Liftable culture net cage structure

CN224267861UActive Publication Date: 2026-05-26QIHANG CHUANGZHI (QINGDAO) OFFSHORE EQUIP TECH CO LTD
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Patent Information

Application Number
CN202521123039.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-04
Publication Date
2026-05-26
Estimated Expiration
2035-06-04

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Abstract

The utility model discloses a liftable culture net cage structure, and relates to the technical field of culture net cage structures, the liftable culture net cage structure comprises a pedal body, a pedal stand column and a stand column protective guard, the pedal stand column is arranged at one end of the pedal body, the pedal stand column is symmetrically distributed at the top end of the pedal body, and one side of the pedal stand column is connected with the stand column protective guard. A first round rod is arranged at the bottom end of the pedal body, first supporting rods are arranged at the two ends of the first round rod, and a pedal supporting plate connected with the pedal body is arranged at the end, away from the first round rod, of one first supporting rod. When the aquaculture net cage structure is used, the multiple vertical stand pipes are used as the ballast tank stand columns, the lifting process of the aquaculture cage is controlled by designing the upper air inlet and outlet opening and the lower water inlet and outlet opening, the multiple ballast tank stand columns are communicated into a whole, air inlet and outlet and water inlet and outlet can be conducted at the same time, and stability is guaranteed; meanwhile, the pedal body and the stand column protective guard are arranged on the upper portion, and operation convenience and safety are guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of aquaculture cage structure technology, specifically a liftable aquaculture cage structure. Background Technology

[0002] Aquaculture cages play a crucial role in modern aquaculture. By fixing the netting with frames and buoyancy systems, they create controllable aquaculture waters, resist the impact of wind and waves, and are equipped with water quality monitoring and water circulation systems to regulate water temperature, dissolved oxygen, and other parameters in real time, thereby improving fish survival rates. As a result, aquaculture cages are commonly used in aquaculture.

[0003] Most aquaculture cage structures are inefficient and inconvenient to use because they are currently raised and lowered by using horizontal floating pipes for air inflation and drainage. However, this method is unstable, prone to tilting, and suffers from insufficient air release and obstructed descent. Utility Model Content

[0004] The purpose of this utility model is to provide a height-adjustable aquaculture cage structure to solve the problem of inconvenience in using the aquaculture cage structure mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a liftable aquaculture cage structure, including a pedal body, pedal posts, and post guardrails. One end of the pedal body is provided with a pedal post, and the pedal posts are symmetrically distributed at the top of the pedal body. One side of the pedal post is connected to a post guardrail. The bottom end of the pedal body is provided with a first round rod, and both ends of the first round rod are provided with first support rods. One end of the first support rod away from the first round rod is provided with a pedal support plate connected to the pedal body.

[0006] Preferably, one end of the first support rod is connected to a first support ring, and the first support rings are evenly distributed on the surface of the first round rod.

[0007] Preferably, the first support ring, the first round rod, and the first support rod form a cross-shaped support.

[0008] Preferably, a ballast tank column is provided at the end of the first support ring away from the first round rod, and the ballast tank columns are evenly distributed at the bottom end of the first round rod.

[0009] Preferably, a second round rod is provided at the end of the ballast tank column away from the first round rod, a second support rod is provided at the end of the second round rod close to the ballast tank column, and a support leg is provided at the end of the second support rod away from the ballast tank column.

[0010] Preferably, a second support ring is connected between the support leg and the second support rod, a reinforcing seat is provided at the bottom end of the support leg, a cross is provided on one side of the second round rod, one end of the ballast tank column is provided with evenly distributed air inlet and outlet ports, and the side of the ballast tank column away from the air inlet and outlet ports is provided with evenly distributed water inlet and outlet ports.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: This liftable aquaculture cage structure utilizes multiple vertical pipes as ballast tank columns during use. The lifting and lowering process of the aquaculture cage is controlled by the design of upper air inlet / outlet and lower water inlet / outlet. Multiple ballast tank columns are connected as one unit, allowing for simultaneous air intake / exhaust and drainage, ensuring stability. A footboard and column guardrail are installed at the top for convenient and safe operation. A cross support frame connected to a first round rod and a first support ring is installed below the footboard, with internal weight-increasing features. Combined with the buoyancy adjustment of the ballast tank columns, this maintains the lifting and suspending of the aquaculture cage structure, making the lifting process stable and controllable. It can descend to a certain depth or sit on the bottom to avoid the impact of severe weather on the aquaculture cage and aquaculture organisms, and can also float to the surface for maintenance and cleaning of the cage and netting, optimizing the aquaculture method and increasing yield and efficiency. Attached Figure Description

[0012] Figure 1 This is a front-view three-dimensional structural schematic diagram of the present invention;

[0013] Figure 2 This is a three-dimensional structural diagram of the present invention viewed from below;

[0014] Figure 3 This is a three-dimensional structural diagram of the pedal body of this utility model;

[0015] Figure 4 This is a three-dimensional structural diagram of the first round rod and the first support ring of this utility model.

[0016] In the diagram: 1. Pedal body; 2. Pedal column; 3. Column guardrail; 4. First round rod; 5. First support rod; 6. Pedal support plate; 7. First support ring; 8. Ballast tank column; 9. Second round rod; 10. Second support rod; 11. Support leg; 12. Second support ring; 13. Reinforcing seat. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0018] Please see Figures 1-4 This utility model provides a technical solution: a height-adjustable aquaculture cage structure, including a pedal body 1, a pedal column 2, and a column guardrail 3. The pedal column 2 is provided at one end of the pedal body 1, and the pedal columns 2 are symmetrically distributed at the top of the pedal body 1. The column guardrail 3 is connected to one side of the pedal column 2. The bottom end of the pedal body 1 is provided with a first round rod 4. Both ends of the first round rod 4 are provided with first support rods 5. The end of one first support rod 5 away from the first round rod 4 is provided with a pedal support plate 6 connected to the pedal body 1.

[0019] This type of liftable aquaculture cage structure, through the setting of the pedal body 1, can form a pedal channel, thereby ensuring the convenience of operation. At the same time, the setting of the upright guardrail 3 can provide a good protective effect.

[0020] exist Figure 1 and Figure 2 In the first support rod 5, one end is connected to a first support ring 7, and the first support ring 7 is evenly distributed on the surface of the first round rod 4. The first support ring 7, the first round rod 4, and the first support rod 5 form a cross support shape.

[0021] This type of liftable aquaculture cage structure, through the cross support frame formed by the first support ring 7, the first round rod 4 and the first support rod 5, makes it more stable during use.

[0022] exist Figure 2 and Figure 3 In the first support ring 7, a ballast tank column 8 is provided at the end away from the first round rod 4. The ballast tank columns 8 are evenly distributed at the bottom end of the first round rod 4. A second round rod 9 is provided at the end of the ballast tank column 8 away from the first round rod 4. A second support rod 10 is provided at the end of the second round rod 9 close to the ballast tank column 8. A support leg 11 is provided at the end of the second support rod 10 away from the ballast tank column 8.

[0023] This type of liftable aquaculture cage structure, through the setting of support legs 11, can have a good stability effect during use.

[0024] exist Figure 2 and Figure 3In the middle, a second support ring 12 is connected between the support leg 11 and the second support rod 10. A reinforcing seat 13 is provided at the bottom end of the support leg 11. A cross 14 is provided on one side of the second round rod 9. One end of the ballast tank column 8 is provided with evenly distributed air inlet and outlet ports 15. The side of the ballast tank column 8 away from the air inlet and outlet ports 15 is provided with evenly distributed water inlet and outlet ports 16.

[0025] This type of liftable aquaculture cage structure improves the support effect of the support legs 11 by setting the reinforcing seat 13. At the same time, the cross 14 set on one side of the second round rod 9 forms a cross support structure that can support the cage and prevent the cage from dragging and wearing out. The air inlet and outlet 15 and the water inlet and outlet 16 are set to control the lifting process of the aquaculture cage. Furthermore, the multiple ballast tank columns 8 are connected as one unit, and air inlet and outlet and water inlet and outlet can be carried out simultaneously to ensure stability.

[0026] When the aquaculture cage structure is in use, multiple vertical risers serve as ballast tank columns 8. The lifting and lowering process of the aquaculture cage is controlled by the design of upper air inlet and lower water inlet and outlet. The multiple ballast tank columns 8 are connected as one unit, and air inlet and air outlet and water inlet and outlet can be carried out simultaneously to ensure stability. At the same time, a footboard body 1 and column guardrail 3 are set at the top to ensure convenient and safe operation. At the same time, a cross support frame connected to the first round rod 4 and the first support ring 7 is set below the footboard body 1, and weight is added inside. In conjunction with the buoyancy adjustment of the ballast tank columns 8, the lifting and lowering of the aquaculture cage structure is maintained, making the lifting process stable and controllable. It can descend to a certain depth or sit on the bottom to avoid the impact of bad weather on the aquaculture cage and aquaculture organisms, and it can also float the aquaculture cage to the surface for maintenance and cleaning of the aquaculture cage and netting, optimizing the aquaculture method and improving yield and efficiency.

[0027] In summary, aquaculture cage structures play a crucial role in modern aquaculture. By securing the netting with a frame and buoyancy system, a controllable aquaculture area is formed, resisting the impact of wind and waves. When the aquaculture cage structure is in use, multiple vertical risers serve as ballast tank columns 8. The lifting and lowering process of the aquaculture cage is controlled by the design of upper air inlet / outlet and lower water inlet / outlet. Multiple ballast tank columns 8 are connected as one unit, allowing for simultaneous air intake / exhaust and water intake / outlet operations to ensure stability. Additionally, a footboard body 1 and column guardrails 3 are installed at the top to ensure convenient and safe operation. Content not described in detail in this specification belongs to existing technology known to those skilled in the art.

[0028] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A height-adjustable aquaculture cage structure, comprising a footboard body (1), footboard posts (2), and post guardrails (3), characterized in that: One end of the pedal body (1) is provided with a pedal column (2), and the pedal columns (2) are symmetrically distributed at the top of the pedal body (1). A column guardrail (3) is connected to one side of the pedal column (2). A first round rod (4) is provided at the bottom of the pedal body (1). A first support rod (5) is provided at both ends of the first round rod (4). A pedal support plate (6) connected to the pedal body (1) is provided at one end of the first support rod (5) away from the first round rod (4).

2. The height-adjustable aquaculture cage structure according to claim 1, characterized in that: One end of the first support rod (5) is connected to a first support ring (7), and the first support ring (7) is evenly distributed on the surface of the first round rod (4).

3. The height-adjustable aquaculture cage structure according to claim 2, characterized in that: The first support ring (7), the first round rod (4) and the first support rod (5) form a cross support shape.

4. The height-adjustable aquaculture cage structure according to claim 3, characterized in that: The first support ring (7) is provided with a ballast tank column (8) at the end away from the first round rod (4), and the ballast tank column (8) is evenly distributed at the bottom end of the first round rod (4).

5. The height-adjustable aquaculture cage structure according to claim 4, characterized in that: The ballast tank column (8) is provided with a second round rod (9) at the end away from the first round rod (4), and a second support rod (10) is provided at the end of the second round rod (9) close to the ballast tank column (8). The second support rod (10) is provided with a support leg (11) at the end away from the ballast tank column (8).

6. The height-adjustable aquaculture cage structure according to claim 5, characterized in that: A second support ring (12) is connected between the support leg (11) and the second support rod (10). A reinforcing seat (13) is provided at the bottom end of the support leg (11). A cross (14) is provided on one side of the second round rod (9). A uniformly distributed air inlet and outlet (15) is provided at one end of the ballast tank column (8). A uniformly distributed water inlet and outlet (16) is provided on the side of the ballast tank column (8) away from the air inlet and outlet (15).