Modular mobile ecological submerged dike and embodiments thereof
The modularly designed ecological submerged dike solves the problems of poor ecological compatibility and immobility of traditional submerged dikes, realizes ecological construction and reuse of dredged materials, and has the functions of wave breaking, ecological construction and water exchange, thus protecting the coastline.
Patent Information
- Application Number
- CN202511071734.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2045-08-01
AI Technical Summary
Traditional submerged dikes have poor ecological compatibility, are immovable, made of unsustainable materials and have a single function, making it impossible to achieve resource utilization of dredged waste, ecological construction and water purification.
A modular movable ecological submerged dike is designed, including a main frame, a dredged material container, a flexible airbag, a fish reef-like hollow body and an anchoring structure. The modular design enables flexible changes in position and angle. Combined with the reuse of dredged soil and the planting of submerged plants, it has the functions of wave breaking, ecological construction and water exchange.
It realizes the flexible mobility of ecological submerged dike, protects the coastline, reduces wave energy, combines ecological construction and maintenance and dredged material utilization functions, and reduces damage to coastal landscape.
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Figure CN120556418B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of coastal engineering, and particularly relates to a modular movable ecological submerged dike and an implementation mode thereof. BACKGROUND
[0002] As an underwater structure parallel to the shoreline, the submerged dike promotes the wave to break in advance by reflecting and transmitting the wave, significantly reduces the wave energy, changes the distribution of the alongshore flow, and makes the flow velocity more uniform, thereby reducing the risk of local erosion. In addition, compared with the traditional vertical dike, the submerged dike is submerged underwater, reduces the damage to the coastal landscape, and meets the demand for water-friendly.
[0003] However, the traditional submerged dike has the following four defects: first, poor ecological compatibility, the traditional concrete structure destroys the habitat environment of benthic organisms, and lacks an ecological interactive interface. Second, immobility, the fixed structure is difficult to meet the dynamic needs of shoreline changes or extreme weather events. Third, unsustainable materials, consume a large amount of natural aggregate and cannot realize the resource utilization of dredged waste. Fourth, single function, only focuses on wave dissipation performance, ignores the functions of ecological chain reconstruction and water purification. SUMMARY
[0004] The purpose of the present application is to overcome the shortcomings of the traditional submerged dike, and to provide a modular movable ecological submerged dike and an implementation mode thereof, so as to realize the functions of mobility and reuse of dredged soil, ecological construction and water exchange.
[0005] To achieve the above purpose, the technical solution adopted by the present application is as follows:
[0006] The first aspect of the present application is to provide a modular movable ecological submerged dike, comprising one or more submerged dike monomers, the submerged dike monomer comprising a main frame, a dredged material container, submerged plants, one or more flexible air bags, a fish reef-like hollow body and an anchoring structure, wherein:
[0007] The main frame comprises a top plate, a partition plate and a bottom plate arranged in parallel from top to bottom, and a vertical column fixedly connected with the top plate, the partition plate and the bottom plate; the first accommodating cavity is formed between the top plate and the partition plate, and the second accommodating cavity is formed between the partition plate and the bottom plate; the main frame is further provided with a connecting component on both sides for assembling the submerged dike monomer;
[0008] The dredged material container is arranged at the top of the main frame and is used for filling dredged soil and planting submerged plants;
[0009] The flexible air bag is symmetrically arranged in the first accommodating cavity and is fixed at the bottom of the dredged material container, and the internal filler is one of water and gas or a mixture of the two;
[0010] The fish reef-like hollow body is arranged in the second accommodating cavity and is used for reducing wave energy;
[0011] The ecological submerged dike is fixedly installed on the seabed through an anchoring structure.
[0012] In some embodiments, the volume of the flexible airbag needs to be sufficient to enable the ecological submerged dike to float in water when filled with standard pressure air. The flexible airbag is provided with a two-way valve for inflation or deinflating or draining.
[0013] When the flexible airbag is filled with a mixture of water and air, the volume of water accounts for 40% to 60%;
[0014] There are multiple flexible airbags arranged in a staggered manner, and adjacent flexible airbags are spaced apart.
[0015] In some embodiments, the flexible airbag is made of a multilayer composite material of a fabric base and a rubber sealing layer, the fabric base is polyamide PA66 or polyester fiber, and the rubber sealing layer is nitrile rubber or EPDM rubber.
[0016] In some embodiments, the size of the second accommodating cavity is adapted to the shape of the fish reef-like hollow body, and the gap between the two is controlled to be 5 mm to 10 mm.
[0017] In some embodiments, the wave-facing surface of the fish-reef-like hollow body is provided with a plurality of water-permeable holes; the material of the fish-reef-like hollow body is permeable ecological concrete.
[0018] In some embodiments, an assembled groove is provided on the top of the column of the main frame, and a self-locking column adapted to the assembled groove is provided on the bottom of the dredged material container, and the self-locking column is fixed in the assembled groove.
[0019] In some embodiments, the main frame and the dredged material container are both made of steel structure materials coated with an anti-corrosion layer, and the fixed connection method of each part of the main frame is a detachable connection.
[0020] In some embodiments, the dredged soil in the dredged material container is sealed and packaged in high-strength sealing film bags, each of which is planted with a submerged plant, and the sealing of the sealing film bag is made of elastic rubber material.
[0021] In some embodiments, the anchoring structure adopts a composite foundation of vacuum suction anchors and screw piles; a winch is provided on the main frame, and the screw piles are connected to the winch through an anchor chain.
[0022] A second aspect of the present invention is to provide an implementation of the modular movable ecological submerged dike, comprising the following steps:
[0023] S1: Transport the split components of the modular movable ecological submerged dike to the construction site. Since the ecological submerged dike adopts a modular and assembled design, transportation and loading and unloading are relatively easy;
[0024] S2: Install the fish reef-like hollow body in the second accommodation cavity of the main frame, fill the flexible air bag with water and place it in the first accommodation cavity of the main frame, and fix the dredged material container planted with submerged plants on the top of the main frame, thus completing the assembly of the submerged dike unit;
[0025] S3: Use a crane ship to lower the assembled submerged dike unit into the water, and use underwater photography equipment to assist the crane ship in construction. Align the second submerged dike unit with the first submerged dike unit and connect them together through the connecting parts on both sides of the main frame. Repeat the operation;
[0026] S4: Anchoring the connected modular movable ecological submerged dike. After the submerged dike is anchored, a portion of the water in the flexible airbag is extracted using a pumping device, and then the flexible airbag is inflated using a high-pressure inflator. After the construction is completed, the flexible airbag realizes its wave dissipation and ecological construction functions;
[0027] S5: When the position and angle of the modular movable ecological submerged dike need to be changed, the anchoring operation is performed to lift the modular movable ecological submerged dike; a high-pressure inflator is used to inflate the flexible airbag and drain the water, so that the modular movable ecological submerged dike floats on the water surface;
[0028] S6: Use a traction device to move the modular movable ecological submerged dike to the designated location, then fill the flexible airbag with water and exhaust the air to make the modular movable ecological submerged dike sink. After anchoring, it can realize the functions of wave breaking and ecological maintenance in the new location.
[0029] Compared with the prior art, the present invention has the following beneficial effects:
[0030] The modular movable ecological submerged dike of the present invention can flexibly change the position and angle of the ecological submerged dike by installing air bags and single-body assembly, and has strong mobility. At the same time, dredged material containers are provided to plant submerged plants, and fish reef-like hollow bodies are provided, which can effectively reduce wave energy, protect coastlines and marine structures, and have the functions of ecological construction and utilization of dredged materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 It is a three-dimensional diagram of the submerged dike unit.
[0032] Figure 2 This is the front view of the submerged dike unit.
[0033] Figure 3 It is a three-dimensional diagram of the main frame.
[0034] Figure 4 This is the front view of the main frame.
[0035] Figure 5 This is a top view of the main frame.
[0036] Figure 6 It is a layout diagram of multiple flexible airbags.
[0037] Figure 7 It is a schematic diagram of the connection between the main frame and the dredged material container.
[0038] Figure 8 It is a three-dimensional diagram of the assembly of two submerged dike units.
[0039] Figure 9 It is a top view of the assembly of two submerged dike units.
[0040] In the picture:
[0041] 100-main frame; 101-top plate; 102-partition plate; 103-bottom plate; 104-column; 105-first accommodating chamber; 106-second accommodating chamber; 107-connecting groove; 108-connecting protrusion; 109-assembled groove; 110-baffle; 111-pin; 200-dredged material container; 201-self-locking column; 300-submerged plant; 400-flexible airbag; 401-two-way valve; 500-fish reef hollow body; 501-water permeable hole. DETAILED DESCRIPTION
[0042] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0043] Example 1: A modular movable ecological submerged dike
[0044] like Figure 1 and 2 As shown, the modular movable ecological submerged dike of the present invention includes one or more submerged dike units, each of which includes a main frame 100, a dredged material container 200, submerged plants 300, one or more flexible air bags 400, a fish reef-like hollow body 500 and an anchoring structure, wherein:
[0045] Combine Figures 3 to 5As shown, the main frame 100 includes a top plate 101, a partition plate 102, and a bottom plate 103 arranged in parallel from top to bottom, and columns 104 vertically fixedly connected to the top plate 101, partition plate 102, and bottom plate 103; a first accommodating cavity 105 is formed between the top plate 101 and the partition plate 102, and a second accommodating cavity 106 is formed between the partition plate 102 and the bottom plate 103; connecting components are also provided on both sides of the main frame 100 for assembling the submerged dike unit;
[0046] The dredged material container 200 is provided on the top of the main frame 100 and is used to fill the dredged soil and plant submerged plants 300;
[0047] The flexible airbags 400 are symmetrically arranged in the first accommodating chamber 105 and fixed to the bottom of the dredged material container 200. The internal filling material can be selected from water and air or a mixture of the two according to needs to achieve the floating, movement and sinking of the ecological submerged dike, as well as partial wave-breaking functions; the flexible airbags 400 are symmetrically arranged to ensure the stability of the ecological submerged dike during floating transportation.
[0048] The fish reef-like hollow body 500 is disposed in the second accommodating chamber 106 to reduce wave energy;
[0049] The above-mentioned ecological submerged dike is fixedly installed on the seabed through an anchoring structure.
[0050] The volume of the flexible airbag 400 needs to be sufficient to enable the ecological submerged dike to float in the water when it is filled with standard pressure air. It is preferably made of high-strength flexible material, specifically a multi-layer composite material of a fabric base and a rubber sealing layer, the fabric base is polyamide PA66 or polyester fiber, and the rubber sealing layer is nitrile rubber or EPDM rubber; the flexible airbag 400 is provided with two two-way valves 401 (such as Figure 2 As shown), filling and exhausting or filling and draining are performed through the two-way valve 401;
[0051] When the flexible airbag 400 is filled with a mixture of water and air, the volume proportion of water is 40% to 60%.
[0052] like Figure 6 As shown, the flexible airbags 400 are preferably multiple and arranged in a staggered manner, with adjacent flexible airbags 400 maintaining a gap to reduce the impact of waves on the flexible airbags 400 and improve the stability of the ecological submerged dike.
[0053] The flexible airbag 400 is filled with water during assembly before entering the water to make the submerged dike sink; after the submerged dike is anchored, a pumping device is used to extract part of the water in the flexible airbag 400, and then a high-pressure inflator is used to inflate the flexible airbag 400. At this time, the flexible airbag 400 contains a mixture of gas and water. When the waves hit, the water in the flexible airbag 400 shakes to dissipate the energy of the waves; when the submerged dike needs to float or move, a high-pressure inflator is used to inflate the flexible airbag 400 to drain the water, thereby driving the submerged dike to float.
[0054] like Figure 2 As shown, the size of the second accommodating cavity 106 is adapted to the shape of the fish-reef-like hollow body 500, and the gap between the two is controlled to be 5 mm to 10 mm to prevent the fish-reef-like hollow body 500 from shaking violently under the action of waves.
[0055] Baffles 110 are provided on the upper and lower sides of the second accommodating chamber 106, respectively. These baffles 110 are removably fixed to the bulkhead 102 or the bottom plate 103 of the main frame 100. When assembling the submerged dike unit, the fish reef-like hollow body 500 is first placed into the second accommodating chamber 106, followed by the baffles 110 to prevent displacement of the fish reef-like hollow body 500 during movement or under the impact of waves.
[0056] like Figure 2 As shown, the wave-facing surface of the fish reef-like hollow body 500 is provided with a plurality of water-permeable holes 501 to facilitate water exchange. The material of the fish reef-like hollow body 500 is preferably ecological concrete with a certain degree of water permeability.
[0057] like Figure 7 As shown, an assembly groove 109 is provided on the top of the column 104 of the main frame 100, and a self-locking column 201 adapted to the assembly groove 109 is provided on the bottom of the dredged material container 200. The self-locking column 201 is inserted into the assembly groove 109 to complete the assembly of the dredged material container 200.
[0058] The main frame 100 and the dredged material container 200 are both made of steel structure materials coated with an anti-corrosion layer. The fixed connection method of each part of the main frame 100 is a common detachable connection such as bolt connection, which is convenient for transportation and loading and unloading.
[0059] The dredged soil in the dredged material container 200 is sealed and packaged in high-strength sealing film bags, and a submerged plant 300 is planted in each sealing film bag. Preferably, the sealing film bag is sealed with elastic rubber material to prevent the dredged soil from overflowing without affecting the growth of the submerged plant 300.
[0060] like Figures 3 to 5As shown, the connecting parts provided on both sides of the main frame 100 include connecting grooves 107 and connecting protrusions 108. In order to reduce the deadweight of the submerged dike unit, the connecting grooves 107 and connecting protrusions 108 are not limited to the sizes shown in the figure, and can be reduced according to actual needs, or the connecting grooves 107 and connecting protrusions 108 are preferably hollow structures. Figure 8 and Figure 9 As shown, the connecting grooves 107 and connecting protrusions 108 of adjacent submerged dike units are snap-fitted and fixed by inserting the pins 111 .
[0061] The anchoring structure of the present invention is a composite foundation of vacuum suction anchors and screw piles, wherein a winch (not shown in the figure) is provided on the main frame 100. The screw piles driven into the seabed are connected to the winch on the main frame 100 via an anchor chain. The structural stability can be ensured by adjusting the tension of the anchor chain.
[0062] Example 2: A modular movable ecological submerged dike implementation method
[0063] The implementation method of the modular movable ecological submerged dike based on the above embodiment 1 includes the following steps:
[0064] S1: Transport the split components of the modular movable ecological submerged dike to the construction site. Since the ecological submerged dike adopts a modular and assembled design, transportation and loading and unloading are relatively easy;
[0065] S2: Install the fish reef-like hollow body 500 in the second receiving cavity 106 of the main frame 100, fill the flexible airbag 400 with water and place it in the first receiving cavity 105 of the main frame 100, fix the dredged material container 200 on the top of the main frame 100, and place the sealed film bag planted with submerged plants 300 in the dredged material container 200, thus completing the assembly of the submerged dike unit;
[0066] S3: Use a crane to lower the assembled submerged dike unit into the water. Underwater photography equipment is used to assist the crane in the construction. The second submerged dike unit is aligned with the first submerged dike unit and connected together through the connecting grooves 107 and connecting protrusions 108 on both sides of the main frame 100. Repeat the operation as needed to assemble multiple submerged dike units to complete the assembly of the modular mobile ecological submerged dike.
[0067] S5: Anchor the connected modular movable ecological submerged dike. After the submerged dike is anchored, a portion of the water in the flexible airbag 400 is extracted using a pumping device, and then the flexible airbag 400 is inflated using a high-pressure inflator. After the construction is completed, the wave-breaking and ecological conservation functions are realized.
[0068] S6: when the position and angle of the modular movable ecological submerged dike needs to be changed, anchor lifting operation is performed to lift the modular movable ecological submerged dike; first, a high-pressure inflator is used to inflate and drain the flexible air bag 400, so that the modular movable ecological submerged dike floats on the water surface;
[0069] S7: the modular movable ecological submerged dike is pulled to the designated position by using a traction device, then the flexible air bag 400 is inflated and drained to make the submerged dike sink, after anchoring is completed, the submerged dike realizes the functions of wave dissipation and ecological construction and maintenance at the new position.
[0070] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacement or change within the technical range disclosed by the present application according to the technical solution and inventive concept of the present application, which should be covered within the protection scope of the present application.
Claims
1. A modular movable ecological submerged dike, characterized in that: The submerged dike comprises one or more submerged dike units, each of which comprises a main frame, a dredged material container, submerged plants, one or more flexible air bags, a fish reef-like hollow body and an anchoring structure, wherein: The main frame includes a top plate, a partition plate, and a bottom plate arranged in parallel from top to bottom, and columns fixedly connected to the top plate, partition plate, and bottom plate in a vertical direction; a first accommodating cavity is formed between the top plate and the partition plate, and a second accommodating cavity is formed between the partition plate and the bottom plate; connecting parts are also provided on both sides of the main frame for assembling the submerged dike unit; The dredged material container is arranged on the top of the main frame and is used for filling dredged soil and planting submerged plants; The flexible airbag is symmetrically arranged in the first accommodating cavity and fixed to the bottom of the dredged material container, and the internal filling material is one of water and air or a mixture of the two; The fish reef-like hollow body is arranged in the second accommodating cavity to reduce wave energy; The ecological submerged dike is fixedly installed on the seabed through an anchoring structure; The volume of the flexible airbag must be sufficient to enable the ecological submerged dike to float in the water when it is filled with standard pressure air. The flexible airbag is provided with a two-way valve for filling and exhausting or filling and draining water through the two-way valve; When the flexible airbag is filled with a mixture of water and air, the volume proportion of water is 40% to 60%; There are multiple flexible airbags arranged in a staggered manner, and adjacent flexible airbags are spaced apart.
2. The modular movable ecological submerged dike according to claim 1 is characterized in that: The material of the flexible airbag is a multilayer composite material of a fabric base and a rubber sealing layer, the fabric base is polyamide PA66 or polyester fiber, and the rubber sealing layer is nitrile rubber or EPDM rubber.
3. The modular movable ecological submerged dike according to claim 1 is characterized in that: The size of the second accommodating cavity is adapted to the shape of the fish reef-like hollow body, and the gap between the two is controlled to be 5 mm to 10 mm.
4. The modular movable ecological submerged dike according to claim 1, characterized in that: The wave-facing surface of the fish-reef-like hollow body is provided with a plurality of water-permeable holes; the material of the fish-reef-like hollow body is water-permeable ecological concrete.
5. The modular movable ecological submerged dike according to claim 1 is characterized in that: An assembled groove is provided on the top of the column of the main frame, and a self-locking column adapted to the assembled groove is provided on the bottom of the dredged material container, and the self-locking column is fixed in the assembled groove.
6. The modular movable ecological submerged dike according to claim 1 is characterized in that: The main frame and the dredged material container are both made of steel structure materials coated with an anti-corrosion layer, and the fixed connection mode of each part of the main frame is a detachable connection.
7. The modular movable ecological submerged dike according to claim 1 is characterized in that: The dredged soil in the dredged material container is sealed and packaged in high-strength sealing film bags, each of which is planted with a submerged plant. The sealing of the sealing film bag is made of elastic rubber material.
8. The modular movable ecological submerged dike according to claim 1 is characterized in that: The anchoring structure adopts a composite foundation of vacuum suction anchors and spiral piles; a winch is provided on the main frame, and the spiral piles are connected to the winch through an anchor chain.
9. The embodiment of the modular movable ecological submerged dike according to any one of claims 1 to 8, characterized in that: The following steps are involved: S1: Transport the split components of the modular movable ecological submerged dike to the construction site. Since the ecological submerged dike adopts a modular and assembled design, transportation and loading and unloading are relatively easy; S2: Install the fish reef-like hollow body in the second accommodation cavity of the main frame, fill the flexible air bag with water and place it in the first accommodation cavity of the main frame, and fix the dredged material container planted with submerged plants on the top of the main frame, thus completing the assembly of the submerged dike unit; S3: Use a crane ship to lower the assembled submerged dike unit into the water, and use underwater photography equipment to assist the crane ship in construction. Align the second submerged dike unit with the first submerged dike unit and connect them together through the connecting parts on both sides of the main frame. Repeat the operation; S4: Anchoring the connected modular movable ecological submerged dike. After the submerged dike is anchored, a portion of the water in the flexible airbag is extracted using a pumping device, and then the flexible airbag is inflated using a high-pressure inflator. After the construction is completed, the flexible airbag realizes its wave dissipation and ecological construction functions; S5: When the position and angle of the modular movable ecological submerged dike need to be changed, the anchoring operation is performed to lift the modular movable ecological submerged dike; a high-pressure inflator is used to inflate the flexible airbag and drain the water, so that the modular movable ecological submerged dike floats on the water surface; S6: Use a traction device to move the modular movable ecological submerged dike to the designated location, then fill the flexible airbag with water and exhaust the air to make the modular movable ecological submerged dike sink. After anchoring, it can realize the functions of wave breaking and ecological maintenance in the new location.
Citation Information
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