Intelligent integrated pump station
By introducing a motor-driven scraper to clean sediment and an automated water level control system in the pump station, the blockage problem caused by impurities deposited at the bottom of the pump station water tank was solved, and automated cleaning and efficient operation were achieved.
Patent Information
- Application Number
- CN202510946559.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2025-09-16
AI Technical Summary
After long-term use, impurities are easily deposited at the bottom of the existing pump station water tank, causing blockage problems and affecting the service life of the pump station.
An intelligent integrated pump station was designed. The motor-driven scraper scoops up the bottom sediment to reduce silt and gravel. Combined with the water level monitoring module and automatic control system, it realizes automatic start-up and water level adjustment of the water pump, reducing the entry of impurities into internal components.
It effectively reduces the siltation at the bottom of the cylinder, extends the service life of the pump station, reduces the cleaning frequency, and improves the automation level and operating efficiency of the system.
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Figure CN120649539A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of pump stations, in particular to an intelligent integrated pump station. Background Art
[0002] A pump station is a water conservancy facility that uses water pumps and other equipment to provide potential energy and pressure energy to the fluid, enabling it to be lifted, transported, or irrigated. It has the characteristics of small footprint, fast construction, and high degree of automation. It is widely used in municipal drainage, sewage lifting, agricultural irrigation, flood control and drainage, and other scenarios. It is a key infrastructure to ensure the circulation of the water system.
[0003] An integrated pump station is a high-efficiency water conservancy equipment that integrates water pumps, screens, pipes, control systems and other components in a prefabricated cylinder or box. It has the characteristics of integrated design and integrated installation, and can be installed underground or on the ground. It monitors the working conditions in real time through liquid level sensors, and uses PLC control to realize water pump start and stop, intelligent remote monitoring and fault warning.
[0004] Long-term use of the existing pump station water tank will cause a lot of impurities to be deposited at the bottom, which will cause blockage problems over time and affect the service life of the pump station. To this end, the present invention provides an intelligent integrated pump station. Summary of the Invention
[0005] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background technology is solved.
[0006] The technical solution adopted by the present invention to solve its technical problems is: the intelligent integrated integrated pump station described in the present invention comprises a cylinder; the side wall of the cylinder is fixedly connected to the pump station inlet; the side wall of the cylinder is fixedly connected to the pump station outlet; the top of the cylinder is provided with an inspection port; the inner wall of the cylinder is fixedly connected to the water level monitoring module; the side wall of the cylinder is fixedly connected to the inspection ladder; the middle of the cylinder is fixedly connected to a slide bar; the middle of the slide bar is slidably connected to a motor; the bottom end of the motor is fixedly connected to an electric push rod; the bottom end of the electric push rod is fixedly connected to a pair of first support rods; the bottom end of the first support rod is fixedly connected to a collection box; the bottom end of the collection box is fixedly connected to a scraper; the side wall of the cylinder is provided with a pump water inlet; the top of the pump water inlet is fixed A water pipe is connected; a water pump is fixedly connected to the top of the water pipe; the water pump is connected to the inlet of the pump station; a grille is fixedly connected to the side wall of the cylinder; the grille is fixedly connected to the outlet side of the pump station; by starting the motor to slide, the scraper drives the scraper to shovel up the bottom sediment, thereby reducing the silt and sand at the bottom of the cylinder, reducing the performance degradation caused by accumulation at the bottom of the cylinder, and also reducing the cleaning frequency of the entire cylinder, so that the inside of the cylinder is automatically cleaned after a period of time, and the water level monitoring module detects the water level and sends a signal to the control end. When the water level reaches the set value, the water pump can automatically start pumping water, so that the water inside the cylinder is adjusted according to the actual situation, and the grille blocks the pollutants in the liquid, which can reduce the entry of larger pollutants into the internal components of the cylinder and be entangled or worn.
[0007] Preferably, the side wall of the cylinder is fixed with a first ladder; the side wall of the first ladder is fixed with a pair of first handrails; the side wall of the first ladder is fixed with a pair of fixed blocks; the first handrail passes through the middle of the fixed block; the bottom end of the first ladder is slidably connected to the second ladder; the bottom end of the first handrail is slidably connected to the second handrail; by lowering the second ladder to the bottom of the cylinder and pulling out the second handrail, a temporary support structure can be formed, making maintenance more convenient, and the second handrail is retracted into the first handrail and the second ladder into the first ladder so that the structure is above the liquid level, which can reduce rust or mechanical jamming caused by long-term immersion of the first ladder, resulting in jamming failures caused by rusted components.
[0008] Preferably, a first fixing seat is fixedly connected to the top of the cylinder; the first fixing seat is arranged at a position on one side of the inspection port; a pull rope is fixedly connected to the side wall of the first fixing seat; a tool box is fixedly connected to the bottom end of the pull rope; placing tools in the tool box reduces the need to carry and climb the first escalator during maintenance, reduces the risk of tools slipping during the climbing process, and improves the continuity of the maintenance process.
[0009] Preferably, a pair of support blocks are fixedly connected to the inner wall of the cylinder; the support block is arranged at one side of the grille; an elastic rope is fixed to the side wall of the support block; a cleaning plate is slidably connected to the middle of the grille; the top of the elastic rope is connected to the cleaning plate; the top of the cleaning plate is inclined; the cleaning plate slides back and forth through liquid impact, which can push impurities in the middle of the grille out of the pores, thereby reducing the decrease in water intake due to grille blockage.
[0010] Preferably, a pair of rotating plates are fixedly connected to the inner wall of the cylinder; the rotating plates are arranged at the bottom end of the cylinder and are slidably connected to the scraper; through the contact between the rotating plates and the scraper, the pollutants on the scraper surface are pushed into the collection box, and the residual sediment on the edge of the scraper can be scraped off, reducing some of the sediment staying on the scraper surface to cause secondary accumulation.
[0011] Preferably, a pair of second fixing seats are fixed to the top of the motor; a spring rod is fixed to the side wall of the second fixing seat; a top plate is fixed to the top of the spring rod; the top plate first contacts the side wall of the cylinder to absorb the impact when the motor moves, thereby reducing the spillage of sediment inside the collection box due to the rapid stop of the motor.
[0012] Preferably, a filter layer is slidably connected to the middle of the water inlet of the pump; a handle is fixed to the top of the filter layer; the filter layer can filter suspended matter in the liquid, reduce the long-term accumulation of impurities entering the water pipe and water pump to cause blockage, and increase the service life of the water pump.
[0013] Preferably, a pair of second support rods are fixedly connected to the top of the collection box; a cleaning pad is fixedly connected to the side wall of the second support rod; the cleaning pad is slidably connected to the inner wall of the cylinder; when the cleaning pad moves with the collection box, the edge is close to the inner wall of the cylinder, which can effectively remove algae and other adhesions and reduce corrosion of the inner wall of the cylinder due to long-term adhesion.
[0014] The beneficial effects of the present invention are as follows: 1. The intelligent integrated pump station described in the present invention starts the motor to slide and drive the scraper to shovel up the bottom sediment, thereby reducing the silt and sand at the bottom of the cylinder, reducing the performance degradation caused by accumulation at the bottom of the cylinder, and also reducing the cleaning frequency of the entire cylinder, so that the inside of the cylinder is automatically cleaned over a period of time. The water level monitoring module detects the water level and sends a signal to the control end. When the water level reaches the set value, the water pump can automatically start pumping water, so that the water inside the cylinder is adjusted according to the actual situation. The grille blocks pollutants in the liquid, which can reduce the entry of larger pollutants into the internal components of the cylinder and cause them to be entangled or worn.
[0015] 2. The intelligent integrated pump station described in the present invention can form a temporary support structure by lowering the second escalator to the bottom of the cylinder and pulling out the second handrail, making maintenance more convenient. The second handrail is retracted into the first handrail and the second escalator is retracted into the first escalator to make the structure higher than the liquid level, which can reduce the rust or mechanical jamming caused by long-term immersion of the first escalator, resulting in jamming failures caused by rusted components. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The present invention will be further described below with reference to the accompanying drawings.
[0017] Figure 1 It is a stereogram of the present invention; Figure 2 It is a structural schematic diagram of the sliding rod in the present invention; Figure 3 It is a structural schematic diagram of the scraper in the present invention; Figure 4 It is a structural diagram of the filter box in the present invention; Figure 5 It is a structural schematic diagram of the cleaning plate in the present invention; Figure 6 It is a structural schematic diagram of the transfer plate of the present invention; Figure 7 It is a structural schematic diagram of the first escalator in the present invention; Figure 8 It is a structural schematic diagram of the top plate in the present invention.
[0018] In the figure: 1. Cylinder; 11. Pump station inlet; 12. Pump station outlet; 13. Inspection port; 14. Water level monitoring module; 15. Inspection ladder; 16. Slide rod; 17. Motor; 18. Electric push rod; 19. First support rod; 110. Collection box; 111. Scraper; 112. Pump water inlet; 113. Water pipe; 114. Water pump; 115. Grille; 2. First escalator; 21. First handrail; 22. Fixed block; 23. Second escalator; 24. Second handrail; 3. First fixed seat; 31. Pull rope; 32. Tool box; 4. Support block; 41. Cleaning plate; 42. Elastic rope; 5. Turn plate; 6. Second fixed seat; 61. Spring rod; 62. Top plate; 7. Filter layer; 71. Handle; 8. Second support rod; 81. Cleaning pad. DETAILED DESCRIPTION
[0019] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0020] like Figures 1 to 4As shown, an intelligent integrated pump station according to an embodiment of the present invention includes a cylinder 1; a pump station inlet 11 is fixedly connected to the side wall of the cylinder 1; a pump station outlet 12 is fixedly connected to the side wall of the cylinder 1; an inspection port 13 is opened at the top of the cylinder 1; a water level monitoring module 14 is fixedly connected to the inner wall of the cylinder 1; a maintenance ladder 15 is fixedly connected to the side wall of the cylinder 1; a slide rod 16 is fixedly connected to the middle of the cylinder 1; a motor 17 is slidably connected to the middle of the slide rod 16; an electric push rod 18 is fixedly connected to the bottom end of the motor 17; a pair of first support rods 19 are fixedly connected to the bottom end of the electric push rod 18; the bottom end of the first support rod 19 A collection box 110 is fixedly connected; a scraper 111 is fixedly connected to the bottom of the collection box 110; a pump water inlet 112 is opened on the side wall of the cylinder 1; a water pipe 113 is fixedly connected to the top of the pump water inlet 112; a water pump 114 is fixedly connected to the top of the water pipe 113; the water pump 114 is connected to the pump station inlet 11; a grille 115 is fixedly connected to the side wall of the cylinder 1; the grille 115 is fixedly connected to the side of the pump station outlet 12; when working, the cylinder 1 is installed as a whole to the specified position and the pump station outlet 12 is connected to the pipeline. After the liquid enters from the pump station inlet 11, it can flow into the cylinder 1, and the grille 115 can The water level monitoring module 14 can detect the water level inside the cylinder 1, send the water level signal to the control end, start the water pump 114 to pump the liquid inside the cylinder 1 from the pump inlet 112, flow through the water pipe 113 and be discharged from the pump station inlet 11, open the inspection port 13 and enter the cylinder 1 from the inspection ladder 15 for inspection. When the cylinder 1 has been used for a long time, more sediment will be generated at the bottom. At this time, the motor 17 is started to slide in the middle of the slide rod 16, and the electric push rod 18 is pushed to drive the scraper 111 to contact the bottom of the cylinder 1. As the motor 17 slides on the slide rod 16, the sediment at the bottom of the cylinder 1 can be removed. The objects are shoveled into the collection box 110; by starting the motor 17 to slide and drive the scraper 111 to shovel the bottom sediment, the silt and sand at the bottom of the cylinder 1 are reduced, the performance degradation caused by the accumulation at the bottom of the cylinder 1 is reduced, and the cleaning frequency of the cylinder 1 as a whole is reduced, so that the inside of the cylinder 1 is automatically cleaned after a period of time. The water level monitoring module 14 detects the water level and sends a signal to the control end. When the water level reaches the set value, the water pump 114 can automatically start pumping water, so that the water inside the cylinder 1 is adjusted according to the actual situation. The grid 115 blocks the pollutants in the liquid, which can reduce the large pollutants from entering the internal components of the cylinder 1 and being entangled or worn. like Figure 7As shown, the side wall of the cylinder 1 is fixed with a first escalator 2; the side wall of the first escalator 2 is fixed with a pair of first handrails 21; the side wall of the first escalator 2 is fixed with a pair of fixed blocks 22; the first handrail 21 passes through the middle of the fixed block 22; the bottom end of the first escalator 2 is slidably connected to the second escalator 23; the bottom end of the first handrail 21 is slidably connected to the second handrail 24; when working, when maintaining the inside of the cylinder 1, the second escalator 23 can be lowered to the bottom position of the cylinder 1, and the second handrail 24 can be pulled out from the middle of the first handrail 21 to a position parallel to the second escalator 23, and the fixed block 22 can fix the first handrail 21 The second escalator 23 is retracted into the first escalator 21 and the second escalator 23 is retracted into the first escalator 2 so that the second escalator 23 and the first escalator 21 are higher than the liquid. By lowering the second escalator 23 to the bottom of the cylinder 1 and pulling out the second escalator 24, a temporary support structure can be formed, which makes maintenance more convenient. The second escalator 24 is retracted into the first escalator 21 and the second escalator 23 is retracted into the first escalator 2 so that the structure is higher than the liquid level, which can reduce the rust or mechanical jamming caused by long-term immersion of the first escalator 2, resulting in a jamming failure caused by rust on the components.
[0021] like Figure 7 As shown, a first fixing seat 3 is fixedly connected to the top of the cylinder 1; the first fixing seat 3 is arranged on one side of the inspection port 13; a pull rope 31 is fixedly connected to the side wall of the first fixing seat 3; the bottom end of the pull rope 31 is fixedly connected to a tool box 32; when working, when entering the interior for maintenance from the inspection port 13, the maintenance tools can be placed in the tool box 32 first, and then the pull rope 31 is pulled to lower the tool box 32 to the bottom of the cylinder 1; placing tools in the tool box 32 reduces the need to carry and climb the first escalator 2 during maintenance, reduces the risk of tools slipping during the climbing process, and improves the continuity of the maintenance process.
[0022] like Figure 5 As shown, a pair of support blocks 4 are fixed to the inner wall of the cylinder 1; the support block 4 is arranged at one side of the grille 115; an elastic rope 42 is fixed to the side wall of the support block 4; a cleaning plate 41 is slidably connected to the middle of the grille 115; the top of the elastic rope 42 is connected to the cleaning plate 41; the top of the cleaning plate 41 is inclined; when working, when the liquid enters the interior of the cylinder 1 at the pump station outlet 12, the impact force of the liquid will first contact the cleaning plate 41. After the cleaning plate 41 is impacted by the liquid, it will slide in the middle of the grille 115, pushing the pollutants stuck in the middle of the grille 115, cleaning the grille 115, and the elastic force of the elastic rope 42 can pull the cleaning plate 41 back; through the impact of the liquid, the cleaning plate 41 slides back and forth, and the impurities in the middle of the grille 115 can be pushed out from the pores, reducing the decrease in water intake due to blockage of the grille 115.
[0023] like Figure 6As shown, a pair of rotating plates 5 are fixedly connected to the inner wall of the cylinder 1; the rotating plate 5 is arranged at the bottom end of the cylinder 1 and is slidably connected to the scraper 111; during operation, when the motor 17 pushes the scraper 111 to move, after the scraper 111 moves to a position on one side of the cylinder 1, the rotating plate 5 can contact the scraper 111, and the rotating plate 5 can push the sediment on the surface of the scraper 111 into the inside of the collecting box 110; through the contact between the rotating plate 5 and the scraper 111, the pollutants on the surface of the scraper 111 are pushed into the collecting box 110, and the residual sediment on the edge of the scraper 111 can be scraped off, reducing some sediment staying on the surface of the scraper 111 to cause secondary sedimentation.
[0024] like Figure 8 As shown, a pair of second fixing seats 6 are fixed to the top of the motor 17; a spring rod 61 is fixed to the side wall of the second fixing seat 6; a top plate 62 is fixed to the top of the spring rod 61; when working, when the motor 17 moves from the middle of the slide rod 16 to one end of the cylinder 1, the top plate 62 may first touch the side wall of the cylinder 1, and then the spring rod 61 contracts, which can buffer the movement of the motor 17; by the top plate 62 first contacting the side wall of the cylinder 1, the impact of the motor 17 during movement is absorbed, thereby reducing the spillage of sediment inside the collection box 110 due to the rapid stop of the motor 17.
[0025] like Figure 4 As shown, the middle part of the pump water inlet 112 is slidably connected with a filter layer 7; the top of the filter layer 7 is fixedly connected to a handle 71; when working, the liquid sucked in by the water pump 114 can enter the inside of the pump water inlet 112, and the filter layer 7 filters the liquid inside the cylinder 1. During maintenance, a pulling force can be applied to the handle 71 to pull the filter layer 7 out from the middle of the pump water inlet 112 and replace it; the suspended matter in the liquid can be filtered through the filter layer 7, reducing the long-term accumulation of impurities entering the water pipe 113 and the water pump 114 to cause blockage, thereby increasing the service life of the water pump 114.
[0026] like Figure 3 As shown, a pair of second support rods 8 are fixed to the top of the collecting box 110; a cleaning pad 81 is fixed to the side wall of the second support rod 8; the cleaning pad 81 is slidably connected to the inner wall of the cylinder 1; during operation, when the collecting box 110 moves, the second support rod 8 can move along with the collecting box 110, and the cleaning pad 81 can scrape off the adhesions on the side wall of the cylinder 1; by: when the cleaning pad 81 moves with the collecting box 110, the edge is close to the inner wall of the cylinder 1, which can effectively remove adhesions such as algae and reduce the corrosion of the inner wall of the cylinder 1 due to long-term adhesion.
[0027] During operation, after the cylinder 1 is installed as a whole to the designated position, the pump station outlet 12 is connected to the pipeline. The liquid enters from the pump station inlet 11 and can flow into the cylinder 1. The grille 115 can block the pollutants mixed in the liquid. The water level monitoring module 14 can detect the water level inside the cylinder 1 and send the water level signal to the control end. The water pump 114 is started to draw the liquid inside the cylinder 1 from the pump water inlet 112 to flow through the water pipe 113 and be discharged from the pump station inlet 11. The inspection port 13 is opened and the maintenance ladder 15 is used to enter the cylinder 1 for maintenance. When the cylinder 1 has been used for a long time, more sediment will be generated at the bottom. At this time, the motor 17 is started and slides in the middle of the slide bar 16. The electric push rod 18 drives the scraper 111 to contact the bottom of the cylinder 1. As the motor 17 slides on the slide bar 16, the sediment at the bottom of the cylinder 1 can be shoveled into the collection box 110. When the interior of the cylinder 1 is maintained, the second escalator 23 can be lowered to the bottom of the cylinder 1, and the second handrail 24 can be pulled out from the middle of the first handrail 21 to a position parallel to the second escalator 23. The fixing block 22 can fix the first handrail 21 so that it can be moved to the bottom of the cylinder 1 during maintenance. After the maintenance is completed, the second handrail 24 can be retracted into the first handrail 21, and the second escalator 23 can be retracted into the first escalator 2, so that the second escalator 23 and the first handrail 2 are in a state of contact. 21 is higher than the liquid. When entering the internal maintenance from the inspection port 13, the maintenance tools can be placed in the tool box 32 first, and then the pull rope 31 is pulled to lower the tool box 32 to the bottom of the cylinder 1. When the liquid enters the cylinder 1 at the pump station outlet 12, the impact force of the liquid will first contact the cleaning plate 41. After the cleaning plate 41 is impacted by the liquid, it will slide in the middle of the grille 115, pushing the pollutants stuck in the middle of the grille 115 to clean the grille 115. The elastic force of the elastic rope 42 can pull the cleaning plate 41 back. When the motor 17 pushes the scraper 111 to move, the scraper 111 moves to the side of the cylinder 1, and the rotating plate 5 can contact the scraper 111. The rotating plate 5 can push the sediment on the surface of the scraper 111 into the collection box 110. When the motor 17 moves to one end of the cylinder 1 in the middle of the slide rod 16, the top plate 62 can first touch the side wall of the cylinder 1, and then the spring rod 61 contracts to buffer the movement of the motor 17. The liquid pumped in by the water pump 114 can enter the water inlet 112 of the pump. The filter layer 7 filters the liquid inside the cylinder 1. During maintenance, a pulling force can be applied to the handle 71 to pull the filter layer 7 out from the middle of the water inlet 112 of the pump and replace it. When the collection box 110 moves, the second support rod 8 can move with the collection box 110, and the cleaning pad 81 can scrape off the adhesion on the side wall of the cylinder 1.
[0028] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent integrated pump station, comprising a cylinder (1); characterized in that: The side wall of the cylinder (1) is fixedly connected to a pump station inlet (11); the side wall of the cylinder (1) is fixedly connected to a pump station outlet (12); an inspection port (13) is provided at the top of the cylinder (1); a water level monitoring module (14) is fixedly connected to the inner side wall of the cylinder (1); an inspection ladder (15) is fixedly connected to the side wall of the cylinder (1); a sliding rod (16) is fixedly connected to the middle of the cylinder (1); a motor (17) is slidably connected to the middle of the sliding rod (16); an electric push rod (18) is fixedly connected to the bottom end of the motor (17); a pair of first support rods are fixedly connected to the bottom end of the electric push rod (18) (19); the bottom end of the first support rod (19) is fixedly connected to a collecting box (110); the bottom end of the collecting box (110) is fixedly connected to a scraper (111); a pump water inlet (112) is provided on the side wall of the cylinder (1); a water pipe (113) is fixedly connected to the top end of the pump water inlet (112); a water pump (114) is fixedly connected to the top end of the water pipe (113); the water pump (114) is connected to the pump station inlet (11); a grille (115) is fixedly connected to the side wall of the cylinder (1); the grille (115) is fixedly connected to a position on one side of the pump station outlet (12).
2. The intelligent integrated pump station according to claim 1, characterized in that: The side wall of the cylinder (1) is fixedly connected to a first escalator (2); the side wall of the first escalator (2) is fixedly connected to a pair of first handrails (21); the side wall of the first escalator (2) is fixedly connected to a pair of fixed blocks (22); the first handrail (21) passes through the middle of the fixed block (22); the bottom end of the first escalator (2) is slidably connected to the second escalator (23); the bottom end of the first handrail (21) is slidably connected to the second handrail (24).
3. The intelligent integrated pump station according to claim 2, characterized in that: The top end of the cylinder (1) is fixedly connected to a first fixing seat (3); the first fixing seat (3) is arranged at a side position of the inspection opening (13); a pull rope (31) is fixedly connected to the side wall of the first fixing seat (3); and a tool box (32) is fixedly connected to the bottom end of the pull rope (31).
4. The intelligent integrated pump station according to claim 3, characterized in that: A pair of support blocks (4) are fixedly connected to the inner side wall of the cylinder (1); the support block (4) is arranged at a position on one side of the grille (115); an elastic rope (42) is fixedly connected to the side wall of the support block (4); a cleaning plate (41) is slidably connected to the middle of the grille (115); the top end of the elastic rope (42) is connected to the cleaning plate (41); and the top end of the cleaning plate (41) is arranged to be inclined.
5. The intelligent integrated pump station according to claim 4, characterized in that: A pair of rotating plates (5) are fixedly connected to the inner side wall of the cylinder (1); the rotating plates (5) are arranged at the bottom end of the cylinder (1) and are slidably connected to the scraper (111).
6. The intelligent integrated pump station according to claim 5, characterized in that: A pair of second fixing seats (6) are fixedly connected to the top of the motor (17); a spring rod (61) is fixedly connected to the side wall of the second fixing seat (6); and a top plate (62) is fixedly connected to the top of the spring rod (61).
7. The intelligent integrated pump station according to claim 6, characterized in that: The middle of the pump water inlet (112) is slidably connected to a filter layer (7); the top of the filter layer (7) is fixedly connected to a handle (71).
8. The intelligent integrated pump station according to claim 7, characterized in that: A pair of second support rods (8) are fixedly connected to the top of the collection box (110); a cleaning pad (81) is fixedly connected to the side wall of the second support rod (8); and the cleaning pad (81) is slidably connected to the inner side wall of the cylinder (1).