Anti-collapse frame for water conservancy water source well

By designing a water conservancy water source well anti-collapse framework including support devices and reinforcement devices, the problems of high installation costs and difficulty in the prior art are solved, and the stability and safety of the water source well are improved, and the service life is extended.

CN222886876UActive Publication Date: 2025-05-20CHINA TIESIJU CIVIL ENGINEERING GROUP CO LTD +1

Patent Information

Application Number
CN202421912478.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-20
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

The existing water source well anti-collapse device is costly and difficult to install.

Method used

A water conservancy water source well anti-collapse frame is designed, including support devices and reinforcement devices. The support device consists of a symmetrically arranged conical cylinder, a vertical array of support columns, a connecting ring, a bottom ring seat and a reinforcement column. These components are connected to each other to form a stable support structure. The reinforcement device improves the overall load-bearing capacity and stability by strengthening components such as frames, convex grooves, square blocks, support rods and reinforcement rods.

Benefits of technology

Through the design of this framework, installation costs and difficulty can be significantly reduced, stability and safety of water source wells can be improved, service life can be extended, and maintenance costs can be reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-collapse frame for a water conservancy water source well, which belongs to the technical field of water well collapse prevention and comprises a supporting device, the supporting device comprises symmetrically arranged flat-topped conical barrels, a plurality of supporting columns are vertically arrayed in the conical barrels, and the middle parts of the supporting columns are fixedly connected with connecting rings on the inner side walls of the conical barrels. The bottom end of the conical barrel is connected with a bottom ring seat and connected with the outer side wall of the supporting column, reinforcing columns are connected between the connecting ring and the bottom ring seat, a set of reinforcing columns are arranged in a semi-crossed mode and connected with the outer side wall of the supporting column, long plates are fixedly connected to the two sides of the outer portion of the conical barrel, positioning holes are formed in the long plates, and the interiors of the positioning holes are fixed through bolts. The utility model has the beneficial effects that the symmetrical conical barrels are mounted, the mounting blocks are inserted into the mounting grooves, and the symmetrical rack grooves are meshed with each other, so that the symmetrical conical barrels are mounted more tightly, and the symmetrical conical barrels are fixedly mounted by matching the positioning holes with bolts.
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Description

Technical Field

[0001] The utility model relates to the technical field of well anti - collapse, and particularly relates to an anti - collapse framework for a water conservancy water source well. Background Technique

[0002] A water source well refers to a well - shaped structure at the confluence point between water pipelines and is convenient for inspection and dredging. Water source wells are widely used in urban construction. In China, water source wells are mainly made of rigid materials with good compressive performance. Existing water source wells include a cement - stabilized macadam base on the outside of the water source well and an asphalt concrete pavement layer arranged above the cement - stabilized macadam base.

[0003] Among them, a pipe well anti - collapse device disclosed in the patent with the application number CN201921672962.6 is also an increasingly mature technology. By the above - mentioned method, multiple core barrels can be installed in the pipe well, and then a stable retaining wall is formed in the pipe well, so that the inner wall of the pipe well can be kept stable and difficult to collapse. And when the pipeline extends into the pipe well, the pipeline contacts the core barrel instead of directly contacting the soil of the inner wall of the pipe well, so it is also difficult to cause the collapse of the inner wall of the pipe well; however, there are still the following defects:

[0004] This anti - collapse device requires a hoisting device, with high installation costs and great difficulty in installing multiple core barrels. Content of the Utility Model

[0005] The purpose of the utility model is to provide an anti - collapse framework for a water conservancy water source well to solve the problems of high installation cost and great difficulty mentioned in the above background technique.

[0006] The embodiment of the utility model provides an anti - collapse framework for a water conservancy water source well, which includes a support device, and a strengthening device is arranged outside the support device;

[0007] Among them, the support device includes symmetrically arranged conical cylinders with flat tops. A plurality of support columns are vertically arrayed inside the conical cylinders. A connecting ring is fixedly connected to the middle part of the support columns on the inner side wall of the conical cylinders. The bottom end of the conical cylinder is connected with a bottom ring seat and is connected to the outer side wall of the support columns. Strengthening columns are connected between the connecting ring and the bottom ring seat. A group of the strengthening columns are arranged in a semi - cross - shaped manner to connect the outer side walls of the support columns. Long plates are fixedly connected to both sides outside the conical cylinders. Positioning holes are opened in the long plates, and bolts are fixed inside the positioning holes;

[0008] The strengthening device includes a strengthening framework. A plurality of convex grooves are opened in the inner side walls on both sides of the strengthening framework. Square blocks are movably arranged inside the convex grooves. One end of each square block is provided with a support rod, and a strengthening rod is fixedly connected to the middle part of each support rod.

[0009] In this embodiment, the conical cylinder is used to support the water source well in a conical shape. In cooperation with the vertically arranged struts, the struts are fitted to the outer wall of the water source well. The connecting ring connects the conical cylinder to the middle of the struts, and the bottom ring seat connects the conical cylinder to the bottom end of the struts, which can improve the bearing capacity of the support device. The strengthening columns can increase the stability of the struts. The positioning holes cooperate with the use of bolts, which can facilitate the installation and disassembly of the symmetrical conical cylinders. The convex grooves facilitate the flexible installation and disassembly of the support rods. The support rods disperse the weight of the strengthening frame, and the strengthening rods increase the bearing capacity of the strengthening frame, improving the bearing capacity of the strengthening device and ensuring that the strengthening device can bear a greater weight.

[0010] In one implementation of the present utility model, mounting blocks are provided on both sides of the connecting ring, rack grooves are formed on the surfaces of both sides of the bottom ring seat, mounting grooves are formed at the corresponding positions of the symmetrical connecting rings where the mounting blocks are located, and the symmetrical rack grooves are meshed with each other.

[0011] In this solution, by inserting the mounting blocks into the interior of the mounting grooves and the symmetrical rack grooves being meshed with each other, the symmetrical conical cylinders are installed more closely to each other.

[0012] In one implementation of the present utility model, a waterproof layer and an anti-corrosion layer are sequentially arranged from the inside to the outside of the conical cylinder. A plurality of U-shaped blocks are connected to the outside of the anti-corrosion layer, and rubber balls are movably arranged inside the U-shaped blocks.

[0013] In this solution, the waterproof layer can effectively prevent groundwater seepage and reduce the moisture erosion on the well wall. The anti-corrosion layer can effectively resist the erosion of corrosive substances, and the rubber balls can increase the friction during installation.

[0014] In one implementation of the present utility model, a hinge frame is connected to one side of the square block, the hinge frame is hinged to the support rod, and a rubber ball is arranged at the end of the support rod away from the square block.

[0015] In this solution, by connecting the support rod through the hinge frame, the square block can conveniently make a slight angular adjustment to one end of the support rod. The rubber ball can increase the bearing capacity of the support rod to ensure the strengthening device.

[0016] In one implementation of the present utility model, a top plate is arranged at the top end of the conical cylinder, reinforcing nails are fixedly connected to the four peripheries of the bottom end of the top plate, and the top plate is movably installed by screws.

[0017] In this solution, by fixing the top plate to the ground with the cooperation of the reinforcing nails, the stability of the top plate is improved, and the movable installation by screws can facilitate the disassembly and installation of the top plate.

[0018] In an embodiment of the present utility model, the U-shaped block is inclined and connected to the outside of the anti-corrosion layer, and the length of the support rod is longer from top to bottom.

[0019] In this solution, since the length of the support rod is longer from top to bottom, the two ends of the support rod are installed more tightly, and thus the load-bearing capacity is also greater.

[0020] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0021] 1. Install the symmetric conical cylinders, insert the installation blocks into the installation grooves, and the symmetric rack grooves are meshed with each other, so that the symmetric conical cylinders are installed more tightly. Through the use of the positioning holes and bolts, the symmetric conical cylinders are fixedly installed. Place the strengthening frame outside the conical cylinders, install the square blocks at both ends of the support rod and the rubber balls into the convex grooves and the U-shaped blocks respectively. Finally, fix the top plate with screws at the top of the conical cylinder, and fix the top plate with the reinforcement nails on the ground to improve the stability of the top plate;

[0022] 2. The conical cylinders are connected to each other through various connecting components to form a stable support structure, enhance the overall stability, prevent the collapse of the well wall of the water source well caused by local damage. The combined use of the support device and the strengthening device can improve the stability and safety of the water source well, reduce the maintenance cost, and then can extend the service life of the water source well. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The drawings are used to provide a further understanding of the present utility model, and constitute a part of the specification. Together with the embodiments of the present utility model, they are used to explain the present utility model, and do not constitute a limitation to the present utility model. In the drawings:

[0024] Figure 1 is the overall structural schematic diagram of the anti-collapse frame of the present utility model;

[0025] Figure 2 is the cross-sectional structural schematic diagram of the support device of the present utility model;

[0026] Figure 3 is the disassembled structural schematic diagram of the strengthening device of the present utility model;

[0027] Figure 4 is the partial structural schematic diagram of the square block of the present utility model.

[0028] In the figure: 100, support device; 110, conical cylinder; 111, support pillar; 112, connecting ring; 113, bottom ring seat; 114, strengthening column; 115, long plate; 116, positioning hole; 117, installation block; 118, rack groove; 119, waterproof layer; 120, anti-corrosion layer; 121, U-shaped block; 122, top plate; 123, reinforcement nail;

[0029] 200, Reinforcement device; 210, Reinforcement frame; 211, Convex groove; 212, Square block; 213, Support rod; 214, Reinforcement rod; 215, Rubber ball; 216, Hinge frame. Detailed implementation manner

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0031] Embodiment

[0032] Please refer to Figures 1-4 , the present invention provides a technical solution: a water conservancy water source well anti-collapse frame, including a support device 100, and a reinforcement device 200 is arranged outside the support device 100;

[0033] Specifically, please refer to Figure 2 , the support device 100 includes symmetrically arranged conical cylinders 110 with flat tops. A plurality of support columns 111 are vertically arranged inside the conical cylinders 110. A connecting ring 112 is fixedly connected to the inner side wall of the middle part of the support columns 111 inside the conical cylinders 110. The bottom end of the conical cylinders 110 is connected with a bottom ring seat 113 and is connected to the outer side wall of the support columns 111. A reinforcing column 114 is connected between the connecting ring 112 and the bottom ring seat 113. A group of reinforcing columns 114 are arranged in a semi-crossed manner to connect the outer side walls of the support columns 111. Long plates 115 are fixedly connected to both sides of the outside of the conical cylinders 110. Positioning holes 116 are opened in the long plates 115, and bolts are fixed inside the positioning holes 116.

[0034] In a specific embodiment, please refer to Figure 2 , the conical cylinders 110 are used to support the water source well in a conical shape. In cooperation with the vertically arranged support columns 111, the support columns 111 are attached to the outer wall of the water source well. The connecting ring 112 connects the middle part of the conical cylinders 110 and the support columns 111, and the bottom ring seat 113 connects the bottom ends of the conical cylinders 110 and the support columns 111, which can improve the bearing capacity of the support device 100. The reinforcing columns 114 can increase the stability of the support columns 111, disperse the weight of the support columns 111, and reduce the problem that the stability of the support device 100 decreases due to the deformation or damage of the support columns 111. The conical cylinders 110 are connected to each other through various connecting components to form a stable support structure, enhance the overall stability, and prevent the collapse of the well wall of the water source well caused by local damage. The use of the positioning holes 116 in cooperation with bolts can facilitate the installation and disassembly of the symmetric conical cylinders 110.

[0035] Please refer to Figure 3 , the strengthening device 200 includes a strengthening frame 210. A plurality of convex grooves 211 are formed in the inner side walls on both sides of the strengthening frame 210. Square blocks 212 are movably arranged inside the convex grooves 211. Support rods 213 are arranged at one ends of the square blocks 212, and strengthening rods 214 are fixedly connected to the middle parts of the support rods 213.

[0036] In a specific embodiment, please refer to Figure 3 , the support rods 213 can be conveniently and flexibly installed and disassembled through the convex grooves 211. The support rods 213 disperse the weight of the strengthening frame 210, reduce the risk of deformation of the strengthening frame 210, improve the stability of the strengthening device 200. The strengthening rods 214 increase the load-bearing capacity of the strengthening frame 210, improve the load-bearing capacity of the strengthening device 200, ensure that the strengthening device 200 can bear a greater weight. When used in cooperation with the support device 100, it can improve the stability and safety of the water source well, reduce the maintenance cost, and then extend the service life of the water source well.

[0037] Please refer to Figure 2 , mounting blocks 117 are arranged on both sides of the connecting ring 112. Rack grooves 118 are formed on the surfaces of both sides of the bottom ring seat 113. Mounting grooves are formed at the corresponding positions of the symmetric connecting rings 112 where the mounting blocks 117 are located, and the symmetric rack grooves 118 are meshed with each other.

[0038] In a specific embodiment, please refer to Figure 2 , by inserting the mounting blocks 117 into the interior of the mounting grooves and the symmetric rack grooves 118 being meshed with each other, the symmetric conical cylinders 110 are installed more closely to each other.

[0039] Please refer to Figure 2 , a waterproof layer 119 and an anti-corrosion layer 120 are sequentially arranged on the outside of the conical cylinder 110 from the inside to the outside. A plurality of U-shaped blocks 121 are connected to the outside of the anti-corrosion layer 120, and rubber balls 215 are movably arranged inside the U-shaped blocks 121.

[0040] In a specific embodiment, please refer to Figure 2 , the waterproof layer 119 can effectively prevent groundwater seepage, reduce the moisture erosion on the well wall, and extend the service life of the water source well. The anti-corrosion layer 120 can effectively resist the erosion of corrosive substances and improve the durability of the frame. The rubber balls 215 can increase the friction during installation.

[0041] Please refer to Figure 4 , one side of the square block 212 is connected with a hinge frame 216. The hinge frame 216 is hinged to the support rod 213, and a rubber ball 215 is arranged at the end of the support rod 213 away from the square block 212.

[0042] In a specific embodiment, please refer to Figure 4 , the support rod 213 is connected to the hinge frame 216, so as to facilitate the installation of the square block 212 inside the convex groove 211. By slightly adjusting the angle of one end of the support rod 213, the rubber ball 215 can increase the bearing capacity of the support rod 213, ensuring that the strengthening device 200 can bear a greater weight.

[0043] Please refer to Figure 2 , a top plate 122 is provided at the top end of the conical cylinder 110. Reinforcing nails 123 are fixedly connected to the periphery of the bottom end of the top plate 122. The top plate 122 is movably installed by screws.

[0044] In a specific embodiment, please refer to Figure 2 , the top plate 122 is fixed to the ground by cooperating with the reinforcing nails 123, improving the stability of the top plate 122. The movable installation of the screws can facilitate the disassembly and installation of the top plate 122, thereby facilitating the installation of the support rod 213 of the strengthening device 200.

[0045] Please refer to Figure 2 , the U-shaped block 121 is obliquely connected to the outside of the anticorrosive layer 120, and the length of the support rod 213 is longer from top to bottom.

[0046] In a specific embodiment, please refer to Figure 2 , since the length of the support rod 213 is longer from top to bottom, the two ends of the support rod 213 are installed more tightly, and thus the bearing capacity is also greater.

[0047] A kind of anti-collapse framework for water conservancy water source wells provided by the utility model has the following specific usage method:

[0048] The symmetrical conical cylinders 110 are installed. The mounting blocks 117 are inserted into the inner part of the mounting grooves, and the symmetrical rack grooves 118 are engaged with each other, so that the symmetrical conical cylinders 110 are installed more closely to each other. By using bolts in cooperation with the positioning holes 116, the symmetrical conical cylinders 110 are fixedly installed. The conical cylinders 110 are conical to support the water source well. In cooperation with the vertically arranged columns 111, the columns 111 are attached to the outer wall of the water source well. The connecting ring 112 connects the conical cylinder 110 and the middle part of the column 111, and the bottom ring seat 113 connects the conical cylinder 110 and the bottom end of the column 111, which can improve the bearing capacity of the support device 100. The strengthening columns 114 can increase the stability of the columns 111, disperse the weight of the columns 111, and reduce the problem that the stability of the support device 100 decreases due to the deformation or damage of the columns 111. The conical cylinders 110 are connected to each other through various connecting components to form a stable support structure, enhance the overall stability, and prevent the collapse of the well wall of the water source well caused by local damage. When the strengthening frame 210 is placed outside the conical cylinder 110, the square blocks 212 at both ends of the support rod 213 and the rubber balls 215 are respectively installed in the convex grooves 211 and the U-shaped blocks 121. In cooperation with the use of the support device 100, the stability and safety of the water source well can be improved, the maintenance cost can be reduced, and then the service life of the water source well can be extended. Finally, the screw-fixed top plate 122 is placed at the top of the conical cylinder 110, and the top plate 122 is fixed to the ground in cooperation with the reinforcing nails 123 to improve the stability of the top plate 122.

[0049] The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A water conservancy water source well anti-collapse frame, characterized in that: include: A supporting device (100), wherein a reinforcing device (200) is arranged outside the supporting device (100); The support device (100) comprises a symmetrically arranged flat-topped conical cylinder (110), wherein the interior of the conical cylinder (110) is provided with a plurality of pillars (111) in a vertical array, wherein the middle portion of the pillar (111) is located on the inner side wall of the conical cylinder (110) and is fixedly connected with a connecting ring (112), wherein the bottom end of the conical cylinder (110) is connected with a bottom ring seat (113) and is connected with the outer side wall of the pillar (111), wherein a reinforcing column (114) is connected between the connecting ring (112) and the bottom ring seat (113), wherein a group of the reinforcing columns (114) are semi-crossedly arranged and connected with the outer side wall of the pillar (111), wherein long plates (115) are fixedly connected to both sides of the exterior of the conical cylinder (110), wherein the long plates (115) are provided with positioning holes (116), and the interior of the positioning holes (116) is fixed by bolts; The reinforcing device (200) comprises a reinforcing frame (210), wherein the inner side walls on both sides of the reinforcing frame (210) are provided with a plurality of convex grooves (211), square blocks (212) are movably arranged inside the convex grooves (211), a support rod (213) is arranged at one end of the square block (212), and a reinforcing rod (214) is fixedly connected to the middle of the support rod (213).

2. A water conservancy water source well anti-collapse frame according to claim 1, characterized in that: Mounting blocks (117) are provided on both sides of the connecting ring (112), rack grooves (118) are provided on both side surfaces of the bottom ring seat (113), mounting grooves are provided at positions of the mounting blocks (117) corresponding to the symmetrical connecting rings (112), and the symmetrical rack grooves (118) are meshed with each other.

3. The anti-collapse framework for water conservancy and water source wells according to claim 1, characterized in that: The outside of the conical cylinder (110) is provided with a waterproof layer (119) and an anti-corrosion layer (120) in sequence from the inside to the outside, and the outside of the anti-corrosion layer (120) is connected to a plurality of U-shaped blocks (121), and a rubber ball (215) is movably provided inside the U-shaped block (121).

4. The anti-collapse framework for water conservancy and water source wells according to claim 1, characterized in that: One side of the square block (212) is connected to an articulated frame (216), the articulated frame (216) is articulated to a support rod (213), and a rubber ball (215) is provided at one end of the support rod (213) away from the square block (212).

5. The anti-collapse frame for water conservancy and water source wells according to claim 1, characterized in that: A top plate (122) is provided at the top of the conical cylinder (110), and reinforcement nails (123) are fixedly connected to the bottom of the top plate (122) on all sides, and the top plate (122) is movably installed by means of screws.

6. The anti-collapse framework for water conservancy and water source wells according to claim 3, characterized in that: The U-shaped block (121) is connected obliquely to the outside of the anti-corrosion layer (120), and the length of the support rod (213) increases from top to bottom.

Citation Information

Patent Citations

  • Tube well anti-collapse device

    CN210564388U

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