Underwater enclosure installation structure
By adopting an anchor pile structure and using the method of anchoring the anchor piece to unfold and trapping it in the soil under soil resistance, the existing water enclosure fixing method is solved, and the effect of low cost and firm fixing is achieved.
Patent Information
- Application Number
- CN202421518604.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-30
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-30
AI Technical Summary
The existing water enclosure fixing method requires the fixed pile to be driven into a very deep position to ensure firmness, resulting in high costs.
An anchor pile structure is adopted, in which the anchor pile includes a pile body, a rotating shaft and an anchor piece. The cross-section of the anchor piece is concave and a downwardly bent hook claw is provided at the top. Through the cooperation of the floating body and the cable, the anchor piece can be unfolded and stuck into the soil under the resistance of the soil to achieve fixation.
The length of the anchor pile is shortened, manufacturing cost and drilling time is saved, the total cost is reduced, and the grip is increased through hooks, further reducing drilling depth and cost.
Smart Images

Figure CN222878686U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water ecological management, in particular to an underwater enclosure installation structure. Background Art
[0002] my country's water ecological management industry is developing day by day, and the demand for underwater enclosures is also increasing. For some waters that need to be isolated, enclosures are usually used for isolation. In order to make the enclosure stable, the enclosure needs to be fixed. The existing fixing method is to drive fixed piles into the bottom of the river or pond, and tie the enclosure to the fixed piles with ropes. This fixing method requires the fixed piles to be driven into a very deep position to ensure firmness, resulting in an extremely long length of the fixed piles, high manufacturing costs, and the process of driving the fixed piles is also time-consuming and labor-intensive, which increases a lot of labor costs. Summary of the invention
[0003] In view of the disadvantage that the existing method of fixing enclosures in water requires that the fixing piles be driven into a very deep position to ensure firmness, which leads to high costs, the utility model provides an underwater enclosure installation structure with low cost.
[0004] An underwater enclosure installation structure includes an anchor pile, characterized in that: the anchor pile includes a pile body, a rotating shaft is installed transversely through the pile body, two anchor plates are symmetrically installed on the rotating shaft, the cross-section of the anchor plates is concave, the concave inner wall surface of the anchor plate can be close to the side surface of the pile body, one rotating shaft and the two anchor plates symmetrically installed thereon constitute an anchor plate pair; the top of the anchor pile is connected to the enclosure, and a float is arranged on the top of the enclosure.
[0005] It is further characterized by:
[0006] The top of the anchor sheet is provided with a hook bent downward;
[0007] There are at least two pairs of anchor plates, and the installation directions of two adjacent pairs of anchor plates are perpendicular to each other;
[0008] There are two connection structures between the anchor piles and the enclosure. Connection structure 1: There are two rows of anchor piles, the tops of the two rows of anchor piles are connected to the two sides of the floating body through cables, the bottom of the floating body is connected to the top of the enclosure cloth, and the bottom of the enclosure cloth is connected to the counterweight body;
[0009] Connection structure 2: There is a row of anchor piles, the bottom of the floating body is connected to the top of the enclosure cloth, and the bottom of the enclosure cloth is connected to the top of the anchor piles through cables.
[0010] After adopting the above structure of the utility model, after the anchor pile is driven into the bottom of the river or pond, the buoyancy of the enclosed floating body pulls the tensioned cable upward, and the cable pulls the anchor pile upward, so that the anchor plate pair is unfolded by the downward resistance of the soil and firmly stuck in the soil, so that the anchor pile only needs to be driven into the soil at a shallow depth to complete the fixation, shortening the length of the anchor pile, saving manufacturing costs, and saving time and labor costs for driving the anchor pile, greatly reducing the total cost. The hook increases the grip of the anchor pile, and the mutually perpendicular anchor plates grip the soil from two different directions, so that the depth required for driving into the soil is further reduced, further reducing the cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 This is a schematic diagram of the structure of the utility model using the connection structure 1;
[0012] Figure 2 This is a schematic diagram of the structure of the utility model using the second connection structure;
[0013] Figure 3 It is a structural schematic diagram of the anchor pile of the utility model. DETAILED DESCRIPTION
[0014] Embodiment 1:
[0015] See Figure 1 , Figure 3 The underwater enclosure installation structure comprises an anchor pile 1, which comprises a pile body 2, a rotating shaft 3 is installed transversely through the pile body 2, and two anchor plates 4 are installed symmetrically on the rotating shaft 3, and the longitudinal section of the anchor plate 4 is concave. When the anchor plate 4 is opened, the concave inner wall surface of the anchor plate 4 can be close to the side of the pile body 2, and the top of the anchor plate 4 is provided with a hook 5 bent outward; a rotating shaft 3 and two anchor plates 4 symmetrically installed thereon constitute an anchor plate pair; there are at least two pairs of anchor plates, Figure 1 , Figure 3 There are four pairs of anchors, and the installation directions of adjacent anchor pairs are perpendicular to each other. The top of the anchor pile 1 is connected to the enclosure 10, and the top of the enclosure 10 is provided with a floating body 7.
[0016] There are two rows of anchor piles 1, the top ends of the two rows of anchor piles 1 are connected to the two sides of the floating body 7 through cables 6, the bottom of the floating body 7 is connected to the top end of the surrounding cloth 9, and the bottom end of the surrounding cloth 9 is connected to the counterweight 8.
[0017] When in use, connect the top of the anchor pile 1 to one end of the cable 6, calculate the required length of the cable 6 to be tightened according to the water depth, connect the float 7 to the position corresponding to the length of the cable 6, and then drive the anchor pile 1 in the closed state into the bottom of the river or pond. Then the buoyancy of the float 7 tightens the underwater part of the cable 6, driving the anchor pile 1 upward, and the anchor sheet expands against the downward resistance of the soil, firmly clamping the anchor pile 1 into the soil. The installation is completed.
[0018] Embodiment 2:
[0019] See Figure 2 , Figure 3 The underwater enclosure installation structure comprises an anchor pile 1, which comprises a pile body 2, a rotating shaft 3 is installed transversely through the pile body 2, and two anchor plates 4 are installed symmetrically on the rotating shaft 3, and the longitudinal section of the anchor plate 4 is concave. When the anchor plate 4 is opened, the concave inner wall surface of the anchor plate 4 can be close to the side of the pile body 2, and the top of the anchor plate 4 is provided with a hook 5 bent outward; a rotating shaft 3 and two anchor plates 4 symmetrically installed thereon constitute an anchor plate pair; there are at least two pairs of anchor plates, Figure 2 , Figure 3 There are four pairs of anchors, and the installation directions of adjacent anchor pairs are perpendicular to each other. The top of the anchor pile 1 is connected to the enclosure 10, and the top of the enclosure 10 is provided with a floating body 7.
[0020] There is a row of anchor piles 1, the bottom of the floating body 7 is connected to the top of the surrounding cloth 9, and the bottom end of the surrounding cloth 9 is connected to the top of the anchor piles 1 through the cable 6.
[0021] When in use, connect the top of the anchor pile 1 to one end of the cable 6, calculate the required length of the cable 6 to be tightened according to the water depth, connect the bottom end of the enclosure cloth 9 to the position corresponding to the length of the cable 6, and then drive the anchor pile 1 in a closed state into the bottom of the river or pond. Then the buoyancy of the float 7 tightens the underwater part of the cable 6, driving the anchor pile 1 upward, and the anchor sheet expands against the downward resistance of the soil, firmly embedding the anchor pile 1 into the soil. Installation is completed.
Claims
1. An underwater enclosure installation structure, comprising anchor piles, characterized in that: The anchor pile includes a pile body, a rotating shaft is installed transversely through the pile body, two anchor plates are installed on the rotating shaft for symmetrical rotation, the cross-section of the anchor plates is concave, the concave inner wall surface of the anchor plates can be close to the side surface of the pile body, one rotating shaft and the two anchor plates symmetrically installed thereon for rotation constitute an anchor plate pair; the top of the anchor pile is connected to the enclosure, and a floating body is arranged on the top of the enclosure.
2. The underwater enclosure installation structure according to claim 1, characterized in that: The top end of the anchor sheet is provided with a hook claw bent downward.
3. The underwater enclosure installation structure according to claim 1 or 2, characterized in that: There are at least two pairs of anchor plate pairs, and the installation directions of two adjacent pairs of anchor plate pairs are perpendicular to each other.
4. The underwater enclosure installation structure according to claim 3, characterized in that: The anchor piles and the enclosure have two connection structures. Connection structure 1: the anchor piles are arranged in two rows, the top ends of the two rows of anchor piles are respectively connected to the two sides of the floating body through cables, the bottom of the floating body is connected to the top end of the enclosure cloth, and the bottom end of the enclosure cloth is connected to the counterweight body.
5. The underwater enclosure installation structure according to claim 4, characterized in that: Connection structure 2: There is a row of anchor piles, and the bottom end of the enclosure cloth is connected to the top end of the anchor piles through a cable.