Multi-stage functional oyster reef
By designing a corrosion-resistant alloy base and an adsorption mechanism, the stability and applicability issues of existing oyster reefs have been resolved, enabling stable installation and multi-functional use of oyster reefs in different sea areas and promoting the healthy development of marine ecosystems.
Patent Information
- Application Number
- CN202422842520.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-11-21
AI Technical Summary
Existing steel-structured oyster reefs are easily washed away by ocean currents and waves, have poor stability, and can only be installed in shallow sea areas, limiting their practicality.
It adopts a corrosion-resistant alloy base, adsorption mechanism and ecological device, including a fixed frame, adsorption rack, stabilizing rod, inclined plate, top plate and ecological platform, which are fixed by corrosion-resistant screws and nuts to achieve height adjustment and diversified biological habitat, thereby enhancing the stability and applicability of oyster reefs.
It improves the stability and applicability of oyster reefs, enabling their use in waters of different depths, providing diverse habitats for organisms, and promoting the healthy development of marine ecosystems.
Smart Images

Figure CN223489003U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of oyster reef technology, and in particular to a multi-level functional oyster reef. Background Technology
[0002] Oyster reef ecosystems, also known as temperate "coral reef" systems, serve as habitats for fish and other animals, as well as places for raising young, sheltering, and preying. They play important ecological functions in purifying water, coupling ecosystem energy flow, nitrogen removal, carbon sequestration, protecting biodiversity, and promoting livelihood fisheries.
[0003] Existing technology CN217986373U discloses a trapezoidal steel-concrete assembled ecological oyster reef. This oyster reef includes steel structure components and hollow brick functional components, which are detachably assembled via corner connectors. The structural components are truss structures with a trapezoidal cross-section, assembled from seawater corrosion-resistant steel pipes and corner connectors. The hollow brick functional components have centrally located mounting openings, and several hollow bricks are fitted and fixed to the structural components through these openings, assembling into a trapezoidal truss structure ecological oyster reef. This utility model features an environmentally friendly and pollution-free reef body. The overall trapezoidal truss structure provides high stability and good permeability. The assembly structure using steel structural components and hollow brick functional components allows for prefabricated assembly of the oyster reef, effectively reducing the cost of reef deployment and transportation while ensuring deployment safety. It is economical and highly applicable.
[0004] However, this ecological oyster reef is composed of steel structure components and hollow bricks. Hollow bricks are relatively lightweight and easily roll under the action of ocean currents and waves, making them easy to be washed away by the waves. The stability of the oyster reef is poor. In addition, this oyster reef can only be installed in shallow sea areas and cannot be used in sea areas with a depth of more than ten meters, making it impractical. Utility Model Content
[0005] The purpose of this invention is to provide a multi-level functional oyster reef, which allows for height adjustment during use, facilitating the use of oyster reefs in various environments and improving their practicality.
[0006] To achieve the above objectives, this utility model provides a multi-level functional oyster reef, including a corrosion-resistant alloy base with four conical feet at the bottom and an adsorption mechanism.
[0007] The adsorption mechanism includes a fixed frame, an adsorption rack, a stabilizing rod, an inclined plate, a top plate, and an ecological device. The fixed frame is welded to the top of the corrosion-resistant alloy base, and there are four of them. It is provided with multiple adjustment holes. The adsorption rack is detachably connected to the fixed frame and is located on one side of the fixed frame. The stabilizing rod is welded between the fixed frames. The inclined plate is welded to the stabilizing rod, and there are four of them. The top plate is welded to the top of the inclined plate. The ecological device is located on the top of the adsorption rack.
[0008] The surfaces of the top platform of the adsorption rack, the inclined plate, and the top plate are all roughened.
[0009] The ecological device includes support columns and an ecological platform. The support columns are welded to the top of the adsorption rack, and there are four of them. The ecological platform is welded to the top of the support columns.
[0010] The ecological platform is provided with grooves, steps and rectangular cavities. The grooves can be configured in multiple shapes and are located on the top end face of the ecological platform. The steps are located on both sides of the ecological platform. The rectangular cavities penetrate the ecological platform, are not connected to the grooves, and are located below the grooves.
[0011] The multi-level functional oyster reef also includes a hoisting mechanism, which includes a hoisting rod and an auxiliary plate. The hoisting rod is welded below the ecological platform, and the auxiliary plate is welded vertically in a row on the hoisting rod.
[0012] This utility model discloses a multi-level functional oyster reef. The adsorption frame is fixed to the fixed frame by corrosion-resistant screws and nuts. During installation, the mounting holes at the bottom of the adsorption frame are matched with the adjustment holes on the fixed frame at different positions to directly obtain different working heights. Furthermore, the corrosion-resistant alloy base adopts a solid structure, which is more stable than a hollow brick structure. The inclined plate and top plate can be used to assist oyster attachment. The ecological device is used to provide a diverse habitat for organisms, which is conducive to promoting the healthy development of the marine ecosystem. At the same time, it realizes the multi-functional use of the oyster reef, and thus enables height adjustment during use, which is convenient for the use of the oyster reef in various environments and improves the practicality of the oyster reef. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0014] Figure 1 This is a schematic diagram of the overall structure of the multi-level functional oyster reef according to the first embodiment of this utility model.
[0015] Figure 2This is a front view of the multi-level functional oyster reef according to the first embodiment of this utility model.
[0016] Figure 3 This is a schematic diagram of the overall structure of the multi-level functional oyster reef according to the second embodiment of this utility model.
[0017] In the diagram: 101-Corrosion-resistant alloy base, 102-Conical foot, 103-Fixed frame, 104-Adsorption rack, 105-Stabilizing rod, 106-Inclined plate, 107-Top plate, 108-Support column, 109-Ecological platform, 110-Groove, 111-Step, 112-Rectangular cavity, 201-Hanging rod, 202-Auxiliary plate. Detailed Implementation
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] Example 1:
[0020] like Figure 1 and Figure 2 As shown, where Figure 1 This is a schematic diagram of the overall structure of a multi-level functional oyster reef. Figure 2 This is a front view of a multi-level functional oyster reef. The present invention provides a multi-level functional oyster reef, comprising a corrosion-resistant alloy base 101 and an adsorption mechanism. The adsorption mechanism includes a fixed frame 103, an adsorption rack 104, a stabilizing rod 105, an inclined plate 106, a top plate 107, and an ecological device. The ecological device includes a support column 108 and an ecological platform 109. This design allows for height adjustment during use, facilitating the use of the oyster reef in various environments and improving its practicality. It is understood that the aforementioned design enables height adjustment for the oyster reef during operation.
[0021] In this embodiment, the bottom of the corrosion-resistant alloy base 101 is provided with four conical feet 102. The four conical feet 102 are used for mounting and fitting the corrosion-resistant alloy base 101, which helps to improve the grip of the corrosion-resistant alloy base 101 after installation and prevents displacement.
[0022] The fixed frame 103 is welded to the top of the corrosion-resistant alloy base 101, four in number, and has multiple adjustment holes. The adsorption rack 104 is detachably connected to the fixed frame 103 and is located on one side of the fixed frame 103. The stabilizing rod 105 is welded between the fixed frames 103. The inclined plate 106 is welded to the stabilizing rod 105, four in number. The top plate 107 is welded to the top of the inclined plate 106. The ecological device is located on the top of the adsorption rack 104. The fixed frame 103 has an L-shaped cross-section and is welded to the corrosion-resistant alloy base 101. The fixed frame 103 has multiple adjustment holes arranged vertically at intervals. The bottom of the adsorption rack 104 has a mating hole at the bottom, which can directly mate with the adjustment holes at different positions on the fixed frame 103. Then, it is connected and fixed by inserting a corrosion-resistant screw nut. The stabilizing rod 105 is directly welded between two of the fixed frames 103 to improve the stability of the fixed frame 103 after installation. The inclined plate 106... The bottom is welded to the stabilizing rod 105, and the top plate 107 is welded to the top of the inclined plate 106. To ensure the stability of the top plate 107, a vertical column can be welded between the bottom of the top plate 107 and the top of the corrosion-resistant alloy base 101 for support, thereby improving the stability after installation. The ecological device is used to provide a diverse habitat for organisms, which is conducive to promoting the healthy development of the marine ecosystem and realizing the multi-functional use of oyster reefs. When the adsorption rack 104 is at its lowest point, the bottom of the top plate will not abut against the top plate 107.
[0023] Secondly, the surfaces of the top platform of the adsorption rack 104, the inclined plate 106, and the top plate 107 are all roughened. By roughening the surfaces of the top platform of the adsorption rack 104, the inclined plate 106, and the top plate 107, the stability of oyster attachment can be improved.
[0024] Then, four support columns 108 are welded to the top of the adsorption rack 104; the ecological platform 109 is welded to the top of the support columns 108. The support columns 108 are welded to the four corners of the top of the adsorption rack 104, and the ecological platform 109 is welded to the top of the support columns 108.
[0025] Finally, the ecological platform 109 is provided with a groove 110, a step 111, and a rectangular cavity 112. The groove 110 can be configured in multiple shapes and is located on the top end face of the ecological platform 109. The step 111 is located on both sides of the ecological platform 109. The rectangular cavity 112 penetrates the ecological platform 109, is not connected to the groove 110, and is located below the groove 110. The arrangement of the groove 110, the step 111, and the rectangular cavity 112 will directly provide a habitat for more marine life through the ecological platform 109, which is conducive to promoting the healthy development of the marine ecosystem.
[0026] When using this utility model to achieve height adjustment for oyster reef use in various environments and improve the practicality of oyster reefs, firstly, the corrosion-resistant alloy base 101 and the conical feet 102 facilitate the direct installation of the oyster reef. During installation, multiple stabilizing rods 105 and lifting straps are used for hoisting. Then, the adsorption frame 104 is fixed to the fixed frame 103 by corrosion-resistant screws and nuts. During installation, the mounting holes at the bottom of the adsorption frame 104 mate with the adjustment holes on the fixed frame 103 at different positions, allowing for different working heights. Furthermore, the corrosion-resistant alloy base 101 has a solid structure, which is more stable than a hollow brick structure. The inclined plate 106 and the top plate 107 can be used to assist oyster attachment. The ecological device provides diverse habitats for organisms, promoting the healthy development of the marine ecosystem and enabling multi-functional use of the oyster reef. This allows for height adjustment during use, facilitating oyster reef use in various environments and improving its practicality.
[0027] Example 2:
[0028] like Figure 3 As shown, where Figure 3 This is a schematic diagram of the overall structure of a multi-level functional oyster reef. Based on the first embodiment, this utility model provides a multi-level functional oyster reef, which also includes a hoisting mechanism, which includes a hoisting rod 201 and an auxiliary plate 202.
[0029] The boom 201 is welded below the ecological platform 109; the auxiliary discs 202 are vertically welded to the boom 201 at intervals. The tops of the multiple booms 201 are welded below the ecological platform 109, and the multiple auxiliary discs 202 are fitted onto the booms 201 and then welded in place.
[0030] In this embodiment, by setting up multiple booms 201 and multiple auxiliary discs 202 in coordination, it is possible to provide a habitat for more marine organisms, which is conducive to promoting the healthy development of the marine ecosystem.
[0031] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A multi-level functional oyster reef, comprising a corrosion-resistant alloy base, wherein the bottom of the corrosion-resistant alloy base is provided with four conical feet, characterized in that: It also includes an adsorption mechanism; The adsorption mechanism includes a fixed frame, an adsorption rack, a stabilizing rod, an inclined plate, a top plate, and an ecological device. The fixed frame is welded to the top of the corrosion-resistant alloy base, and there are four of them. It is provided with multiple adjustment holes. The adsorption rack is detachably connected to the fixed frame and is located on one side of the fixed frame. The stabilizing rod is welded between the fixed frames. The inclined plate is welded to the stabilizing rod, and there are four of them. The top plate is welded to the top of the inclined plate. The ecological device is located on the top of the adsorption rack.
2. The multi-level functional oyster reef as described in claim 1, characterized in that: The surfaces of the top platform of the adsorption rack, the inclined plate, and the top plate are all roughened.
3. The multi-level functional oyster reef as described in claim 1, characterized in that: The ecological device includes support columns and an ecological platform. The support columns are welded to the top of the adsorption rack, and there are four of them. The ecological platform is welded to the top of the support columns.
4. The multi-level functional oyster reef as described in claim 3, characterized in that: The ecological platform is provided with grooves, steps and rectangular cavities. The grooves can be configured in multiple shapes and are located on the top end face of the ecological platform. The steps are arranged on both sides of the ecological platform. The rectangular cavities penetrate the ecological platform, are not connected to the grooves, and are located below the grooves.
5. The multi-level functional oyster reef as described in claim 3, characterized in that... : The multi-level functional oyster reef also includes a hoisting mechanism, which includes a hoisting rod and an auxiliary plate. The hoisting rod is welded below the ecological platform; the auxiliary plate is welded vertically in a row on the hoisting rod.
Citation Information
Patent Citations
Trapezoidal steel-concrete assembled ecological oyster reef
CN217986373U