Automatic water storage application equipment for station
By designing automated water storage equipment, which combines multi-stage water storage tanks and sedimentation tanks with magnetic sensors and controllers, the problems of water waste and environmental pollution have been solved, and efficient utilization and automated management of water resources have been achieved.
Patent Information
- Application Number
- CN202422756036.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-11-12
AI Technical Summary
In existing technologies, water resources are wasted in the stations, there is a lack of water storage and reuse mechanisms, management is inconvenient and environmental pollution is serious, and there is a lack of automated control systems.
An automated water storage application device, including a water storage system and a controller, was designed. By combining multi-stage water storage tanks and sedimentation tanks with magnetic sensors and controllers, automated control and wastewater treatment are achieved, thereby improving water resource utilization.
Through multi-stage water storage systems and automated control, water resource utilization is improved, waste and environmental pollution are reduced, management costs are lowered, and it is suitable for various sites.
Smart Images

Figure CN223497316U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water resource pipeline devices, specifically automatic water storage application equipment for stations. Background Technology
[0002] With global water resources becoming increasingly scarce, the rational use and management of water resources has become particularly important. In many facilities (such as industrial sites, parking lots, and car washes), large amounts of water are used for vehicle cleaning and other purposes, but the following problems often arise:
[0003] Water waste:
[0004] Traditional water use methods typically involve direct discharge after single use, resulting in a significant waste of water resources.
[0005] Without effective water storage and reuse mechanisms, water resources cannot be fully utilized.
[0006] Inconvenient to manage:
[0007] Manually controlling the water inlet and outlet processes is cumbersome and prone to human error.
[0008] The lack of an automated control system makes it difficult to achieve efficient management.
[0009] Environmental impact:
[0010] Wastewater discharged directly without treatment may cause environmental pollution.
[0011] The failure to fully utilize wastewater resources has increased the demand for fresh water. Utility Model Content
[0012] (a) Technical problems to be solved
[0013] In view of the shortcomings of the existing technology, this utility model provides an automatic water storage application device for stations.
[0014] (II) Technical Solution
[0015] To achieve the above objectives, this utility model provides the following technical solution: The automatic water storage application equipment for a water storage station includes a water storage system and a controller. The water storage system includes a water storage tank, a water storage bucket, and a controller. At least four water storage buckets are provided, and each of the four water storage buckets is connected to the water storage tank via a pipe. Electromagnetic valves are installed on the pipes. Both the water storage buckets and the water storage tank are equipped with outlet pipes. The water storage tank is also equipped with an inlet pipe. An electromagnetic valve is installed on the outlet pipe. A pump body is installed on the inlet pipe. Liquid level gauges are installed inside both the water storage buckets and the water storage tank. Each liquid level gauge includes a float and a buoy. A magnetic sensor is mounted on the float, and a magnet is built into the buoy. The controller is installed on the outer wall of the water storage tank and is electrically connected to the electromagnetic valves, the pump body, and the liquid level gauges. The controller is used to monitor and control the operation of the water storage system.
[0016] Preferably, the float is provided with a plurality of slide rails arranged around it, and the inner side of the buoy is adapted to the slide rails through a groove.
[0017] Further preferably, the system also includes a sedimentation tank and a pumping pipe. The sedimentation tank is equipped with a mounting frame on its top, and the water storage tank and water storage bucket are fixed on the mounting frame. A water filter screen is installed on the top of the sedimentation tank, and the water filter screen surrounds the outside of the mounting frame. The pumping pipe is fixedly installed on the side of the sedimentation tank and is connected to the bottom of the sedimentation tank. A water pump is connected to the outlet of the pumping pipe.
[0018] Preferably, the filter screen frame has at least two layers on the sedimentation tank, and a plurality of water pumping pipes are arranged around the sedimentation tank, with a sealing cap installed on the outlet of the water pumping pipes.
[0019] Preferably, the sedimentation tank is provided with at least two layers of mesh frames, and the filter mesh frame is laid on the mesh frames.
[0020] More preferably, the sides of the mounting frame and the top side of the sedimentation tank are both inclined structures.
[0021] Preferably, the sedimentation tank is made of concrete and the grid frame is made of steel.
[0022] (III) Beneficial Effects
[0023] Compared with the prior art, this utility model provides an automatic water storage application device for power stations, which has the following features:
[0024] Beneficial effects:
[0025] Improve water resource utilization efficiency:
[0026] Multi-stage water storage system: A multi-stage water storage system consisting of water tanks and buckets can effectively store and reuse water resources.
[0027] Wastewater reuse: The sedimentation tank allows wastewater to be treated and reused, greatly improving the utilization rate of water resources.
[0028] Automation control:
[0029] Liquid level detection and control: The float and buoy, combined with a magnetic sensor, monitor liquid level changes in real time, and automatically control the start and stop of the solenoid valve and pump through the controller, reducing manual intervention.
[0030] Stability and reliability: Automated control systems improve system stability and reliability and reduce management costs.
[0031] Environmental protection and energy conservation:
[0032] Reduced wastewater discharge: Wastewater is treated in sedimentation tanks and then reused, reducing direct discharge and minimizing environmental impact.
[0033] Energy saving: By reusing wastewater, the demand for fresh water resources is reduced, thus saving energy.
[0034] flexibility:
[0035] Flexible design: The design of water storage tanks and buckets is flexible and can be adjusted and expanded according to actual needs.
[0036] Wide applicability: Suitable for various types of stations and has broad application prospects.
[0037] Structural stability:
[0038] Material selection: The sedimentation tank is made of concrete, and the grid frame is made of steel, which ensures the stability and durability of the structure.
[0039] Inclined structure: The sides of the mounting frame and the top side of the sedimentation tank are inclined, which facilitates the flow of wastewater into the sedimentation tank and improves the overall efficiency of the system.
[0040] Filtration effect:
[0041] Multi-layer filter screen: The filter screen has at least two layers on the sedimentation tank, which improves the filtration effect and ensures the cleanliness of the water.
[0042] Sealing cap: A sealing cap is installed on the outlet of the water pump to prevent impurities from entering the water pump and to keep the pipe clean when it is not connected to the water pump. Attached Figure Description
[0043] Figure 1 This is a top view of the overall structure of this utility model;
[0044] Figure 2This is a schematic diagram of the liquid level sensor structure of this utility model;
[0045] Figure 3 This is a schematic diagram of the grid frame structure of this utility model;
[0046] In the diagram: 1. Water storage tank; 2. Water storage bucket; 3. Sedimentation tank; 4. Mounting frame; 5. Inlet pipe; 6. Outlet pipe; 7. Solenoid valve; 8. Pump body; 9. Pumping pipe; 10. Pump; 11. Grid frame; 12. Filter screen frame; 13. Controller; 14. Float; 15. Buoy; 16. Slide rail; 17. Magnetic sensor. Detailed Implementation
[0047] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0048] Please see Figure 1-3 This utility model relates to an automated water storage application device for water stations. By integrating a water storage tank 1, a water storage bucket 2, a controller 13, and a sedimentation tank 3, it achieves automated storage, reuse, and efficient management of water resources, improving water resource utilization, reducing waste, and mitigating environmental impact. The device includes:
[0049] Water storage system:
[0050] Water storage tank 1: Installed next to the water pool, used to store water drawn from the water pool.
[0051] Water storage tank 2: At least four are provided, which are made from recycled gasoline drums and are used to store clean water.
[0052] Pipeline: A pipeline connects the water storage tank 2 and the water storage container 1. A solenoid valve 7 is installed on the pipeline to control the water flow. The solenoid valve 7 on the pipeline is preferably a one-way solenoid valve.
[0053] Water outlet pipe 6: Both water storage tank 2 and water storage tank 1 are equipped with water outlet pipe 6 for water supply. Solenoid valve 7 is installed on water outlet pipe 6 to control the drainage status.
[0054] Water inlet pipe 5: A water inlet pipe 5 is also installed on the water storage tank 1. A pump body 8 is installed on the water inlet pipe 5 to pump water from the water pool into the water storage tank 1.
[0055] Level gauge:
[0056] Float 14: Installed inside water storage tank 2 and water storage container 1, used to measure liquid level.
[0057] Buoy 15: Sleeve onto float 14, with a built-in magnet.
[0058] Magnetic sensor 17: Installed on the float 14, when the buoy 15 rises or falls, the magnetic sensor 17 detects the change in the position of the magnet and generates a signal.
[0059] Controller 13:
[0060] Installation location: Controller 13 is installed on the outer wall of water storage tank 1.
[0061] Function: The controller 13 is electrically connected to the solenoid valve 7, the pump body 8, and the level gauge to monitor and control the operation of the water storage system.
[0062] Sedimentation tank 3 and pumping system:
[0063] Sedimentation tank 3: Located below water storage tank 1 and water storage bucket 2, it is used to treat wastewater.
[0064] Mounting frame 4: Mounting frame 4 is provided on the top of sedimentation tank 3, and water storage tank 1 and water storage bucket 2 are fixed on mounting frame 4.
[0065] Filter screen frame 12: A filter screen frame 12 is installed on the top of the sedimentation tank 3, surrounding the outside of the mounting frame 4, for preliminary filtration of wastewater.
[0066] Water pumping pipe 9: Fixedly installed on the side of sedimentation tank 3, water pumping pipe 9 is connected to the bottom of sedimentation tank 3, and water pump 10 is connected to the outlet of water pumping pipe 9.
[0067] Grid frame 11: At least two layers of grid frame 11 are provided in the sedimentation tank 3. The filter screen 12 is laid on the grid frame 11 for further filtration of wastewater. The filter screen 12 can be manually installed and removed from the grid frame 11.
[0068] Sealing cap: A sealing cap is installed on the outlet of the water pumping pipe 9 to prevent impurities from entering the water pumping pipe 9 when the water pumping pipe 9 is not connected to the water pump 10.
[0069] Preferred technical solution:
[0070] Slide rail 16 and slide groove: Several slide rails 16 are arranged around the float 14. The inner side of the buoy 15 is adapted to the slide rail 16 through the slide groove to ensure that the buoy 15 moves smoothly.
[0071] Multi-layer filter screen 12: The filter screen 12 has at least two layers on the sedimentation tank 3 to improve the filtration effect.
[0072] Inclined structure: The sides of the mounting frame 4 and the top sides of the sedimentation tank 3 are inclined to facilitate the flow of wastewater into the sedimentation tank 3.
[0073] Material selection: Sedimentation tank 3 is made of concrete, and grid frame 11 is made of steel structure to ensure the stability and durability of the structure.
[0074] Working principle
[0075] Basic structure and workflow:
[0076] Water storage tank 1: As the main water storage device, it is installed next to the water pool and draws water from the water pool and stores it through pump body 8.
[0077] Water storage tank 2: Used to store clean water, it is connected to water storage tank 1 through a pipe to achieve liquid level balance.
[0078] Liquid level gauge: The liquid level is measured by float 14 and float 15, and magnetic sensor 17 detects the position change of float 15 and generates a signal.
[0079] Controller 13: Receives signals from the level gauge and controls the start and stop of the solenoid valve 7 and the pump body 8 to achieve automated control.
[0080] Sedimentation tank 3: Located below water storage tank 1 and water storage bucket 2, it is used to treat wastewater. The water after sedimentation can be reused.
[0081] Pumping system: Pump 10 pumps out the settled clear water for use by the brush wheel or other purposes.
[0082] Specific workflow:
[0083] Preparation phase:
[0084] Install water storage tank 1 next to the water pool and connect pump body 8 and pipes.
[0085] Install float 14 and buoy 15, and set the liquid level.
[0086] Connect water storage tank 2 to water storage tank 1 via a pipe.
[0087] A sedimentation tank 3 is installed below the water pool, water storage tank 1 and water storage bucket 2, and a water filter frame 12 and a water pump 10 are installed.
[0088] Water storage process:
[0089] Start pump 8 to pump water from the pool into storage tank 1.
[0090] When the liquid level in the water storage tank 1 reaches the set height, the float 15 rises, the magnetic sensor 17 detects the signal, and the controller 13 automatically closes the water inlet solenoid valve 7 to prevent overflow.
[0091] Liquid level balance:
[0092] Water in storage tank 1 flows into storage bucket 2 through a pipe.
[0093] Because the water storage tanks 2 are connected by pipes, the liquid level balance between the tanks is achieved.
[0094] When the liquid level in the water storage tank 2 reaches the set height, the float 15 rises, the magnetic sensor 17 detects the signal, and the controller 13 automatically closes the water outlet solenoid valve 7.
[0095] Wastewater treatment:
[0096] Used wastewater flows into sedimentation tank 3.
[0097] After initial filtration by the filter screen 12, the wastewater enters the sedimentation tank 3 for sedimentation.
[0098] The settled water is pumped out by water pump 10 for use by the brush wheel or other purposes.
[0099] The lower sediment should be cleaned regularly to ensure the effective operation of sedimentation tank 3.
[0100] Cleaning water:
[0101] When cleaning the vehicle, draw cleaning water from water tank 2.
[0102] The wastewater after use flows back into sedimentation tank 3 for treatment.
[0103] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An automatic water storage application device for a water storage station, characterized in that, The system includes a water storage system and a controller (13). The water storage system includes a water tank (1), a water storage bucket (2), and a controller (13). There are at least four water storage buckets (2), and the four water storage buckets (2) are connected to the water tank (1) by pipes. Electromagnetic valves (7) are installed on the pipes. Water outlet pipes (6) are provided on both the water storage buckets (2) and the water tank (1). Water inlet pipes (5) are also provided on the water tank (1). Electromagnetic valves (7) are provided on the water outlet pipes (6). A pump body (8) is provided on the upper part. A level gauge is installed in both the water storage tank (2) and the water storage tank (1). The level gauge includes a float (14) and a buoy (15). The buoy (15) is fitted on the float and is equipped with a magnetic sensor (17). The buoy (15) has a built-in magnet. The controller (13) is installed on the outer wall of the water storage tank (1). The controller (13) is electrically connected to the solenoid valve (7), the pump body (8) and the level gauge. The controller (13) is used to monitor and control the operation of the water storage system.
2. The automatic water storage application equipment for power stations according to claim 1, characterized in that, The float (14) is provided with a number of slide rails (16) arranged around it, and the inner side of the buoy (15) is adapted to the slide rails (16) through a groove.
3. The automatic water storage application equipment for stations according to claim 2, characterized in that, It also includes a sedimentation tank (3) and a water pumping pipe (9). The top of the sedimentation tank (3) is provided with a mounting frame (4). The water storage tank (1) and the water storage bucket (2) are fixed on the mounting frame (4). The top of the sedimentation tank (3) is provided with a water filter frame (12), and the water filter frame (12) surrounds the outside of the mounting frame (4). The water pumping pipe (9) is fixedly installed on the side of the sedimentation tank (3). The water pumping pipe (9) is connected to the bottom of the sedimentation tank (3), and a water pump (10) is connected to the outlet of the water pumping pipe (9).
4. The automatic water storage application equipment for stations according to claim 3, characterized in that, The filter screen (12) has at least two layers on the sedimentation tank (3), and a number of pumping pipes (9) are arranged around the sedimentation tank (3), with a sealing cap installed on the outlet of the pumping pipes (9).
5. The automatic water storage application equipment for stations according to claim 4, characterized in that, The sedimentation tank (3) is provided with at least two layers of mesh frames (11), and the filter mesh frame (12) is laid on the mesh frame (11).
6. The automatic water storage application equipment for stations according to claim 5, characterized in that, The sides of the mounting frame (4) and the top sides of the sedimentation tank (3) are both inclined structures.
7. The automatic water storage application equipment for stations according to claim 6, characterized in that, The sedimentation tank (3) is made of concrete, and the grid frame (11) is made of steel.