High-water-level pool water supply device
By designing a high-level water tank water supply device and adopting two water supply methods, utilizing groundwater and treated open channel water, the problem of ditch blockage caused by landslides during the rainy season was solved, ensuring the stability of the high-level water tank water supply.
Patent Information
- Application Number
- CN202422714720.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-07
AI Technical Summary
During the rainy season, the open channel water source was blocked by landslides in the Tianshan Mountains, making it impossible to supply water, affecting the normal water supply to the high water level pool.
A high-level water tank water supply device was designed, including components such as a high-level water tank, a first water pipe, a first high-pressure water pump, a reverse osmosis tank, a filter tank, and a sedimentation tank. Water supply is achieved through two water supply methods: one is replenished from groundwater, and the other is supplied after water treatment in an open channel, utilizing sedimentation, filtration, and reverse osmosis to treat the open channel water.
This technology enables the supply of water from open channels by supplementing them with groundwater and treating the water before they become blocked, ensuring the stability of the water supply to the high-level water tank and solving the problem of water supply interruption caused by blockage.
Smart Images

Figure CN223481937U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water supply technology, specifically to a high-level water tank water supply device. Background Technology
[0002] An open channel is a channel with a free surface (where each point on the surface is subject to atmospheric pressure) for water flow. Based on its formation, it can be divided into natural open channels and artificial open channels. The former includes natural rivers; the latter includes artificial aqueducts, canals, and pipes that are not fully filled with water. Open channel flow is characterized by a free surface where part of the water's perimeter is in contact with the atmosphere. Because the relative pressure on the free surface is zero, it is also called unpressurized flow. Open channels have three main characteristics: the water surface is always in contact with the atmosphere; the water level and flow rate change with the cross-section; and finally, the direction of water flow is determined by gravity, flowing from high to low.
[0003] After treatment, water from open channels can be used to supply high-level water tanks for further utilization. However, during the rainy season, landslides can block the channels, disrupting normal operations and affecting the water level in the high-level water tanks. Therefore, a high-level water tank water supply device is provided. Utility Model Content
[0004] The purpose of this utility model is to provide a high-level water tank water supply device to solve the problem of water supply failure caused by landslides during the rainy season when open channel water sources are blocked.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0006] A high-level water tank water supply device includes: a high-level water tank, a first water pipe, a first high-pressure water pump, a second water pipe, a reverse osmosis tank, a filter tank, a third water pipe, a fourth water pipe, a sedimentation tank, a fifth water pipe, and a second high-pressure water pump.
[0007] The inlet of the elevated water tank is connected to the groundwater through the first water pipe, and the first high-pressure water pump is installed on the first water pipe.
[0008] The inlet of the high-level water tank is connected to the reverse osmosis tank through the second water pipe. The reverse osmosis tank is connected to the filtration tank through the third water pipe. The filtration tank is connected to the sedimentation tank through the fourth water pipe. The sedimentation tank is connected to the open channel through the fifth water pipe. The second, third, fourth and fifth water pipes are all equipped with a second high-pressure water pump.
[0009] Furthermore: a dosing tank is fixed at the top of the sedimentation tank, an arc-shaped plate is installed inside the dosing tank, and output holes are evenly opened at the bottom of the dosing tank;
[0010] A rotating shaft is installed in the dosing tank at the lower part of the arc plate. The rotating shaft is driven by a rotating motor and has mixing blades installed on it.
[0011] Furthermore: the sedimentation tank is equipped with an inclined plate, and the inclined plate has multiple openings, with inclined pipes rotatably connected to the openings.
[0012] Furthermore: The sedimentation tank is equipped with a telescopic rod, which is driven by a drive motor and connected to a scraper.
[0013] Furthermore, the filter pool is provided with a filter screen and a filter element in sequence.
[0014] Furthermore: the lower part of the sedimentation tank is provided with multiple conical first output hoppers;
[0015] The filter pool on one side of the filter screen and the filter pool outside the filter element are equipped with a second output hopper. The lower part of the first output hopper and the second output hopper are both connected to a sludge discharge pipe, and a control valve is installed on the sludge discharge pipe.
[0016] Furthermore: both the rotating motor and the drive motor are connected to the first controller, and the first controller is connected to the timer.
[0017] Furthermore: the first high-pressure water pump and the second high-pressure water pump are connected to the second controller.
[0018] Furthermore, the output end of the elevated water tank is connected to multiple water outlet pipes, and a water pump is installed on each water outlet pipe.
[0019] Compared with the prior art, the present invention has at least one of the following beneficial effects:
[0020] (1) The elevated water tank has two water supply methods. One water supply method is as follows: the elevated water tank 1 is connected to the groundwater through the first water pipe. Two first high-pressure water pumps are installed on the first water pipe. When the open channel is blocked due to rain or other reasons and water supply cannot be provided, it can be supplemented by groundwater. The other water supply method is as follows: the water from the open channel enters the sedimentation tank through the fifth water pipe. The sedimentation tank then enters the filtration tank through the fourth water pipe. The filtration tank enters the reverse osmosis tank through the third water pipe. The reverse osmosis tank enters the elevated water tank through the second water pipe. The sedimentation tank, filtration tank, and reverse osmosis tank treat the water to achieve water supply from the open channel. The two water supply methods supplement each other.
[0021] (2) The water settled in the sedimentation tank enters the filtration tank through the fourth water pipe. The filter screen in the filtration tank can perform preliminary filtration of the water, and then it is filtered again through the filter cartridge to remove sediment and other substances from the water. After being treated by the reverse osmosis equipment in the reverse osmosis tank, it enters the high-level water tank for use. This facilitates the supply of water from the open channel after treatment. Attached Figure Description
[0022] Figure 1 This is a top view of the structure of this utility model.
[0023] Figure 2 This is an internal side view of the filter tank and sedimentation tank of this utility model.
[0024] Figure 3 This is a side view of the dosing tank of this utility model.
[0025] In the diagram: 1-High-level water tank, 2-First water pipe, 3-First high-pressure water pump, 4-Outlet pipe, 5-Water pump, 6-Second water pipe, 7-Reverse osmosis tank, 8-Filter tank, 9-Third water pipe, 10-Fourth water pipe, 11-Sedimentation tank, 12-Fifth water pipe, 13-Arc plate, 14-Rotating shaft, 15-Rotating motor, 16-Mixing blade, 17-Output hole, 18-Inclined plate, 19-Pipe opening, 20-Inclined pipe, 21-Telescopic rod, 22-Drive motor, 23-Filter screen plate, 24-Filter element, 25-Second output hopper, 26-Sludge discharge pipe, 27-Control valve, 28-Second high-pressure water pump, 29-Scraper, 30-First controller, 31-Timer, 32-Second controller, 33-First output hopper, 34-Dosing tank. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model 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 of the present utility model and are not intended to limit the present utility model.
[0027] A high-level water tank water supply device includes: a high-level water tank 1, a first water pipe 2, a first high-pressure water pump 3, an outlet pipe 4, a water pump 5, a second water pipe 6, a reverse osmosis tank 7, a filter tank 8, a third water pipe 9, a fourth water pipe 10, a sedimentation tank 11, a fifth water pipe 12, an arc plate 13, a rotating shaft 14, a rotating motor 15, a mixing blade 16, an output hole 17, an inclined plate 18, a pipe opening 19, an inclined pipe 20, a telescopic rod 21, a drive motor 22, a filter screen plate 23, a filter element 24, a second output hopper 25, a sludge discharge pipe 26, a control valve 27, a second high-pressure water pump 28, a scraper 29, a first controller 30, a timer 31, a second controller 32, a first output hopper 33, and a chemical dosing tank 34.
[0028] The elevated water tank 1 is connected to the first water pipe 2. Two first high-pressure water pumps 3 are installed on the first water pipe 2. The inlet end of the first water pipe 2 is connected to the groundwater. The outlet end of the elevated water tank 1 is connected to multiple outlet pipes 4. Water pumps 5 are installed on the outlet pipes 4.
[0029] The elevated water tank 1 is connected to the second water pipe 6, the second water pipe 6 is connected to the reverse osmosis tank 7, the reverse osmosis tank 7 is connected to the filter tank 8 via the third water pipe 9, the filter tank 8 is connected to the sedimentation tank 11 via the fourth water pipe 10, and the sedimentation tank 11 is connected to the open channel via the fifth water pipe 12. The second water pipe 6, the third water pipe 9, the fourth water pipe 10, and the fifth water pipe 12 are all equipped with a second high-pressure water pump 28.
[0030] A dosing tank 34 is fixed at the upper part of the sedimentation tank 11. An arc-shaped plate 13 is installed inside the dosing tank 34. A rotating shaft 14 is installed inside the dosing tank 34 at the lower part of the arc-shaped plate 13. The rotating shaft 14 is connected to a rotating motor 15. A mixing blade 16 is installed on the rotating shaft 14. Output holes 17 are evenly opened at the lower part of the dosing tank 34.
[0031] An inclined plate 18 is installed inside the sedimentation tank 11. Multiple openings 19 are formed on the inclined plate 18, and inclined tubes 20 are rotatably connected to the openings 19. A telescopic rod 21 is installed inside the sedimentation tank 11 at the side wall of the inclined tube 20. The telescopic rod 21 is made of stainless steel and is driven by a drive motor 22. Both the drive motor 22 and the telescopic rod 21 are commercially available products. The power source for the telescopic rod 21 is typically the drive motor 22, which converts electrical energy into mechanical energy to drive the telescopic rod 21 to extend and retract. The telescopic rod 21 is connected to a scraper 29.
[0032] The filter pool 8 is equipped with a filter screen plate 23 and a filter element 24 in sequence. The filter pool 8 below the filter element 24 is connected to the third water pipe 9.
[0033] The sedimentation tank 11 is provided with multiple conical first output hoppers 33 at the bottom. The filter tank 8 on one side of the filter screen plate 23 and the filter tank 8 outside the filter element 24 are both provided with second output hoppers 25. The first output hoppers 33 and the second output hoppers 25 are all connected to sludge discharge pipes 26 at the bottom. A control valve 27 is provided on the sludge discharge pipes 26.
[0034] Rotary motor 15 and drive motor 22 are both connected to the first controller 30, which is connected to the timer 31. The first high-pressure water pump 3 and the second high-pressure water pump 28 are connected to the second controller 32. The first controller 30, timer 31, and second controller 32 are common commercially available configurations and perform common operations.
[0035] Working Process: The elevated water tank 1 has two water supply methods. One method involves connecting the elevated water tank 1 to groundwater via a first water pipe 2. Two first high-pressure water pumps 3 are installed on the first water pipe 2 to supplement the water supply when the open channel is blocked due to rain or other reasons. The other method involves the water from the open channel entering the sedimentation tank 11 through the fifth water pipe 12. The sedimentation tank 11 then enters the filter tank 8 through the fourth water pipe 10. The filter tank 8 enters the reverse osmosis tank 7 through the third water pipe 9. The reverse osmosis tank 7 then enters the elevated water tank 1 through the second water pipe 6. The sedimentation tank 11, filter tank 8, and reverse osmosis tank 7 treat the water, achieving water supply from the open channel. The two water supply methods supplement each other. The water from the elevated water tank 1 is discharged and utilized through the outlet pipe 4.
[0036] In the open channel water supply, the sedimentation tank 11 needs to be treated with chemicals. The dosing tank 34 is a tank structure with an open top and a semi-circular bottom. The sedimentation reagent is added at the opening of the dosing tank 34. The reagent is a commercially available reagent for sedimentation. An arc-shaped plate 13 is provided inside the dosing tank 34 to facilitate the reagent to enter the lower part of the dosing tank 34 through the upper surface of the arc-shaped plate 13. The rotating motor 15 drives the rotating shaft 14 to move, and the rotating shaft 14 drives the mixing blade 16 to move, facilitating the dosing of the reagent. The output from the outlet 17 at the bottom of the tank 34 enters the sedimentation tank 11. The sedimentation tank 11 is equipped with an inclined plate 18. An inclined tube 20 is rotatably connected to the pipe opening 19 at the inclined plate 18. The drive motor 22 drives the telescopic rod 21 to extend and retract, which facilitates the movement of the scraper 29 connected to the telescopic rod 21. This allows the scraper 29 to clean the upper surface of the inclined plate 18 and the scraper 29. At the same time, the movement of the scraper 29 can rotate the inclined tube 20, which also causes the water to move, facilitating the mixing of water and reagents.
[0037] The water settled in the sedimentation tank 11 enters the filtration tank 8 through the fourth water pipe 10. The filter screen 23 of the filtration tank 8 can perform preliminary filtration of the water, and then it is filtered again through the filter element 24 to remove sediment and other substances from the water. After being treated by the reverse osmosis equipment in the reverse osmosis tank 7, it enters the high-level water tank 1 for use.
[0038] The sedimentation tank 11 is equipped with multiple conical first output hoppers 33 at the bottom. The filter tank 8 on one side of the filter screen plate 23 and the filter tank 8 outside the filter element 24 are both equipped with second output hoppers 25, which facilitates the collection and output of sediment or treated sediment.
[0039] The rotating motor 15 and the drive motor 22 are both connected to the first controller 30, which is connected to the timer 31, so that the rotating motor 15 and the drive motor 22 can drive the corresponding components to move.
[0040] The first high-pressure water pump 3 and the second high-pressure water pump 28 are connected to the second controller 32. This allows the first high-pressure water pump 3 or the second high-pressure water pump 28 to operate, selecting a water supply method.
[0041] Although the present invention has been described herein with reference to several illustrative embodiments, it should be understood that many other modifications and implementations can be devised by those skilled in the art, which will fall within the scope and spirit of the principles disclosed herein. More specifically, various variations and modifications can be made to the components and / or layout of the subject matter combination within the scope of the disclosure, drawings, and claims. Besides variations and modifications to the components and / or layout, other uses will be apparent to those skilled in the art.
Claims
1. A high-level water tank water supply device, characterized in that: include: High-level water tank (1), first water pipe (2), first high-pressure water pump (3), second water pipe (6), reverse osmosis tank (7), filter tank (8), third water pipe (9), fourth water pipe (10), sedimentation tank (11), fifth water pipe (12), second high-pressure water pump (28); The inlet of the elevated water tank (1) is connected to the groundwater through the first water pipe (2), and the first high-pressure water pump (3) is installed on the first water pipe (2); The inlet of the high-level water tank (1) is connected to the reverse osmosis tank (7) through the second water pipe (6). The reverse osmosis tank (7) is connected to the filter tank (8) through the third water pipe (9). The filter tank (8) is connected to the sedimentation tank (11) through the fourth water pipe (10). The sedimentation tank (11) is connected to the open channel through the fifth water pipe (12). The second water pipe (6), the third water pipe (9), the fourth water pipe (10), and the fifth water pipe (12) are all equipped with a second high-pressure water pump (28).
2. The high-level water tank water supply device according to claim 1, characterized in that: The sedimentation tank (11) is fixed with a dosing tank (34) at the top, and an arc plate (13) is provided inside the dosing tank (34). Output holes (17) are evenly opened at the bottom of the dosing tank (34). A rotating shaft (14) is installed in the dosing tank (34) at the lower part of the arc plate (13). The rotating shaft (14) is driven by a rotating motor (15), and a mixing blade (16) is installed on the rotating shaft (14).
3. The high-water-level water tank water supply device according to claim 1, characterized in that: The sedimentation tank (11) is equipped with an inclined plate (18), and multiple pipe openings (19) are opened on the inclined plate (18). Inclined pipes (20) are rotatably connected to the pipe openings (19).
4. The high-level water tank water supply device according to claim 1, characterized in that: The sedimentation tank (11) is equipped with a telescopic rod (21), which is driven by a drive motor (22) and connected to a scraper (29).
5. A high-level water tank water supply device according to claim 1, characterized in that: The filter pool (8) is provided with a filter screen (23) and a filter element (24) in sequence.
6. The high-level water tank water supply device according to claim 1, characterized in that: The sedimentation tank (11) is provided with multiple conical first output hoppers (33) at its lower part; The filter pool (8) on one side of the filter screen (23) and the filter pool (8) outside the filter element (24) are provided with a second output bucket (25). The lower part of the first output bucket (33) and the second output bucket (25) are both connected to a sludge discharge pipe (26), and a control valve (27) is provided on the sludge discharge pipe (26).
7. A high-level water tank water supply device according to claim 1, characterized in that: The rotating motor (15) and the drive motor (22) are both connected to the first controller (30), and the first controller (30) is connected to the timer (31).
8. A high-level water tank water supply device according to claim 1, characterized in that: The first high-pressure water pump (3), the second high-pressure water pump (28) are connected to the second controller (32).
9. A high-level water tank water supply device according to claim 1, characterized in that: The high-level water tank (1) has multiple outlet pipes (4) connected to its output end, and a water pump (5) is installed on the outlet pipes (4).