Movable sea cucumber breeding pond and construction method thereof

By using a modular connection method for the movable sea cucumber farming ponds, the traditional integrated farming ponds are transformed into modular ones, solving the problems of cumbersome construction and resource waste, and achieving low-cost and high-efficiency sea cucumber farming.

CN117530218BActive Publication Date: 2026-02-06YANTAI MARINE ECONOMIC RES INST (YANTAI FISHERY TECH PROMOTION STATION YANTAI MARINE FISHING ENHANCEMENT MANAGEMENT STATION)
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Patent Information

Application Number
CN202310551045.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-16
Publication Date
2026-02-06
Estimated Expiration
2043-05-16

AI Technical Summary

Technical Problem

Traditional sea cucumber farming ponds are cumbersome to construct, with high costs for site selection and pipeline laying. They also suffer from severe resource waste when seawater is polluted, making it difficult to cope with natural risks.

Method used

The method of using mobile sea cucumber farming ponds transforms the integrated farming pond into a three-section modular structure through a snap-fit ​​connection. Combined with a mobile construction method, this simplifies the assembly process, reduces the number of construction workers, lowers the overall investment, and enhances the ability to withstand risks.

Benefits of technology

This has simplified construction, reduced costs, and improved the economic benefits and resilience to natural risks in sea cucumber farming.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses the technical field of sea cucumber breeding ponds, and particularly relates to a movable sea cucumber breeding pond and a construction method thereof, which comprises a connecting frame, the top and bottom of the connecting frame are provided with embedding grooves, a top assembling structure is arranged on the top of the connecting frame, a support is arranged on the top of the connecting frame, the bottom of the support is integrally connected with an embedding seat matched with the embedding grooves in clamping mode, a floating plate is connected to the top of the support, a bottom frame is arranged on the bottom of the connecting frame, the top of the bottom frame is integrally connected with a clamping seat matched with the embedding grooves in clamping mode, the integral breeding pond is changed into a three-section assembling type through the clamping connection mode, the movable breeding pond is moved according to actual conditions through the construction method, the assembling link is simple, the number of overall construction personnel is 80% less than that of traditional construction personnel, the overall disassembly and assembly are simple, the overall investment of breeding sea cucumbers is relatively small, the ability to resist natural risks is improved, and the cost investment of breeders can achieve lifelong benefits through one-time investment.
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Description

Technical Field

[0001] This invention relates to the field of sea cucumber farming technology, specifically to a mobile sea cucumber farming pond and its construction method. Background Technology

[0002] As the economic value of sea cucumbers continues to increase, the area of ​​sea cucumber farming in my country has also increased, becoming a new growth point for the fishery economy. In sea cucumber farming, farming ponds are required, and according to the sea cucumbers' habit of preferring to live in rock crevices, stones of different sizes are placed in the farming pond area as habitats for the sea cucumbers.

[0003] However, the construction process of traditional sea cucumber farming ponds is quite complicated, especially in terms of site selection and pipeline laying, which require huge investments. When the seawater near the sea cucumber farming ponds is polluted, the entire building and related farming equipment will be idle, resulting in a huge waste of resources. Summary of the Invention

[0004] The purpose of this section is to outline some aspects of the embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the invention.

[0005] Therefore, the purpose of this invention is to provide a mobile sea cucumber farming pond and its construction method. By using a snap-fit ​​connection method, the integrated farming pond is transformed into a three-section modular pond. The mobile farming pond can be relocated according to the actual situation. The assembly process is simple and has corresponding assembly diagrams. The overall number of construction workers is reduced by 80% compared to traditional construction workers. The overall assembly and disassembly are simple. Ultimately, the overall investment in sea cucumber farming is reduced, the ability to resist natural risks is strengthened, and the cost investment for farmers can achieve a one-time investment with lifelong benefits.

[0006] To address the aforementioned technical problems, according to one aspect of the present invention, the present invention provides the following technical solution:

[0007] A mobile sea cucumber farming pond, comprising:

[0008] As a connecting frame for connecting the base frame, the connecting frame has grooves at both the top and bottom;

[0009] The top assembly structure is placed on top of the connecting frame, including a bracket set on top of the connecting frame. The bottom of the bracket is integrally formed and connected to a socket that fits into the slot. A floating plate is connected to the top of the bracket. Multiple supports are connected to the bottom of the floating plate. Connecting cables are set at the bottom of the supports. The bottom end of the connecting cables is connected to a positioning anchor.

[0010] The bottom frame is arranged at the bottom of the connecting frame, and a clamping seat matched with the embedded slot is integrally formed at the top of the bottom frame.

[0011] The construction method of the movable sea cucumber breeding pond comprises the following steps:

[0012] 1) Metal cage preparation: according to the size drawing, the connecting frame, the support and the bottom frame are prepared, and the connecting frame, the support and the bottom frame are slotted, the connecting frame is provided with an embedded slot at the top and the bottom, the support is welded or integrally formed with an embedded seat at the bottom, and the outer side of the embedded seat is polished until it is matched with the embedded slot for clamping, and the bottom frame is set in the same way, and the burrs are polished, wherein the slot distance and the slot diameter are set according to the requirements;

[0013] 2) Further manufacturing of the connecting frame, the support and the bottom frame: the connecting frame, the support and the bottom frame are equally divided into multiple groups of arc-shaped plate structures, and after assembly, the structure is annular or rectangular, and the left and right sides of the arc-shaped plate are respectively provided with a connecting slot and a connecting seat matched with the connecting slot, and the outer sides of the connecting frame, the support and the bottom frame are coated with protective coatings;

[0014] 3) Cage assembly: first, the connecting frame, the support and the bottom frame are assembled left and right by clamping to form the required annular structure, then the connecting frame, the support and the bottom frame are assembled and connected by clamping and matching the embedded slot and the seat, and the shape of the breeding pond is formed, and the connecting mode of step 2 is matched to facilitate subsequent disassembly and assembly operations;

[0015] 4) Floating plate connection: the floating plate is clamped on the top of the assembled support by positioning bolts, and the connecting rope is connected to the bottom of the floating plate, and the bottom end of the connecting rope is bolted to the positioning anchor, and the length of the connecting rope and the positioning anchor is adjusted according to actual needs;

[0016] 5) Connection reinforcement: holes are opened at the assembly connection, and further fixed by winding iron wire up and down, and corresponding clamping and matching positions on the connecting frame, the support and the bottom frame are provided with threaded holes, and further fixed by screwing the positioning bolts and nuts.

[0017] As a construction method of a movable sea cucumber breeding pond, it comprises the following steps: in order to ensure the production capacity of the breeding pond, the reef environment is optimized by combining the prevention and control of large harmful algae in the breeding pond;

[0018] The treatment steps are as follows:

[0019] S1, reducing the sediment in the reef gap, using sunny days to add supersaturated oxygen to the pond to oxidize the reef water and exchange the reduced products formed in the poor area;

[0020] S2, adding oxygenation agent or oxidizing disinfectant to the area with more reduced substances to ensure the oxidation capacity of the pond water;

[0021] S3, by human interference, to the reef to supplement the substrate and bacteria, change the reef micro-ecological composition, to improve the production capacity of sea cucumber reef benthic diatoms, organic detritus, probiotics composition of sea cucumber bait, sunny days with water pump to flush the reef, the precipitate in the reef gap away from the reef.

[0022] As a preferred method of constructing a movable sea cucumber breeding pool according to the present application, wherein: in step S2, local use of oxygenation agent, oxidizing disinfectant, artificially increase the degree of environmental oxidation, reduce the occurrence of sea cucumber disease, and improve the physiological activity of sea cucumber.

[0023] As a preferred method of constructing a movable sea cucumber breeding pool according to the present application, wherein: in step S3, by flushing the reef, the bacteria have the opportunity to be suspended in water and contact with the algal body, so as to be adsorbed and settled on the surface of the algal body, forming a bacterial film. Benthic diatoms can also quickly adsorb and settle on large algal bodies. Large algal bodies are wrapped by bacteria and benthic diatoms, making large algal bodies become an attachment base of high-quality sea cucumber feed, improving the production capacity of the breeding pool and the self-purification capacity of the water environment.

[0024] As a preferred method of constructing a movable sea cucumber breeding pool according to the present application, wherein: in step S3, when flushing the reef, the water pump and remote control system connected to the assembled breeding pool can be remotely controlled, or manually controlled.

[0025] Compared with the prior art, the integrated breeding pool is converted into a three-section assembled type by means of clamping connection. The movable breeding pool is moved according to the actual situation, the assembly link is simple, and the corresponding assembly diagram is provided. The number of construction personnel is relatively less than 80% of the traditional construction personnel. The overall disassembly and assembly are simple. Ultimately, the cost of breeding sea cucumber is relatively low, the ability to resist natural risks is stronger, and the cost investment of the breeder is one-time investment and lifelong benefit. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the present application will be described in detail below in combination with the drawings and detailed embodiments. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor. Among them:

[0027] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0028] Figure 2 It is an explosive structure diagram of the present application;

[0029] Figure 3 It is an explosive structure diagram of the present application;Figure 2 Front view structural schematic diagram

[0030] Figure 4 Longitudinal assembly structure schematic diagram of the present application

[0031] Figure 5 Aquaculture pond construction step schematic diagram of the present application

[0032] Figure 6 In-pool reef environment optimization treatment step schematic diagram of the present application

[0033] In the figure: 100 connecting frame, 110 embedding groove, 200 top assembly structure, 210 support, 211 embedding seat, 220 floating plate, 221 support, 230 connecting cable, 231 positioning anchor, 300 bottom frame, 310 clamping seat. DETAILED DESCRIPTION

[0034] In order to make the above-mentioned purposes, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0035] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the scope of the present application, therefore the present application is not limited to the specific embodiments disclosed below.

[0036] Secondly, the present application is described in detail in combination with the schematic diagram, in the detailed description of the embodiments of the present application, for the convenience of description, the cross-sectional view of the device structure will be partially enlarged without general proportion, and the schematic diagram is only an example, which should not limit the scope of protection of the present application here. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in actual production.

[0037] In order to make the purposes, technical solutions and advantages of the present application more clear, the embodiments of the present application will be further described in detail below in combination with the accompanying drawings.

[0038] The present application provides a movable sea cucumber aquaculture pond and a construction method thereof, please refer to Figures 1-4 , including connecting frame 100, top assembly structure 200 and bottom frame 300;

[0039] Please continue to refer to Figures 1-4 , as the connecting base frame connecting frame 100, the top and bottom of connecting frame 100 are provided with embedding groove;

[0040] The top assembly structure 200 is placed on the top of the connecting frame 100, including a support 210 arranged on the top of the connecting frame 100, the bottom of the support 210 is integrally connected with an embedding seat 211 matched with the embedding slot, the top of the support 210 is connected with a floating plate 220, the bottom of the floating plate 220 is connected with a plurality of supports 221, the bottom of the support 221 is provided with a connecting cable 230, and the bottom end of the connecting cable 230 is connected with a positioning anchor 231;

[0041] The bottom frame 300 is placed on the bottom of the connecting frame 100, and the top of the bottom frame 300 is integrally connected with a clamping seat 310 matched with the embedding slot;

[0042] The construction method of the culture pond is described in Figure 5 :

[0043] 1) metal cage preparation, according to the size drawing, the connecting frame, the support and the bottom frame are prepared, and the connecting frame, the support and the bottom frame are grooved, the top and bottom of the connecting frame are provided with embedding grooves, the bottom of the support is welded or integrally formed with an embedding seat, and the outer side of the embedding seat is polished until it is matched with the embedding groove, and the bottom frame is also provided with a polishing edge, wherein the groove distance and the groove diameter are set according to the requirements;

[0044] 2) further manufacturing of the connecting frame, the support and the bottom frame, the connecting frame, the support and the bottom frame are equally divided into a plurality of arc plate structures, the assembled structure is annular or rectangular, and the left and right sides of the arc plate are respectively provided with connecting grooves and connecting seats matched with the connecting grooves, and the support and the bottom frame are coated with protective coatings such as anti-corrosion, anti-rust and anti-oxidation coatings;

[0045] 3) cage assembly, first, the connecting frame, the support and the bottom frame are connected by left and right assembly through clamping, forming the required annular structure, then the connecting frame, the support and the bottom frame are connected by embedding groove and clamping seat, forming the shape of the culture pond, and the connecting mode of step 2) is convenient for subsequent disassembly and assembly operation;

[0046] 4) floating plate connection, the floating plate is clamped on the top of the assembled support by the positioning bolt, and the connecting cable is connected to the bottom of the floating plate, the bottom end of the connecting cable is connected to the positioning anchor, and the length of the connecting cable and the positioning anchor is adjusted according to the actual needs;

[0047] 5) connection reinforcement, the assembly connection is holed, and is further fixed by winding iron wire up and down, and the corresponding clamping and matching positions of the connecting frame, the support and the bottom frame are all provided with threaded holes, which are further screwed and fixed by the positioning bolt and the nut.

[0048] Through the card connection mode, the integrated culture pond is changed into three-section assembled type, the movable culture pond is built according to the actual situation, the assembly link is simple, and the corresponding assembly drawing is provided, the overall construction personnel is relatively less than 80% of the traditional construction personnel, the overall disassembly and assembly are simple, the cost investment of the overall sea cucumber culture is less, the ability of resisting natural risks is stronger, the cost investment of the breeder is achieved once and benefits for a lifetime;

[0049] At the same time, in order to ensure the production capacity in the culture pond, the sea cucumber reef environment is optimized by combining the prevention of large harmful algae in the culture pond;

[0050] The treatment steps are as follows, refer to Figure 6 :

[0051] S1, reducing the sediment in the reef gap, using the sunny day to add the supersaturated oxygen to the pond to oxidize the reef water, so as to exchange the reduction products formed in the poor area;

[0052] S2, the area with more reduction substances is put into oxygenation agent or oxidation disinfectant to ensure the oxidation capacity of the culture pond water;

[0053] S3, through artificial interference, the substrate and bacteria are supplemented to the reef, the microecological composition of the reef is changed, the production capacity of the sea cucumber reef feed composed of benthic diatoms, organic detritus and probiotics is improved, the reef is washed by the water pump in the sunny day, so that the sediment in the reef gap is washed away from the reef;

[0054] In step S2, the oxygenation agent and oxidation disinfectant are locally used to artificially increase the oxidation degree of the environment, reduce the occurrence of sea cucumber diseases, and improve the physiological activity of the sea cucumber;

[0055] In step S3, when the reef is washed, the bacteria have the opportunity to be suspended in water and contact with the algal body, so as to be adsorbed on the surface of the algal body to form a bacterial film, and the benthic diatoms can also be quickly adsorbed on the surface of the algal body, so that the large algae are wrapped by the bacteria and the benthic diatoms, the large algal body becomes the attachment base of the high-quality feed of the sea cucumber, and the production capacity of the feed in the culture pond and the self-purification capacity of the water environment are improved.

[0056] Although the application has been described with reference to the embodiments above, various improvements and modifications to the application can be made without deviating from the scope of the application, and equivalent parts can be substituted for the parts therein. In particular, the features in the embodiments disclosed in the present application can be combined with each other in any way as long as there is no structural conflict, and the combinations are not exhaustively described in the present specification only for the purpose of omitting the length and saving resources. Therefore, the present application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A method for constructing a mobile sea cucumber farming pond, characterized in that, Comprise the following steps: 1) metal cage preparation, according to the size of the connecting frame, support and bottom frame, and the connecting frame, support and bottom frame are grooved, the top and bottom of the connecting frame are provided with embedding grooves, the bottom of the support is welded or integrally formed with an embedding seat, and the outside of the embedding seat is polished until it is fitted with the embedding groove, and the bottom frame is set in the same way, and the burrs are polished, wherein the groove distance and groove diameter are set according to the requirements; 2) further manufacture of connecting frame, support and bottom frame, the connecting frame, support and bottom frame are equally divided into multiple groups of arc plate structure, the structure after assembly is annular or rectangular, and the left and right sides of the arc plate are respectively provided with connecting grooves and connecting seats matched with the connecting grooves, and the support and bottom frame are coated with protective coating; 3) cage assembly, first, the connecting frame, support and bottom frame are assembled left and right through the clamping mode to form the required annular structure, then the connecting frame, support and bottom frame are assembled and connected through the embedding groove and the clamping seat, and the shape of the breeding pool is formed, and the connecting mode of step 2 is fitted to facilitate subsequent disassembly and assembly operation; 4) floating plate connection, the floating plate is clamped on the top of the assembled support by positioning bolts, and the floating plate is connected with the connecting rope at the bottom, and the bottom end of the connecting rope is connected with the positioning anchor, and the length of the connecting rope and the positioning anchor is adjusted according to the actual needs; 5) connection reinforcement, the assembly connection is holed, and is further fixed by winding iron wire up and down, and the corresponding clamping and fitting positions on the connecting frame, support and bottom frame are provided with threaded holes, which are further screwed and fixed by positioning bolts and nuts; The movable sea cucumber breeding pool made according to the above steps comprises: The connecting frame (100) as the connecting base, the top and bottom of the connecting frame (100) are provided with embedding grooves; The top assembly structure (200) is arranged on the top of the connecting frame (100) and comprises the support (210) arranged on the top of the connecting frame (100), and the support (210) is integrally connected with the embedding seat (211) matched with the embedding groove at the bottom; The support (210) is connected with the floating plate (220) at the top, and the floating plate (220) is connected with a plurality of supports (221) at the bottom, and the supports (221) are provided with the connecting rope (230) at the bottom, and the bottom end of the connecting rope (230) is connected with the positioning anchor (231); The bottom frame (300) is arranged on the bottom of the connecting frame (100), and the bottom frame (300) is integrally connected with the clamping seat (310) matched with the embedding groove at the top; The connecting frame (100), the support (210) and the bottom frame (300) are annular structures assembled by a plurality of arc plates, and the corresponding clamping and fitting positions on the connecting frame (100), the support (210) and the bottom frame (300) are provided with threaded holes, which are further screwed and fixed by positioning bolts and nuts.

2. The method of claim 1, wherein, In order to ensure the production capacity of the breeding pool, the sea cucumber reef environment is optimized in combination with the prevention of large harmful algae in the breeding pool; The treatment steps are as follows: S1, reduce the sediment in the sea cucumber reef gap, use the sunny day to add the supersaturated oxygen to the pool to oxidize the sea cucumber reef water, and exchange the reduction products formed in the poor area; S2, the area with more reduced substances is put with oxygenation agent or oxidizing disinfectant to ensure the oxidation capacity of the water in the breeding pond; S3, the substrate and bacteria are supplied to the reef by human intervention to change the micro-ecological composition of the reef to improve the production capacity of the sea cucumber reef feed composed of benthic diatoms, organic detritus and probiotics. The reef is flushed with a water pump on sunny days to flush the sediments in the reef crevices away from the reef.

3. The method of claim 2, wherein the method further comprises: In step S2, the oxygenation agent and oxidizing disinfectant are used locally to increase the environmental oxidation degree, reduce the occurrence of sea cucumber diseases and improve the physiological activity of sea cucumbers.

4. The method of claim 3, wherein the method further comprises: In step S3, the bacteria have the opportunity to be suspended in water and contact with algae by flushing the reef, so as to be adsorbed on the surface of the algae to form a bacterial film. The benthic diatoms can also quickly adsorb and settle on the macroalgae, and the macroalgae are wrapped by the bacteria and benthic diatoms, so that the macroalgae become the attachment base of high-quality sea cucumber feed, and the production capacity of the feed in the breeding pond and the self-purification capacity of the water environment are improved.

5. The method of claim 4, wherein the method further comprises: In step S3, the reef can be flushed by connecting the water pump outside the breeding pond to the remote control system for remote timing control, or manually controlled by human intervention.

Citation Information

Patent Citations

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    CN112471029A