Ecological protection comprehensive breeding device

By designing an integrated aquaculture system with ecological protection, providing a place for fish eggs to attach and increasing oxygen in real time, the problem that existing equipment cannot meet the needs of fish reproduction has been solved, and an excellent growth environment and improved water quality have been achieved.

CN223810278UActive Publication Date: 2026-01-20YANGTZE RIVER YICHANG WATERWAY ENG BUREAU
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Patent Information

Application Number
CN202520421890.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-01-20
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

Existing ecological aquaculture equipment has a simple structure and cannot provide an ecological environment for the adhesion of fish eggs to gather and reproduce in both static and mobile environments, nor can it provide sufficient oxygen according to the environment.

Method used

An integrated aquaculture device for ecological protection was designed, comprising an oxygen supply main frame, a support frame, a power supply mechanism, an aquaculture module, and a self-sensing oxygenation mechanism. It provides a place for fish eggs to attach through seedling pots and performs oxygenation operations by detecting the oxygen concentration in the water in real time.

Benefits of technology

It provides a good growth environment for fish reproduction, ensures successful implantation of adhesive fish eggs, increases the oxygen content in the water, promotes fish growth and improves water quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ecological protection comprehensive breeding device which comprises an oxygen conveying main frame and a supporting frame arranged in the middle of the oxygen conveying main frame, a power supply mechanism is arranged on the supporting frame, a plurality of breeding modules are arranged between the oxygen conveying main frame, each breeding module is communicated with the power supply mechanism through the oxygen conveying main frame, and the breeding modules are connected with the power supply mechanism through the oxygen conveying main frame. The breeding module comprises a breeding frame detachably connected with the oxygen conveying main frame, a supporting ring arranged in the middle of the breeding frame, a seedling raising bowl detachably connected to the supporting ring, and a self-sensing oxygenation mechanism fixed to the bottom of the supporting ring and extending into the breeding frame. An opening is formed in the bottom of the seedling raising bowl and communicated with the interior of the breeding frame. According to the utility model, effects in multiple aspects are integrated, and a good growth environment is provided for breeding of fish populations.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ecological breeding equipment technical field especially relates to a kind of ecological protection comprehensive breeding device. BACKGROUND

[0002] With the extensive recognition of the green ecological concept by the state and society, more and more attention is paid to the protection and construction of harmonious community and livable environment. In the field of water transportation and water conservancy engineering construction, civilized construction, humanistic landscape, environmental protection and ecological comprehensive recovery construction are simultaneously constructed. Therefore, it is necessary to take ecological comprehensive protection engineering measures.

[0003] Based on the ecological comprehensive protection and maintenance of engineering construction, according to the needs of ecological environment comprehensive regulation construction in the Yangtze River and Huaihe River basin, lake and reservoir, landscape river and other water areas, the ecological protection comprehensive breeding device can be beneficial to the symbiotic development of aquaculture and ecological environment, and the ecological breeding equipment is used to construct natural spawning place of fish eggs. The existing ecological breeding equipment has single structure, only provides breeding space, does not provide the ecological environment and attachment point of viscous fish egg adhesion for gathering static and flowing fish reproduction, and cannot provide sufficient oxygen according to the environment. UTILITY MODEL CONTENT

[0004] In view of the deficiencies in the prior art, the utility model provides an ecological protection comprehensive breeding device, which can carry out oxygenation operation according to the oxygen content of the environment and provide a good fish reproduction environment.

[0005] According to the embodiment of the utility model, an ecological protection comprehensive breeding device comprises an oxygen supply main frame, a support frame arranged in the middle of the oxygen supply main frame, a power supply mechanism arranged on the support frame, a plurality of breeding modules arranged between the oxygen supply main frames, each breeding module is in communication with the power supply mechanism through the oxygen supply main frame, and the breeding module comprises a breeding frame which is detachably connected with the oxygen supply main frame, a support ring arranged in the middle of the breeding frame, a seedling pot which is detachably connected with the support ring, a self-induction oxygenation mechanism which is fixed at the bottom of the support ring and extends into the breeding frame, and an opening is arranged at the bottom of the seedling pot and is in communication with the inside of the breeding frame.

[0006] Preferably, a plurality of mounting holes are arranged on the support ring, close to the inner side of the support ring and uniformly distributed along the circumference of the support ring, an elastic support is arranged on each mounting hole, and a load bearing connector is arranged on the side surface of the seedling pot and is in contact with the elastic support and cooperates with the mounting hole.

[0007] Further preferably, the load bearing connector comprises a load bearing ring fixedly connected with the seedling pot, and a plug-in rod fixed at the bottom of the load bearing ring and corresponding to the mounting hole.

[0008] Further preferably, the self-sensing oxygen increasing mechanism comprises a detection sensing arm detachably connected with the support ring and extending into the breeding frame, an oxygen increasing pipe fixed on the support ring, a control system fixed on the support frame, and an oxygen increaser fixed on the support frame and in communication with the oxygen increasing pipe through the oxygen delivery main frame.

[0009] Further preferably, the sensing arm comprises a support rod and an oxygen concentration detector fixed on the support rod.

[0010] Further preferably, the power supply mechanism comprises a photovoltaic panel fixed on the top of the support frame and a battery pack fixed on the support frame and below the photovoltaic panel.

[0011] Still further preferably, the oxygen delivery main frame comprises a plurality of oxygen delivery pipes in communication and forming a closed loop, an anti-collision layer is fixed on the outside of the oxygen delivery pipes, and the oxygen delivery pipes are in communication with the self-sensing oxygen increasing mechanism through pipelines.

[0012] Compared with the prior art, the utility model has the following beneficial effects:

[0013] The breeding module is arranged, the grass is planted and bred through the seedling pots, the roots of the grass extend into the water to breed and diffuse, and the adhesion fish eggs produced by the fish are provided with a place to adhere, so that the adhesion fish eggs can successfully implant, and a good growth environment is provided for the fish population to breed.

[0014] The self-sensing oxygen increasing mechanism can detect the oxygen content in the water in real time, and can increase the oxygen according to the environmental oxygen content, so that the good fish growth environment is comprehensively ensured. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a structural schematic view of the ecological protection comprehensive breeding device.

[0016] Figure 2 It is a structural schematic view of the support ring and the seedling pot in the ecological protection comprehensive breeding device.

[0017] In the above drawings, 1 is an oxygen delivery main frame, 101 is an oxygen delivery pipe, 102 is an anti-collision layer, 2 is a support frame, 3 is a power supply mechanism, 301 is a photovoltaic panel, 302 is a battery pack, 4 is a breeding module, 410 is a breeding frame, 420 is a support ring, 421 is a mounting hole, 422 is an elastic support, 430 is a seedling pot, 431 is a bearing connecting piece, 432 is a bearing ring, 433 is a plug-in rod, 5 is a self-sensing oxygen increasing mechanism, 510 is a sensing arm, 511 is a support rod, 512 is an oxygen concentration detector, 520 is an oxygen increasing pipe, 530 is a control system, and 540 is an oxygen increaser. DETAILED DESCRIPTION

[0018] The technical solutions in the utility model are further described below in combination with the drawings and examples.

[0019] The utility model provides a kind of embodiment, as shown in Figure 1 It is ecological protection comprehensive breeding device, including oxygen supply main frame 1, support frame 2 being arranged in the middle part of oxygen supply main frame 1, it is equipped with power supply mechanism 3 on the support frame 2, it is equipped with multiple breeding modules 4 between oxygen supply main frame 1, each breeding module 4 is communicated with power supply mechanism 3 by oxygen supply main frame 1, the breeding module 4 includes breeding frame 410 with the detachable connection of oxygen supply main frame 1, support ring 420 being arranged in the middle part of breeding frame 410, nursery pot 430 being detachably connected on support ring 420, self-induction oxygen-increasing mechanism 5 being fixed at the bottom of support ring 420 and extending into breeding frame 410, the bottom of nursery pot 430 is equipped with opening and is communicated with the inside of breeding frame 410, and nursery pot 430 is used to breed grass and saleng tilling, and breeding frame 410 is used to breed fish;

[0020] Plant root in nursery pot 430 can extend to water and gradually propagate and spread, provide fish egg attachment site for fish propagation, and grass and saleng type can be goldfish algae, fox tail grass, willow root, etc., and oxygen concentration in water body is detected in real time by self-induction oxygen-increasing mechanism 5, when oxygen concentration is lower, additional oxygen is provided to increase oxygen concentration in surrounding environment or water body, increase the content of water body dissolved oxygen, promote the metabolism of organism, improve water quality of water body, ensure that environment is clean and sanitary;

[0021] In order to slow down the shaking of nursery pot 430 due to water flow, in further implementation mode, as shown in Figure 2 It is equipped with multiple mounting holes 421 on support ring 420, which are close to the inner side and uniformly distributed along the circumference thereof, and each mounting hole 421 is equipped with elastic support 422, and in the embodiment, elastic support 422 is rigid spring, and the side of nursery pot 430 is equipped with load bearing connector 431 in contact with elastic support 422 and cooperating with mounting hole 421;

[0022] Specifically, the load bearing connector 431 includes load bearing ring 432 fixedly connected with the nursery pot 430, and plug-in rod 433 fixed at the bottom of load bearing ring 432 and corresponding to mounting hole 421, plug-in rod 433 passes through rigid spring and mounting hole 421 in sequence, and is supported by rigid spring, so that nursery pot 430 has certain buffering effect;

[0023] In order to facilitate the adjustment of the oxygen content in the water, in a further embodiment, the self-sensing oxygenation mechanism 5 comprises a detection sensing arm 510 detachably connected with the support ring 420 and extending into the breeding frame 410, an oxygenation pipe 520 fixed on the support ring 420, a control system 530 fixed on the support frame 2, and an oxygenator 540 fixed on the support frame 2, wherein the oxygenator 540 is in communication with the oxygenation pipe 520 through the oxygen supply main frame 1, and the side surface of the support ring 420 is fixedly connected with a branch pipe in communication with the oxygenation pipe 520, and the other end of the branch pipe is fixedly connected with and in communication with the oxygen supply main frame 1, so as to achieve both the supporting effect and the oxygen supply effect;

[0024] Specifically, the sensing arm 510 comprises a support rod 511 and an oxygen concentration detector 512 fixed on the support rod 511.

[0025] In order to provide the power for the operation of the device, in a further embodiment, the power supply mechanism 3 comprises a photovoltaic panel 301 fixed on the top of the support frame 2 and a battery pack 302 fixed on the support frame 2 and located below the photovoltaic panel 301.

[0026] The oxygen supply main frame 1 comprises a plurality of pipes in communication and forming a closed loop, and an anti-collision layer 102 is fixedly arranged on the outer side of the pipes, and the pipes are in communication with the oxygenator 540 through an oxygen supply pipe 101 and in communication with the oxygenation pipe 520 through a branch pipe.

[0027] Finally, it should be pointed out that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting, and although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application, and all of them should be covered in the scope of the claims of the present application.

Claims

1. An integrated ecological conservation aquaculture device, characterized in that, The system includes an oxygen supply main frame (1), a support frame (2) located in the middle of the oxygen supply main frame (1), a power supply mechanism (3) on the support frame (2), and multiple breeding modules (4) between the oxygen supply main frames (1). Each breeding module (4) is connected to the power supply mechanism (3) through the oxygen supply main frame (1). The breeding module (4) includes a breeding frame (410) detachably connected to the oxygen supply main frame (1), a support ring (420) located in the middle of the breeding frame (410), a seedling pot (430) detachably connected to the support ring (420), and a self-sensing oxygenation mechanism (5) fixed to the bottom of the support ring (420) and extending into the breeding frame (410). The bottom of the seedling pot (430) has an opening that communicates with the inside of the breeding frame (410).

2. The integrated ecological protection aquaculture device according to claim 1, characterized in that, The support ring (420) is provided with a plurality of mounting holes (421) that are close to its inner side and evenly distributed along its circumference. Each mounting hole (421) is provided with an elastic support member (422). The side of the seedling pot (430) is provided with a load-bearing connector (431) that contacts the elastic support member (422) and cooperates with the mounting hole (421).

3. The integrated ecological protection aquaculture device according to claim 2, characterized in that, The bearing connector (431) includes a bearing ring (432) fixedly connected to the seedling pot (430) and a plug rod (433) fixed to the bottom of the bearing ring (432) and corresponding to the mounting hole (421).

4. The integrated ecological protection aquaculture device according to claim 1, characterized in that, The self-sensing oxygenation mechanism (5) includes a detection sensing arm (510) detachably connected to the support ring (420) and extending into the breeding frame (410), an oxygenation pipe (520) fixed on the support ring (420), a control system (530) fixed on the support frame (2), and an oxygenator (540) fixed on the support frame (2). The oxygenator (540) is connected to the oxygenation pipe (520) through the oxygen supply main frame (1).

5. The integrated ecological protection aquaculture device according to claim 4, characterized in that, The sensing arm (510) includes a support rod (511) and an oxygen concentration detector (512) fixed on the support rod (511).

6. An integrated ecological protection aquaculture device according to any one of claims 1-5, characterized in that, The power supply mechanism (3) includes a photovoltaic panel (301) fixed on the top of the support frame (2) and a battery pack (302) fixed on the support frame (2) and located below the photovoltaic panel (301).

7. The integrated ecological protection aquaculture device according to claim 6, characterized in that, The oxygen supply main frame (1) includes multiple oxygen supply pipes (101) connected in a closed loop. An anti-collision layer (102) is fixed on the outside of the oxygen supply pipe (101). The oxygen supply pipe (101) is connected to the self-sensing oxygenation mechanism (5) through a pipe.