INTELLIGENT BIONIC SCOURING PROTECTION STRUCTURE FOR BUCKET FOUNDATION AND APPLICATION METHOD THEREFOR
20250230622 ยท 2025-07-17
Inventors
- Jialin DAI (Wuhan, CN)
- Wei Zhang (Wuhan, CN)
- Lunbo LUO (Wuhan, CN)
- Zhou LI (Wuhan, CN)
- Guangming YU (Wuhan, CN)
Cpc classification
E02D2600/20
FIXED CONSTRUCTIONS
E02D27/525
FIXED CONSTRUCTIONS
E02D31/00
FIXED CONSTRUCTIONS
International classification
E02D31/00
FIXED CONSTRUCTIONS
E02D27/52
FIXED CONSTRUCTIONS
Abstract
The present invention relates to an intelligent bionic scouring protection structure for a cylindrical foundation and an application method thereof, wherein the protection structure is formed by connecting bionic units; an uppermost layer of the bionic unit is a bionic grass bundle, a bottom end of the bionic grass bundle is sleeved inside a bundle tube, the bundle tube is fixedly connected with a fiber mesh layer through a binding wire, connecting rings are fixed at both ends of the fiber mesh layer through the binding wire, two adjacent fiber mesh layers are connected through the connecting ring; and a bottom portion of the bionic unit is provided with a seabed connecting structure for fixing the whole protection structure. The above protection structure with an upper layer, a middle layer and a lower layer is adopted to replace traditional hard scouring protection such as ripraps and sand bags.
Claims
1. An intelligent bionic scouring protection structure for a cylindrical foundation, wherein the protection structure is formed by connecting bionic units; and an uppermost layer of the bionic unit is a bionic grass bundle (1), a bottom end of the bionic grass bundle (1) is sleeved inside a bundle tube (3), the bundle tube (3) is fixedly connected with a fiber mesh layer (5) through a binding wire (2), connecting rings (4) are fixed at both ends of the fiber mesh layer (5) through the binding wire, two adjacent fiber mesh layers (5) are connected through the connecting ring (4); and a bottom portion of the bionic unit is provided with a seabed connecting structure for fixing the whole protection structure.
2. The intelligent bionic scouring protection structure for the cylindrical foundation according to claim 1, wherein each bionic grass bundle (1) is composed of a plurality of bionic grass blades; and the bionic grass blades are made of elongated fiber materials.
3. The intelligent bionic scouring protection structure for the cylindrical foundation according to claim 2, wherein the elongated fiber material is made of polyethylene or polypropylene; and every 5-10 bionic grass blades form one bionic grass bundle (1).
4. The intelligent bionic scouring protection structure for the cylindrical foundation according to claim 1, wherein the bundle tube (3) adopts a flexible opened thin tube; and the binding wire (2) is made of an anticorrosive alloy material.
5. The intelligent bionic scouring protection structure for the cylindrical foundation according to claim 1, wherein the fiber mesh layer (5) is formed by interweaving horizontal and vertical fiber ribbons in a three-dimensional grid shape with a certain height.
6. The intelligent bionic scouring protection structure for the cylindrical foundation according to claim 1, wherein the connecting ring (4) is made of an anticorrosive steel wire rope.
7. The intelligent bionic scouring protection structure for the cylindrical foundation according to claim 1, wherein the seabed connecting structure comprises a bionic root system and a balancing weight (8); and the bionic root system is bound with the fiber mesh layer (5) through the binding wire; and the bionic root system comprises a trunk (6) and roots (7), a plurality of roots (7) are uniformly distributed at each node of the trunk (6), and the roots (7) are provided with a plurality of length-grade subdivision structures downwards.
8. The intelligent bionic scouring protection structure for the cylindrical foundation according to claim 7, wherein the trunk (6) and the roots (7) are both made of fiber materials; and the balancing weight (8) is a cuboid concrete balancing weight, the balancing weight (8) is made of heavy chains (9) extending from inside to outside, each balancing weight (8) is provided with four heavy chains (9), and the heavy chains (9) are bound with the fiber mesh layer (5) through the binding wires.
9. The intelligent bionic scouring protection structure for the cylindrical foundation according to claim 1, wherein the bionic units are connected through the connecting ring (4) to form a bionic protection belt (11), a specific arrangement form of the bionic protection belt (11) is selected according to a form of the cylindrical foundation (10) to be protected, and a circular arc or a box shape is selected; and a height of the bionic grass bundle (1) at an upper portion of the bionic protection belt (11) is customized according to a size of a common wave current (13) at a position where the cylindrical foundation (10) is located, the arrangement form of the bionic protection belt (11) is accurately adjusted according to an intelligent analysis and calculation result for the wave current in a special direction, and thus enhancing protection and ensuring that both a flow velocity and a wave height of the wave current are sharply declined after the wave current (13) passes through the bionic protection belt (11).
10. An application method of the intelligent bionic scouring protection structure for the cylindrical foundation according to claim 9, comprising the following steps of: step 1: obtaining basic protection parameters: obtaining a specific foundation size of the cylindrical foundation (10) to be protected, wave current and geological parameters of a sea area where the cylindrical foundation is located; step 2: calculating specific construction parameters: by an intelligent analysis and calculation system, determining the arrangement form of the bionic protection belt (11) and the height of the bionic grass bundle (1) according to the size of the cylindrical foundation to be protected and a sea condition in the sea area in step 1, determining whether to require to enhance the protection against the waves in a specific direction, and calculating clear construction parameters; step 3: performing connecting preparation for the bionic unit on land: after completing automatic analysis and calculation by the calculation system in step 2, connecting the bionic unit to a bionic protection belt (11) with a certain length on land, and then hoisting to a construction ship, and transporting the bionic protection belt (11) to a construction sea area by the construction ship; step 4: performing seabed pretreatment: digging a buried trench at a position where the bionic protection belt (11) being scheduled to be installed on the seabed; and step 5: installing the bionic protection belt (11): using a crane to hoist the bionic protection belt (11) to the buried trench at the scheduled installation position according to a calculation rate, adjusting a depth in real time through a positioning device, and backfilling foundation soil to a height of the fiber mesh layer (5) after adjustment until completing laying of the bionic protection belt (11).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032] The present invention will be further illustrated in conjunction with the accompanying drawings and the embodiments.
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041] In the drawings: 1bionic grass bundle, 2binding wire, 3bundle tube, 4connecting ring, 5fiber mesh layer, 6trunk, 7root, 8balancing weight, 9heavy chain, 10cylindrical foundation, 11bionic protection belt, 12foundation soil, and 13wave current.
DETAILED DESCRIPTION OF SOME EMBODIMENTS
[0042] The embodiments of the present invention will be further illustrated in conjunction with the accompanying drawings.
Embodiment 1
[0043] Referring to
[0044] Further, each bionic grass bundle 1 is composed of a plurality of bionic grass blades; and the bionic grass blades are made of elongated fiber materials. The bionic grass bundle 1 is adopted to float under an action of waves, thereby buffering an impact of the waves and playing a good anti-scouring effect.
[0045] Further, the elongated fiber material is made of polyethylene or polypropylene; and every 5-10 bionic grass blades form one bionic grass bundle 1. Adopting polyethylene or polypropylene in a flexible structure ensures to float with the wave.
[0046] Further, the bundle tube 3 adopts a flexible opened thin tube; and the binding wire 2 is made of an anticorrosive alloy material. The bundle tube 3 can be used to reliably connect the bionic grass bundle 1 and prevent the bionic grass bundle from falling off.
[0047] Further, the fiber mesh layer 5 is formed by interweaving horizontal and vertical fiber ribbons in a three-dimensional grid shape with a certain height. By adopting the three-dimensional mesh fiber mesh layer 5, the foundation soil can be filled, thereby enhancing the fixation reliability of the whole bionic grass bundle 1. In addition, the three-dimensional mesh can play a good role in protecting the seabed and preventing scouring to enhance the protection effect.
[0048] Further, the connecting ring 4 is made of an anticorrosive steel wire rope. The anticorrosive steel wire rope has a good anticorrosive effect, thus prolonging a service life of the anticorrosive steel wire and ensuring the connecting reliability.
[0049] Further, the seabed connecting structure comprises a bionic root system and a balancing weight 8; and the bionic root system is bound with the fiber mesh layer 5 through the binding wire; the bionic root system comprises a trunk 6 and roots 7, a plurality of roots 7 are uniformly distributed at each node of the trunk 6, the roots 7 are provided with a plurality of length-grade subdivision structures downwards; and the trunk 6 and the roots 7 are both made of fiber materials. A bottom portion of the protection structure is mainly based on a bionic root structure, and is supplemented by a simple concrete fixing structure, which replaces the previous bionic grass fixed with rivets or lattice type concrete, thereby simplifying a bottom fixing construction process and reducing a construction difficulty. The bionic root system is adopted to enhance a fixing effect of the whole fiber mesh layer 5, so that the whole bionic root system can be reliably fixed on the seabed.
[0050] Further, the balancing weight 8 is a cuboid concrete balancing weight, the balancing weight 8 is made of heavy chains 9 extending from inside to outside, each balancing weight 8 is provided with four heavy chains 9, and the heavy chains 9 are bound with the fiber mesh layer 5 through the binding wires. A connecting effect between the seabed connecting structure and the seabed is improved to some extent by the balancing weight 8.
[0051] Further, the bionic units are connected through the connecting ring 4 to form a bionic protection belt 11, a specific arrangement form of the bionic protection belt 11 is selected according to a form of the cylindrical foundation 10 to be protected, and a circular arc or a box shape is selected. By choosing different combination types, different protection requirements can be adapted, which enhances the adaptability.
[0052] Further, a height of the bionic grass bundle 1 at an upper portion of the bionic protection belt 11 is customized according to a size of a common wave current 13 at a position where the cylindrical foundation 10 is located, the arrangement form of the bionic protection belt 11 is accurately adjusted according to an intelligent analysis and calculation result for the wave current in a special direction, and thus enhancing protection and ensuring that both a flow velocity and a wave height of the wave current are sharply declined after the wave current 13 passes through the bionic protection belt 11.
Embodiment 2
[0053] An application method of the intelligent bionic scouring protection structure for the cylindrical foundation comprises the following steps of: [0054] step 1: obtaining basic protection parameters: obtaining a specific foundation size of the cylindrical foundation 10 to be protected, wave current and geological parameters of a sea area where the cylindrical foundation is located; [0055] step 2: calculating specific construction parameters: by an intelligent analysis and calculation system, determining the arrangement form of the bionic protection belt 11 and the height of the bionic grass bundle 1 according to the size of the cylindrical foundation to be protected and a sea condition in the sea area in step 1, determining whether to require to enhance the protection against the waves in a specific direction, and calculating clear construction parameters; [0056] step 3: performing connecting preparation for the bionic unit on land: after completing automatic analysis and calculation by the calculation system in step 2, connecting the bionic unit to a bionic protection belt 11 with a certain length on land, and then hoisting to a construction ship, and transporting the bionic protection belt 11 to a construction sea area by the construction ship; [0057] step 4: performing seabed pretreatment: digging a buried trench at a position where the bionic protection belt 11 being scheduled to be installed on the seabed; and [0058] step 5: installing the bionic protection belt 11: using a crane to hoist the bionic protection belt 11 to the buried trench at the scheduled installation position according to a calculation rate, adjusting a depth in real time through a positioning device, and backfilling foundation soil to a height of the fiber mesh layer 5 after adjustment until completing laying of the bionic protection belt 11.
Embodiment 3
[0059] Referring to
Embodiment 4
[0060] Referring to