Mixing structure of aquaculture net cage and buoyancy tank

By introducing longitudinal trusses, transverse trusses, and reinforcing trusses into the hybrid structure of aquaculture net cages and floating boxes, a rectangular structure is formed, which solves the problems of structural strength and stability, improves the ability to resist wind, waves, currents, and typhoons, extends the service life, and improves the convenience of adjustment and maintenance.

CN223859985UActive Publication Date: 2026-02-03GUANGDONG COSCO SHIPPING HEAVY IND CO LTD
View PDF 0 Cites 1 Cited by

Patent Information

Application Number
CN202520099936.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-02-03
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

Existing aquaculture cages and floating boxes have a hybrid structure with low strength and poor stability, making them difficult to withstand wind, waves, and currents. They also have low adjustment efficiency and short service life.

Method used

The structure employs longitudinal truss, transverse truss, and reinforcing trusses, combined with a support frame to form a rectangular structure. This enhances the connection strength between the pontoons and the reinforcing trusses, and enables individual control through multiple pontoons and edge pontoons.

Benefits of technology

It improves the overall strength and stability of the hybrid structure of aquaculture net cages and floating boxes, enabling it to resist wind, waves, currents, and typhoons, extending its service life, and improving the convenience of adjustment and maintenance.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223859985U_ABST
    Figure CN223859985U_ABST
Patent Text Reader

Abstract

The utility model discloses a mixed structure of a culture net cage and a buoyancy tank. The mixed structure comprises a frame structure and a buoyancy tank structure, the frame structure comprises a transverse truss structure, a longitudinal truss structure and a reinforcing support, the buoyancy tank structure comprises a first buoyancy tank assembly and a second buoyancy tank assembly, and the first buoyancy tank assembly comprises four edge buoyancy tanks; the second buoyancy tank assembly is provided with a reinforcing truss. The longitudinal truss structures and the transverse truss structures are arranged to enable the aquaculture net cage and buoyancy tank mixed structure to form a rectangular structure, the reinforcing trusses are combined to improve the overall strength and stability of the aquaculture net cage and buoyancy tank mixed structure, and the impact resistance is improved; the aquaculture net cage and buoyancy tank mixed structure has wind, wave and flow resistance and typhoon resistance, and the service life is prolonged; the multiple buoyancy tanks and the edge buoyancy tanks are used for achieving independent control, the adjusting convenience is improved, and the stability is guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of breeding platform, concretely relates to a breeding net cage buoyant chamber mixed structure. BACKGROUND

[0002] At present, the seawater breeding is mostly nearshore breeding net cage, and the main form of breeding equipment is raft type, HDPE gravity type net cage and metal frame net cage, and the water body of a single net cage is below 10,000 square meters, the nearshore breeding net cage has high density, the high-density breeding causes the problems of marine ecological environment destruction and marine "desertification", and triggers the imbalance of nearshore marine ecological system structure and the reduction of service function, the nearshore breeding net cage has weak structure, poor wind, wave and current resistance, poor stability, is difficult to cope with external force, and does not have the anti typhoon capacity, and typhoon leads to the mass death of breeding products, and the water body of a single net cage is small, below 10,000 square meters, the breeding density is high, and the quality of bred fish is poor, in view of the above problems, people have the breeding platform, wherein the base structure is an important structure of the breeding platform, and the performance of the base structure influences the use efficiency and performance of the whole breeding platform, the existing base structure mostly adopts the rectangular structure formed by a plurality of connecting pipes, and each connecting pipe is connected and communicated with each other, but the base structure has the following problems: 1, the structure has poor stability, is prone to deformation after long time use, has poor wind, wave and current resistance, does not have the anti typhoon capacity, and has short service life, 2, when the connecting pipes of the existing base structure are connected and communicated with each other, the adjusting efficiency is slow when the floating or lifting action is needed, and when a fault occurs, the whole needs to be replaced, the replacement efficiency is influenced, and the use efficiency is influenced. CONTENT OF THE UTILITY MODEL

[0003] The utility model provides a breeding net cage buoyant chamber mixed structure aiming at the technical defects of the prior art, and aims at solving the technical problems of low strength and poor stability of the breeding net cage buoyant chamber mixed structure in the prior art.

[0004] The utility model discloses the technical scheme adopted for realizing the above-mentioned purpose is:

[0005] A breeding net cage buoyant chamber mixed structure includes frame structure and buoyant chamber structure, the frame structure is arranged on the buoyant chamber structure, the frame structure includes horizontal truss structure and longitudinal truss structure, the buoyant chamber structure includes first buoyant chamber subassembly and second buoyant chamber subassembly, the first buoyant chamber subassembly includes four edge buoyant chambers, the horizontal truss structure and longitudinal truss structure are arranged in four edge buoyant chambers, and the second buoyant chamber subassembly is arranged in the horizontal truss structure, the second buoyant chamber subassembly is equipped with the reinforcing truss.

[0006] Further improvement, the longitudinal truss structure comprises two longitudinal trusses, and the two longitudinal trusses are arranged between the two edge pontoons respectively; the transverse truss structure comprises two groups of transverse truss groups, and the two groups of transverse truss groups are arranged between the two edge pontoons respectively.

[0007] Further improvement, the two groups of transverse truss groups each comprise a plurality of transverse trusses, the second pontoon assembly comprises two groups of pontoon groups, each of the two groups of pontoon groups comprises two pontoons, and the transverse trusses are arranged between the edge pontoons and the pontoons, between the pontoons and the pontoons respectively.

[0008] Further improvement, the reinforcing truss comprises two first reinforcing longitudinal trusses, and the two first reinforcing longitudinal trusses are arranged between the two pontoons; the two ends of the first reinforcing longitudinal truss are each provided with a reinforcing support, the reinforcing support comprises a support group one and a support group two, and the support group one is arranged above the support group two.

[0009] Further improvement, the support group one comprises two tripods, the support group two comprises two arc-shaped supports, and one end of the two tripods and one end of the arc-shaped supports are fixedly connected with the surface of the pontoon respectively.

[0010] Further improvement, the longitudinal truss and the transverse truss are each provided with a reinforcing structure one, and the reinforcing structure one comprises a plurality of reinforcing rods.

[0011] Further improvement, the pontoons and the pontoons one are each in the form of a box body, and the box body is provided with a reinforcing structure two; the box body comprises a deck, a bottom plate and a plurality of outer side plates, and the reinforcing structure two comprises a plurality of reinforcing vertical rods arranged between the deck and the bottom plate.

[0012] Further improvement, the inner side surfaces of the deck, the bottom plate and the plurality of outer side plates are each provided with a plurality of internal components; the outer side plate is provided with a water inlet and a water outlet, and the water inlet and the water outlet are each provided with a solenoid valve.

[0013] The utility model discloses the beneficial effects: the utility model discloses through set up longitudinal truss structure and transverse truss structure for making the breeding net cage pontoon hybrid structure constitutes rectangular structure, combine setting reinforcing truss for improving the overall strength of breeding net cage pontoon hybrid structure, through setting up the reinforcing support that is made of support group one and support group two for improving the connecting strength between pontoon and reinforcing truss, greatly improve stability, improve the impact resistance of breeding net cage pontoon hybrid structure, make the reinforcing support have the ability of wind, wave, flow and typhoon resistance, prolong the life, through adopting a plurality of pontoons and edge pontoons for realizing individual control, convenient maintenance, improve the convenience of adjustment, thereby prevent breeding net cage pontoon hybrid structure from appearing to incline, guarantee stability.

[0014] The utility model is further described below in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical scheme in the embodiments of the utility model, the drawings needed to be used in the embodiments or prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creative labor under the premise of the drawings.

[0016] Fig. 1 It is the whole structure schematic view of the breeding net cage and the floating box mixed structure of the embodiment;

[0017] Fig. 2 It is the front view schematic view of the breeding net cage and the floating box mixed structure of the embodiment;

[0018] Fig. 3 It is the side view schematic view of the breeding net cage and the floating box mixed structure of the embodiment;

[0019] Fig. 4 It is the floating box and the floating box schematic view of the embodiment. DETAILED DESCRIPTION

[0020] The following description is only the preferred embodiment of the utility model, and does not limit the protection scope of the utility model.

[0021] Embodiment, see attached Figs. 1-4 A breeding net cage and floating box mixed structure 1 includes frame structure 2 and floating box structure 3, the frame structure 2 is arranged on the floating box structure 3, the frame structure 2 includes transverse truss structure 4 and longitudinal truss structure 5, the floating box structure 3 includes first floating box assembly 6 and second floating box assembly 7, the first floating box assembly 6 includes four edge floating boxes 60, the transverse truss structure 4 and longitudinal truss structure 5 are arranged in four edge floating boxes 60, and the second floating box assembly 7 is arranged in transverse truss structure 4, the second floating box assembly 7 is provided with reinforcing truss 8.

[0022] The longitudinal truss structure 5 comprises two longitudinal trusses, and the two longitudinal trusses are arranged between the two edge pontoons 60 respectively; the transverse truss structure 4 comprises two groups of transverse truss groups 40, and the two groups of transverse truss groups 40 are arranged between the two edge pontoons 60 respectively; each of the two groups of transverse truss groups 40 comprises a plurality of transverse trusses, the second pontoon assembly 7 comprises two groups of pontoon groups 70, and each of the two groups of pontoon groups 70 comprises two pontoons; the transverse trusses are arranged between the edge pontoons 60 and the pontoons, and between the pontoons respectively; the longitudinal truss structure 5 and the transverse truss structure 4 are used to make the aquaculture net cage and pontoon hybrid structure 1 into a rectangular structure, thereby improving the stability when placed; by using a plurality of pontoons and edge pontoons 60 to realize individual control, it is convenient to maintain, and the convenience of adjustment is improved, thereby preventing the aquaculture net cage and pontoon hybrid structure 1 from tilting and ensuring stability.

[0023] The reinforcing truss 8 comprises two first reinforcing longitudinal trusses, and the two first reinforcing longitudinal trusses are arranged between two pontoons; the two ends of the first reinforcing longitudinal truss are each provided with a reinforcing support 9, and the reinforcing support 9 comprises a support group one 90 and a support group two 91; the support group one 90 is arranged above the support group two 91; the reinforcing truss 8 is used to improve the overall strength of the aquaculture net cage and pontoon hybrid structure 1, cooperate with the frame structure 2 to provide multiple stable structures, greatly improve the stability, and improve the impact resistance of the aquaculture net cage and pontoon hybrid structure 1.

[0024] The support group one 90 comprises two tripods, and the support group two 91 comprises two arc-shaped supports; one end of each of the two tripods and one end of each of the arc-shaped supports are fixedly connected with the surface of the pontoon respectively; the longitudinal truss and the transverse truss are each provided with a reinforcing structure one, and the reinforcing structure one comprises a plurality of reinforcing rods; the support group one 90 and the support group two 91 are used to improve the connection strength between the pontoon and the reinforcing truss 8, thereby improving the strength of the aquaculture net cage and pontoon hybrid structure 1, improving the external force resistance of the aquaculture net cage and pontoon hybrid structure 1, preventing deformation, and improving the service life.

[0025] The pontoons and the first pontoons are each in the form of a box structure 10, and the box structure 10 is provided with a reinforcing structure two 100; the box structure 10 comprises a deck, a bottom plate and a plurality of outer side plates, and the reinforcing structure two 100 comprises a plurality of reinforcing vertical rods; the reinforcing structure two 100 is used to improve the overall strength of the pontoon and the first pontoon, thereby improving the stability and strength of the aquaculture net cage and pontoon hybrid structure 1 and improving the service life.

[0026] The inner side surfaces of the deck, the bottom plate and the plurality of outer side plates are each provided with a plurality of internal components; the outer side plates are provided with a water inlet and a water outlet, and the water inlet and the water outlet are each provided with a solenoid valve.

[0027] This invention utilizes longitudinal and transverse truss structures to create a rectangular hybrid structure for the aquaculture cage and floating box. Reinforcing trusses enhance the overall strength of the hybrid structure. A reinforced support system, consisting of support group one and support group two, strengthens the connection between the floating box and the reinforcing truss, significantly improving stability and impact resistance. This reinforced support system also provides resistance to wind, waves, currents, and typhoons, extending its service life. The use of multiple floating boxes and edge floating boxes allows for individual control, facilitating maintenance and improving adjustment convenience, thus preventing tilting and ensuring stability.

[0028] This utility model is not limited to the above-described embodiments. Other hybrid structures and usage methods for aquaculture net cages and floating boxes obtained by using the same or similar structures, devices, processes or methods as the above-described embodiments of this utility model are all within the protection scope of this utility model.

Claims

1. A hybrid structure of aquaculture cages and floating boxes, characterized in that: The aquaculture cage-floating-box hybrid structure includes a frame structure and a floating box structure, with the frame structure disposed on the floating box structure. The frame structure includes a transverse truss structure and a longitudinal truss structure. The floating box structure includes a first floating box assembly and a second floating box assembly. The first floating box assembly includes four edge floating boxes, with the transverse truss structure and the longitudinal truss structure disposed within the four edge floating boxes. The second floating box assembly is disposed within the transverse truss structure. The second floating box assembly is provided with reinforcing trusses.

2. The hybrid structure of aquaculture net cage and floating box according to claim 1, characterized in that: The longitudinal truss structure includes two longitudinal trusses, which are respectively arranged between two edge pontoons; the transverse truss structure includes two sets of transverse truss groups, which are respectively arranged between two edge pontoons.

3. The hybrid structure of aquaculture net cage and floating box according to claim 2, characterized in that: Both sets of the transverse truss groups include multiple transverse trusses, the second pontoon assembly includes two sets of pontoon groups, and each set of pontoon groups includes two pontoons. The transverse trusses are respectively arranged between the edge pontoons and the pontoons, and between the pontoons.

4. The hybrid structure of aquaculture net cage and floating box according to claim 3, characterized in that: The reinforcing truss includes two first reinforcing longitudinal trusses, which are arranged between the two pontoons; both ends of the first reinforcing longitudinal trusses are provided with reinforcing supports, and each reinforcing support includes a support group one and a support group two, with the support group one arranged above the support group two.

5. The hybrid structure of aquaculture net cage and floating box according to claim 4, characterized in that: The first support group includes two tripods, and the second support group includes two arc-shaped supports. One end of each of the two tripods and one end of each arc-shaped support are fixedly connected to the surface of the pontoon.

6. The hybrid structure of aquaculture net cage and floating box according to claim 5, characterized in that: Both the longitudinal truss and the transverse truss are equipped with a reinforcing structure, which consists of multiple reinforcing rods.

7. The hybrid structure of aquaculture net cage and floating box according to claim 6, characterized in that: Both the pontoon and pontoon one are box-shaped structures, and the box-shaped structure is equipped with a second reinforcing structure. The box-shaped structure includes a deck, a bottom plate, and multiple outer side plates. The second reinforcing structure includes multiple reinforcing uprights, which are arranged between the deck and the bottom plate.

8. The hybrid structure of aquaculture net cage and floating box according to claim 7, characterized in that: The inner sides of the deck, bottom plate, and multiple outer side plates are provided with multiple internal components; the outer side plates are provided with water inlets and water outlets, and both the water inlets and water outlets are provided with electromagnetic valves.

Citation Information

Cited By

  • Breeding net cage and buoyancy tank mixed structure and using method

    CN119744797A