Rainwater collecting device with flow dividing function
By designing a rainwater collection device with diversion function and using a blocking frame and a motor-driven diversion system, the problems of water quality diversion and untimely collection of heavy rain in traditional devices are solved, and efficient diversion and utilization of rainwater are achieved.
Patent Information
- Application Number
- CN202422714435.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-07
AI Technical Summary
Traditional rainwater collection devices are unable to divert and process rainwater of different water qualities, and are prone to problems such as delayed collection and overflow when faced with heavy rainfall.
A rainwater collection device with diversion function is designed. The initial rainwater and the later rainwater are diverted through the combination of the blocking frame, the driving screw and the limit motor. In heavy rain, the rainwater is diverted through the diversion trough and the connecting pipe, and the solenoid valve is used to control the rainwater utilization path.
It realizes the diversion treatment of rainwater of different water qualities, prevents the impact of initial rainwater pollutants on subsequent utilization, avoids resource waste during heavy rain, and improves the practicality of the rainwater collection device.
Smart Images

Figure CN223358365U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of rainwater collection, and more specifically, relates to a rainwater collection device with a diversion function. Background Art
[0002] In garden and landscape design, the rational use of water resources is crucial; garden landscapes require sufficient water to maintain plant growth, the operation of water features such as fountains, and to keep the site clean; however, with the acceleration of urbanization and the impact of climate change, water shortages are becoming increasingly serious, and traditional water supply methods are facing huge challenges.
[0003] At present, in the field of gardening and landscaping, the common method of collecting rainwater is mainly through simple reservoirs or underground water storage facilities. However, traditional rainwater collection devices usually only collect rainwater directly into a single storage space and are unable to divert and treat rainwater of different water qualities. For example, initial rainwater often contains more pollutants such as dust, leaves, and oil. If it is not diverted and directly enters the storage facility, it will affect the subsequent use of rainwater. In addition, when faced with large rainfall, traditional rainwater collection devices may have problems such as untimely collection and overflow, resulting in waste of rainwater resources. Utility Model Content
[0004] In order to solve the above technical problems, the present invention provides a rainwater collection device with a diversion function to solve the problem proposed in the above background technology that rainwater of different water qualities cannot be diverted and processed, and traditional rainwater collection devices may not collect rainwater in time and overflow when facing large rainfall.
[0005] The utility model is a rainwater collection device with diversion function, which is achieved by the following specific technical means:
[0006] A rainwater collection device with a diversion function comprises a support frame; a first water collecting tank is fixedly provided on the top of the support frame, an outlet pipe A is fixedly provided on the bottom side of the first water collecting tank, and a solenoid valve A is fixedly provided on the top of the outlet pipe A; a diversion box is fixedly provided on the top of the first water collecting tank, and diversion grooves are provided on both sides of the diversion box, and the diversion grooves completely penetrate the diversion box; an auxiliary frame is fixedly provided on the top of the diversion box, and the auxiliary frame is configured as a conical structure, and a filter plate is fixedly provided on the bottom side of the diversion box;
[0007] A water storage component is fixedly provided on the top of the supporting base frame, and a box cover structure is fixedly provided on the outside of the water storage component; a connecting component is fixedly provided between the water storage component and the diversion box, and a blocking mechanism is movably provided inside the diversion box; the blocking mechanism includes: a blocking frame, a driving screw, a limiting motor and a guide rod; the blocking frame is slidably provided inside the diversion box, and the top of the blocking frame is flush with the bottom of the diversion trough, and the blocking frame is provided in an inverted U shape; the driving screw is rotatably provided inside the blocking frame, and the driving screw is provided inside the diversion box through a threaded connection; the limiting motor is fixedly provided on the outside of the blocking frame, and the shaft end of the limiting motor is fixedly connected to the driving screw; the guide rod is fixedly provided inside the bottom side of the blocking frame, and the guide rod is slidably provided inside the diversion box.
[0008] In at least some embodiments, the water storage assembly includes: a second water collecting tank, a water outlet pipe B, a solenoid valve B and a sealing ring; the second water collecting tank is fixedly arranged on the top of the support base, and the second water collecting tank is located on both sides of the first water collecting tank; the water outlet pipe B is fixedly arranged inside the bottom side of the second water collecting tank; the solenoid valve B is fixedly arranged at the end of the water outlet pipe B; the sealing ring is fixedly arranged inside one side of the second water collecting tank.
[0009] In at least some embodiments, the water storage assembly further includes: a fixing seat and a connecting hole; the fixing seat is fixedly arranged on both sides of the second water collecting tank, and the fixing seat is arranged in a C shape, and the fixing seat is symmetrically arranged in two groups; the connecting hole is opened inside the top side of the fixing seat.
[0010] In at least some embodiments, the box cover structure includes: a cover plate, a sealing groove and an auxiliary seat; the cover plate is movably arranged on the outside of the second water collecting tank; the sealing groove is opened inside the cover plate, and a sealing ring is slidably arranged inside the sealing groove; the auxiliary seat is fixedly arranged on both sides of the cover plate.
[0011] In at least some embodiments, the box cover structure also includes: a connecting seat, a connecting block, a positioning plate and a cross bar; the connecting seat is fixedly arranged on the outside of the auxiliary seat, and the connecting seat is slidably arranged inside the fixed seat; the connecting block is slidably arranged inside the top side of the connecting seat, and a spring member is arranged between the connecting block and the inside of the connecting seat; the top of the connecting block is set as a bevel structure, and the connecting block is slidably arranged inside the connecting hole; the positioning plate is fixedly arranged on the outside of the connecting block, and the positioning plate is slidably arranged between the auxiliary seat and the inside of the connecting seat; the cross bar is fixedly arranged on the outside of the positioning plate.
[0012] In at least some embodiments, the connecting assembly includes: a connecting cover and a connecting pipe; the connecting cover is fixedly arranged on the outside of the diversion box, and the connecting cover is communicated with the diversion trough; the connecting pipe is fixedly arranged between the connecting cover and the top of the second water collecting tank, and the connecting pipe and the connecting cover are symmetrically arranged in two groups.
[0013] In at least some embodiments, the blocking mechanism also includes: a water immersion sensor, a control module, a remote transmission module and a timing module; the water immersion sensor is fixedly arranged inside the top side of the blocking frame; the control module is fixedly arranged on the outside of the blocking frame, and the control module is electrically connected to the water immersion sensor and the limit motor; the remote transmission module is fixedly arranged on the outside of the blocking frame; the timing module is fixedly arranged on the outside of the blocking frame, and the timing module and the remote transmission module are both electrically connected to the control module.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] 1. In the present invention, by providing a blocking frame, a driving screw, a limiting motor and a guide rod, when the rain duration reaches a specified time, the driving screw can drive the blocking frame to slide out of the diversion box; thereby, the initial rainwater can flow into the second water collection tank through the diversion trough and the blocking frame; the relatively clean later rainwater can be filtered through the filter plate and stored in the first water collection tank; rainwater of different water quality can be diverted and processed, which is beneficial to prevent the initial rainwater containing pollutants from affecting the subsequent rainwater utilization.
[0016] 2. In the present invention, when the rainwater is heavy, the rainwater can flow into the second water collecting tank through the diversion trough, the connecting cover and the connecting pipe, thereby diverting the rainwater. This is beneficial to prevent the phenomenon of untimely collection of rainwater and overflow when facing heavy rainfall, which leads to waste of rainwater resources.
[0017] 3. In the present invention, by providing the outlet pipe A and the solenoid valve A as well as the outlet pipe B and the solenoid valve B, the rainwater in the first water collecting tank and the second water collecting tank can be discharged for utilization respectively; thus, the clean rainwater can be used for the operation of waterscapes such as fountains, and the dirtier rainwater can be used for purposes with lower water quality requirements such as washing roads; thereby enhancing the practicality of the rainwater collection device. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the utility model.
[0019] Figure 2 It is a schematic diagram of the internal structure of the diverter box of the present utility model.
[0020] Figure 3 It is a structural schematic diagram of the blocking mechanism of the utility model.
[0021] Figure 4 It is a schematic diagram of the internal structure of the blocking frame of the utility model.
[0022] Figure 5 It is a structural diagram of the connection assembly of the utility model.
[0023] Figure 6 It is a structural schematic diagram of the water storage component of the utility model.
[0024] Figure 7 It is a structural schematic diagram of the box cover structure of the present utility model.
[0025] In the figure, the corresponding relationship between the component names and the drawing numbers is as follows:
[0026] 1. Support chassis; 101. First water collecting tank; 102. Outlet pipe A; 103. Solenoid valve A; 104. Diverter box; 105. Auxiliary frame; 106. Diverter trough; 107. Filter plate;
[0027] 2. Water storage assembly; 201. Second water collection tank; 202. Water outlet pipe B; 203. Solenoid valve B; 204. Sealing ring; 205. Fixing seat; 206. Connecting hole;
[0028] 3. Box cover structure; 301. Cover plate; 302. Sealing groove; 303. Auxiliary seat; 304. Connecting seat; 305. Connecting block; 306. Positioning plate; 307. Crossbar;
[0029] 4. Connecting assembly; 401. Connecting cover; 402. Connecting pipe;
[0030] 5. Blocking mechanism; 501. Blocking frame; 502. Water immersion sensor; 503. Control module; 504. Remote transmission module; 505. Timing module; 506. Driving screw; 507. Limiting motor; 508. Guide rod. DETAILED DESCRIPTION
[0031] The following is a further detailed description of the embodiments of the present invention in conjunction with the accompanying drawings and examples.
[0032] Example 1:
[0033] As attached Figure 1 To the attached Figure 7 As shown:
[0034] The utility model provides a rainwater collection device with a diversion function, comprising a support base 1; a first water collecting box 101 is fixedly provided on the top of the support base 1, and a water outlet pipe A102 is fixedly provided inside the bottom side of the first water collecting box 101, and a solenoid valve A103 is fixedly provided at the end of the water outlet pipe A102; a diversion box 104 is fixedly provided on the top of the first water collecting box 101, and diversion grooves 106 are opened on both sides of the diversion box 104, and the diversion grooves 106 completely penetrate the diversion box 104; the diversion box 104 An auxiliary frame 105 is fixedly provided on the top, and the auxiliary frame 105 is configured as a conical structure, and a filter plate 107 is fixedly provided inside the bottom side of the diversion box 104; the connection assembly 4 includes: a connection cover 401 and a connection pipe 402; the connection cover 401 is fixedly provided on the outside of the diversion box 104, and the connection cover 401 is communicated with the diversion trough 106; the connection pipe 402 is fixedly provided between the connection cover 401 and the top of the second water collecting tank 201, and the connection pipe 402 and the connection cover 401 are symmetrically provided in two groups;
[0035] In the embodiment of the present disclosure, a water storage component 2 is fixedly provided on the top of the support base 1, and a box cover structure 3 is fixedly provided on the outside of the water storage component 2; a connecting component 4 is fixedly provided between the water storage component 2 and the diversion box 104, and a blocking mechanism 5 is movably provided inside the diversion box 104; the blocking mechanism 5 includes: a blocking frame 501, a driving screw 506, a limit motor 507 and a guide rod 508; the blocking frame 501 is slidably provided inside the diversion box 104, and the top of the blocking frame 501 is held in contact with the bottom of the diversion trough 106 The blocking frame 501 is flat, and the blocking frame 501 is set to an inverted U shape; the driving screw 506 is rotatably set inside the blocking frame 501, and the driving screw 506 is set inside the diversion box 104 through a threaded connection; the limit motor 507 is fixedly set outside the blocking frame 501, and the shaft end of the limit motor 507 is fixedly connected to the driving screw 506; the guide rod 508 is fixedly set inside the bottom side of the blocking frame 501, and the guide rod 508 is slidably set inside the diversion box 104; the blocking mechanism 5 also includes: a water immersion sensor 502, The control module 503, the remote transmission module 504 and the timing module 505; the water immersion sensor 502 is fixedly arranged inside the top side of the blocking frame 501; the control module 503 is fixedly arranged outside the blocking frame 501, and the control module 503, the water immersion sensor 502 and the limit motor 507 are electrically connected; the remote transmission module 504 is fixedly arranged outside the blocking frame 501; the timing module 505 is fixedly arranged outside the blocking frame 501, and the timing module 505 and the remote transmission module 504 are electrically connected. They are all electrically connected to the control module 503; their specific functions are: by providing a blocking frame 501, a driving screw 506, a limiting motor 507 and a guide rod 508, when the rain duration reaches a specified time, the driving screw 506 can drive the blocking frame 501 to slide out of the diversion box 104; and then the initial rainwater can flow into the second water collecting tank 201 through the diversion trough 106 and the blocking frame 501, and the relatively clean later rainwater can be filtered by the filter plate 107 and stored inside the first water collecting tank 101.
[0036] Example 2:
[0037] As attached Figure 6 As shown: Based on Example 1, the water storage component 2 includes: a second water collecting tank 201, a water outlet pipe B202, a solenoid valve B203 and a sealing ring 204; the second water collecting tank 201 is fixedly arranged on the top of the supporting base frame 1, and the second water collecting tank 201 is located on both sides of the first water collecting tank 101; the water outlet pipe B202 is fixedly arranged inside the bottom side of the second water collecting tank 201; the solenoid valve B203 is fixedly arranged at the end of the water outlet pipe B202; the sealing ring 204 is fixedly arranged inside one side of the second water collecting tank 201; its specific function is: by providing the water outlet pipe A102 and the solenoid valve A103 and the water outlet pipe B202 and the solenoid valve B203, the rainwater in the first water collecting tank 101 and the second water collecting tank 201 can be released separately for utilization.
[0038] Example 3:
[0039] As attached Figure 5 To the attached Figure 7 As shown: On the basis of Example 1 and Example 2, the water storage component 2 also includes: a fixing seat 205 and a connecting hole 206; the fixing seat 205 is fixedly arranged on both sides of the second water collecting tank 201, and the fixing seat 205 is arranged in a C shape, and the fixing seat 205 is symmetrically arranged in two groups; the connecting hole 206 is opened inside the top side of the fixing seat 205; the box cover structure 3 includes: a cover plate 301, a sealing groove 302, an auxiliary seat 303, a connecting seat 304, a connecting block 305, a positioning plate 306 and a cross bar 307; the cover plate 301 is movably arranged on the outside of the second water collecting tank 201; the sealing groove 302 is opened inside the cover plate 301, and a sealing ring 204 is slidingly arranged inside the sealing groove 302; the auxiliary seat 303 is fixed on both sides of the cover plate 301; the connecting seat 304 is fixed on the outside of the auxiliary seat 303, and the connecting seat 304 is slidingly arranged When the locking cam 306 is unlocked, the locking cam 306 is unlocked, and the winch 301 is unlocked, so that the winch 301 can be unlocked easily.
[0040] The specific usage and function of this embodiment are as follows:
[0041] In the present invention, when it rains, rainwater flows through the auxiliary frame 105 to the top of the blocking frame 501, so that the water immersion sensor 502 senses the rainwater, and the water immersion sensor 502 transmits the rainwater signal to the control module 503, and the control module 503 controls the timing module 505 to timely; at the same time, the initial rainwater flows into the second water collecting tank 201 through the blocking frame 501 and the diversion trough 106; when the timing module 505 times to the specified value, the timing module 505 transmits the signal to the control module 503, and the control module 503 controls the limit motor 507 to operate, so that the driving screw 506 rotates, and the driving screw 506 drives the blocking frame 501 to slide through the guide rod 508, so that the blocking frame 501 slides out of the diversion box 104, thereby allowing the later relatively clean rainwater to pass through the filter plate 107 and flow into the first water collecting tank 101; when the rainwater is relatively clean, the water in the water immersion sensor 502 is filtered and flows into the first water collecting tank 101. When the rainwater rises to the diversion trough 106, the rainwater flows into the second water collecting tank 201 through the diversion trough 106, the connecting cover 401 and the connecting pipe 402; the control module 503 can be remotely controlled through the remote transmission module 504; the rainwater in the first water collecting tank 101 and the second water collecting tank 201 can be released for use respectively by using the outlet pipe A102 and the solenoid valve A103 and the outlet pipe B202 and the solenoid valve B203; the connecting block 305 and the connecting hole 206 and the spring part can be used to make the connecting block 305 automatically slide into the connecting hole 206, so that the cover plate 301 can be quickly fixed; the cross bar 307 and the positioning plate 306 can be used to pull the two groups of connecting blocks 305 out of the connecting hole 206 at the same time, so that the cover plate 301 can be quickly disassembled, which is conducive to disassembling the cover plate 301 and cleaning the inside of the second water collecting tank 201.
Claims
1. A rainwater collection device with diversion function, characterized in that: include: A support base (1); a first water collecting box (101) is fixedly provided on the top of the support base (1), and a water outlet pipe A (102) is fixedly provided inside the bottom side of the first water collecting box (101), and a solenoid valve A (103) is fixedly provided on the top of the water outlet pipe A (102); a diversion box (104) is fixedly provided on the top of the first water collecting box (101), and diversion grooves (106) are provided on both sides of the diversion box (104), and the diversion grooves (106) completely penetrate the diversion box (104); an auxiliary frame (105) is fixedly provided on the top of the diversion box (104), and the auxiliary frame (105) is configured as a conical structure, and a filter plate (107) is fixedly provided inside the bottom side of the diversion box (104); A water storage assembly (2) is fixedly provided on the top of the support base (1), and a box cover structure (3) is fixedly provided on the outside of the water storage assembly (2); a connecting assembly (4) is fixedly provided between the water storage assembly (2) and the diversion box (104), and a blocking mechanism (5) is movably provided inside the diversion box (104); the blocking mechanism (5) comprises: a blocking frame (501), a driving screw (506), a limiting motor (507) and a guide rod (508); the blocking frame (501) is slidably provided inside the diversion box (104), and the top of the blocking frame (501) The blocking frame (501) is aligned with the bottom of the diversion trough (106), and the blocking frame (501) is configured to be in an inverted U shape; the driving screw (506) is rotatably disposed inside the blocking frame (501), and the driving screw (506) is disposed inside the diversion box (104) through a threaded connection; the limiting motor (507) is fixedly disposed outside the blocking frame (501), and the shaft end of the limiting motor (507) is fixedly connected to the driving screw (506); the guide rod (508) is fixedly disposed inside the bottom side of the blocking frame (501), and the guide rod (508) is slidably disposed inside the diversion box (104).
2. A rainwater collection device with diversion function according to claim 1, characterized in that: The water storage assembly (2) comprises: a second water collecting tank (201), a water outlet pipe B (202), a solenoid valve B (203) and a sealing ring (204); the second water collecting tank (201) is fixedly arranged on the top of the supporting base frame (1), and the second water collecting tank (201) is located on both sides of the first water collecting tank (101); the water outlet pipe B (202) is fixedly arranged inside the bottom side of the second water collecting tank (201); the solenoid valve B (203) is fixedly arranged at the end of the water outlet pipe B (202); and the sealing ring (204) is fixedly arranged inside one side of the second water collecting tank (201).
3. The rainwater collection device with diversion function according to claim 2, characterized in that: The water storage assembly (2) further comprises: a fixing seat (205) and a connecting hole (206); the fixing seat (205) is fixedly arranged on both sides of the second water collecting tank (201), and the fixing seat (205) is arranged in a C shape; the connecting hole (206) is opened inside the top side of the fixing seat (205).
4. The rainwater collection device with diversion function according to claim 3, characterized in that: The box cover structure (3) comprises: a cover plate (301), a sealing groove (302) and an auxiliary seat (303); the cover plate (301) is movably arranged on the outside of the second water collecting box (201); the sealing groove (302) is opened inside the cover plate (301), and a sealing ring (204) is slidably arranged inside the sealing groove (302); and the auxiliary seat (303) is fixedly arranged on both sides of the cover plate (301).
5. The rainwater collection device with diversion function according to claim 4, characterized in that: The box cover structure (3) further comprises: a connecting seat (304), a connecting block (305), a positioning plate (306) and a cross bar (307); the connecting seat (304) is fixedly arranged on the outside of the auxiliary seat (303), and the connecting seat (304) is slidably arranged inside the fixed seat (205); the connecting block (305) is slidably arranged inside the top side of the connecting seat (304), and a spring member is arranged between the connecting block (305) and the inside of the connecting seat (304); the top of the connecting block (305) is arranged as a bevel structure, and the connecting block (305) is slidably arranged inside the connecting hole (206); the positioning plate (306) is fixedly arranged on the outside of the connecting block (305), and the positioning plate (306) is slidably arranged between the auxiliary seat (303) and the inside of the connecting seat (304); the cross bar (307) is fixedly arranged on the outside of the positioning plate (306).
6. The rainwater collection device with diversion function according to claim 2, characterized in that: The connection assembly (4) comprises: a connection cover (401) and a connection pipe (402); the connection cover (401) is fixedly arranged outside the diversion box (104), and the connection cover (401) is communicated with the diversion trough (106); the connection pipe (402) is fixedly arranged between the connection cover (401) and the top of the second water collecting tank (201), and the connection pipe (402) and the connection cover (401) are symmetrically arranged in two groups.
7. The rainwater collection device with diversion function according to claim 1, characterized in that: The blocking mechanism (5) further comprises: a water immersion sensor (502), a control module (503), a remote transmission module (504) and a timing module (505); the water immersion sensor (502) is fixedly arranged inside the top side of the blocking frame (501); the control module (503) is fixedly arranged outside the blocking frame (501), and the control module (503) is electrically connected to the water immersion sensor (502) and the limit motor (507); the remote transmission module (504) is fixedly arranged outside the blocking frame (501); the timing module (505) is fixedly arranged outside the blocking frame (501), and both the timing module (505) and the remote transmission module (504) are electrically connected to the control module (503).