Rain and sewage diversion regulation and storage system
By using a V-shaped plate and color plate design with bending springs in the rainwater and sewage separation and storage system, the problems of missing and loose module connection buckles are solved, and efficient and stable module assembly is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2026-03-06
AI Technical Summary
In existing rainwater and sewage separation and storage systems, the connecting clips between PP water storage modules are easily missed during installation and are prone to loosening when squeezed or shaken, resulting in unstable module structure and time-consuming and labor-intensive installation.
The design incorporates a V-shaped plate and a color plate connected by a bending spring. When one end of the V-shaped plate protrudes, the color plate serves as a reminder to the installer to prevent omissions. The connecting buckle is secured by pressing the V-shaped plate with a vertical rod, ensuring a stable connection.
It improves construction efficiency, prevents missing installation of connectors, enhances module stability, simplifies the assembly process, and reduces installation time and the risk of material loosening.
Smart Images

Figure CN223974695U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of rainwater and sewage separation technology, specifically relating to a rainwater and sewage separation and storage system. Background Technology
[0002] Rainwater and sewage separation refers to separating rainwater and sewage, each transported through its own pipeline. Rainwater is discharged directly into rivers through the rainwater pipe network, while sewage is collected through the sewage pipe network and sent to a sewage treatment plant for treatment. The rainwater and sewage separation storage system is an important urban drainage and environmental management facility. It is usually a combination of technologies and equipment such as intelligent diversion wells, storage tanks, intercepting sewer pipes, and other auxiliary facilities. The storage tank plays a crucial role in the storage system and is generally assembled using perforated PP water storage modules. It has the functions of regulating peak flow, reducing pollution load, and providing space for water resource reuse.
[0003] In existing water storage systems, PP water storage modules are assembled and fixed together using connecting clips. However, because each module has a uniform appearance and a regular arrangement, the boundaries between them are blurred and difficult to distinguish. Furthermore, the grid-like perforated structure can easily create visual illusions. This often leads to omissions during the installation of connecting clips, requiring repeated and careful checks after each layer of modules is laid, which is time-consuming and labor-intensive. In addition, the connecting clips are simply fitted between two modules, and they are prone to popping out or loosening when subjected to pressure or shaking, which may reduce the stability of the module structure. Utility Model Content
[0004] The purpose of this utility model is to provide a rainwater and sewage separation and storage system. By bending the spring, one end of the V-shaped plate can be protruded or hidden. When one end of the V-shaped plate protrudes, the color of the color plate can indicate to the construction personnel, preventing the connection buckle from being missed during installation. This makes the inspection and identification more time-saving and labor-saving. The connection buckle can also be pressed by the vertical rod to make one end of the V-shaped plate flush with the storage module, which facilitates the assembly of the storage module. The V-shaped plate can also reinforce and lock the connection buckle to prevent it from loosening and popping out.
[0005] The specific technical solution adopted by this utility model is as follows:
[0006] A rainwater and sewage separation and storage system includes a storage module for storing rainwater and connecting buckles and buckle grooves;
[0007] It also includes a diversion well for separating rainwater and sewage; the diversion well for distributing rainwater to the intercepting sewer; the intercepting sewer for intercepting impurities in rainwater; the intercepting sewer for distributing rainwater to the storage module; and an electrical control device for monitoring and regulating the storage module, the diversion well, and the intercepting sewer.
[0008] The top of the storage module is rotatably connected to a V-shaped plate near its edge. A rotating rod is fixedly connected to one end of the V-shaped plate, and a rotating plate is fixedly connected to the outer wall of the rotating rod. Color plates are fixedly connected to both sides of the V-shaped plate. The length of one end of the V-shaped plate is greater than that of the other end. A fixing plate is fixedly connected to the bottom surface of the top of the storage module and to one side of the V-shaped plate. A bending spring is elastically assembled to one end of the fixing plate, and one end of the bending spring is elastically connected to the V-shaped plate. Vertical rods for pressing the V-shaped plate are symmetrically fixedly connected to the bottom of the connecting buckle. The buckle groove has a through groove for the vertical rod to pass through.
[0009] The buckle slots are located on the top four sides of the storage module, and the connecting buckle is movably fitted inside the buckle slots.
[0010] The two ends of the connecting buckle are symmetrically through-cut with grooves for fitting the V-shaped plate.
[0011] The center of the groove is provided with a clamping groove for the rotating plate to rotate and embed.
[0012] Each corner of the connecting buckle is fixedly connected with a protruding rod one, and the bottom surface of the top of the connecting buckle and the two sides of the buckle groove are fixedly connected with a protruding rod two.
[0013] The outer wall of the first protrusion is rotatably connected to a connecting strip for elastically engaging with the second protrusion.
[0014] The technical effects achieved by this utility model are as follows: by bending the spring, one end of the V-shaped plate can be protruded or hidden. When one end of the V-shaped plate protrudes, the color of the color plate can remind the construction personnel, preventing the connection buckle from being missed during installation, making the inspection and identification more time-saving and labor-saving. The connection buckle can also be pressed by the vertical rod to make one end of the V-shaped plate flush with the other end of the V-shaped plate, which facilitates the assembly of the storage module. The V-shaped plate can also reinforce and lock the connection buckle to prevent it from loosening and popping out. Attached Figure Description
[0015] Figure 1 This is a flowchart illustrating the rainwater and sewage separation and storage system provided in the embodiments of this utility model.
[0016] Figure 2 This is a structural diagram of the storage module provided in an embodiment of this utility model;
[0017] Figure 3 This is a partial exploded view of the storage module provided in an embodiment of this utility model;
[0018] Figure 4 yes Figure 3 Enlarged view of the local structure at point A;
[0019] Figure 5 This is a structural diagram of the V-shaped plate provided in an embodiment of this utility model;
[0020] Figure 6 This is a bottom view of the storage module provided in an embodiment of this utility model;
[0021] Figure 7 yes Figure 6 Enlarged view of the local structure at point B.
[0022] The attached diagram lists the components represented by each number as follows:
[0023] 1. Storage module; 101. V-shaped plate; 102. Rotating rod; 103. Rotating plate; 104. Color plate; 105. Fixing plate; 106. Bending spring; 107. Connecting buckle; 108. Buckle groove; 109. Clamping groove; 110. Protruding rod one; 111. Connecting strip; 112. Vertical rod; 113. Embedded groove; 114. Through groove; 115. Protruding rod two; 2. Diversion well; 3. Sewage interception pipe; 4. Electrical control device. Detailed Implementation
[0024] To make the objectives and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the following text is merely used to describe one or more specific embodiments of this utility model and does not strictly limit the scope of protection specifically claimed by this utility model.
[0025] like Figures 1-7 As shown, a rainwater and sewage separation and storage system includes a storage module 1 for storing rainwater and a connecting buckle 107 and a buckle groove 108.
[0026] Diversion well 2 is used to separate rainwater and sewage; diversion well 2 is used to send rainwater to intercepting sewer pipe 3;
[0027] The intercepting pipe 3 is used to intercept rainwater impurities; the intercepting pipe 3 is used to deliver rainwater to the storage module 1;
[0028] Electrical control device 4 is used to monitor and regulate the storage module 1, diversion well 2, and intercepting sewer 3;
[0029] V-shaped plates 101 are rotatably connected to the top edge of the storage module 1. A rotating rod 102 is fixedly connected to one end of the V-shaped plate 101. A rotating plate 103 is fixedly connected to the outer wall of the rotating rod 102. Color plates 104 are fixedly connected to both sides of the V-shaped plate 101. The length of one end of the V-shaped plate 101 is greater than that of the other end. A fixing plate 105 is fixedly connected to the bottom surface of the top of the storage module 1 and to one side of the V-shaped plate 101. A bending spring 106 is elastically assembled to one end of the fixing plate 105. One end of the bending spring 106 is elastically connected to the V-shaped plate 101. Snap grooves 108 are opened at the four edges of the top of the storage module 1. Connecting buckles 107 are movably fitted into the snap grooves 108. The connecting buckle 107 has symmetrical through-holes at both ends for fitting the V-shaped plate 101. The middle of the through-hole 113 has a clamping groove 109 for the rotating plate 103 to be inserted. The bottom of the connecting buckle 107 is symmetrically fixedly connected to a vertical rod 112 for pressing the V-shaped plate 101. The buckle groove 108 has a through-hole 114 for the vertical rod 112 to pass through. The corners of the connecting buckle 107 are fixedly connected to a protruding rod 110. The bottom surface of the top of the connecting buckle 107 and the two sides of the buckle groove 108 are fixedly connected to a protruding rod 115. The outer wall of the protruding rod 110 is rotatably connected to a connecting strip 111 for elastically fitting with the protruding rod 115.
[0030] According to the above structure, when it rains, rainwater first enters the diversion well 2, where it undergoes preliminary treatment to separate rainwater and sewage. The separated rainwater is intercepted by the sewage interception pipe 3, which removes larger impurities and garbage from the rainwater. Then it enters the storage module 1 to be collected and stored. The electrical control device 4 is generally composed of small components such as cameras, ventilation ducts, and deodorization devices. It is used to monitor the operating status in real time during the entire process of rainwater and sewage diversion and storage to prevent the generation and spread of malodorous gases.
[0031] After the storage modules 1 are arranged, they need to be connected and fixed using connecting buckles 107. Before the connecting buckles 107 are inserted into the buckle slots 108, the V-shaped plates 101 are affected by the elastic force of the bending springs 106. One end of the V-shaped plates 101 will be close to the through slots 114, while the other end of the V-shaped plates 101 will be raised and protrude from the top of the storage modules 1. The color plate 104 is a color that is significantly different from the storage modules 1, so that construction workers can easily see all the protruding storage modules 1 and color plates 104 when standing. These storage modules 1 and color plates 104 can be regarded as places where the connecting buckles 107 are not installed. The connecting buckles 107 are inserted into the buckle slots 108, the protruding rod 110 is inserted into the through slots 114, and the vertical rod 112 presses one end of the V-shaped plates 101 to make it fall. The V-shaped plates 101 rotate accordingly, and the other end will rotate and be inserted into the grooves 113. The V-shaped plates 101 no longer protrude from the storage modules 1. The color plate 104 can no longer be observed. By rotating the rotating rod 102, the rotating plate 103 is rotated, so that the rotating plate 103 is embedded in the clamping groove 109. The V-shaped plate 101 and the connecting buckle 107 are fixed at the same time. The connecting strip 111 is made of a material with a certain deformation capacity, such as plastic or nylon. Plastic is preferred. When the connecting buckle 107 is embedded in the buckle groove 108 to connect the two storage modules 1, the protrusions 110 at both ends of the connecting buckle 107 are located below the top of the two storage modules 1 respectively. By rotating the connecting strip 111 through the hollow gap of one storage module 1, one end of it passes through the top of the other storage module 1 and is nested with a protrusion 115 on the top and bottom surface of the storage module 1. After the remaining connecting strips 111 and protrusions 115 are nested in the same way, each pair of connecting strips 111 can cross each other below the top of the storage module 1 to reinforce the connecting buckle 107.
[0032] This utility model uses a bending spring 106 to make one end of the V-shaped plate 101 protrude or hide. When one end of the V-shaped plate 101 protrudes, the color of the color plate 104 can remind the construction personnel, preventing the connector 107 from being missed during installation, making inspection and identification more time-saving and labor-saving. The connector 107 can also be pressed by the vertical rod 112 to make one end of the V-shaped plate 101 flush with the other end of the storage module 1, which facilitates the assembly of the storage module 1. The V-shaped plate 101 can also reinforce and lock the connector 107 to prevent it from loosening and popping out.
[0033] The working principle of this utility model is as follows: When it rains, the rainwater first enters the diversion well 2, where it undergoes preliminary treatment to separate rainwater and sewage. The separated rainwater is intercepted by the sewage interception pipe 3, which removes larger impurities and garbage from the rainwater. Then it enters the storage module 1 to be collected and stored. The electrical control device 4 is generally composed of small components such as a camera, ventilation duct, and deodorization device. It is used to monitor the operating status in real time during the entire process of rainwater and sewage diversion and storage to prevent the generation and spread of malodorous gases.
[0034] After the storage modules 1 are arranged, they need to be connected and fixed using connecting buckles 107. Before the connecting buckles 107 are inserted into the buckle slots 108, the V-shaped plates 101 are affected by the elastic force of the bending springs 106. One end of the V-shaped plates 101 will be close to the through slots 114, while the other end of the V-shaped plates 101 will be raised and protrude from the top of the storage modules 1. The color plate 104 is a color that is significantly different from the storage modules 1, so that construction workers can easily see all the protruding storage modules 1 and color plates 104 when standing. These storage modules 1 and color plates 104 can be regarded as places where the connecting buckles 107 are not installed. The connecting buckles 107 are inserted into the buckle slots 108, the protruding rod 110 is inserted into the through slots 114, and the vertical rod 112 presses one end of the V-shaped plates 101 to make it fall. The V-shaped plates 101 rotate accordingly, and the other end will rotate and be inserted into the grooves 113. The V-shaped plates 101 no longer protrude from the storage modules 1. The color plate 104 can no longer be observed. By rotating the rotating rod 102, the rotating plate 103 is rotated, so that the rotating plate 103 is embedded in the clamping groove 109. The V-shaped plate 101 and the connecting buckle 107 are fixed at the same time. The connecting strip 111 is made of a material with a certain deformation capacity, such as plastic or nylon. Plastic is preferred. When the connecting buckle 107 is embedded in the buckle groove 108 to connect the two storage modules 1, the protrusions 110 at both ends of the connecting buckle 107 are located below the top of the two storage modules 1 respectively. By rotating the connecting strip 111 through the hollow gap of one storage module 1, one end of it passes through the top of the other storage module 1 and is nested with a protrusion 115 on the top and bottom surface of the storage module 1. After the remaining connecting strips 111 and protrusions 115 are nested in the same way, each pair of connecting strips 111 can cross each other below the top of the storage module 1 to reinforce the connecting buckle 107.
[0035] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model, unless otherwise specified or limited, shall be implemented using conventional methods in the field.
Claims
1. A rainwater and sewage diversion and storage system, characterized in that: The utility model relates to a rainwater storage module (1) and a connecting buckle (107) and a buckle groove (108) for storing rainwater. The V-shaped plate (101) is fixedly connected with a color plate (104) on both sides, the length of one end of the V-shaped plate (101) is greater than that of the other end, a fixed plate (105) is fixedly connected to the bottom surface of the top of the rainwater storage module (1) and located on one side of the V-shaped plate (101), one end of the fixed plate (105) is elastically assembled with a curved spring (106), one end of the curved spring (106) is elastically connected with the V-shaped plate (101), the bottom of the connecting buckle (107) is fixedly connected with a vertical rod (112) for extruding the V-shaped plate (101) in a symmetrical manner, and the buckle groove (108) is provided with a through groove (114) for the vertical rod (112) to pass through in a penetrating manner.
2. The rain and sewage diversion and storage system according to claim 1, characterized in that: The utility model also includes a separate rainwater and sewage diversion well (2), the diversion well (2) is used for sending rainwater to a sewage interception pipeline (3), the sewage interception pipeline (3) is used for intercepting rainwater impurities, the sewage interception pipeline (3) is used for sending rainwater to the rainwater storage module (1), and an electric control device (4) is used for monitoring and adjusting the rainwater storage module (1), the diversion well (2) and the sewage interception pipeline (3).
3. The rain and sewage diversion and storage system according to claim 1, characterized in that: The buckle groove (108) is arranged at the top of the four side edges of the rainwater storage module (1), and the connecting buckle (107) is movably embedded in the buckle groove (108).
4. The rain and sewage diversion and storage system according to claim 3, characterized in that: The two ends of the connecting buckle (107) are symmetrically provided with an embedding groove (113) for embedding the V-shaped plate (101).
5. The rain and sewage diversion and storage system according to claim 4, characterized in that: The middle part of the embedding groove (113) is provided with a clamping groove (109) for rotating and embedding the rotating plate (103).
6. The rain and sewage diversion and storage system according to claim 1, characterized in that: The corners of the connecting buckle (107) are fixedly connected with a convex rod one (110), and the bottom surface of the top of the connecting buckle (107) and located on both sides of the buckle groove (108) is fixedly connected with a convex rod two (115).
7. The rain and sewage diversion and storage system according to claim 6, characterized in that: The outer wall of the convex rod one (110) is rotatably connected with a connecting strip (111) for elastically embedding the convex rod two (115).