Underground water overflow recovery and comprehensive utilization water supply system
By designing an integrated water supply system that includes a deep well pump room, an underground integrated water tank, a purification workshop and a water reservoir, and adopting intelligent water level monitoring and multi-stage water supply configuration, the problems of resource waste and low automation in the water supply system are solved, and efficient use of water resources and improved energy efficiency are achieved.
Patent Information
- Application Number
- CN202510739109.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-09-09
AI Technical Summary
The existing water supply system is prone to overflow during flood season, wastes resources and lacks multi-purpose automation configuration. It has a low degree of automation, low energy efficiency, and difficulty in adjusting water supply strategies in real time.
A comprehensive water supply system is designed, including a deep well pump room, an underground integrated water tank, a purification workshop, a water reservoir and a water outlet. It adopts intelligent water level monitoring and multi-stage water supply configuration, combined with electronically controlled valves and variable frequency water supply pump groups, to achieve efficient utilization of water resources and unmanned control of the entire process.
It achieves efficient use of water resources, solves the problems of water waste and low automation, and improves the comprehensive configuration capability and energy efficiency of the water supply system.
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Figure CN120608543A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of water supply for hydraulic engineering projects, and in particular to a groundwater overflow recovery and comprehensive utilization water supply system. Background Art
[0002] At present, the utilization of groundwater resources in industrial, greening and domestic water supply systems often faces the following problems:
[0003] Waste of water resources: Traditional groundwater extraction systems are prone to overflow during flood seasons, and excess groundwater is directly discharged into rivers or the surface. The overflow water resources are not effectively recycled, resulting in waste; Lack of comprehensive configuration: Existing water supply systems mostly adopt a single-function design, with a single function, lack of comprehensive configuration, and complex management.
[0004] Low degree of automation: The control method is backward and relies on manual operation, which is inefficient and difficult to adjust the water supply strategy in real time. In particular, insufficient water supply or uncontrolled overflow may occur during overflow or dry seasons.
[0005] Low energy efficiency: Traditional deep well pumps and industrial water supply lack intelligent linkage control, resulting in high operating energy consumption.
[0006] Patent document CN1234567A discloses a groundwater recovery system, which introduces excess groundwater into a water storage tank through an overflow pipe, but does not achieve multi-purpose water supply automation configuration. Summary of the Invention
[0007] The present invention discloses a groundwater overflow recovery and comprehensive utilization water supply system, which aims to solve the technical problem in the background technology that although excess groundwater is introduced into a water storage tank through an overflow pipe, multi-purpose water supply automatic configuration is not achieved.
[0008] The present invention proposes a groundwater overflow recovery and comprehensive utilization water supply system, comprising:
[0009] A deep well pump room, an underground integrated water tank, a purification workshop, a water reservoir and a water outlet; a deep well pump is provided in the deep well pump room, the deep well pump is connected to a deep well pump overflow pipe and a deep well pump outlet pipe, the deep well pump overflow pipe and the deep well pump outlet pipe are both connected to the buried integrated water tank, a submersible pump and a variable frequency water supply pump group are provided in the buried integrated water tank, the deep well pump outlet pipe is connected to the water reservoir through a connecting pipe 1, the submersible pump is connected to a connecting pipe 1 through a water tank overflow pipe, the variable frequency water supply pump group is connected to a main pipeline, and the main pipeline is connected to a greening water supply Pipes and domestic water supply pipes, the water inlet of the pipes in the purification workshop is connected to the industrial water intake, the water outlet of the pipes in the purification workshop is connected to the water tank, the water tank is provided with an industrial water supply pipe, the water tank is provided with an emptying pipe and a water tank overflow pipe; the deep well pump overflow pipe, deep well pump outlet pipe, connecting pipe 1, water tank overflow pipe, main pipeline, greening water supply pipe, domestic water supply pipe, pipeline of the purification workshop, industrial water supply pipe and emptying pipe are all provided with electric control valves, the deep well pump is equipped with a water level sensor, and the buried integrated water tank has a built-in water level gauge.
[0010] In a preferred solution, a check valve and an electrically controlled outlet valve are provided on the deep well pump outlet pipe near the deep well pump, a drain pipe is connected to the deep well pump outlet pipe between the check valve and the electrically controlled outlet valve, an electrically controlled drain valve is provided on the drain pipe, and an electrically controlled valve 1 is provided on the deep well pump outlet pipe near the buried integrated water tank.
[0011] In a preferred solution, the connecting pipe 1 is provided with an electrically controlled water pool water supply valve and an electrically controlled water pool water inlet valve, the water tank overflow pipe is provided with an electrically controlled valve 2, the main pipe is provided with an electrically controlled valve 3, the greening water supply pipe is provided with an electrically controlled valve 4, the domestic water supply pipe is provided with an electrically controlled valve 5, the purification workshop pipe is provided with a purification workshop water inlet valve, a purification workshop electric valve, and an electric valve inspection valve, the industrial water supply pipe is provided with an electrically controlled valve 6, and the drain pipe is provided with an electrically controlled valve 7.
[0012] In a preferred embodiment, the purification workshop includes:
[0013] The purification and cleaning module is installed inside the purification workshop;
[0014] The purification and blowout prevention module is installed inside the purification workshop.
[0015] In a preferred embodiment, the purification and cleaning module includes:
[0016] Purification cylinder, with circular holes 1 opened on both sides of the purification cylinder, the interiors of the two circular holes 1 are fixedly connected to rotating circular tubes, and the interiors of the two rotating circular tubes are fixedly connected to the same sealing arc plate;
[0017] The driving motor is fixedly connected to one side of the clean room. The driving end of the driving motor and the outside of one of the rotating tubes are fixedly connected with pulleys. The external transmission of the two pulleys is connected with the same belt 2.
[0018] Multiple guide cylinders, the exteriors of two guide cylinders on the same side are slidably connected to the same adjustment cross frame;
[0019] An electric drive rod, a driving end of the electric drive rod is fixedly connected to one side of the adjusting cross frame, one side of the adjusting cross frame is fixedly connected to two mounting blocks 1, one side of the two mounting blocks 1 is connected to the same support rod through a bearing, the opposite sides of the two support rods are fixedly connected to the same mounting frame, two circular holes 2 are provided on both sides of the mounting frame, the inside of the two opposite circular holes 2 is connected to the same cleaning brush roller through a bearing, one end of the two cleaning brush rollers is fixedly connected to a pulley, the external transmission of the two pulleys is connected to the same belt 1, and one side of the mounting frame is fixedly connected to a hollow water drum frame.
[0020] In a preferred embodiment, the purification and cleaning module further comprises:
[0021] A return spring, one side of the return spring is fixedly connected to one side of the adjustment cross frame and the support rod respectively, one side of the mounting frame is fixedly connected to a universal motor, and the driving end of the universal motor is connected to one end of one of the cleaning brush rollers through a coupling;
[0022] Multiple mounting blocks 2 are fixedly connected to one side of the adjusting horizontal frame. One side of the two mounting blocks 2 is connected to a support arm through a bearing. The opposite side of the two support arms is fixedly connected to the same suction frame. One side of the hollow water drum frame is fixedly connected to two connecting pipes.
[0023] In a preferred embodiment, the purification and cleaning module further comprises:
[0024] The circulation processor is arranged on one side of the purification workshop. The water inlet end of the circulation processor is connected to the inside of the absorption frame through the water inlet hose, and the water outlet end of the circulation processor is connected to the inside of the connecting pipe through the water outlet hose. One side of the support arm is fixedly connected to the limit spring, and one side of the limit spring is fixedly connected to one side of the adjustment cross frame.
[0025] In a preferred embodiment, the purification and blowout prevention module includes:
[0026] Partition, the partition is arranged inside the purification workshop, and three circular holes are opened on both sides of the partition. The inside of the two circular holes three are fixedly connected with a conveying pipe and a metal telescopic pipe respectively. One end of the conveying pipe and the metal telescopic pipe is fixedly connected with a docking joint one and a docking joint two respectively. The outside of the docking joint two is fixedly connected with a cross bar, and one side of the cross bar is fixedly connected with two electric telescopic rods.
[0027] In a preferred solution, an extrusion spring is fixedly connected to one side of the interior of the docking joint 1 and the docking joint 2, and a sealing ball is provided on one side of the two extrusion springs. The sealing ball is located inside the docking joint 1 and the docking joint 2, and a water head is movably connected inside the docking joint 2.
[0028] In a preferred solution, a filter plate is fixedly connected to one side of the interior of the purification workshop.
[0029] From the above, it can be seen that the groundwater overflow recovery and comprehensive utilization water supply system provided by the present invention has the beneficial effects of realizing efficient utilization of water resources and unmanned control of the entire process through intelligent water level monitoring, dynamic recovery of overflow and multi-stage water supply configuration, which solves the problems of water resource waste, lack of comprehensive configuration, low degree of automation and low energy efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 This is a schematic diagram of the overall structure of a groundwater overflow recovery and comprehensive utilization water supply system proposed by the present invention;
[0031] Figure 2 This is a schematic diagram of the structure of a purification workshop of a groundwater overflow recovery and comprehensive utilization water supply system proposed by the present invention;
[0032] Figure 3 This is a schematic diagram of the structure of a purification and cleaning module of a groundwater overflow recovery and comprehensive utilization water supply system proposed by the present invention;
[0033] Figure 4 This is a schematic diagram of the structure of the purification and cleaning module of a groundwater overflow recovery and comprehensive utilization water supply system proposed by the present invention;
[0034] Figure 5 This is a schematic diagram of the purification cylinder structure of a groundwater overflow recovery and comprehensive utilization water supply system proposed by the present invention;
[0035] Figure 6 This is a schematic diagram of the cleaning brush roller structure of a groundwater overflow recovery and comprehensive utilization water supply system proposed by the present invention;
[0036] Figure 7 This is a schematic diagram of the structure of a purification and blowout prevention module of a groundwater overflow recovery and comprehensive utilization water supply system proposed by the present invention;
[0037] Figure 8 This is a partial structural diagram of the purification and blowout prevention module of a groundwater overflow recovery and comprehensive utilization water supply system proposed by the present invention.
[0038] Figure: 1. Deep well pump room; 2. Buried integrated water tank; 3. Purification workshop; 4. Reservoir; 5. Water outlet; 6. Deep well pump; 7. Deep well pump overflow pipe; 8. Deep well pump outlet pipe; 9. Submersible pump; 10. Variable frequency water supply pump unit; 11. Connecting pipe 1; 12. Main pipeline; 13. Greening water supply pipeline; 14. Domestic water supply pipeline; 15. Industrial water supply pipeline; 16. Pool overflow pipe; 17. Water tank overflow pipe; 18. Check valve; 19. Electric outlet valve; 2 0. Electric drain valve; 21. Electric valve 1; 22. Electric pool water supply valve; 23. Electric pool inlet valve; 24. Electric valve 2; 25. Electric valve 3; 26. Electric valve 4; 27. Electric valve 5; 28. Purification workshop inlet valve; 29. Purification workshop electric valve; 30. Electric valve inspection valve; 31. Electric valve 6; 32. Electric valve 7; 33. Drain pipe; 34. Filter plate; 35. Purification blowout prevention module; 3501. Partition plate; 3502. Delivery pipe; 35 03. Connector 1; 3504. Electric telescopic rod; 3505. Crossbar; 3506. Connector 2; 3507. Metal telescopic tube; 3508. Extrusion spring; 3509. Sealing ball; 3510. Water flow head; 36. Purification and cleaning module; 3601. Purification cartridge; 3602. Circulation processor; 3603. Water inlet hose; 3604. Drive motor; 3605. Limit spring; 3606. Rotating tube; 3607. Sealing arc plate; 3608 , guide cylinder; 3609, adjustment cross frame; 3610, mounting block one; 3611, support rod; 3612, mounting frame; 3613, electric drive rod; 3614, water outlet hose; 3615, connecting pipe; 3616, cleaning brush roller; 3617, hollow water drum frame; 3618, return spring; 3619, mounting block two; 3620, support arm; 3621, belt one; 3622, universal motor; 3623, belt two; 3624, suction frame.
[0039] The arrow direction in the figure is the direction of water flow. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0041] The groundwater overflow recovery and comprehensive utilization water supply system disclosed in the present invention is mainly used in scenarios where although excess groundwater is introduced into a water storage tank through an overflow pipe, multi-purpose water supply automation configuration has not been achieved.
[0042] Reference Figure 1 , a groundwater overflow recovery and comprehensive utilization water supply system, comprising:
[0043] Deep well pump room 1, buried integrated water tank 2, purification workshop 3, water reservoir 4 and water outlet part 5; deep well pump room 1 is equipped with deep well pump 6, deep well pump 6 is connected to deep well pump overflow pipe 7 and deep well pump outlet pipe 8, deep well pump overflow pipe 7 and deep well pump outlet pipe 8 are both connected to buried integrated water tank 2, buried integrated water tank 2 is equipped with submersible pump 9 and variable frequency water supply pump group 10, deep well pump outlet pipe 8 is connected to water reservoir 4 through connecting pipe 11, submersible pump 9 is connected to connecting pipe 11 through water tank overflow pipe 17, variable frequency water supply pump group 10 is connected to main pipeline 12, main pipeline 12 is connected to greening water supply pipeline 13 and the domestic water supply pipeline 14, the water inlet of the pipeline of the purification workshop 3 is connected to the industrial water intake, and the water outlet end of the pipeline of the purification workshop 3 is connected to the water reservoir 4. The water reservoir 4 is provided with an industrial water supply pipe 15, and the water reservoir 4 is provided with an emptying pipe 33 and a water tank overflow pipe 16, a deep well pump overflow pipe 7, a deep well pump outlet pipe 8, a connecting pipe 11, a water tank overflow pipe 17, a main pipeline 12, a greening water supply pipeline 13, a domestic water supply pipeline 14, the pipeline of the purification workshop 3, the industrial water supply pipe 15, and the emptying pipe 33 are all provided with electric control valves, the deep well pump 6 is equipped with a water level sensor, and the buried integrated water tank 2 has a built-in water level gauge.
[0044] Reference Figure 1 In a preferred embodiment, a check valve 18 and an electrically controlled outlet valve 19 are provided on the deep well pump outlet pipe 8 near the deep well pump 6. A drain pipe is connected to the deep well pump outlet pipe 8 between the check valve 18 and the electrically controlled outlet valve 19. An electrically controlled drain valve 20 is provided on the drain pipe. An electrically controlled valve 21 is provided on the deep well pump outlet pipe 8 near the buried integrated water tank 2.
[0045] Reference Figure 1 In a preferred embodiment, an electrically controlled pool water supply valve 22 and an electrically controlled pool water inlet valve 23 are provided on the connecting pipe 11, an electrically controlled valve 24 is provided on the water tank overflow pipe 17, an electrically controlled valve 3 25 is provided on the main pipe 12, an electrically controlled valve 4 26 is provided on the greening water supply pipe 13, an electrically controlled valve 5 27 is provided on the domestic water supply pipe 14, a purification workshop water inlet valve 28, a purification workshop electric valve 29, and an electric valve inspection valve 30 are provided on the pipe of the purification workshop 3, an electrically controlled valve 6 31 is provided on the industrial water supply pipe 15, and an electrically controlled valve 7 32 is provided on the drain pipe 33.
[0046] In a specific application scenario, the deep well pump 6 draws water to the water reservoir 4. When the industrial water intake is insufficient, water is supplied to the water reservoir 4 (1000m3). Water replenishment can be automatically achieved through the deep well pump 6 and the water level gauge at the water reservoir 4. The deep well pump 6 overflows to the buried integrated water tank 2. When the groundwater level of the deep well pump 6 is high, the groundwater is prevented from overflowing into the nearby river and wasting water resources. The overflow pipe of the deep well pump 6 flows by gravity to the buried integrated water tank 2 (15m3). The core function of the buried integrated water tank 2 is to provide living water to the dormitory and management area, and the secondary core function is to provide water for the greening of the factory area. When the groundwater level at the deep well pump 6 is not high (no overflow occurs), The buried integrated water tank 2 supplies water to the buried integrated water tank 2 through the deep well pump outlet pipe 8, and the buried integrated water tank 2 then provides domestic water supply and greening water supply. When the buried integrated water tank 2 overflows a lot of water, that is, the buried integrated water tank 2 is full of water (the water level in the water tank is detected by a water level gauge), the excess water is discharged to the reservoir 4 through the connecting pipe 11 by detecting the water level. When the reservoir 4 realizes industrial water supply (large water consumption), the main water source of the reservoir 4 is the industrial water intake, which supplies water to the reservoir 4 through the pipeline of the purification workshop 3. When the water volume of the industrial water intake is insufficient or unavailable (sand discharge period), the deep well pump 6 supplies water to the reservoir 4.
[0047] Reference Figure 1 、 Figure 2 and Figure 3 In a preferred embodiment, the purification workshop 3 includes:
[0048] The purification and cleaning module 36 is arranged inside the purification workshop 3;
[0049] The purification blowout prevention module 35 is arranged inside the purification workshop 3.
[0050] Reference Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6 In a preferred embodiment, the purification and cleaning module 36 includes:
[0051] Purification cylinder 3601, with circular holes 1 opened on both sides of purification cylinder 3601, the interiors of the two circular holes 1 are fixedly connected to rotating circular tubes 3606, and the interiors of the two rotating circular tubes 3606 are fixedly connected to the same sealing arc plate 3607;
[0052] The drive motor 3604 is fixedly connected to one side of the clean room 3. The drive end of the drive motor 3604 and the outside of one of the rotating tubes 3606 are fixedly connected to pulleys. The external transmission of the two pulleys is connected to the same belt 2 3623.
[0053] Multiple guide cylinders 3608, with the exteriors of two guide cylinders 3608 on the same side being slidably connected to the same adjustment cross frame 3609;
[0054] An electric drive rod 3613, the driving end of the electric drive rod 3613 is fixedly connected to one side of the adjusting cross frame 3609, and one side of the adjusting cross frame 3609 is fixedly connected to two mounting blocks 3610, one side of the two mounting blocks 3610 is connected to the same support rod 3611 through a bearing, and the opposite side of the two support rods 3611 is fixedly connected to the same mounting frame 3612, and two circular holes 2 are provided on both sides of the mounting frame 3612, and the inside of the two opposite circular holes 2 is connected to the same cleaning brush roller 3616 through a bearing, and one end of the two cleaning brush rollers 3616 is fixedly connected to a pulley, and the external transmission of the two pulleys is connected to the same belt 1 3621, and one side of the mounting frame 3612 is fixedly connected to a hollow water drum frame 3617.
[0055] In the present invention, the purification and cleaning module 36 further includes:
[0056] A return spring 3618 has one side fixedly connected to the adjustment cross frame 3609 and one side of the support rod. A universal motor 3622 is fixedly connected to one side of the mounting frame 3612. The drive end of the universal motor 3622 is connected to one end of one of the cleaning brush rollers 3616 via a coupling.
[0057] Multiple mounting blocks 3619 are fixedly connected to one side of the adjusting cross frame 3609. One side of the two mounting blocks 3619 is connected to a support arm 3620 through a bearing. The opposite side of the two support arms 3620 is fixedly connected to the same suction frame 3624. One side of the hollow water drum frame 3617 is fixedly connected to two connecting pipes 3615.
[0058] In the present invention, the purification and cleaning module 36 further includes:
[0059] The circulation processor 3602 is arranged on one side of the purification workshop 3. The water inlet end of the circulation processor 3602 is connected to the inside of the suction frame 3624 through the water inlet hose 3603, and the water outlet end of the circulation processor 3602 is connected to the inside of the connecting pipe 3615 through the water outlet hose 3614. One side of the support arm 3620 is fixedly connected to the limiting spring 3605, and one side of the limiting spring 3605 is fixedly connected to one side of the adjustment cross frame 3609.
[0060] In a specific application scenario, when the purification cylinder 3601 is continuously filtering groundwater, the electric drive rod 3613 is started, and the electric drive rod 3613 drives the adjustment cross frame 3609 to move outside the guide cylinder 3608. At this time, the cleaning brush roller 3616 on the support rod 3611 is against the outside of the purification cylinder 3601, and the cleaning brush roller 3616 is tightly fitted with the outside of the purification cylinder 3601 through the compression of the return spring 3618. At this time, the universal motor 3622 is started, and the universal motor 3622 drives the belt 1 3621 to rotate the two cleaning brush rollers 3616 to clean the outside of the purification cylinder 3601. At the same time, the drive motor 3604 is started, and the drive motor 3604 drives the belt 2 3623 to rotate the purification cylinder 3601, thereby all-round To clean the outside of the purification cylinder 3601, adjust the horizontal frame 3609 while moving. At this time, the suction frame 3624 moves to the area below the purification cylinder 3601. At this time, the sealing arc plate 3607 blocks the bottom of the purification cylinder 3601, so that the impurities in the area below the purification cylinder 3601 are settled and stand still. At this time, the circulation processor 3602 is started, and the impurities in this area are sucked and collected in the circulation processor 3602 through the suction frame 3624. The filtered water is pumped into the hollow water drum frame 3617 through the water outlet hose 3614. At this time, the cleaning brush roller 3616 and the purification cylinder 3601 are flushed through the hollow water drum frame 3617, so that when the purification cylinder 3601 filters groundwater, it can avoid blockage and aging of the purification cylinder 3601 and improve the filtering effect.
[0061] Reference Figure 1 、 Figure 2 、 Figure 7 and Figure 8 In a preferred embodiment, the purification blowout prevention module 35 includes:
[0062] Partition 3501, partition 3501 is arranged inside the clean room 3, and circular holes three are opened on both sides of the partition 3501. The inside of the two circular holes three are fixedly connected with the delivery pipe 3502 and the metal telescopic tube 3507 respectively. One end of the delivery pipe 3502 and the metal telescopic tube 3507 are fixedly connected with the docking joint 1 3503 and the docking joint 2 3506 respectively. The outside of the docking joint 2 3506 is fixedly connected with a cross bar 3505, and one side of the cross bar 3505 is fixedly connected with two electric telescopic rods 3504.
[0063] In the present invention, an extrusion spring 3508 is fixedly connected to one side of the interior of the docking joint 1 3503 and the docking joint 2 3506, and a sealing ball 3509 is provided on one side of the two extrusion springs 3508. The sealing ball 3509 is located inside the docking joint 1 3503 and the docking joint 2 3506, and a water flow head 3510 is movably connected to the interior of the docking joint 2 3506.
[0064] Reference Figure 1 and Figure 2 In a preferred embodiment, a filter plate 34 is fixedly connected to one side of the interior of the purification workshop 3 .
[0065] In a specific application scenario, when the purification cylinder 3601 is replaced, the electric telescopic rod 3504 is started, and the electric telescopic rod 3504 drives the docking joint 2 3506 to move. At this time, the water head 3510 is separated from the sealing ball 3509 inside the docking joint 1 3503, so that the sealing ball 3509 can quickly seal the docking joint 1 3503 and the docking joint 2 3506 through the reset of the extrusion spring 3508, thereby avoiding the waste of groundwater gushing.
[0066] Working principle: When using,
[0067] The deep well pump 6 draws water to the water reservoir 4. When the industrial water intake is insufficient, water is supplied to the water reservoir 4 (1000m3). Water replenishment can be automatically achieved through the deep well pump 6 and the water level gauge at the water reservoir 4. The deep well pump 6 overflows to the buried integrated water tank 2. When the groundwater level of the deep well pump 6 is high, the groundwater is prevented from overflowing into the nearby river and wasting water resources. The water flows by gravity to the buried integrated water tank 2 (15m3) through the overflow pipe of the deep well pump 6. The core function of the buried integrated water tank 2 is to provide domestic water supply to the dormitory and management area, and the secondary core function is to provide water supply to the greening of the factory area. When the groundwater level at the deep well pump 6 is not high (no overflow occurs), the buried integrated water tank 2 supplies water to the buried integrated water tank 2 through the deep well pump outlet pipe 8, and the buried integrated water tank 2 then provides domestic water supply and Greening water supply, when the buried integrated water tank 2 overflows a lot of water, that is, the buried integrated water tank 2 is full of water (the water level of the water tank is detected by a water level gauge), the excess water is discharged to the water reservoir 4 through the connecting pipe 11 by detecting the water level. The water reservoir 4 realizes industrial water supply (large water consumption). First, the main water source of the water reservoir 4 is the industrial water intake, which supplies water to the water reservoir 4 through the pipeline of the purification workshop 3. When the water volume of the industrial water intake is insufficient or unavailable (sand discharge period), the deep well pump 6 supplies water to the water reservoir 4. When the purification cylinder 3601 inside the purification workshop 3 continues to filter the groundwater, the electric drive rod 3613 is started at this time. The electric drive rod 3613 drives the adjustment cross frame 3609 to move outside the guide cylinder 3608. At this time, the support rod 3611 is on The cleaning brush roller 3616 is against the outside of the purification cylinder 3601, and the cleaning brush roller 3616 is tightly fitted with the outside of the purification cylinder 3601 through the compression of the return spring 3618. At this time, the universal motor 3622 is started, and the universal motor 3622 drives the belt 1 3621 to rotate the two cleaning brush rollers 3616 to clean the outside of the purification cylinder 3601. At the same time, the drive motor 3604 is started, and the drive motor 3604 drives the belt 2 3623 to rotate the purification cylinder 3601, thereby cleaning the outside of the purification cylinder 3601 in all directions. When the adjustment cross frame 3609 is moving, the suction frame 3624 moves to the area below the purification cylinder 3601. At this time, the sealing arc plate 3607 blocks the bottom of the purification cylinder 3601, so that the purification cylinder The impurities in the area below 3601 are left stationary, and the circulation processor 3602 is started at this time. The impurities in this area are absorbed and collected in the circulation processor 3602 through the suction frame 3624, and the filtered water is pumped into the hollow water drum frame 3617 through the water outlet hose 3614. At this time, the cleaning brush roller 3616 and the purification cylinder 3601 are rinsed through the hollow water drum frame 3617. When the purification cylinder 3601 is replaced, the electric telescopic rod 3504 is started at this time, and the electric telescopic rod 3504 drives the docking joint 2 3506 to move. At this time, the water head 3510 is separated from the sealing ball 3509 inside the docking joint 1 3503, so that the sealing ball 3509 quickly blocks the docking joint 1 3503 and the docking joint 2 3506 through the reset of the extrusion spring 3508.
[0068] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A groundwater overflow recovery and comprehensive utilization water supply system, characterized in that: include: A deep well pump room, an underground integrated water tank, a purification workshop, a water reservoir and a water outlet; a deep well pump is provided in the deep well pump room, the deep well pump is connected to a deep well pump overflow pipe and a deep well pump outlet pipe, the deep well pump overflow pipe and the deep well pump outlet pipe are both connected to the buried integrated water tank, a submersible pump and a variable frequency water supply pump group are provided in the buried integrated water tank, the deep well pump outlet pipe is connected to the water reservoir through a connecting pipe 1, the submersible pump is connected to a connecting pipe 1 through a water tank overflow pipe, the variable frequency water supply pump group is connected to a main pipeline, and the main pipeline is connected to a greening water supply Pipes and domestic water supply pipes, the water inlet of the pipes in the purification workshop is connected to the industrial water intake, the water outlet of the pipes in the purification workshop is connected to the water tank, the water tank is provided with an industrial water supply pipe, the water tank is provided with an emptying pipe and a water tank overflow pipe; the deep well pump overflow pipe, deep well pump outlet pipe, connecting pipe 1, water tank overflow pipe, main pipeline, greening water supply pipe, domestic water supply pipe, pipeline of the purification workshop, industrial water supply pipe and emptying pipe are all provided with electric control valves, the deep well pump is equipped with a water level sensor, and the buried integrated water tank has a built-in water level gauge.
2. A groundwater overflow recovery and comprehensive utilization water supply system according to claim 1, characterized in that: A check valve and an electrically controlled outlet valve are provided on the deep well pump outlet pipe near the deep well pump. A drain pipe is connected to the deep well pump outlet pipe between the check valve and the electrically controlled outlet valve. The drain pipe is provided with an electrically controlled drain valve. An electrically controlled valve 1 is provided on the deep well pump outlet pipe near the buried integrated water tank.
3. A groundwater overflow recovery and comprehensive utilization water supply system according to claim 2, characterized in that: The connecting pipe one is provided with an electric-controlled water pool water supply valve and an electric-controlled water pool water inlet valve, the water tank overflow pipe is provided with an electric-controlled valve two, the main pipe is provided with an electric-controlled valve three, the greening water supply pipe is provided with an electric-controlled valve four, the domestic water supply pipe is provided with an electric-controlled valve five, the purification workshop pipe is provided with a purification workshop water inlet valve, a purification workshop electric valve, and an electric valve inspection valve, the industrial water supply pipe is provided with an electric-controlled valve six, and the drain pipe is provided with an electric-controlled valve seven.
4. A groundwater overflow recovery and comprehensive utilization water supply system according to claim 3, characterized in that: The purification workshop includes: The purification and cleaning module is installed inside the purification workshop; The purification and blowout prevention module is installed inside the purification workshop.
5. The groundwater overflow recovery and comprehensive utilization water supply system according to claim 4, characterized in that: The purification and cleaning module includes: Purification cylinder, with circular holes 1 opened on both sides of the purification cylinder, the interiors of the two circular holes 1 are fixedly connected to rotating circular tubes, and the interiors of the two rotating circular tubes are fixedly connected to the same sealing arc plate; The driving motor is fixedly connected to one side of the clean room. The driving end of the driving motor and the outside of one of the rotating tubes are fixedly connected with pulleys. The external transmission of the two pulleys is connected with the same belt 2. Multiple guide cylinders, the exteriors of two guide cylinders on the same side are slidably connected to the same adjustment cross frame; An electric drive rod, a driving end of the electric drive rod is fixedly connected to one side of the adjusting cross frame, one side of the adjusting cross frame is fixedly connected to two mounting blocks 1, one side of the two mounting blocks 1 is connected to the same support rod through a bearing, the opposite sides of the two support rods are fixedly connected to the same mounting frame, two circular holes 2 are provided on both sides of the mounting frame, the inside of the two opposite circular holes 2 is connected to the same cleaning brush roller through a bearing, one end of the two cleaning brush rollers is fixedly connected to a pulley, the external transmission of the two pulleys is connected to the same belt 1, and one side of the mounting frame is fixedly connected to a hollow water drum frame.
6. A groundwater overflow recovery and comprehensive utilization water supply system according to claim 5, characterized in that: The purification and cleaning module also includes: A return spring, one side of the return spring is fixedly connected to one side of the adjustment cross frame and the support rod respectively, one side of the mounting frame is fixedly connected to a universal motor, and the driving end of the universal motor is connected to one end of one of the cleaning brush rollers through a coupling; Multiple mounting blocks 2 are fixedly connected to one side of the adjusting horizontal frame. One side of the two mounting blocks 2 is connected to a support arm through a bearing. The opposite side of the two support arms is fixedly connected to the same suction frame. One side of the hollow water drum frame is fixedly connected to two connecting pipes.
7. A groundwater overflow recovery and comprehensive utilization water supply system according to claim 6, characterized in that: The purification and cleaning module also includes: The circulation processor is arranged on one side of the purification workshop. The water inlet end of the circulation processor is connected to the inside of the absorption frame through the water inlet hose, and the water outlet end of the circulation processor is connected to the inside of the connecting pipe through the water outlet hose. One side of the support arm is fixedly connected to the limit spring, and one side of the limit spring is fixedly connected to one side of the adjustment cross frame.
8. The groundwater overflow recovery and comprehensive utilization water supply system according to claim 7, characterized in that: Purification and blowout prevention modules include: Partition, the partition is arranged inside the purification workshop, and three circular holes are opened on both sides of the partition. The inside of the two circular holes three are fixedly connected with a conveying pipe and a metal telescopic pipe respectively. One end of the conveying pipe and the metal telescopic pipe is fixedly connected with a docking joint one and a docking joint two respectively. The outside of the docking joint two is fixedly connected with a cross bar, and one side of the cross bar is fixedly connected with two electric telescopic rods.
9. The groundwater overflow recovery and comprehensive utilization water supply system according to claim 8, characterized in that: The inner side of the butt joint 1 and the butt joint 2 are both fixedly connected with an extrusion spring, and one side of the two extrusion springs is provided with a sealing ball, the sealing ball is located inside the butt joint 1 and the butt joint 2, and the inner side of the butt joint 2 is movably connected with a water head.
10. The groundwater overflow recovery and comprehensive utilization water supply system according to claim 9, characterized in that: A filter plate is fixedly connected to one side of the interior of the purification workshop.