Water resource recycling and filtering device for high-rise building

By designing a water resource recycling filter device with high water tanks and low water tanks in high-rise buildings, drainage pipes and drainage dragons filter impurities in the water flow, and combining small impeller generators to generate electricity using water flow potential energy, the problem of impurities in the water flow affecting the smoothness of water flow is solved, and efficient water resource recycling and energy-saving effects are achieved.

CN222894327UActive Publication Date: 2025-05-23SHANGHAI JIENUO QUALITY TESTING TECH CO LTD
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Patent Information

Application Number
CN202421204464.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-29
Publication Date
2025-05-23
Estimated Expiration
2034-05-29

AI Technical Summary

Technical Problem

During the recycling process of water resources in high-rise buildings, solid debris in the water flow affects the smoothness of the water flow, thereby reducing the potential energy of the water flow and affecting the energy-saving effect.

Method used

A water resource recycling filter device including a high water tank and a low water tank is designed, and the water flow is discharged using drainage pipes and drainage dragons, and the impurities are avoided through the honeycomb drainage port, and combined with a small impeller generator to generate electricity using the water flow potential energy.

Benefits of technology

By effectively filtering impurities, maximize the use of water flow potential energy to generate electricity, reduce energy consumption in high-rise buildings, ensure water flow smoothness, and achieve efficient recycling of water resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a high-rise building water resource recycling and filtering device which comprises a high water tank arranged at the top of a high-rise building, a low water tank arranged at the bottom of the high-rise building and a filtering base connected into the water tanks, a drainage pipe is arranged at the bottom of the filtering base, a drainage auger is arranged in the drainage pipe, and a drainage opening is formed in the bottom of the drainage pipe. By arranging the high water tank and the low water tank and utilizing the fall advantage of the high water tank and the low water tank on a high-rise building, the falling potential energy of water flow is maximized, so that the potential energy generated by the water flow can be better utilized to impact the small impeller generator to generate electricity, and after electricity is stored, the water flow can be fully utilized to generate electricity. And the drainage pipe is matched with the drainage auger, water flow in the water tank can be discharged, the drainage opening is in a honeycomb shape, impurities in the water tank can be prevented from entering the drainage pipe, and therefore the smoothness of the water flow in the drainage pipe is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of building environmental protection and energy saving, in particular to a water resource recycling and filtering device for high-rise buildings. Background Art

[0002] With the urbanization process in recent years, high-rise buildings have emerged in large numbers in various cities, which has caused considerable pressure on the water supply and energy conservation of high-rise buildings. The industry has begun to explore the comprehensive utilization of water resources (in high-rise buildings). Especially for high-rise buildings, the recycling, collection and reuse of rainwater will play an important role in energy conservation and environmental protection. Due to the height of high-rise buildings, water resources will have greater potential energy under the influence of gravity. If this potential energy can be utilized, energy-saving goals can also be achieved. However, whether it is rainwater or reclaimed water, there will be large solid debris inside. These debris will affect the smoothness of the water flow, thereby reducing the potential energy of the water flow and affecting the energy-saving effect. Therefore, a high-rise building water resource recycling and filtration device is needed. Utility Model Content

[0003] In view of the above-mentioned shortcomings of the prior art, the purpose of the utility model is to provide a high-rise building water resource recycling and filtering device, which is used to solve the problem of impurity filtering of recycled water in the prior art.

[0004] In order to achieve the above purpose and other related purposes, the utility model provides the following technical solutions:

[0005] A high-rise building water resource recycling and filtering device comprises a high water tank arranged at the top of the high-rise building and a low water tank arranged at the bottom of the high-rise building, and also comprises: filtering components arranged in the high water tank and the low water tank;

[0006] The filter assembly includes a filter base connected to the water tank, a drainage pipe is provided at the bottom of the filter base, a drainage dragon is arranged in the drainage pipe, a drainage port is provided at the bottom of the drainage pipe, and a water outlet is provided at the top of the drainage pipe below the filter base.

[0007] To implement the above technical solution, by setting up high water tanks and low water tanks, and taking advantage of the height difference on high-rise buildings, the falling potential energy of the water flow can be maximized, so that the potential energy generated by the water flow can be better utilized to impact the small impeller generator to generate electricity. After storing electricity, it can be used for lighting public spaces in the building, etc., thereby reducing the energy consumption of high-rise buildings. The drainage pipe cooperates with the drainage dragon to discharge the water flow in the water tank, and the drainage port is honeycomb-shaped, which can prevent impurities in the water tank from entering the drainage pipe, thereby ensuring the smooth flow of water in the drainage pipe.

[0008] In one embodiment of the utility model, a drainage seat is provided in both the high water tank and the low water tank. The drainage seat is located at the lower side of the water outlet. The drainage pipe passes through the drainage seat and is sealed to the drainage seat.

[0009] By implementing the above technical solution, the drainage seat can discharge the water source led out of the drainage pipe out of the water tank, preventing external solid debris from entering and affecting the fluidity of the discharged water source.

[0010] In one embodiment of the utility model, the driving shaft of the drainage dragon extends out of the bottom of the drainage tube, and a cleaning brush is provided on the driving shaft extending out of the bottom of the drainage tube to scrape and clean the surface of the drainage port.

[0011] To implement the above technical solution, the cleaning brush on the driving shaft can scrape and clean the surface of the drainage port to prevent impurities from accumulating at the drainage port and blocking the water inlet of the drainage port. The cleaning brush rotates with the driving shaft to ensure thorough cleaning.

[0012] In one embodiment of the utility model, water inlets are provided on the side walls of the high water tank and the low water tank, the water inlets are connected to an external water source, and the water inlets are located at the lower side of the drainage seat.

[0013] To implement the above technical solution, the water inlet can be located at the lower side of the drainage seat, which is convenient for filtering the collected miscellaneous water.

[0014] In one embodiment of the present invention, the drainage seat divides the high water tank and the low water tank into a group of water inlet compartments and a group of water outlet compartments.

[0015] By implementing the above technical solution, the water outflow from the water outlet compartment end is independent of the water tank, thereby ensuring the stability of the water outflow.

[0016] In one embodiment of the utility model, a Jiaolong driving member is provided on the upper side of the filter base, and the output end of the Jiaolong driving member is sealed and connected to the filter base.

[0017] The above technical solution is implemented to ensure the driving stability of the drainage dragon.

[0018] In one embodiment of the present invention, cleaning ports are provided on the bottom side walls of the high water tank and the low water tank.

[0019] Implementing the above technical solution makes it convenient to regularly clean up impurities.

[0020] In one embodiment of the utility model, a middle water tank is provided between the high water tank and the low water tank, a filter assembly is also provided in the middle water tank, and a small impeller generator is provided at the water inlet end of the middle water tank.

[0021] To implement the above technical solution, a grey water tank is added to taller buildings, so that not only rainwater but also washing water can be collected for secondary utilization after filtration. The secondary utilization here is mainly to cooperate with a small impeller generator to generate electricity.

[0022] In one embodiment of the present invention, liquid level sensors are provided in the high water tank, the middle water tank and the low water tank.

[0023] By implementing the above technical solution, the drainage volume of the drainage dragon can be adjusted according to the liquid level display.

[0024] As described above, a high-rise building water resource recycling and filtering device of the utility model has the following beneficial effects: by setting a high water tank and a low water tank, taking advantage of the height difference on the high-rise building, the falling potential energy of the water flow is maximized, so that the potential energy generated by the water flow can be better utilized to impact the small impeller generator to generate electricity. After storing electricity, it can be used for lighting public spaces in the building, etc., thereby reducing the energy consumption of high-rise buildings. The drainage pipe cooperates with the drainage dragon to discharge the water flow in the water tank. The drainage port is honeycomb-shaped, which can prevent impurities in the water tank from entering the drainage pipe, thereby ensuring the smoothness of the water flow in the drainage pipe. The cleaning brush on the drive shaft can scrape and clean the surface of the drainage port to prevent impurities from accumulating at the drainage port and blocking the water inlet of the drainage port. The cleaning brush rotates with the drive shaft to ensure the thoroughness of the cleaning. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 Shown is a schematic structural diagram of a high-rise building water resource recycling and filtering device disclosed in an embodiment of the utility model.

[0026] Figure 2 Shown is a schematic diagram of the drainage dragon structure of the high-rise building water resource recycling and filtering device disclosed in the embodiment of the utility model.

[0027] Figure 3 Shown is a schematic diagram of the water tank structure of the high-rise building water resource recycling and filtering device disclosed in an embodiment of the utility model.

[0028] Figure 4 Display as Figure 3 A partial enlarged view of the figure marked A.

[0029] Component number description

[0030] 1. High water tank; 2. Low water tank; 3. Filter base; 4. Drainage pipe; 5. Drainage dragon; 6. Drainage port; 7. Water outlet; 8. Drainage seat; 9. Cleaning brush; 10. Water inlet; 11. Dragon drive; 12. Cleaning port; 13. Middle water tank; 14. Small impeller generator. DETAILED DESCRIPTION

[0031] The following specific embodiments illustrate the implementation of the present invention, and those familiar with the technology can easily understand other advantages and effects of the present invention from the contents disclosed in this specification. It should be noted that the following embodiments and features in the embodiments can be combined with each other without conflict.

[0032] See also Figures 1 to 4 The utility model provides a high-rise building water resource recycling and filtering device, including a high water tank 1 arranged at the top of the high-rise building, and a low water tank 2 arranged at the bottom of the high-rise building, and also includes: a filtering component arranged in the high water tank 1 and the low water tank 2, the filtering component includes a filtering base 3 connected to the water tank, a drainage pipe 4 is arranged at the bottom of the filtering base 3, a drainage dragon 5 is arranged in the drainage pipe 4, a drainage port 6 is arranged at the bottom of the drainage pipe 4, and a water outlet 7 is arranged at the top of the drainage pipe 4 and below the filtering base 3.

[0033] By setting up a high water tank 1 and a low water tank 2, the falling potential energy of the water flow is maximized by utilizing the height difference advantage on the high-rise building, so that the potential energy generated by the water flow can be better utilized to impact the small impeller generator 14 to generate electricity. After storing electricity, it can be used for lighting public spaces in the building, etc., thereby reducing the energy consumption of high-rise buildings. The drainage pipe 4 cooperates with the drainage dragon 5 to discharge the water flow in the water tank. The drainage port 6 is honeycomb-shaped, which can prevent impurities in the water tank from entering the drainage pipe 4, thereby ensuring the smoothness of the water flow in the drainage pipe 4.

[0034] A drainage seat 8 is provided in both the high water tank 1 and the low water tank 2. The drainage seat 8 is located at the lower side of the water outlet 7. The drainage pipe 4 passes through the drainage seat 8 and is sealed with the drainage seat 8. The drainage seat 8 can discharge the water source led out of the drainage pipe 4 out of the water tank to prevent external solid debris from entering and affecting the fluidity of the discharged water source.

[0035] The driving shaft of the drainage dragon 5 extends out of the bottom of the drainage tube 4, and a cleaning brush 9 is provided on the driving shaft extending out of the bottom of the drainage tube 4 to scrape and clean the surface of the drainage port 6. The setting of the cleaning brush 9 on the driving shaft can scrape and clean the surface of the drainage port 6 to prevent impurities from accumulating at the drainage port 6 and blocking the water inlet of the drainage port 6. The cleaning brush 9 rotates with the driving shaft to ensure the thoroughness of the cleaning.

[0036] A water inlet 10 is provided on the side wall of the high water tank 1 and the low water tank 2. The water inlet 10 is connected to an external water source and is located at the lower side of the drainage seat 8. The water inlet 10 can be located at the lower side of the drainage seat 8 to facilitate filtering of the collected miscellaneous water. The drainage seat 8 divides the high water tank 1 and the low water tank 2 into a group of water inlet tanks and a group of water outlet tanks, so that the water outlet at the water outlet tank end is independent of the water tank, thereby ensuring the stability of the water outlet.

[0037] A dragon driving member 11 is provided on the upper side of the filter base 3, and the output end of the dragon driving member 11 is sealed and connected to the filter base 3 to ensure the driving stability of the drainage dragon 5. A cleaning port 12 is opened on the bottom side wall of the high water tank 1 and the low water tank 2 to facilitate regular cleaning of impurities.

[0038] A middle water tank 13 is provided between the high water tank 1 and the low water tank 2. A filtering assembly is also provided in the middle water tank 13. A small impeller generator 14 is provided at the water inlet end of the middle water tank 13. For taller buildings, a middle water tank 13 is added so that not only rainwater but also washing water can be collected for secondary utilization after filtration. The secondary utilization here is mainly to cooperate with the small impeller generator 14 to generate electricity.

[0039] Liquid level sensors are provided in the high water tank 1, the middle water tank 13 and the low water tank 2, and the drainage amount of the drainage dragon 5 can be adjusted according to the liquid level display.

[0040] The utility model arranges a high water tank and a low water tank, and utilizes the height difference advantage on the high-rise building to maximize the falling potential energy of the water flow, so that the potential energy generated by the water flow can be better utilized to impact the small impeller generator to generate electricity. After storing electricity, it can be used for lighting the public space in the building, etc., so as to reduce the energy consumption of the high-rise building. The drainage pipe cooperates with the drainage dragon to discharge the water flow in the water tank. The drainage port is honeycomb-shaped, which can prevent impurities in the water tank from entering the drainage pipe, so as to ensure the smoothness of the water flow in the drainage pipe. The cleaning brush on the driving shaft can scrape and clean the surface of the drainage port to prevent impurities from accumulating at the drainage port and blocking the water inlet of the drainage port. The cleaning brush rotates with the driving shaft to ensure the thoroughness of the cleaning.

[0041] The above embodiments are merely illustrative of the principles and effects of the present invention, and are not intended to limit the present invention. All equivalent modifications or changes made by those skilled in the art without departing from the spirit and technical ideas disclosed in the present invention shall still be covered by the claims of the present invention.

Claims

1. A high-rise building water resource recycling and filtering device, comprising a high water tank arranged at the top of the high-rise building, and a low water tank arranged at the bottom of the high-rise building, characterized in that: Also includes: Filter components arranged in the high water tank and the low water tank; The filter assembly includes a filter base connected to the water tank, a drainage pipe is provided at the bottom of the filter base, a drainage dragon is provided in the drainage pipe, a drainage port is provided at the bottom of the drainage pipe, the drainage port is honeycomb-shaped, and a water outlet is provided at the top of the drainage pipe below the filter base; A small impeller generator is arranged at the water inlet end of the low water tank.

2. The high-rise building water resource recycling and filtering device according to claim 1 is characterized by: A drainage seat is provided in both the high water tank and the low water tank. The drainage seat is located at the lower side of the water outlet. The drainage pipe passes through the drainage seat and is sealed and connected to the drainage seat.

3. The high-rise building water resource recycling and filtering device according to claim 1 is characterized in that: The driving shaft of the drainage dragon extends out of the bottom of the drainage tube, and a cleaning brush is arranged on the driving shaft extending out of the bottom of the drainage tube to scrape and clean the surface of the drainage port.

4. The high-rise building water resource recycling and filtering device according to claim 3 is characterized by: Water inlets are provided on the side walls of the high water tank and the low water tank. The water inlets are connected to an external water source and are located at the lower side of the drainage seat.

5. The high-rise building water resource recycling and filtering device according to claim 2 is characterized by: The drainage seat divides the high water tank and the low water tank into a group of water inlet compartments and a group of water outlet compartments.

6. The high-rise building water resource recycling and filtering device according to claim 1 is characterized by: A Jiaolong driving component is arranged on the upper side of the filter base, and an output end of the Jiaolong driving component is sealed and connected with the filter base.

7. The high-rise building water resource recycling and filtering device according to claim 1 is characterized by: Cleaning ports are provided on the side walls at the bottom of the high water tank and the low water tank.

8. The high-rise building water resource recycling and filtering device according to claim 1 is characterized by: A middle water tank is arranged between the high water tank and the low water tank, a filter assembly is also arranged in the middle water tank, and a small impeller generator is arranged at the water inlet end of the middle water tank.

9. The high-rise building water resource recycling and filtering device according to claim 8 is characterized by: Liquid level sensors are arranged in the high water tank, the middle water tank and the low water tank.