Water collecting equipment for optimal allocation of water resources

By designing a water resource optimization configuration water collection equipment that integrates reservoirs, water collection tanks and sterilization tanks, the problem of existing equipment being unable to collect rainwater and separate sludge and sewage is solved, rainwater collection, water quality treatment and water resource optimization are achieved, and water resource utilization efficiency and sanitation quality are improved.

CN222822410UActive Publication Date: 2025-05-02NORTHWEST ENGINEERING CORPORATION LIMITED
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Patent Information

Application Number
CN202421795890.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-05-02
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The existing water resource allocation water collection equipment cannot collect rainwater, and cannot separate sludge and sewage from water, and cannot meet the requirements of water resource optimization.

Method used

A water collection equipment for optimal allocation of water resources is designed, including reservoirs, water collection tanks and sterilization tanks. The reservoir collects rainwater through motor-driven louver plates, the water collector uses a water pump-driven circulation system to treat water quality, and the sterilization tank uses a UV submersible sterilization lamp to perform preliminary water treatment.

Benefits of technology

The collection and storage of rainwater is realized, the evaporation of water resources is reduced, and the circulation system driven by mud discharge valves and water pumps is realized, and the sanitary quality of water resources is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses water resource optimal configuration water collecting equipment which comprises a reservoir, the top of one side of the reservoir is communicated with a water source input pipe, the bottom of one side far away from the water source input pipe is communicated with a first conveying pipe, the bottom of the reservoir is conical, and the lowest position of the bottom of the reservoir is fixedly connected with a mud valve. According to the water collecting equipment for optimal allocation of water resources, sludge can be preliminarily deposited and discharged, and the sediment accumulation amount in the follow-up process is reduced. In addition, the outdoor opening can be opened through the motor to collect rainwater, the louver boards can be closed through the motor to reduce evaporation, and water resources are saved. The arrangement of the faucet at the bottom of the water collecting tank facilitates sampling and detection of water resources, and the water collecting equipment for optimal allocation of the water resources is further provided with the UV sterilization lamp assembly driven by the water pump to circulate, so that water flow can be formed, ultraviolet sterilization can be performed, preliminary water resource treatment is realized, and the sanitary quality of the optimal allocation of the water resources is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of water resource allocation and utilization, in particular to water resource optimization allocation and water collection equipment. Background Art

[0002] The lack of water resources is a problem facing the world. Water is a common substance, but it is precious in maintaining the survival of humans and other organisms on the earth. It is the source of life. With the development of the economy and the increase in population, human demand for water resources continues to increase, so it is necessary to optimize the allocation of water resources. The optimal allocation of water resources refers to the rational development, utilization, protection and management of wild natural water resources through scientific methods and means, so as to meet the water needs of different regions, different times and different industries. In order to scientifically utilize and allocate limited water resources and improve the utilization rate of regional water resources, the optimal allocation of water resources has become one of the current research focuses, in order to achieve the sustainable use of water resources, reduce the pressure on the water conservancy system in water-rich areas, and alleviate the water shortage problem in water-scarce areas. This is the optimal allocation of water resources. Under this concept, a variety of systematic methods for collecting and mobilizing water resources have been produced, among which water collection and storage equipment is one of the most core parts.

[0003] Through the study of water resource optimization allocation, not only can the efficient utilization of water resources be achieved, but also it is of great significance to water environment protection, water ecological restoration, and the rapid development of regional social economy. Most of the existing water resource allocation and water collection equipment currently only have the function of drainage and water storage, and do not have the functions of rainwater collection and sterilization and other water resource collection and preliminary treatment. Therefore, the utility model patent text "A water storage tank with sterilization function" with the publication number CN2451976Y (publication date October 3, 2001) discloses a water storage tank with sterilization function. The device is specifically a water storage tank with an ultraviolet light source or a microwave generator placed inside the water storage tank. The device has the advantages of simple structure, convenient use and good sterilization effect, and is a new type of water storage tank with sterilization function. However, the water storage tank provided by the utility model has a relatively single function, which can only sterilize the water storage. A large amount of sediment is easily deposited in the water storage tank during the water storage process. The device cannot separate mud and water. In addition, it cannot collect rainwater, cannot meet the requirements of water resource optimization, and is not convenient for sampling and testing water quality. Utility Model Content

[0004] The utility model aims to provide water resource optimization configuration water collection equipment, which solves the problem that rainwater cannot be collected in the prior art.

[0005] In order to solve the above technical problems, the utility model provides the following technical solutions: water resources are optimally configured to collect water, including a water reservoir, the top of one side of the water reservoir is connected to a water source input pipe, the bottom of the side away from the water source input pipe is connected to a first delivery pipe, the bottom of the water reservoir is conical, and a mud discharge valve is fixedly connected to the lowest point of the bottom of the water reservoir.

[0006] The utility model is also characterized in that:

[0007] A motor is also fixedly connected to the side of the water tank, and an open air opening is opened on the top of the water tank. Shutters are rotatably connected to the inside of the open air opening at equal intervals. The slats of the louver are obliquely stacked into scales. The louver is coaxially fixedly connected to the rotating shaft of the motor, and the louver is connected through a gear rack transmission.

[0008] Two-thirds of the reservoir is located underground.

[0009] A water collecting tank is placed on the ground near one side of the water reservoir near the first delivery pipe. The first delivery pipe is connected to a first water pump, which is also connected to a second delivery pipe. The second delivery pipe is connected to one side of the top of the water collecting tank.

[0010] The bottom of the water collecting tank away from the first delivery pipe is connected with a faucet, and the top of the faucet is connected with a configuration output pipe, which is fixed to the water collecting tank by bolts.

[0011] A second water pump is fixedly connected to the top of the water collecting tank near the first delivery pipe by bolts, and a pumping pipe is arranged inside the water collecting tank away from the first delivery pipe. The pumping pipe is vertically arranged to pass through the top of the water collecting tank, and the top of the pumping pipe is fixedly connected to the second water pump by bolts, and the other end of the pumping pipe extends into the water collecting tank.

[0012] The top of the water collecting tank is fixedly connected with a sterilizing tank.

[0013] The top of the sterilization tank is connected to the second water pump through a pipeline, the bottom of the sterilization tank is connected to the circulation discharge pipe, the circulation discharge pipe is connected to the water collecting tank, and the circulation discharge pipe and the water collecting tank are fixedly connected by bolts.

[0014] A number of UV submersible sterilization lamps are fixed along the inner wall of the sterilization tank.

[0015] The beneficial effects of the utility model are as follows: the water resource optimization configuration water collection equipment provided by the utility model can collect water resources in the wild native water area through the setting of the water reservoir, and the initial deposited sludge can be discharged from the water reservoir through the setting of the mud discharge valve, reducing the amount of sediment accumulation in the subsequent process; the water resource optimization configuration water collection equipment provided by the utility model can collect rainwater by opening the louver through the motor in rainy weather, and reduce the evaporation of water in the water reservoir by closing the louver through the motor when there is no rainfall, saving water resources. The water resource optimization configuration water collection equipment also facilitates sampling and testing of water resources by setting a faucet at the bottom of the water collection tank. In addition, the water resource optimization configuration water collection equipment provided by the utility model is also equipped with a UV submersible sterilization lamp assembly driven by a water pump, which can form a water flow in the sterilization tank and sterilize it with ultraviolet rays, realizing preliminary water resource treatment and improving the sanitary quality of the optimized configuration of water resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a structural schematic diagram of the water resource optimization configuration water collection equipment of the utility model;

[0017] Figure 2 It is a schematic diagram of the cross-sectional structure of a water reservoir of the utility model water resource optimization configuration water collection equipment;

[0018] Figure 3 The utility model is a schematic diagram of the cross-sectional structure of a water collection tank of a water resource optimization configuration water collection device.

[0019] In the figure: 1. water reservoir; 2. water source input pipe; 3. mud discharge valve; 4. motor; 5. open air outlet; 6. louver; 7. first delivery pipe; 8. first water pump; 9. second delivery pipe; 10. water collection tank; 11. faucet; 12. output pipe; 13. second water pump; 14. suction pipe; 15. sterilization tank; 16. UV submersible sterilization lamp; 17. circulation discharge pipe. DETAILED DESCRIPTION

[0020] The utility model is described in detail below with reference to the accompanying drawings and specific implementation modes.

[0021] Example 1

[0022] like Figure 1As shown, water resources are optimally configured with water collection equipment, including a water reservoir 1, two-thirds of which is placed underground, so as to collect water from the ground and reduce evaporation of water resources. A water source input pipe 2 is connected to the top of one side of the water reservoir 1, and the water source input pipe 2 is connected to a natural water area in the wild or a water area formed by a dam reservoir. A first delivery pipe 7 is connected to the bottom of the side away from the water source input pipe 2. The bottom of the water reservoir 1 is conical, and a mud discharge valve 3 is fixedly connected to the lowest point of the bottom of the water reservoir 1. When the silt at the bottom of the water reservoir 1 accumulates to a certain extent, the mud discharge valve 3 can be opened to discharge the silt and water at the bottom, thereby reducing the space occupied by the water reservoir 1.

[0023] Example 2

[0024] The water collection equipment of the water resource optimization configuration of the embodiment 1 is adopted. This embodiment adds a rainwater collection function. A motor 4 is also fixedly connected to the side of the water reservoir 1. Figure 2 As shown, an open-air opening 5 is provided on the top of the water storage tank 1, and is in an inwardly curved shape. In rainy weather, the open-air opening 5 can receive and collect rainwater. Louvers 6 are rotatably connected inside the open-air opening 5 at equal intervals. The slats of the louvers 6 are obliquely stacked into scales. The louvers 6 are coaxially fixedly connected to the rotating shaft of the motor 4. The louvers 6 are connected through a gear rack transmission. The opening and closing of the louvers 6 are controlled by the motor 4. In rainy weather, the motor 4 is controlled to open the louvers 6 to collect rainwater through the open-air opening 5. In sunny weather, the motor 4 is controlled to close all the louvers 6. The two ends of the louvers 6 are respectively in contact with the curved edges of the open-air opening 5, which can greatly reduce the evaporation of water resources, save water resources, and meet the requirements of water resource optimization.

[0025] Example 3

[0026] The water collection equipment is configured by optimizing the water resources of Example 1 or Example 2, and this embodiment adds a sterilization function, such as Figure 1 As shown, a water collecting tank 10 is placed on the ground near the first delivery pipe 7 of the water reservoir 1. The first delivery pipe 7 is connected to the first water pump 8 by bolts. The first water pump 8 is also connected to the second delivery pipe 9 by bolts. The second delivery pipe 9 is connected to the top side of the water collecting tank 10. By controlling the first water pump 8, the water resources of the water reservoir 1 are delivered to the water collecting tank 10 through the first delivery pipe 7 and the second delivery pipe 9.

[0027] A second water pump 13 is fixedly connected to the top of the water collecting tank 10 near the first delivery pipe 7 by bolts. Figure 3 As shown, a pumping pipe 14 is arranged inside the water collecting tank 10 on the side away from the first delivery pipe 7. The pumping pipe 14 is vertically arranged to pass through the top of the water collecting tank 10. The top of the pumping pipe 14 is connected to the second water pump 13 by bolts. The other end of the pumping pipe 14 extends into the water collecting tank 10, close to the bottom surface of the water collecting tank 10.

[0028] A sterilization tank 15 is fixedly connected to the top of the water collecting tank 10, which can perform preliminary sterilization treatment on the water in the water collecting tank 10. The top of the sterilization tank 15 is connected to the second water pump 13 through a pipeline, and the bottom of the sterilization tank 15 is connected to the circulation discharge pipe 17. The circulation discharge pipe 17 is connected to the water collecting tank 10, and the circulation discharge pipe 17 is fixedly connected to the water collecting tank 10 by bolts. A number of UV submersible sterilization lamps 16 are fixed along the inner wall of the sterilization tank 15. The stored water flows through the inside of the sterilization tank 15, and will be sterilized by the UV submersible sterilization lamp 16, and then flows back into the water collecting tank 10 through the circulation discharge pipe 17.

[0029] Example 4

[0030] The water resource optimization configuration water collection equipment of Example 3 is adopted. This embodiment can more conveniently sample and test the water quality in the water collection tank 10. Specifically, the bottom of the water collection tank 10 away from the first delivery pipe 7 is connected to a faucet 11, and the top of the faucet 11 is connected to an output pipe 12. The output pipe 12 is fixed to the water collection tank 10 by bolts. Through the setting of the output pipe 12, the water in the water collection tank 10 can be transported out, and the faucet 11 is convenient for sampling and testing the water quality in the water collection tank 10 at any time.

Claims

1. Water resource optimization configuration water collection equipment, characterized in that: The invention comprises a water reservoir (1), wherein the top of one side of the water reservoir (1) is connected to a water source input pipe (2), and the bottom of the side away from the water source input pipe (2) is connected to a first delivery pipe (7), the bottom of the water reservoir (1) is conical, and a mud discharge valve (3) is fixedly connected to the lowest point of the bottom of the water reservoir (1).

2. The water resource optimization allocation water collection equipment according to claim 1, characterized in that: The side of the water reservoir (1) is also fixedly connected to a motor (4), and the top of the water reservoir (1) is provided with an open-air opening (5), and inside the open-air opening (5) are rotatably connected louvers (6) at equal intervals, and the slats of the louvers (6) are obliquely stacked into scales, and the louvers (6) are coaxially fixedly connected to the rotating shaft of the motor (4), and the louvers (6) are connected via a gear rack transmission.

3. The water resource optimization allocation water collection equipment according to claim 2, characterized in that: Two thirds of the water reservoir (1) is placed underground.

4. The water resource optimization allocation water collection equipment according to claim 1, characterized in that: A water collecting tank (10) is placed on the ground near one side of the water reservoir (1) and the first delivery pipe (7); the first delivery pipe (7) is connected to a first water pump (8); the first water pump (8) is also connected to a second delivery pipe (9); the second delivery pipe (9) is connected to one side of the top of the water collecting tank (10).

5. The water collection equipment for optimizing water resource allocation according to claim 4, characterized in that: The bottom of the water collecting tank (10) away from the first delivery pipe (7) is connected to a faucet (11), and the top of the faucet (11) is connected to a configuration output pipe (12), and the configuration output pipe (12) is fixed to the water collecting tank (10) by bolts.

6. The water collection equipment for optimizing water resource allocation according to claim 4, characterized in that: A second water pump (13) is fixedly connected to the top of the water collecting tank (10) near the first delivery pipe (7) by bolts, and a water pumping pipe (14) is arranged inside the water collecting tank (10) away from the first delivery pipe (7). The water pumping pipe (14) is vertically arranged to pass through the top of the water collecting tank (10), and the top end of the water pumping pipe (14) is fixedly connected to the second water pump (13) by bolts, and the other end of the water pumping pipe (14) extends into the water collecting tank (10).

7. The water collection equipment for optimizing water resource allocation according to claim 4, characterized in that: The top of the water collecting tank (10) is fixedly connected with a sterilizing tank (15).

8. The water collection equipment for optimizing water resource allocation according to claim 7, characterized in that: The top of the sterilization tank (15) is connected to the second water pump (13) through a pipeline, the bottom of the sterilization tank (15) is connected to the circulation discharge pipe (17), the circulation discharge pipe (17) is connected to the water collection tank (10), and the circulation discharge pipe (17) and the water collection tank (10) are fixedly connected by bolts.

9. The water collection equipment for optimizing water resource allocation according to claim 8, characterized in that: The sterilization tank (15) is provided with a plurality of UV submersible sterilization lamps (16) fixed along the inner wall.