Modular honeycomb floating body unit ocean platform structure and method
The modular cellular floating unit marine platform structure solves the problems of inconvenient maintenance, upgrades, and flexible assembly of existing marine platforms, thereby improving the stability and flexibility of the platform, adapting to different sea conditions, and shortening the construction cycle.
Patent Information
- Application Number
- CN202610041487.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-13
- Publication Date
- 2026-02-27
AI Technical Summary
Existing marine platforms are not easy to maintain and upgrade, and cannot be assembled according to usage requirements, resulting in low flexibility in use.
The modular honeycomb floating unit marine platform structure includes floats, wave-damping units, connectors, snap-fit blocks, connecting bolts, and railing posts. The modular design enables flexible assembly, maintenance, and upgrades of the platform. The wave-damping units improve the platform's stability, and the U-shaped structure creates a multi-level structure to adapt to different sea conditions.
It enables flexible assembly and rapid maintenance and upgrades of offshore platforms, improves the stability and operational flexibility of the platforms in the marine environment, adapts to different water depths and sea conditions, and shortens the construction cycle.
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Figure CN121573100A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of ocean technology, in particular to a modular honeycomb floating unit ocean platform structure and method. BACKGROUND
[0002] At present, ocean platforms are widely used in aquaculture technology. Ocean platforms can be used for sampling operations on the sea surface and can also be used for recreational fishing. Most ocean platforms have net cages installed below them for aquaculture. The net cages have a multi-dimensional fixed frame structure and are large in size, making fishing operations cumbersome.
[0003] The prior art provides an ocean aquaculture platform. The aquaculture platform has net cages installed between platform positioning piles for aquaculture. The net cages include fixed net racks and folding net racks. The folding net racks are composed of four support columns formed by multiple hinged connecting rods and a net surface between the support columns. The folding structure reduces the occupied volume, facilitating transportation, expansion, and fishing. The platform uses a winch device in combination with connecting ropes to expand and fix the folding net racks, avoiding changes in volume caused by deformation of the net cages. Guide wheels guide the connecting ropes.
[0004] However, the ocean platform in the prior art is not convenient to maintain and upgrade, and cannot be assembled into a platform structure according to the use requirements, resulting in low flexibility in use. SUMMARY
[0005] The present application aims to provide a modular honeycomb floating unit ocean platform structure and method, which solves the technical problem of the prior art that the ocean platform is not convenient to maintain and upgrade, and cannot be assembled into a platform structure according to the use requirements, resulting in low flexibility in use.
[0006] To achieve the above-mentioned purpose, the present application adopts a modular honeycomb floating unit ocean platform structure, which comprises a floating plate, a wave protection unit, a connecting piece, a clamping block, a connecting screw, and a fence column. The wave protection unit is fixedly connected with the floating plate and located at the lower end of the floating plate. The number of clamping blocks is two groups, and two groups of clamping blocks are respectively arranged on both sides of the connecting piece. The connecting piece is arranged on one side of the floating plate, and one group of clamping blocks is embedded in the interior of the floating plate and detachably connected with the floating plate through the connecting screw. The number of fence columns is multiple, and each group of fence columns is respectively threadedly connected with the floating plate and located at the upper end of the floating plate.
[0007] The wave protection unit comprises a main weight-bearing module and a secondary weight-bearing module. The main weight-bearing module is fixedly connected with the floating plate and located at the lower end of the floating plate. The secondary weight-bearing module is fixedly connected with the floating plate and located at the lower end of the floating plate, and the secondary weight-bearing module is located on the inner side of the main weight-bearing module.
[0008] The main weight-bearing module comprises first pull ropes and a pyramid, the number of the first pull ropes is multiple groups, and the two ends of each group of the first pull ropes are connected with corresponding floating plates and the pyramid respectively.
[0009] The secondary weight-bearing module comprises second pull ropes and a cone, and the two ends of the second pull ropes are connected with corresponding floating plates and the cone respectively.
[0010] The pyramid is made of cement material, and the cone is made of metal material.
[0011] The floating plate comprises a lower panel, an upper panel, four groups of directional clamping blocks and a honeycomb floating body, the four groups of directional clamping blocks are fixedly connected with the lower panel and located at the upper end of the lower panel respectively, the four groups of directional clamping blocks are located at the circumferential angles of the lower panel respectively, the honeycomb floating body is embedded on the inner side of the four groups of directional clamping blocks, and the upper panel is arranged at the upper end of the four groups of directional clamping blocks and the honeycomb floating body.
[0012] The upper panel has multiple groups of connecting through holes and multiple groups of column through holes, the multiple groups of connecting through holes are matched with the connecting screw rods respectively, and the multiple groups of column through holes are matched with the fence columns respectively.
[0013] The lower panel comprises a prism plate and multiple groups of positioning pull rings, each group of the positioning pull rings is fixedly connected with the prism plate and located at the circumferential side of the prism plate respectively, the upper end of the prism plate has multiple groups of threaded holes, and each group of the threaded holes is matched with the corresponding connecting screw rod.
[0014] The honeycomb floating body comprises a floating bin, a honeycomb partition plate, a bin cover and multiple groups of foam columns, the honeycomb partition plate is fixedly connected with the floating bin and embedded in the interior of the floating bin, each group of the foam columns is embedded in the interior of the honeycomb partition plate, the bin cover is fixedly connected with the floating bin and located at the upper end of the floating bin, and the bin cover covers the floating bin.
[0015] The application further provides a use method of the modular honeycomb floating body unit ocean platform structure. One group of the floating plates is taken as a center plate, then eight groups of the floating plates are taken and connected through multiple groups of the connecting pieces to form a second layer; Sixteen groups of the floating plates are taken and connected to the outer side of the second layer through multiple groups of the connecting pieces to form a third layer. The above-described Chinese character-shaped structure is assembled according to size requirements to build multiple levels. screw the fence column on the outermost tier of the floating plate; suspension installation of the main and secondary load modules at the lower end of each group of the floating plate; The main and secondary load modules of the first tier are the longest, the second tier is shorter than the first tier, the third tier is shorter than the second tier, and so on until the multi-level tier installation of the main and secondary load modules is completed; Finally, the positioning ring is connected to the base on the seabed using a rope, and the construction of the offshore platform structure is completed.
[0016] The modular honeycomb floating unit offshore platform structure and method of the application, the connecting piece is provided with the clamping block on both sides, the clamping block is embedded between the corresponding two groups of floating plates, and a plurality of connecting pieces and floating plates are connected through the connecting screw rod, the assembly constitutes a floating platform, the fence column is screwed to the upper end of the corresponding floating plate, and the required area is enclosed according to the requirement, the lower end of each group of floating plates is connected and installed with the wave protection unit, the stability of the floating platform on the sea level can be improved through the wave protection unit, the downward gravity of each group of floating plates is increased through the wave protection unit, so that the stability of the floating plate is improved, at the same time, the wave protection unit can also reduce the vibration amplitude through its own gravity when the sea wave impacts, and the calmness of the floating platform can be quickly restored, the above structure is combined by using the modular structure, transportation and installation are facilitated, and quick maintenance and upgrading are facilitated when a single module fails, the required number of modules is used according to the requirement, and the platform shape and structure required are flexibly installed and combined, and the installation flexibility of the offshore platform is improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.
[0018] Figure 1 is a structural schematic view of the modular honeycomb floating unit offshore platform structure of the application.
[0019] Figure 2 is a front view of the modular honeycomb floating unit offshore platform structure of the application.
[0020] Figure 3 is a Figure 2 A-A line internal structure sectional view of the application.
[0021] Figure 4 is a modular honeycomb float unit offshore platform structure of the present invention Figure 2 is a cross-sectional view of the internal structure of the B-B line of the
[0022] Figure 5 is an assembled front view of a modular honeycomb float unit offshore platform structure of the present invention
[0023] Figure 6 is an assembled top view of a modular honeycomb float unit offshore platform structure of the present invention
[0024] Figure 7 is a flow chart of the steps of a method of using a modular honeycomb float unit offshore platform structure of the present invention
[0025] 101 - float plate, 102 - wave protection unit, 103 - connecting piece, 104 - snap-in block, 105 - connecting screw, 106 - fence post, 107 - main weight module, 108 - secondary weight module, 109 - first pull rope, 110 - pyramid, 111 - second pull rope, 112 - cone, 113 - lower panel, 114 - upper panel, 115 - directional snap block, 116 - honeycomb float, 117 - connecting through hole, 118 - post through hole, 119 - prismatic plate, 120 - positioning pull ring, 121 - float pod, 122 - honeycomb partition, 123 - pod cover, 124 - foam post. DETAILED DESCRIPTION
[0026] Please refer to Figures 1 to 6 , Figure 1 is a structural schematic diagram of a modular honeycomb float unit offshore platform structure of the present invention Figure 2 is a front view of a modular honeycomb float unit offshore platform structure of the present invention Figure 3 is a cross-sectional view of the internal structure of the A-A line of the Figure 2 is a cross-sectional view of the internal structure of the B-B line of the Figure 4 is a cross-sectional view of the internal structure of the B-B line of the Figure 2 is an assembled front view of a modular honeycomb float unit offshore platform structure of the present invention Figure 5 is an assembled top view of a modular honeycomb float unit offshore platform structure of the present invention Figure 6 is an assembled top view of a modular honeycomb float unit offshore platform structure of the present invention
[0027] The application provides a modular honeycomb floating body unit ocean platform structure, which comprises a floating plate 101, a wave-preventing unit 102, a connecting piece 103, a clamping block 104, a connecting screw 105 and a fence column 106, the wave-preventing unit 102 is fixedly connected with the floating plate 101 and located at the lower end of the floating plate 101, the number of the clamping blocks 104 is two groups, the two groups of clamping blocks 104 are arranged on the two sides of the connecting piece 103, the connecting piece 103 is arranged on one side of the floating plate 101, and one group of the clamping blocks 104 is embedded in the interior of the floating plate 101 and detachably connected with the floating plate 101 through the connecting screw 105, and the number of the fence columns 106 is multiple groups, each group of the fence columns 106 is threadedly connected with the floating plate 101 and located at the upper end of the floating plate 101.
[0028] In the embodiment, the clamping blocks 104 are arranged on the two sides of the connecting piece 103, the clamping blocks 104 are embedded between the corresponding two groups of floating plates 101, multiple groups of the connecting pieces 103 are connected with the floating plates 101 through the connecting screws 105, the assembly constitutes a floating body platform, the fence columns 106 are threadedly connected with the upper ends of the corresponding floating plates 101, the fence columns 106 are enclosed according to requirements, the required area is formed after the enclosure, the lower end of each group of the floating plates 101 is connected with the wave-preventing unit 102, the stability of the floating body platform on the sea level can be improved through the wave-preventing unit 102, the downward gravity of each group of the floating plates 101 is increased through the wave-preventing unit 102, so that the stability of the floating plates 101 is improved, meanwhile, the vibration amplitude can be reduced through the gravity of the wave-preventing unit 102 when the sea wave impacts, and the calmness of the floating body platform can be quickly restored, the modular structure is adopted for combination, transportation and installation are facilitated, meanwhile, when a single module fails, quick maintenance and upgrading are facilitated, the required number of modules are used according to requirements, and the required platform shape and structure are formed through flexible installation and combination, and the installation flexibility of the ocean platform is improved.
[0029] Further, the wave-preventing unit 102 comprises a main weight-bearing module 107 and a secondary weight-bearing module 108, the main weight-bearing module 107 is fixedly connected with the floating plate 101 and located at the lower end of the floating plate 101, the secondary weight-bearing module 108 is fixedly connected with the floating plate 101 and located at the lower end of the floating plate 101, and the secondary weight-bearing module 108 is located at the inner side of the main weight-bearing module 107.
[0030] In the embodiment, the main weight-bearing module 107 is used to provide downward gravity for the floating plate 101, which can effectively increase the stability of the floating plate 101 as a whole, reduce the violent up-and-down pitching of the floating plate 101 caused by wave impact, and help balance the buoyancy of the floating plate 101, so as to avoid overturning of the floating plate 101 due to excessive buoyancy during use. The secondary weight-bearing module 108 is used to guide the smooth flow of fluid to reduce energy input and reduce vortex-induced vibration. When the sea wave impacts the floating plate 101, the secondary weight-bearing module 108 can change the flow direction and velocity distribution of the fluid, so as to form a relatively gentle flow path around the floating plate 101, reduce the impact force of the fluid on the floating plate 101, avoid the concentrated impact of sea wave energy on a certain part of the floating plate 101, thereby reducing the local high stress of the floating plate 101 and reducing the risk of damage of the floating plate 101 due to local stress concentration.
[0031] Further, the main weight-bearing module 107 includes a first pull rope 109 and a pyramid 110. The first pull rope 109 is in multiple groups, and each group of the first pull rope 109 is connected at both ends to the corresponding floating plate 101 and the pyramid 110.
[0032] In the embodiment, the pyramid 110 is connected and installed by multiple groups of the first pull rope 109. The first pull rope 109 can be connected in different lengths according to the use demand or sea area demand. The pyramid 110 provides directional support capability, provides downward gravity pull for the floating plate 101, and the side of the pyramid 110 is a plane structure to facilitate installation of different deep-sea sensors for detecting deep-sea data.
[0033] Further, the secondary weight-bearing module 108 includes a second pull rope 111 and a circular cone 112. The two ends of the second pull rope 111 are connected to the corresponding floating plate 101 and the circular cone 112.
[0034] In the embodiment, the circular cone 112 is installed and fixed by the second pull rope 111. Meanwhile, the second pull rope 111 can be connected in different lengths according to the use demand and sea area demand. The circular cone 112 realizes smooth transmission of stress through a gradually changing cross section, guides the fluid to form a symmetrical jet, and reduces vibration caused by vortex shedding.
[0035] Further, the pyramid 110 is made of cement material, and the circular cone 112 is made of metal material.
[0036] In the embodiment, the prisms 110 are made of cement material, which are hung on the four edges of the floating plate 101, can effectively improve the stability of the floating plate 101, reduce the shaking amplitude, and at the same time, the cement concrete material has low comprehensive cost and strong corrosion resistance, reduces the maintenance requirement, the cone 112 is made of metal material, realizes smooth transmission of stress, guides the fluid to form symmetrical jet, reduces the vibration caused by vortex shedding, and at the same time, the setting of the prisms 110 and the cone 112 can constitute the effect of two-stage vibration reduction, and the buoyancy optimization and high inertia vibration reduction can be considered.
[0037] Further, the floating plate 101 includes a lower panel 113, an upper panel 114, a directional clamping block 115, and a honeycomb floating body 116. The number of the directional clamping blocks 115 is four groups. The four groups of directional clamping blocks 115 are respectively fixedly connected with the lower panel 113 and are respectively located at the upper end of the lower panel 113. The four groups of directional clamping blocks 115 are respectively located at the circumferential angles of the lower panel 113. The honeycomb floating body 116 is embedded on the inner side of the four groups of directional clamping blocks 115. The upper panel 114 is arranged at the upper end of the four groups of directional clamping blocks 115 and the honeycomb floating body 116.
[0038] In the embodiment, the directional clamping block 115 is arranged between the upper panel 114 and the lower panel 113. The four groups of directional clamping blocks 115 limit the honeycomb floating body 116, so that the honeycomb floating body 116 will not be deviated or fallen under the impact of sea waves, effectively improving the overall stability of the floating plate 101. The inside of the honeycomb floating body 116 adopts a hexagonal honeycomb structure, which can effectively improve the impact resistance and avoid deformation during use, thereby prolonging the service life of the floating plate 101.
[0039] Further, the upper panel 114 has a plurality of connection through holes 117 and a plurality of column through holes 118. The plurality of connection through holes 117 are respectively matched with the connection screw rods 105. The plurality of column through holes 118 are respectively matched with the fence columns 106.
[0040] In the embodiment, the plurality of connection through holes 117 are used for the connection screw rods 105 to connect the floating plate 101 and the clamping blocks 104, and play a role of positioning connection. The plurality of column through holes 118 are used for installing the fence columns 106. The plurality of fence columns 106 are used for surrounding to form a protective fence, and can also be used for dividing different areas on the plurality of floating plates 101.
[0041] Further, the lower panel 113 comprises a prism plate 119 and positioning pull rings 120, the number of the positioning pull rings 120 is multiple groups, each group of the positioning pull rings 120 is fixedly connected with the prism plate 119 respectively and is located at the circumferential side of the prism plate 119 respectively, and the upper end of the prism plate 119 is provided with multiple groups of threaded holes, each group of the threaded holes is matched with the corresponding connecting screw rod 105 respectively.
[0042] In the embodiment, the prism plate 119 can better guarantee the stability of the floating plate 101, meanwhile, multiple groups of the positioning pull rings 120 are arranged at the circumferential side of the prism plate 119, the positioning pull rings 120 and the positioning base stone of the seabed can be connected through connecting ropes, so that the assembled marine platform has sufficient stability and can avoid floating with ocean current, and can stably float in the same area, and the overturning of the marine platform can be effectively avoided.
[0043] Further, the honeycomb floating body 116 comprises floating bins 121, honeycomb partitions 122, bin covers 123 and foam columns 124, the honeycomb partitions 122 are fixedly connected with the floating bins 121 and are embedded in the interiors of the floating bins 121, the number of the foam columns 124 is multiple groups, each group of the foam columns 124 is embedded in the interior of each group of the honeycomb partitions 122 respectively, the bin covers 123 are fixedly connected with the floating bins 121 and are located at the upper ends of the floating bins 121, and the bin covers 123 cover the floating bins 121.
[0044] In the embodiment, the honeycomb partitions 122 are installed and fixed by the floating bins 121, multiple groups of the foam columns 124 are added in the holes in the honeycomb partitions 122, each group of the foam columns 124 is matched with each group of the holes in the honeycomb partitions 122 respectively, after the honeycomb partitions 122 are completely filled with the foam columns 124, the floating bins 121 are sealed and covered by the bin covers 123, the floating force generated by the multiple groups of the foam columns 124 enables the floating bins 121 to float on the sea surface, meanwhile, the structure of the honeycomb partitions 122 can not be deformed easily in long-term use, thereby maintaining long-acting and durable floating force, the geometric shape of the honeycomb partitions 122 enables the honeycomb partitions 122 to effectively disperse stress when bearing pressure, thereby avoiding stress concentration and significantly improving the compressive strength of the material, in the case of the same material usage, the honeycomb partitions 122 can bear greater load, the structural design of the honeycomb partitions 122 has good fatigue resistance under repeated load, can effectively disperse stress, reduce the generation and expansion of fatigue cracks, thereby prolonging the service life of the structure.
[0045] Please refer to Figure 7 , Figure 7 is the step flow chart of the use method of the modular honeycomb floating body unit marine platform structure.
[0046] The application also provides a method for using the modular honeycomb floating unit offshore platform structure, which applies the modular honeycomb floating unit offshore platform structure as described above and comprises the following steps: S1: taking a group of the floating plates 101 as the center plates, then taking eight groups of the floating plates 101 and connecting them through multiple groups of the connecting pieces 103 to form a second level; S2: taking sixteen groups of the floating plates 101 and connecting them through multiple groups of the connecting pieces 103 to the outer side of the second level to form a third level; S3: assembling according to the size requirements by using the above-mentioned H-shaped structure to build multiple levels; S4: screwing the fence columns 106 to the floating plates 101 on the outermost level; S5: suspending and installing the main weight-bearing modules 107 and the secondary weight-bearing modules 108 at the lower end of each group of the floating plates 101; S6: the main weight-bearing modules 107 and the secondary weight-bearing modules 108 of the first level are the longest, the second level is shorter than the first level, the third level is shorter than the second level, and the installation of the main weight-bearing modules 107 and the secondary weight-bearing modules 108 of the multiple levels is completed; S7: finally connecting the positioning pull ring 120 to the base of the seabed by using a rope to complete the construction of the offshore platform structure.
[0047] In the embodiment, the H-shaped structure is assembled according to the size requirements, multiple levels can be flexibly built according to the actual offshore platform requirements, and it is suitable for different water depths and sea conditions. Since it is modular assembly, the number of layers of the floating plates 101 and the configuration of the weight-bearing modules can be adjusted according to the specific conditions of different sea areas to adapt to different marine environments. In shallow sea areas, the number of layers can be reduced, and in deep sea areas, the number of layers and weight-bearing modules can be increased to ensure stability. The modular design enables each component to be prefabricated and transported separately and assembled on site, greatly shortening the construction period. By building multiple levels, a stable structure similar to a honeycomb is formed, which can effectively disperse the impact force of waves and currents and enhance the overall stability of the platform. Moreover, the length of the weight-bearing modules of each level gradually shortens, which makes the distribution of the center of gravity of the platform more reasonable and further improves the wind and wave resistance and stability of the platform in the marine environment. Finally, the positioning pull ring 120 is connected to the base of the seabed by using a rope, which can effectively prevent the platform from drifting in the ocean and ensure the stability of the platform position, and is suitable for offshore platforms that need to be fixed in a specific position for a long time.
[0048] The above disclosed is only a preferred embodiment of the present application, of course, cannot be limited by this to limit the scope of the present application, the person skilled in the art can understand that the implementation of all or part of the above-mentioned processes, and according to the equivalent changes of the claims of the present application, still belong to the scope covered by the present application.
Claims
1. A modular honeycomb floating unit marine platform structure, characterized in that, The device includes a float, a wave-damping unit, a connector, snap-fit blocks, a connecting screw, and guardrail posts. The wave-damping unit is fixedly connected to the float and located at the lower end of the float. There are two sets of snap-fit blocks, which are respectively located on both sides of the connector. The connector is located on one side of the float, and one set of snap-fit blocks is embedded inside the float and detachably connected to the float via the connecting screw. There are multiple sets of guardrail posts, each set of which is threadedly connected to the float and located at the upper end of the float.
2. The modular honeycomb floating unit marine platform structure as described in claim 1, characterized in that, The wave-damping unit includes a main load-bearing module and a secondary load-bearing module. The main load-bearing module is fixedly connected to the float and located at the lower end of the float. The secondary load-bearing module is fixedly connected to the float and located at the lower end of the float, and the secondary load-bearing module is located inside the main load-bearing module.
3. The modular honeycomb floating unit marine platform structure as described in claim 2, characterized in that, The main load-bearing module includes a first pulling rope and a pyramid. The number of the first pulling ropes is multiple sets, and the two ends of each set of the first pulling ropes are respectively connected to the corresponding float and the pyramid.
4. The modular honeycomb floating unit marine platform structure as described in claim 2, characterized in that, The secondary load-bearing module includes a second traction rope and a cone, with the two ends of the second traction rope connected to the corresponding float and the cone, respectively.
5. The modular honeycomb floating unit marine platform structure as described in claims 3-4, characterized in that, The pyramid is made of cement, and the cone is made of metal.
6. The modular honeycomb floating unit marine platform structure as described in claim 1, characterized in that, The floating plate includes a lower panel, an upper panel, directional blocks, and a honeycomb float. There are four sets of directional blocks, which are fixedly connected to the lower panel and located at the upper end of the lower panel. The four sets of directional blocks are located at the corners of the lower panel. The honeycomb float is embedded inside the four sets of directional blocks. The upper panel is located at the upper end of the four sets of directional blocks and the honeycomb float.
7. The modular honeycomb floating unit marine platform structure as described in claim 6, characterized in that, The upper panel has multiple sets of connecting through holes and multiple sets of column through holes. The multiple sets of connecting through holes are adapted to the connecting screws, and the multiple sets of column through holes are adapted to the fence posts.
8. The modular honeycomb floating unit marine platform structure as described in claim 6, characterized in that, The lower panel includes a frustum plate and positioning pull rings. There are multiple sets of positioning pull rings. Each set of positioning pull rings is fixedly connected to the frustum plate and is located on the periphery of the frustum plate. The upper end of the frustum plate has multiple sets of threaded holes, and each set of threaded holes is adapted to the corresponding connecting screw.
9. The modular honeycomb floating unit marine platform structure as described in claim 6, characterized in that, The honeycomb float includes a float chamber, a honeycomb partition, a cover, and foam columns. The honeycomb partition is fixedly connected to the float chamber and embedded inside the float chamber. There are multiple sets of foam columns, each set of foam columns is embedded inside the honeycomb partition. The cover is fixedly connected to the float chamber and is located at the upper end of the float chamber, and the cover covers the float chamber.
10. A method of using a modular honeycomb floating unit marine platform structure, employing the modular honeycomb floating unit marine platform structure as described in claims 1-9, characterized in that... Includes the following steps: Take one set of the aforementioned floating plates as the center plate, and then take eight more sets of the aforementioned floating plates, and connect them through multiple sets of the aforementioned connectors to form the second layer; Then, sixteen sets of the aforementioned floating plates are connected to the outside of the second layer through multiple sets of the aforementioned connectors to form the third layer; The above-mentioned U-shaped structure is used to assemble multiple levels according to size requirements; The fence posts are threaded onto the floating plate of the outermost layer; The main load-bearing module and the secondary load-bearing module are suspended and installed at the lower end of each set of floats; The first-level main load-bearing module and the second-level secondary load-bearing module are the longest, the second-level module is shorter than the first-level module, the third-level module is shorter than the second-level module, and so on until the main load-bearing module and the second-level secondary load-bearing module are installed in multiple levels. Finally, the positioning ring is connected to the base on the seabed using ropes, completing the construction of the offshore platform structure.