provides sufficient buoyancy but also provides the operator with a wide operating space, improving operational convenience. The photovoltaic panels 302 in the photovoltaic module absorb solar energy and convert it into electricity, which is then transmitted to the multiple battery packs 203 in the distribution box 4. This achieves self-sufficiency in clean energy and avoids the pollution and carbon emissions caused by traditional diesel generators. The barrier net 3 and the connected sewage assembly installed in the main frame 1 effectively collect waste generated during the aquaculture process. The barrier net 3 is located at the bottom of the main frame 1, and the waste will settle into it and enter the sewage assembly through the first sewage outlet 501. Workers simply need to start the sewage pump 5 to pump out the waste and store it in the sewage tank 601, and then discharge it through the second sewage outlet 604. Regular cleaning of the sewage tank 601 can reduce water pollution and ensure its sustainable development.
[0033] The above description is merely an embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A low-carbon smart fishery with fish-light complementarity, comprising a main frame (1), characterized in that: An assembly rack (2) is provided on the main frame (1), and a plurality of groups of positioning columns (101) are evenly provided on the main frame (1). Positioning seats (102) are provided at the bottom end of the assembly rack (2) corresponding to the plurality of groups of positioning columns (101), and the plurality of groups of positioning seats (102) are respectively provided on the plurality of groups of positioning columns (101). A photovoltaic component is also provided at the top end of the assembly rack (2); a card slot (103) is also provided on the inner side surface of the main frame (1), and a barrier net (3) is detachably provided in the card slot (103), and the barrier net (3) is connected to the sewage discharge component.
2. The low-carbon smart fishery with fish-solar complementarity according to claim 1, characterized in that: The photovoltaic assembly includes a distribution box (4); an assembly platform (201) is further provided at one end of the assembly rack (2) away from the main frame (1); the distribution box (4) is arranged on the assembly platform (201); an inverter (202) and multiple groups of storage batteries (203) are further provided in the distribution box (4); the inverter (202) and the multiple groups of storage batteries (203) are electrically connected.
3. The low-carbon smart fishery with fish-solar complementarity according to claim 2, characterized in that: Multiple groups of first mounting seats (301) are evenly arranged on the assembly platform (201), and photovoltaic panels (302) are arranged in the multiple groups of first mounting seats (301). The multiple groups of photovoltaic panels (302) are electrically connected to the inverter (202).
4. The low-carbon smart fishery with fish-solar complementarity according to claim 3 is characterized by: A second mounting seat (401) is further provided at one end of the assembly platform (201) away from the main frame (1); one end of a connecting rod (402) is rotatably arranged in the second mounting seat (401); and a counterweight ball (403) is further provided at the other end of the connecting rod (402).
5. The low-carbon smart fishery with fish-solar complementarity according to claim 1 is characterized by: The sewage discharge assembly includes a sewage pump (5), and a first sewage discharge outlet (501) is provided at the bottom of the barrier net (3). One end of the sewage pump (5) is connected to the first sewage discharge outlet (501).
6. The low-carbon smart fishery with fish-solar complementarity according to claim 5, characterized in that: A sewage tank (601) is further provided on one side of the main frame (1), a water inlet (602) is provided at the bottom of the sewage tank (601), and the other end of the sewage pump (5) is connected to the water inlet (602) via a sewage pipe (603); a second sewage outlet (604) is further provided on the other side of the sewage tank (601).
7. The low-carbon smart fishery with fish-solar complementarity according to claim 1 is characterized by: The circumference of the main frame (1) is also provided with multiple groups of floating plates (701) in a circular shape and in sequence and uniformly, and the bottom of the main frame (1) is also fixedly connected with multiple groups of suspension balls (702).
Citation Information
Patent Citations
Marine intelligent fishing ground
CN221152527U