Water conservancy flood control facility
By using a design that combines sealing rubber pads and connecting blocks with bolts in flood control facilities, along with foldable connectors and support frames, the limitations of flood control barrier structures and sealing issues are resolved, achieving stable flood control performance and flexible shape adjustment.
Patent Information
- Application Number
- CN202520298634.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-24
AI Technical Summary
Existing flood control barrier structures have significant limitations, are prone to water seepage at contact points, are easily loosened when installing the barrier and support rods, and have poor sealing performance when constructing irregularly shaped dikes.
The design employs a sealing rubber gasket and connecting blocks connected with bolts, combined with a foldable connector and support frame, and is secured with pins to form a stable flood control facility.
It improves the sealing and stability of adjacent flood control facilities, allows for flexible shape adjustment, and enhances the sealing effect in irregularly shaped dikes.
Smart Images

Figure CN223853254U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of water conservancy, specifically relating to a water conservancy flood control facility. Background Technology
[0002] Flood control barriers are devices used for temporary or semi-permanent flood control. They are usually made of metal (such as aluminum alloy or steel plate), composite materials, or plastics and are assembled in a modular fashion to form a barrier that prevents floodwaters from entering buildings, roads, underground facilities, and other areas.
[0003] Flood control barriers are usually installed manually, which is time-consuming and labor-intensive, and may delay flood control in emergencies. To address the above problems, the existing Chinese utility model patent with patent application number 202322667216.0 describes a water conservancy flood control wall. A water-retaining plate is installed on the side rotating frame, and the bottom support frame includes two parallel U-shaped steel plates. Multiple sandbag placement rods are installed between the two U-shaped steel plates. Support rods are hinged to the ends of the U-shaped steel plates away from the water-retaining plate. The top of the water-retaining plate is provided with a blind hole cover for locking the top of the support rod.
[0004] While the aforementioned patent can solve the problem of existing flood control methods that rely solely on sandbags, it has the following drawbacks in actual use: when assembling adjacent devices, the connection between the U-shaped clamps is not sealed. Furthermore, when forming irregularly shaped dams, sandbags must be used to fix and seal adjacent devices, resulting in poor sealing and easy leakage at the joints. Although the patent uses blind hole covers for fixation, in reality, floods fluctuate continuously under the influence of various factors, similar to ocean waves. With repeated scouring by the flood, the flood barrier and support rods are prone to loosening, which can easily lead to the flood barrier collapsing.
[0005] In summary, there is an urgent need for a new flood control facility to address the problems of existing flood barriers, such as structural limitations, easy water seepage at contact points, and loosening of the barrier and support rods during installation. Utility Model Content
[0006] This utility model provides a water conservancy flood control facility, which aims to solve the problems of existing flood control barriers having strong structural limitations, easy water seepage at contact joints, and easy loosening of the installation of the water barrier and support rod.
[0007] The present invention is implemented as follows:
[0008] A water conservancy flood control facility, comprising:
[0009] The water baffle is closed at the top and open on the other three sides, forming an inverted U-shape. A sealing rubber gasket is fixed to the inner wall of the water baffle, and a storage groove and a storage block are fixed to the back of the water baffle by screws.
[0010] The connecting unit consists of connecting blocks and connecting bodies. The connecting blocks are located at both ends of the connecting body, and sealing gaskets are provided between adjacent connecting blocks. The connecting blocks are connected by bolts, and the connecting body is made of rubber.
[0011] The fixed support unit includes a support frame and a fixed frame. The support frame and the water baffle are fixedly connected by a rotating shaft, and the fixed frame and the water baffle are fixedly connected by screws.
[0012] The connecting unit is embedded in the baffle plate and can slide along the sealing rubber pad inside the baffle plate. The fixing bracket can also be fixed in the storage block by screws, and the fixing support unit can be embedded in the storage slot.
[0013] Furthermore, the fixing frame is equipped with multiple crossbars.
[0014] Furthermore, the support frame and the fixing frame are provided with multiple through fixing holes, and fixing pins are fixed in the fixing holes.
[0015] Furthermore, the connector can be bent at any angle.
[0016] The beneficial effects achieved by this utility model are:
[0017] By incorporating connecting blocks and connecting bodies, and designing the connecting bodies as arbitrarily foldable structures, the limitations of existing water-retaining walls, which can only be arranged in a single line, can be overcome. Adjacent water conservancy and flood control facilities are connected by connecting blocks, which are fixed together by bolts. Sealing gaskets are installed between the connecting blocks, which greatly increases the sealing between adjacent water conservancy and flood control facilities. At the same time, the support frame is fixed by two pins to increase the stability of the water conservancy and flood control facilities. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the water conservancy and flood control facility provided by this utility model;
[0019] Figure 2 This is a schematic diagram of the back structure of this utility model.
[0020] Icon labels:
[0021] 100. Water conservancy and flood control facilities;
[0022] 110. Water baffle; 111. Storage block; 112. Storage slot; 120. Connector; 130. Connecting block; 140. Support frame; 150. Fixing frame; 151. Crossbar. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0024] By incorporating connecting blocks and connecting bodies, and designing the connecting bodies as arbitrarily foldable structures, the limitations of existing water-retaining walls, which can only be arranged in a single line, can be overcome. Adjacent water conservancy and flood control facilities are connected by connecting blocks, which are fixed together by bolts. Sealing gaskets are installed between the connecting blocks, which greatly increases the sealing between adjacent water conservancy and flood control facilities. At the same time, the support frame is fixed by two pins to increase the stability of the water conservancy and flood control facilities.
[0025] Reference Figure 1 and Figure 2 In this embodiment of the utility model, a water conservancy flood control facility 100 is provided, comprising:
[0026] A water baffle 110 is closed at the top and open on the other three sides, forming an inverted U-shape. A sealing rubber gasket is fixed to the inner wall of the water baffle 110. A storage groove 112 and a storage block 111 are fixed to the back of the water baffle 110 by screws.
[0027] The connecting unit consists of a connecting block 130 and a connecting body 120. The connecting blocks 130 are located at both ends of the connecting body 120. Adjacent connecting blocks 130 are connected by bolts. The connecting body 120 is a rubber body.
[0028] The fixed support unit includes a support frame 140 and a fixed frame 150. The support frame 140 and the baffle plate 110 are fixedly connected by a rotating shaft, and the fixed frame 150 and the baffle plate 110 are fixedly connected by screws.
[0029] The connecting unit is embedded in the baffle plate 110 and can slide along the sealing rubber pad inside the baffle plate 110. The fixing bracket 150 can also be fixed in the storage block by screws, and the fixing support unit can be embedded in the storage slot 112.
[0030] In this embodiment, a water conservancy flood control facility 100 is configured to connect multiple device units to form a flood barrier wall, preventing floodwater from entering underground garages or low-lying areas, thereby playing a role in blocking floodwater.
[0031] In one embodiment, the water conservancy flood control facility 100 includes a water-retaining plate 110, which is used to fix the connecting unit and block floods. The water-retaining plate 110 is closed at the top and has three open sides, thus forming an inverted U-shape in its cross-section. A sealing rubber gasket is pasted inside the water-retaining plate 110. When the connecting unit is fixed inside the water-retaining plate 110, the sealing rubber gasket and the connecting unit can be squeezed together to form a watertight whole. By providing the sealing rubber gasket, the front and rear ends of the water-retaining plate 110 can form a sealed isolation wall, thereby achieving the function of isolating floods.
[0032] Specifically, a storage groove 112 and a storage block 111 are fixed to the back of the flood baffle 110 by screws. The storage groove 112 is fixed to the back of the flood baffle 110 by pins. A support frame 140 is fixed inside the storage groove 112 by a rotating shaft. The support frame 140 can rotate freely around the rotating shaft. When the flood control facility 100 is in the stored state, the support frame 140 is stored in the storage groove 112. When the flood control facility 100 is in the open state, the support frame 140 is taken out from the storage groove 112.
[0033] The storage block 111 is fixed to the rear end of the baffle plate 110 with pins. The storage block 111 is used to fix the fixing frame 150. The storage block 111 is provided with a first screw hole, and the fixing frame 150 is provided with a second screw hole at the corresponding position. When the water conservancy flood control facility 100 is in the storage state, the fixing frame 150 is fixed in the storage block 111 by pins to prevent the fixing frame 150 from shaking. When the water conservancy flood control facility 100 is in the open state, the fixing frame 150 is taken out from the storage block 111. It is easy to understand that the storage block 111 is provided with a groove for easy fixed connection with the fixing block. The shape of the groove can be complementary to the shape of the fixing frame 150, or it can be other shapes.
[0034] In another embodiment, the connecting unit is used to fix the connection with adjacent water conservancy facilities. After multiple water conservancy facilities are connected, a complete flood control embankment is formed. On the other hand, the connecting unit is fixedly connected with the water-retaining plate 110. After the connecting unit is fixedly connected with the water-retaining plate 110, a complete water-retaining unit is formed. After multiple water-retaining units are connected, a complete water-retaining embankment is formed.
[0035] The specific connecting unit consists of a connecting block 130 and a connecting body 120. The connecting block 130 is located at both ends of the connecting body 120. Adjacent connecting blocks 130 are connected by bolts. The connecting body 120 is a rubber body that can be bent. When a bent water-retaining dam needs to be formed, the connecting body 120 can be bent.
[0036] In another embodiment, the fixed support unit includes a support frame 140 and a fixed frame 150. The support frame 140 and the water-blocking plate 110, and the fixed frame 150 and the water-blocking plate 110 are fixedly connected by a rotating shaft. The support frame 140 and the fixed frame 150 are fixedly connected by screws. When the water conservancy flood control facility 100 needs to be opened to a certain angle, the support frame 140 is stretched to a certain length and then locked. At this time, the support frame 140, the fixed frame 150, and the water-blocking plate 110 form a [structure / structure]. A triangular structure is used to fix the water-retaining plate 110 to the ground, and sandbags are stacked on the fixing frame 150 to complete the fixation of the water conservancy flood control facility 100. When multiple water-retaining units need to be connected, the fixing blocks of adjacent water conservancy flood control facilities 100 can be fixed and connected by pins. The connecting unit is embedded in the water-retaining plate 110 and can slide along the sealing rubber pad inside the water-retaining plate 110. The fixing frame 150 can also be fixed in the receiving block by screws, and the fixing support unit can be embedded in the receiving groove 112.
[0037] By incorporating connecting blocks 130 and connecting bodies 120, and designing the connecting bodies 120 as arbitrarily foldable structures, the limitations of existing water-retaining walls, which can only be arranged in a single line, can be overcome. Adjacent water conservancy and flood control facilities 100 are connected by connecting blocks 130, and adjacent connecting blocks 130 are fixed together by bolts. Sealing gaskets are provided between the connecting blocks 130, which can greatly increase the sealing between adjacent water conservancy and flood control facilities 100. At the same time, the support frame 140 is fixed by two pins to lock it in place, which can increase the stability of the water conservancy and flood control facilities 100.
[0038] It should be noted that in this embodiment of the utility model, the fixing frame 150 is provided with multiple crossbars 151 to facilitate the stacking of sandbags. The support frame 140 and the fixing frame 150 are provided with multiple through fixing holes, and fixing pins are fixed in the fixing holes. The support frame 140 is fixed by the pins. In this embodiment of the utility model, the connecting body 120 can be bent into any angle, and the shape of the flood control wall after connection can be changed according to the actual situation.
[0039] In the description of this specification, references to terms such as "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with an embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0040] Furthermore, the above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A water conservancy flood control facility characterized by, The utility model relates to a water baffle fixing device, including: Water baffle, water baffle upper end is closed, the rest three lateral surfaces are through, form inverted U character, water baffle inner wall fixedly have sealing rubber pad, water baffle back is fixed with the receiving groove and the receiving block through screw; Connecting unit, is by connecting block and connecting body, connecting block sets up at the both ends of connecting body, is equipped with sealing pad between adjacent connecting block, and connecting block adopts the mode of bolt fixed connection between, and connecting body is rubber body; Fixed support unit, including support frame and fixed frame, support frame with water baffle, fixed frame with water baffle between adopt pivot fixed connection, support frame with fixed frame between adopt screw fixed connection; Connecting unit inlay in water baffle, and connecting unit can slide along water baffle internal sealing rubber pad, and fixed frame can still be fixed in the receiving block through screw, and fixed support unit can inlay in the receiving groove.
2. Hydraulic flood protection according to claim 1, characterized in that Multiple horizontal poles are arranged in the fixed frame.
3. Hydraulic flood protection according to claim 2, characterized in that Multiple through fixed holes are arranged on the support frame and the fixed frame, and a fixed pin is arranged in the fixed hole.
4. The hydraulic flood control structure of claim 1, wherein The connecting body can be bent to any angle.
Citation Information
Patent Citations
Water conservancy anti-flood wall
CN220847372U