Cruising type fishing and travel combined culture platform

By designing a mobile aquaculture platform that combines fishing and tourism, the problem of the single function of deep-sea aquaculture platforms has been solved, and the comprehensive utilization of resources and the improvement of economic benefits have been achieved.

CN224084442UActive Publication Date: 2026-04-07SOUTHERN MARINE SCIENCE & ENGINEERING GUANGDONG LABORATORY (ZHANJIANG)
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing deep-sea aquaculture platforms have limited functions, fail to fully utilize marine and tourism resources, and lack comprehensive utilization and development.

Method used

Design a floating aquaculture platform that combines fishing and tourism, including a main deck, an aquaculture cabin, and a superstructure. The main deck has a recreational fishing area. The aquaculture cabin is located at the lower part of the deck and includes a support structure and aquaculture cages. The top of the support structure is connected to the main deck, and the aquaculture cages are connected to the external waters. The superstructure includes multiple functional decks with rest facilities, catering facilities, and sightseeing areas.

Benefits of technology

It has improved the platform's space utilization efficiency, expanded the scope of aquaculture operations, combined traditional fisheries with modern tourism, increased economic benefits, and created new sources of income for fishermen and tourism operators.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224084442U_ABST
    Figure CN224084442U_ABST
Patent Text Reader

Abstract

The utility model discloses a cruising type fishing and travel combined culture platform, and relates to the technical field of marine fishery, the cruising type fishing and travel combined culture platform comprises a main deck layer, a culture cabin layer and a superstructure, and the culture cabin layer is arranged at the lower part of the main deck layer; the breeding cabin layer comprises a supporting structure and a plurality of breeding net cages, the top of the supporting structure is connected with the main deck layer, the breeding nets are connected with the supporting structure, and the breeding nets are arranged at intervals; the aquaculture net cage communicates with an external water area; the main deck layer is provided with a leisure fishing area; the superstructure is arranged on the upper portion of the main deck layer and comprises multiple layers of functional decks. And rest facilities, catering facilities, entertainment facilities and indoor and outdoor sightseeing leisure areas are arranged on the multi-layer functional deck layer. According to the technical scheme, living and resting space is provided for sailors, meanwhile, a sightseeing and entertainment place is provided for tourists, and sea resources and tourism resources can be fully utilized as a tourism transfer station.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of marine fisheries technology, and in particular to a mobile aquaculture platform that combines fishing and tourism. Background Technology

[0002] In recent years, both the output and demand for marine aquaculture in my country have been increasing, but the total catch volume has been declining, and the growth rate of aquaculture output has slowed. Traditional bay aquaculture space is nearing saturation, limiting its development. Therefore, developing new marine aquaculture technologies and equipment to expand marine aquaculture from harbors and nearshore areas to open seas has become an inevitable choice. However, current deep-sea aquaculture platforms have limited functions, failing to fully utilize marine and tourism resources, and lacking comprehensive utilization and development. Utility Model Content

[0003] The main purpose of this application is to propose a mobile aquaculture platform that combines fishing and tourism, aiming to solve the problems of existing deep-sea aquaculture platforms having single functions and lacking comprehensive utilization.

[0004] To achieve the above objectives, the floating aquaculture-tourism integrated aquaculture platform proposed in this application includes:

[0005] The main deck level includes a recreational fishing area.

[0006] The aquaculture tank layer is located at the lower part of the deck; the aquaculture tank layer includes a support structure and several aquaculture net cages, the top of the support structure is connected to the main deck layer, the aquaculture net cages are connected to the support structure, and the aquaculture net cages are spaced apart; the aquaculture net cages are connected to the external water area.

[0007] The superstructure is located above the main deck level and includes multiple functional deck levels; the multiple functional deck levels are equipped with rest facilities, catering facilities, leisure and entertainment facilities and sightseeing areas.

[0008] In one embodiment, the supporting structure is provided with a plurality of aquaculture spaces, which are arranged at intervals along the forward direction of the floating aquaculture platform. Each aquaculture space has a first opening facing the side intersecting the forward direction of the floating aquaculture platform, and a second opening facing the bottom of the supporting structure. A mesh structure is provided at the first and second openings to allow the aquaculture spaces to surround and form the aquaculture cage; and / or,

[0009] The main deck and the aquaculture tank are designed as an integrated hull structure.

[0010] In one embodiment, the support structure includes a top structure, a middle structure, and a bottom structure connected sequentially from top to bottom. The breeding space is located in the middle structure, which includes a plurality of spaced-apart middle support columns. The two ends of the middle support columns are respectively connected to the top structure and the bottom structure. The second opening is located in the bottom structure.

[0011] In one embodiment, the aquaculture tank layer further includes a fore-end tank and a stern-end tank, which are respectively located at both ends of the support structure; the fore-end tank is provided with a first ballast water tank, a plurality of first anchor chain tanks and a first water storage tank; the stern-end tank is provided with an engine room, a diesel storage tank, a second ballast water tank and a plurality of second anchor chain tanks.

[0012] In one embodiment, the top structure has a headspace compartment in the middle, a top edge compartment at the edge of the top structure, and a third ballast water tank inside the middle support column; the bottom structure has a plurality of fourth ballast water tanks.

[0013] The top-level structure also has several second water storage tanks arranged in a row in the middle.

[0014] In one embodiment, the main deck layer is provided with a plurality of feed storage chambers, each of which is connected to one of the aquaculture cages; and / or,

[0015] The main deck also houses spaced-out aquaculture laboratories, aquaculture monitoring rooms, a reception hall and multi-functional hall, a kitchen, a first restaurant, and a grain warehouse.

[0016] In one embodiment, aquaculture channels are provided on both sides of the top-level structure, and the location and number of aquaculture channels correspond to the location and number of aquaculture net cages; one end of the aquaculture channel is connected to the feed storage room, and the other end of the aquaculture channel is connected to the aquaculture net cage body.

[0017] In one embodiment, the multi-level functional deck includes a second deck located above the main deck, and the second deck includes a second restaurant and several first rest areas; the multi-level functional deck also includes a third deck located above the second deck, and the third deck includes a first sightseeing and leisure area, a leisure and entertainment hall, and several second rest areas; the leisure and entertainment hall is equipped with leisure and entertainment facilities; both the first and second rest areas are equipped with the rest facilities; the second restaurant is equipped with the catering facilities; and / or,

[0018] The upper part of the main deck is also provided with a stern building, which includes an engine room canopy, a fan room, and a ventilation structure.

[0019] In one embodiment, the multi-functional deck layer further includes a fourth deck layer and a driving deck layer, which are located on top of the third deck layer and at opposite ends of the sightseeing area. The fourth deck layer is equipped with a multimedia hall, and the driving deck layer is equipped with a driver's cab and a wireless room, the wireless room being used to house communication equipment.

[0020] In one embodiment, the multi-functional deck level further includes a fifth deck level, which is located on top of the fourth deck level, and the fifth deck level has a second sightseeing and leisure area; and / or,

[0021] The multi-functional deck layer also includes a compass deck layer, which is located on top of the navigation deck layer.

[0022] The technical solution of this application involves setting up an aquaculture tank layer at the bottom of the main deck layer. The aquaculture tank layer includes a support structure and several aquaculture net cages. The top of the support structure is connected to the main deck layer, and the aquaculture net cages are connected to the support structure. The support structure is used to improve the structural strength of the aquaculture tank layer, thereby improving the overall stability and safety, and making the aquaculture tank layer adaptable to the deep-sea environment. The aquaculture net cages are spaced apart and connected to the external waters, which can ensure the uniform distribution of water flow and maintain the consistency between the water inside the aquaculture net cages and the external natural seawater environment, which is conducive to the growth and health of farmed fish. In addition, a superstructure is set up above the main deck layer, which includes multiple functional deck layers. The multiple functional deck layers are equipped with rest facilities, catering facilities, and sightseeing areas. The superstructure features rest facilities, dining facilities, and sightseeing areas, providing not only living and resting spaces for crew members but also places for tourists to enjoy sightseeing and entertainment. In addition to its marine aquaculture function, it can also serve as a means of transportation for tourists to board and transfer, and as a transit point for maritime tourism between tourist attractions. This allows the mobile aquaculture platform to fully utilize marine and tourism resources, increasing its economic benefits and improving cash flow during operation. Furthermore, this mobile aquaculture platform not only improves space utilization efficiency but also expands the scope of aquaculture operations, combining traditional fisheries with modern tourism, creating new sources of income for fishermen and tourism operators. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0024] Figure 1 A schematic diagram of the structure of an embodiment of the fishing and tourism integrated aquaculture platform provided in this application;

[0025] Figure 2 A top view schematic diagram of an embodiment of the fishing and tourism integrated aquaculture platform provided in this application;

[0026] Figure 3 A right-side structural schematic diagram of an embodiment of the fishing and tourism integrated aquaculture platform provided in this application;

[0027] Figure 4 A schematic diagram of the left side of an embodiment of the fishing and tourism integrated aquaculture platform provided in this application;

[0028] Figure 5 A schematic cross-sectional view of the middle section of an embodiment of the cruise-type aquaculture platform provided in this application;

[0029] Figure 6 A schematic diagram of the main deck layer of an embodiment of the cruise-type aquaculture platform provided in this application;

[0030] Figure 7 A schematic diagram of the top-level structure of an embodiment of the fishing and tourism integrated aquaculture platform provided in this application;

[0031] Figure 8 A schematic diagram of the central structure of an embodiment of the cruise-type aquaculture platform provided in this application;

[0032] Figure 9 A schematic diagram of the underlying structure of an embodiment of the fishing and tourism integrated aquaculture platform provided in this application;

[0033] Figure 10 A schematic diagram of the structure of the second deck layer of an embodiment of the cruise-type aquaculture platform provided in this application;

[0034] Figure 11 A schematic diagram of the third deck layer of an embodiment of the cruise-type aquaculture platform provided in this application;

[0035] Figure 12 A schematic diagram of the fourth deck layer of an embodiment of the cruise-type aquaculture platform provided in this application;

[0036] Figure 13 A schematic diagram of the fifth deck layer of an embodiment of the cruise-type aquaculture platform provided in this application;

[0037] Figure 14A schematic diagram of the driving deck layer of an embodiment of the cruise-type aquaculture platform provided in this application;

[0038] Figure 15 This is a schematic diagram of the compass deck layer of an embodiment of the cruise-type aquaculture platform that combines fishing and tourism provided in this application.

[0039] Explanation of icon numbers:

[0040] 1. Main deck level; 11. Feed storage room; 12. Aquaculture laboratory; 13. Aquaculture monitoring room; 14. Reception hall; 15. Multifunctional hall; 16. Kitchen; 17. First dining room; 18. Grain storage; 2. Aquaculture compartment level; 21. Support structure; 211. Top structure; 2112. Headspace compartment; 2113. Top edge compartment; 2115. Second water storage compartment; 2116. Aquaculture passage; 212. Mid-section structure; 2121. Mid-section support column; 213. Bottom structure; 2131. Fourth ballast water tank; 22. Aquaculture cage; 25. Forehead compartment; 251. First ballast water tank; 252. First anchor chain compartment 253. First water tank; 26. Aft tip tank; 261. Engine room; 262. Diesel storage tank; 263. Second ballast water tank; 264. Second anchor chain compartment; 27. Mesh structure; 3. Superstructure; 31. Second deck level; 311. Second dining room; 312. First lounge; 32. Third deck level; 321. First sightseeing and leisure area; 322. Recreation hall; 323. Second lounge; 33. Fourth deck level; 331. Multimedia hall; 34. Bridge deck level; 341. Bridge; 345. Wireless room; 35. Fifth deck level; 36. Compass deck level; 4. Stern building.

[0041] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0042] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0043] It should be noted that if the embodiments of this application involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0044] Furthermore, if the embodiments of this application involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution that simultaneously satisfies A and B. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0045] In recent years, both the output and demand for marine aquaculture in my country have been increasing, but the total catch volume has been declining, and the growth rate of aquaculture output has slowed. Traditional bay aquaculture space is nearing saturation, limiting its development. Therefore, developing new marine aquaculture technologies and equipment to expand marine aquaculture from harbors and nearshore areas to open seas has become an inevitable choice. However, current deep-sea aquaculture platforms have limited functions, failing to fully utilize marine and tourism resources, and lacking comprehensive utilization and development.

[0046] To address the aforementioned issues, this application proposes a mobile aquaculture platform that combines fishing and tourism.

[0047] Please see Figures 1 to 15 In one embodiment of this application, the cruise-type aquaculture platform combining fishing and tourism includes a main deck layer 1, an aquaculture cabin layer 2, and a superstructure 3. The main deck layer 1 is equipped with a recreational fishing area, and the aquaculture cabin layer 2 is located at the lower part of the deck. The aquaculture cabin layer 2 includes a support structure 21 and several aquaculture net cages 22. The top of the support structure 21 is connected to the main deck layer 1, and the aquaculture net cages 22 are connected to the support structure 21. The aquaculture net cages 22 are spaced apart. The aquaculture net cages 22 are connected to the external waters. The superstructure 3 includes a multi-level functional deck layer. The multi-level functional deck layer includes rest facilities, catering facilities, leisure and entertainment facilities, and sightseeing areas.

[0048] Aquaculture tank layer 2 is set at the bottom of the main deck layer 1. The aquaculture tank layer 2 includes a support structure 21 and several aquaculture net cages 22. The top of the support structure 21 is connected to the main deck layer 1, and the aquaculture net cages 22 are connected to the support structure 21. The support structure 21 is used to improve the structural strength of the aquaculture tank layer 2, thereby improving the overall stability and safety, and making the aquaculture tank layer 2 adaptable to the deep-sea environment. The aquaculture net cages 22 are spaced apart and connected to the external water area, which can ensure the uniform distribution of water flow and keep the water inside the aquaculture net cages 22 consistent with the external natural seawater environment, which is conducive to the growth and health of farmed fish. In addition, a superstructure 3 is set at the top of the main deck layer 1. The superstructure 3 includes multiple functional deck layers. The multiple functional deck layers are equipped with rest facilities, catering facilities and sightseeing areas. The superstructure 3 is equipped with rest facilities, catering facilities, and sightseeing areas, providing not only living and resting spaces for crew members but also places for tourists to enjoy sightseeing and entertainment. In addition to its marine aquaculture function, it can also serve as a means of transportation for tourists to board and transfer, and as a transit point for maritime tourism between tourist attractions. This allows the cruise-type aquaculture platform to fully utilize marine and tourism resources, increasing its economic benefits and improving cash flow during operation. Furthermore, this cruise-type aquaculture platform not only improves space utilization efficiency but also expands the scope of aquaculture operations, combining traditional fisheries with modern tourism, creating new sources of income for fishermen and tourism operators.

[0049] The main deck level 1 and the aquaculture tank level 2 are designed as an integrated hull structure. Hull structures typically offer better stability and resistance to wind and waves, helping to disperse the impact of waves and reduce platform swaying in rough sea conditions. The integrated design of the main deck level 1 and the aquaculture tank level 2 enhances the overall structural strength of the platform, facilitates more even load distribution, and reduces localized stress concentration.

[0050] In one embodiment, the support structure 21 is provided with a plurality of aquaculture spaces, which are arranged at intervals along the forward direction of the mobile aquaculture platform. Each aquaculture space has a first opening facing the side intersecting the forward direction of the mobile aquaculture platform, and a second opening facing the bottom of the support structure 21. A mesh structure 27 is provided at both the first and second openings to surround the aquaculture spaces, forming an aquaculture cage 22. The combination of the support structure 21 and the mesh structure 27 improves the structural stability of the aquaculture cage 22, enabling it to adapt to different marine environmental conditions. The spaced arrangement of the aquaculture spaces along the forward direction of the aquaculture platform helps ensure a uniform distribution of water flow, providing sufficient oxygen and nutrients for the fish in the aquaculture cage 22, while also facilitating management and monitoring. The aquaculture cage 22, formed by surrounding the aquaculture spaces with the mesh structure 27, possesses good structural stability and also facilitates the observation and management of the farmed fish. Each aquaculture space has a first and a second opening. The first opening faces the side intersecting with the direction of travel of the floating aquaculture platform, while the second opening faces the bottom of the supporting structure 21. These openings allow for direct water exchange with the external water body to maintain water freshness, and also facilitate wastewater discharge or water flow regulation. A mesh structure 27 is installed at both openings to prevent fish from escaping while allowing water to flow freely, ensuring that the water quality inside the aquaculture cage 22 remains consistent with the external water body and reducing disease incidence. The mesh size 27 is designed according to the size of the farmed fish, ensuring both escape prevention and unobstructed water flow.

[0051] In one embodiment, the support structure 21 includes a top structure 211, a middle structure 212, and a bottom structure 213 connected sequentially from top to bottom. The aquaculture space is located in the middle structure 212, which includes a plurality of spaced-apart 2111s, the two ends of which are connected to the top structure 211 and the bottom structure 213, respectively. A second opening is located in the bottom structure 213. The support structure 21 is configured as three parts connected sequentially from top to bottom: the top structure 211, the middle structure 212, and the bottom structure 213. This helps to improve the structural strength and stability of the entire aquaculture chamber layer 2. The aquaculture space is located in the middle structure 212, which ensures that the aquaculture space is in a relatively stable and easily monitored position, while allowing other necessary compartments or functional areas to be set in the top and bottom structures 213. The middle structure 212 includes several spaced-apart 2111s, the two ends of which are connected to the top structure 211 and the bottom structure 213 respectively, providing vertical support for the aquaculture tank layer 2, increasing the rigidity and bending resistance of the entire structure, and also providing necessary support for the aquaculture space. The second opening is located in the bottom structure 213 and serves as a channel for water flow in and out to maintain the freshness of the water in the aquaculture cage 22.

[0052] In one embodiment, the aquaculture tank layer 2 further includes a bow tip tank 25 and a stern tip tank 26, which are respectively located at both ends of the supporting structure 21. The bow tip tank 25 is equipped with a first ballast water tank 251, several first anchor chain tanks 252, and a first water storage tank 253. The stern tip tank 26 is equipped with an engine room 261, a diesel fuel storage tank 262, a second ballast water tank 263, and several second anchor chain tanks 264. The bow tip tank 25 is located at the foremost end of the cruise-type aquaculture platform and contains the first ballast water tank 251, which is used to adjust the buoyancy and stability of the vessel, thereby changing the vessel's draft and center of gravity, thus improving overall navigation performance and stability. The first anchor chain tanks 252 are used to store anchor chains for mooring when the vessel is at anchor. The first water storage tanks 253 can be used to store domestic freshwater, wastewater, or other liquids for the vessel's use. The aft peak compartment 26, located at the stern of the cruise-type aquaculture platform, houses the main engine, auxiliary engines, and other mechanical equipment via an engine room 261. The diesel storage compartment 262, used for storing marine fuel oil or other oil products, must meet relevant safety and environmental requirements. Similar to the forepeak compartment 25, the second ballast water tank 263 within the aft peak compartment 26 also helps adjust the buoyancy and stability of the cruise-type aquaculture platform. The second anchor chain compartment 264 is also used to store anchor chains, improving stability during mooring; alternatively, the anchor chain compartment in the aft peak compartment 26 can also store spare anchor chains or other mooring equipment. The forepeak compartment 25 has a multi-layered structure, with the first ballast water tank 251, several first anchor chain compartments 252, and the first water storage tank 253 arranged in different layers according to space requirements; and the stern compartment 26 also has a multi-layered structure, with the engine room 261, diesel storage compartment 262, second ballast water tank 263, and several second anchor chain compartments 264 arranged in different layers according to space requirements to improve space utilization.

[0053] In one embodiment, the top structure 211 has a headspace compartment 2112 in the middle, a top edge compartment 2113 at its edge, and a third ballast water tank inside the central support column 2111; the bottom structure 213 has several fourth ballast water tanks 2131; and the top structure 211 also has several second water storage tanks 2115 arranged in a row in the middle. Located in the middle of the top structure 211, the headspace compartment 2112 provides additional storage space or is used for other functions, such as a work area or equipment storage area, which can improve the space utilization rate of the mobile aquaculture platform. Located at the edge of the top structure 211, it stores ballast water to facilitate the buoyancy adjustment and stability control of the mobile aquaculture platform, improving its flexibility and operational efficiency. The third ballast water tank located within the central support column 2111 is also used to adjust the vessel's center of gravity and buoyancy. Especially during aquaculture operations, the amount of ballast water can be adjusted according to changes in fish load to maintain the stability of the mobile aquaculture platform. Several fourth ballast water tanks 2131 located within the bottom structure 213 are also used to adjust the buoyancy and stability of the mobile aquaculture platform, helping to maintain its safety and operability under different load conditions.

[0054] In one embodiment, a plurality of feed storage chambers 11 are provided on the main deck level 1, and each feed storage chamber 11 is connected to aquaculture cage 22. The feed storage chambers 11 are located on the main deck level 1, facilitating the transport of feed from the deck to the storage chambers, and also facilitating the management and monitoring of feed inventory and usage. Each feed storage chamber 11 is directly connected to aquaculture cage 22, and the connecting pipes ensure rapid and efficient distribution of feed, improving aquaculture efficiency while reducing feed loss and waste during transportation, and also reducing the labor intensity of manual feeding.

[0055] In one embodiment, the main deck level 1 is further equipped with an aquaculture laboratory 12, an aquaculture monitoring room 13, a reception hall 14, a multi-functional hall 15, a kitchen 16, a first restaurant 17, and a grain storage 18, all spaced apart. The aquaculture laboratory 12 is used for research and experimentation on fish growth, disease prevention, and aquaculture techniques. The aquaculture monitoring room 13 is used to monitor water quality parameters, fish activity, and the operating status of aquaculture equipment within the aquaculture cages 22. The monitoring room 13 can ensure the stability of the aquaculture environment and the health of the fish by collecting data in real time. The reception hall 14 provides reception services for visitors, including registration, information consultation, and guided tours. The reception hall 14 is the first stop for visitors upon arrival at the platform, providing necessary information and assistance. The multi-functional hall 15 is used to host various activities, such as meetings, training sessions, entertainment, and social events. Furthermore, the multi-functional hall 15 can be arranged as needed to meet the requirements of different activities. The kitchen 16 provides catering services for platform staff and visitors. The first restaurant 17 is equipped with catering facilities and provides a comfortable dining environment for staff and visitors to enjoy meals. The design of the first restaurant 17 needs to consider the number of diners, the dining environment, and the efficiency of catering services. The grain depot 18 is used to store grains and other food products to ensure the food supply of the platform. The grain depot 18 needs to be equipped with appropriate storage conditions, such as temperature and humidity control, to keep the food fresh and safe.

[0056] In one embodiment, breeding channels 2116 are provided on both sides of the top layer structure 211. The location and number of breeding channels 2116 correspond to the location and number of breeding net cages 22. One end of the breeding channel 2116 is connected to the feed storage room 11, and the other end of the breeding channel 2116 is connected to the breeding net cage 22. The breeding channels 2116 are located on both sides of the top layer structure 211, and their location and number correspond to the breeding net cages 22. Each breeding net cage 22 has a direct channel connection, ensuring that the animals or feed can quickly enter the breeding net cage 22, improving work efficiency. The connection between one end of the breeding channel 2116 and the feed storage room 11, and the connection between the other end of the breeding channel 2116 and the breeding net cage 22, allows feed to be easily transported from the storage room to each breeding net cage 22, reducing the distance of feed handling and labor intensity, and significantly improving the efficiency of breeding operations.

[0057] In one embodiment, the multi-level functional deck includes a second deck 31, located above the main deck 1, which houses a second restaurant 311 and several first lounges 312. The multi-level functional deck also includes a third deck 32, located above the second deck 31, which houses a first sightseeing and leisure area 321, a recreation hall 322, and several second lounges 323. The recreation hall 322 contains recreational facilities, the first lounges 312 and second lounges 323 contain rest facilities, and the second restaurant 311 contains catering facilities. The second deck 31, located above the main deck 1, provides additional space for the second restaurant 311 and the rest area, offering a comfortable dining environment and rest area for tourists and staff. The lounges provide a space for tourists to rest and relax, with comfortable amenities such as beds, sofas, and coffee tables. The third deck level 32, located above the second deck level 31, is primarily for sightseeing and leisure, providing tourists with a better viewing experience and additional rest space for staff. The first sightseeing and leisure area 321 offers tourists expansive views of the surrounding ocean and natural beauty. The second lounge 323, located on the third deck level 32, provides a more private and quiet resting space, especially for tourists seeking a moment of tranquility during their sightseeing. By establishing multiple decks above the main deck, vertical space can be utilized more effectively, increasing the platform's functionality and providing integrated services for dining, rest, and sightseeing, thus enhancing the tourist experience. Different deck levels can meet the diverse needs of tourists and staff, such as rest, dining, and sightseeing; a rational spatial layout improves the platform's operational efficiency and ensures the smooth operation of all services.

[0058] In one embodiment, the multi-functional deck level further includes a fourth deck level 33 and a bridge deck level 34, which are located on top of the third deck level 32 and at opposite ends of the sightseeing area. The fourth deck level 33 houses a multimedia hall 331; the bridge deck level 34 houses a bridge 341 and a wireless room 345, the latter used to house communication equipment. The fourth deck level 33, located on top of the third deck level 32, provides additional leisure and entertainment facilities and, by being situated at one end of the sightseeing area, offers visitors diverse activity and entertainment options. Furthermore, the multimedia hall 331 on the fourth deck level 33 can be used for showing movies, holding lectures, conducting meetings, or social events, enriching visitors' maritime activities and providing diverse entertainment options. The bridge deck level 34, also located on top of the third deck level 32 and at the other end of the sightseeing area, serves as a navigation and control center, helping to maintain a clear view from the bridge 341 while ensuring navigational safety. The bridge 341 is located on deck 34, where the crew navigates and monitors the navigation status. The bridge 341 is equipped with advanced communication, navigation and control equipment. In addition, there is a wireless room 345 on deck 34, which is used to house communication equipment such as radio, radar, GPS and so on, to ensure communication between the platform and the outside world.

[0059] In one embodiment, the multi-functional deck also includes a fifth deck 35, which is located on top of the fourth deck 33 and has a second sightseeing and leisure area. The second sightseeing and leisure area on the fifth deck 35 further expands the platform's sightseeing capabilities, providing more space for tourists to enjoy the seascape and natural beauty.

[0060] In one embodiment, the multi-functional deck layer also includes a compass deck 36, which is located above the bridge deck 34. The compass deck 36 is the highest deck of the ship, and it is typically equipped with navigation equipment such as masts, radar antennas, searchlights, and standard compasses.

[0061] In one embodiment, a stern building 4 is also provided on top of the main deck level 1. The stern building 4 includes an engine room 261 canopy, a fan room, and ventilation structures. The engine room 261 canopy is a structure covering the engine room 261, used to isolate the engine room 261 from other areas, while providing necessary ventilation and lighting. The design of the engine room 261 canopy helps protect the mechanical equipment inside the engine room 261 from severe weather, and also provides a relatively comfortable working environment for the personnel in the engine room 261. The fan room is a space for installing ventilation equipment, responsible for delivering fresh air to various compartments of the ship, especially the engine room 261 area which requires a large amount of ventilation. The presence of the fan room ensures the air quality inside the platform, protecting the health of personnel and the normal operation of equipment. The ventilation structures include various ventilation ducts and equipment used to deliver fresh outside air into the ship's interior while expelling stale air from inside.

[0062] The technical solution of this application involves setting up an aquaculture tank layer 2 at the bottom of the main deck layer 1. The aquaculture tank layer 2 includes a support structure 21 and several aquaculture net cages 22. The top of the support structure 21 is connected to the main deck layer 1, and the aquaculture net cages 22 are connected to the support structure 21. The support structure 21 is used to improve the structural strength of the aquaculture tank layer 2, thereby improving the overall stability and safety and enabling the aquaculture tank layer 2 to adapt to the deep-sea environment. The aquaculture net cages 22 are spaced apart and connected to the external waters, which can ensure the uniform distribution of water flow and maintain the consistency between the water inside the aquaculture net cages 22 and the external natural seawater environment, which is beneficial to the growth and health of farmed fish. In addition, a superstructure 3 is set up on top of the main deck layer 1, which includes multiple functional deck layers. The multiple functional deck layers are equipped with rest facilities, catering facilities, and sightseeing areas. The superstructure 3 is equipped with rest facilities, catering facilities, and sightseeing areas, providing not only living and resting spaces for crew members but also places for tourists to enjoy sightseeing and entertainment. In addition to its marine aquaculture function, it can also serve as a means of transportation for tourists to board and transfer, and as a transit point for maritime tourism between tourist attractions. This allows the cruise-type aquaculture platform to fully utilize marine and tourism resources, increasing its economic benefits and improving cash flow during operation. Furthermore, this cruise-type aquaculture platform not only improves space utilization efficiency but also expands the scope of aquaculture operations, combining traditional fisheries with modern tourism, creating new sources of income for fishermen and tourism operators.

[0063] The above description is merely an exemplary embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the technical concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.

Claims

1. A mobile aquaculture platform integrating fishing and tourism, characterized in that, include The main deck level includes a recreational fishing area. The aquaculture tank layer is located at the lower part of the deck; the aquaculture tank layer includes a support structure and several aquaculture net cages, the top of the support structure is connected to the main deck layer, the aquaculture net cages are connected to the support structure, and the aquaculture net cages are spaced apart; the aquaculture net cages are connected to the external water area. The superstructure is located above the main deck level and includes multiple functional deck levels; the multiple functional deck levels are equipped with rest facilities, catering facilities, leisure and entertainment facilities and sightseeing areas.

2. The mobile aquaculture-tourism integrated aquaculture platform as described in claim 1, characterized in that, The supporting structure is provided with a plurality of aquaculture spaces, which are arranged at intervals along the forward direction of the floating aquaculture platform. Each aquaculture space has a first opening facing the side intersecting the forward direction of the floating aquaculture platform, and a second opening facing the bottom of the supporting structure. A mesh structure is provided at the first and second openings so that the aquaculture spaces surround to form the aquaculture cage. And / or, The main deck and the aquaculture tank are designed as an integrated hull structure.

3. The floating aquaculture-tourism integrated aquaculture platform as described in claim 2, characterized in that, The supporting structure includes a top structure, a middle structure, and a bottom structure connected sequentially from top to bottom. The breeding space is located in the middle structure, which includes a number of spaced-apart central support columns. The two ends of the central support columns are connected to the top structure and the bottom structure, respectively. The second opening is located in the bottom structure.

4. The mobile aquaculture-tourism integrated aquaculture platform as described in claim 3, characterized in that, The aquaculture tank layer also includes a fore-end tank and a stern-end tank, which are respectively located at both ends of the supporting structure; the fore-end tank is provided with a first ballast water tank, several first anchor chain tanks and a first water storage tank; the stern-end tank is provided with an engine room, a diesel storage tank, a second ballast water tank and several second anchor chain tanks.

5. The mobile aquaculture-tourism integrated aquaculture platform as described in claim 3, characterized in that, The top structure has a headspace compartment in the middle, a top edge compartment at the edge of the top structure, and a third ballast water tank inside the middle support column; the bottom structure has several fourth ballast water tanks. The top-level structure also has several second water storage tanks arranged in a row in the middle.

6. The floating aquaculture-tourism integrated aquaculture platform as described in claim 3, characterized in that, The main deck layer is equipped with several feed storage rooms, each of which is connected to one of the aquaculture cages; and / or, The main deck also includes an aquaculture laboratory, an aquaculture monitoring room, a reception hall and a multi-functional hall, a kitchen, a first restaurant and a grain warehouse, all spaced apart. The first restaurant is equipped with the aforementioned catering facilities.

7. The mobile aquaculture-tourism integrated aquaculture platform as described in claim 6, characterized in that, Both sides of the top-level structure are provided with aquaculture channels, the location and number of which correspond to the location and number of aquaculture net cages; one end of the aquaculture channel is connected to the feed storage room, and the other end of the aquaculture channel is connected to the aquaculture net cage.

8. The mobile aquaculture-tourism integrated platform as described in any one of claims 1 to 7, characterized in that, The multi-level functional deck includes a second deck located above the main deck, which houses a second restaurant and several first lounges. The multi-level functional deck also includes a third deck located above the second deck, which includes a first sightseeing and leisure area, a recreation hall, and several second lounges. The recreation hall is equipped with recreational facilities. Both the first and second lounges are equipped with the aforementioned rest facilities. The second restaurant is equipped with the aforementioned catering facilities. And / or... The upper part of the main deck is also provided with a stern building, which includes an engine room canopy, a fan room, and a ventilation structure.

9. The mobile aquaculture-tourism integrated aquaculture platform as described in claim 8, characterized in that, The multi-functional deck level also includes a fourth deck level and a driving deck level. The fourth deck level and the driving deck level are located on top of the third deck level and are located at opposite ends of the sightseeing area. The fourth deck level is equipped with a multimedia hall. The driving deck level is equipped with a driver's cab and a wireless room. The wireless room is used to house communication equipment.

10. The mobile aquaculture-tourism integrated platform as described in claim 9, characterized in that, The multi-functional deck level also includes a fifth deck level, which is located on top of the fourth deck level and has a second sightseeing and leisure area; and / or, The multi-functional deck layer also includes a compass deck layer, which is located on top of the navigation deck layer.