Environment-friendly intelligent pump station

By introducing sewage filtration, environmental protection and energy saving, and water volume control mechanisms into intelligent pumping stations, the energy saving, environmental protection, and water volume control problems of existing intelligent pumping stations have been solved, achieving the effects of energy saving, environmental protection, sewage treatment, and automatic drainage.

CN224259570UActive Publication Date: 2026-05-19ANHUI KANGYU HYDROPOWER MACHINERY COMPLETE EQUIP CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI KANGYU HYDROPOWER MACHINERY COMPLETE EQUIP CO LTD
Filing Date
2025-05-26
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing intelligent pumping stations suffer from problems such as low precision, insufficient energy efficiency and environmental friendliness, poor sewage treatment effect, and inability to accurately control water volume and level.

Method used

An environmentally friendly intelligent pumping station was designed, which includes a sewage filtration mechanism, an energy-saving mechanism, and a water volume control mechanism. It achieves energy saving, environmental protection, sewage treatment, and water volume control through power supply by solar panels, filtration by activated carbon filters, and water level control by float plates.

Benefits of technology

It achieves energy conservation and environmental protection in intelligent pumping stations, can make full use of solar power, accurately control water level and volume, improve water use efficiency, realize automatic drainage, and expand its application prospects.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224259570U_ABST
    Figure CN224259570U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of intelligent pump stations, in particular to an environment-friendly intelligent pump station which comprises a pump station box, control buttons are installed on the surface of the pump station box, a sewage filtering mechanism is arranged in a filtering box, an environment-friendly energy-saving mechanism is arranged on the inner wall of the pump station box, and a water quantity control mechanism is arranged in a cavity. According to the intelligent pump station, solar energy can be fully utilized to supply power to the first water pump when the intelligent pump station is used, so that the intelligent pump station is more energy-saving and environment-friendly and wider in use prospect when being used, sewage can be independently treated when the intelligent pump station is used, and meanwhile, the purpose that the sewage can be used is achieved; and when the intelligent pump station is used, the water level in the water storage tank can be accurately controlled, automatic drainage is achieved, manual intervention is not needed, and the water utilization efficiency is further improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of intelligent pumping station technology, specifically an environmentally friendly intelligent pumping station. Background Technology

[0002] A pump station is an integrated structure formed by placing water pump units in a pump house. Intelligent pump stations are mainly used to provide hydraulic power in hydraulic systems. Intelligent pump stations generally use hydraulic oil as a medium required by the hydraulic system. The medium that meets the required flow rate and pressure is pumped out by the prime mover for use by the hydraulic system. In order to meet the needs of the market, an environmentally friendly intelligent pump station is needed.

[0003] Existing intelligent pumping stations suffer from very low accuracy, resulting in inaccurate output pressure. They are also not energy-efficient or environmentally friendly, failing to fully utilize solar energy to power the primary pump and limiting their application prospects. Furthermore, their wastewater treatment capabilities are inadequate, preventing them from treating wastewater separately. Additionally, they lack water volume control, hindering precise water level management in the storage tank and preventing automatic drainage, thus requiring manual intervention and reducing water usage efficiency. Utility Model Content

[0004] The purpose of this utility model is to provide an environmentally friendly intelligent pumping station to solve the problems mentioned in the background art, such as insufficient energy efficiency and environmental friendliness, inadequate sewage treatment effect, and inability to control water volume.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an environmentally friendly intelligent pumping station, comprising a pumping station box, control buttons mounted on the surface of the pumping station box, a baffle door provided on the surface of the pumping station box, the baffle door rotating in relation to the surface of the pumping station box, a water storage tank installed inside the pumping station box, a water storage cavity opened inside the water storage tank, a chamber opened inside the water storage tank, a filter box installed inside the pumping station box, a first water pump installed on the inner wall of the pumping station box, a sewage filtration mechanism provided inside the filter box, an environmental protection and energy-saving mechanism provided on the inner wall of the pumping station box, and a water volume control mechanism provided inside the chamber.

[0006] Preferably, the cavity is internally connected to the water storage cavity. A first drain pipe is installed on the surface of the pump station box. One end of the first drain pipe passes through the pump station box and the water storage tank sequentially and extends into the cavity. The input end of the first water pump is electrically connected to the output end of the control button. A second drain pipe is installed on the output end of the first water pump. One end of the second drain pipe passes through the pump station box and extends to the outside of the pump station box. The input end of the first water pump passes through the pump station box and extends to the outside of the pump station box. A water guide pipe is installed on the surface of the second drain pipe. One end of the water guide pipe passes through the filter box and extends into the interior of the filter box. The water guide pipe is internally connected to the second drain pipe. A second water pump is installed on the inner wall of the pump station box. The input terminal is electrically connected to the output terminal of the control button. The input terminal of the second water pump is equipped with a suction pipe, one end of which passes through the filter box and extends into the interior of the filter box. The output terminal of the second water pump is equipped with a discharge pipe, which is fixed to the inner wall of the pump station box. One end of the discharge pipe passes through the water storage tank and extends into the interior of the water storage chamber. The surfaces of the water guide pipe and the second drain pipe are both fitted with a first valve, and the input terminal of the first valve is electrically connected to the output terminal of the control button. The inner wall of the pump station box is equipped with a temperature monitor, and the input terminal of the temperature monitor is electrically connected to the output terminal of the control button. The surface of the first drain pipe is fitted with a second valve, and the input terminal of the second valve is electrically connected to the output terminal of the control button.

[0007] Preferably, the wastewater filtration mechanism comprises an activated carbon filter, a small-pore filter, and a wastewater filtration assembly. The wastewater filtration assembly is located inside the filter box and consists of a large-pore filter and a guide slider. The filter box contains both a small-pore filter and an activated carbon filter, which is positioned below the small-pore filter. The inner wall of the filter box is provided with a large-pore filter for water filtration, positioned above the small-pore filter. The pore size of the small-pore filter is smaller than that of the large-pore filter.

[0008] Preferably, guide sliders are installed on both sides of the large-pore filter screen. The guide sliders slide and engage with the inner wall of the filter box. The filter box has a door on its surface, and the door is detachably connected to the filter box.

[0009] Preferably, the environmentally friendly and energy-saving mechanism consists of a solar panel, mounting clips, wires, a battery, and mounting slots. A solar panel is installed on the surface of the top of the pump station box, and mounting slots are provided on the inner walls of the pump station box. The mounting slots slide and engage with the surface of the solar panel. Mounting clips are installed on the surface of the bottom of the solar panel, and the mounting clips engage with the inner walls of the pump station box.

[0010] Preferably, the inner wall of the pump station box is equipped with a battery for storing electrical energy. The surface of the battery is equipped with wires. One end of the wires passes through the pump station box and is connected to a solar panel. The output end of the solar panel is electrically connected to the input end of the battery through the wires. The output end of the battery is electrically connected to the first water pump.

[0011] Preferably, the water volume control mechanism consists of an alarm plate, an alarm, a float, a float plate, and a tank. An alarm is installed on the inner wall of the cavity, and the input end of the alarm is electrically connected to the output end of the control button. A float plate is provided inside the cavity, and a float is installed on the surface of the top position of the float plate.

[0012] Preferably, an alarm plate is installed on the surface of the float, and the alarm plate cooperates with the alarm. The inner wall of the water tank is provided with a groove, and the groove slides in cooperation with the surface of the float.

[0013] Compared with the prior art, the beneficial effects of this utility model are: the environmentally friendly intelligent pump station not only makes full use of solar energy to power the first water pump, making the intelligent pump station more energy-efficient and environmentally friendly, with a wider range of applications, but also enables the intelligent pump station to treat sewage separately, achieving the goal of making sewage usable. Furthermore, the intelligent pump station can accurately control the water level inside the storage tank, achieving automatic drainage without manual intervention, further improving water use efficiency.

[0014] 1. By incorporating an energy-saving and environmentally friendly mechanism, after the user places the solar panel on the surface of the pump station box, the solar panel automatically engages with the mounting clips on the inner wall of the pump station box. The mounting groove guides the solar panel during installation, ensuring its stable installation on the surface of the pump station box. The solar panel is converted into electrical energy by a photovoltaic controller and stored inside a battery. The battery then powers the first water pump. Specifically, the solar panel is connected to the battery via wires and a charging controller. The charging controller adjusts the output voltage and current of the solar panel, converting them into suitable charging voltage and current for the battery. The battery directly provides power to the first water pump, achieving the energy-saving and environmentally friendly functions of the intelligent pump station. This allows the intelligent pump station to fully utilize solar energy to power the first water pump, making it more energy-efficient and environmentally friendly, with a wider range of applications.

[0015] 2. By incorporating a wastewater filtration mechanism, large particles in the wastewater are filtered by a large-pore filter screen. Subsequently, the wastewater falls onto the surface of a small-pore filter screen, where smaller particles are filtered. When the wastewater falls onto the surface of an activated carbon filter screen, tiny impurities are filtered. When the user needs to clean the impurities on the surface of the large-pore filter screen, the door is removed from the surface of the filter box, and the large-pore filter screen is pulled. This causes the large-pore filter screen to move the guide slider against the inner wall of the filter box, thereby pulling the large-pore filter screen out of the filter box and cleaning the large-volume impurities on its surface. This achieves the wastewater treatment function of the intelligent pump station, enabling it to treat wastewater separately while also making the wastewater usable.

[0016] 3. By incorporating a water volume control mechanism, when water enters the storage chamber, it also flows into the interior of the chamber. As the water volume increases, the float and float rod move upwards. The float is guided by the tank. When the water volume in the chamber becomes excessive, the float rod moves the alarm contact plate to contact the surface of the alarm device. The alarm then sounds and sends a signal to the control button. Upon receiving the signal, the control button automatically opens the second valve on the surface of the first drain pipe, allowing the water in the chamber to be automatically discharged from the storage tank through the first drain pipe. This achieves the function of intelligent pump station water volume control, enabling precise control of the water level in the storage tank and automatic drainage without manual intervention, further improving water use efficiency. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0018] Figure 2 This is a schematic diagram of the front cross-sectional structure of this utility model;

[0019] Figure 3 For the present utility model Figure 2 Enlarged structural diagram of the wastewater filtration mechanism;

[0020] Figure 4 For the present utility model Figure 2 An enlarged structural diagram of the China Environmental Protection and Energy Conservation Organization;

[0021] Figure 5 This is an enlarged structural schematic diagram of the water volume control mechanism of this utility model.

[0022] In the diagram: 1. Pump station box; 101. Control button; 102. Baffle; 103. Water storage tank; 104. First water pump; 105. Water guide pipe; 106. Filter box; 107. Suction pipe; 108. Second water pump; 109. Temperature monitor; 110. Water outlet pipe; 111. Cavity; 112. Water storage chamber; 113. First drain pipe; 114. Second drain pipe; 115. Second valve; 2. Sewage filtration mechanism; 21. Activated carbon filter screen; 22. Small-pore filter screen; 23. Sewage filtration group; 231. Large-pore filter screen; 232. Guide slider; 3. Environmental protection and energy saving mechanism; 31. Solar panel; 32. Mounting clip; 33. Wire; 34. Battery; 35. Mounting slot; 4. Water volume control mechanism; 41. Alarm touch plate; 42. Alarm; 43. Float; 44. Float plate; 45. Tank. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0024] The structure of an environmentally friendly intelligent pumping station provided by this utility model is as follows: Figure 1 and Figure 2As shown, the system includes a pump station box 1. A control button 101 (e.g., LA series) is mounted on the surface of the pump station box 1. A baffle 102 is provided on the surface of the pump station box 1, and the baffle 102 rotates with the surface of the pump station box 1. A water storage tank 103 is installed inside the pump station box 1. A water storage cavity 112 is formed inside the water storage tank 103. A cavity 111 is formed inside the water storage tank 103, and the cavity 111 communicates with the interior of the water storage cavity 112. A first drain pipe 113 is mounted on the surface of the pump station box 1. One end of the first drain pipe 113 passes through the pump station box 1 and the water storage tank 103 and extends to the cavity 111. Inside the pump station box 1, a filter box 106 is installed. A first water pump 104, which can be an SLG series pump, is installed on the inner wall of the pump station box 1. The input end of the first water pump 104 is electrically connected to the output end of the control button 101. A second drain pipe 114 is installed on the output end of the first water pump 104. One end of the second drain pipe 114 passes through the pump station box 1 and extends to the outside of the pump station box 1. The input end of the first water pump 104 passes through the pump station box 1 and extends to the outside of the pump station box 1. A water guide pipe 105 is installed on the surface of the second drain pipe 114. One end of the water guide pipe 105 passes through the filter box 106 and extends to the filter box. Inside the pump station box 106, the water guide pipe 105 is connected to the inside of the second drain pipe 114. A second water pump 108 is installed on the inner wall of the pump station box 1. The model of the second water pump 108 can be SLG series. The input end of the second water pump 108 is electrically connected to the output end of the control button 101. A suction pipe 107 is installed on the input end of the second water pump 108. One end of the suction pipe 107 passes through the filter box 106 and extends into the interior of the filter box 106. An outlet pipe 110 is installed on the output end of the second water pump 108. The outlet pipe 110 is fixed to the inner wall of the pump station box 1. One end of the outlet pipe 110 passes through the water storage tank 103 and extends into the water storage chamber 11. Inside pump station 1, a first valve is fitted on the surface of both the water guide pipe 105 and the second drain pipe 114. The first valve can be of the TM series, and its input end is electrically connected to the output end of the control button 101. A temperature monitor 109 is installed on the inner wall of pump station 1. The temperature monitor 109 can be of the SDN series, and its input end is electrically connected to the output end of the control button 101. A second valve 115 is fitted on the surface of the first drain pipe 113. The second valve 115 can be of the TM series, and its input end is electrically connected to the output end of the control button 101.

[0025] Furthermore, such as Figure 2 and Figure 3As shown, a wastewater filtration mechanism 2 is installed inside the filter box 106. The wastewater filtration mechanism 2 consists of an activated carbon filter 21, a small-pore filter 22, and a wastewater filtration assembly 23. The wastewater filtration assembly 23 is located inside the filter box 106 and consists of a large-pore filter 231 and a guide slider 232. The small-pore filter 22 and the activated carbon filter 21 are installed inside the filter box 106, with the activated carbon filter 21 located below the small-pore filter 22. The inner wall of the filter box 106 is provided with... A large-pore filter screen 231 is provided for water filtration. The large-pore filter screen 231 is located above the small-pore filter screen 22. The pore size of the small-pore filter screen 22 is smaller than that of the large-pore filter screen 231. Guide sliders 232 are installed on both sides of the large-pore filter screen 231. The guide sliders 232 slide and engage with the inner wall of the filter box 106. The filter box 106 has a door on its surface, and the door is detachably connected to the filter box 106.

[0026] In practice, wastewater enters the filter box 106 through the suction pipe 107 and automatically falls onto the surface of the large-pore filter screen 231 under gravity. The large-pore filter screen 231 filters out large particles of impurities in the wastewater. Subsequently, the wastewater falls onto the surface of the small-pore filter screen 22, where it filters out small pieces of impurities. When the wastewater falls onto the surface of the activated carbon filter screen 21, it filters out tiny impurities. When the user needs to clean the impurities on the surface of the large-pore filter screen 231, the door is removed from the surface of the filter box 106, and the large-pore filter screen 231 is pulled. This causes the large-pore filter screen 231 to slide along the inner wall of the filter box 106, thereby pulling the large-pore filter screen 231 out of the filter box 106 and cleaning out the large-volume impurities on its surface, thus realizing the function of intelligent pump station wastewater treatment.

[0027] Furthermore, such as Figure 2 and Figure 4As shown, the inner wall of the pump station box 1 is equipped with an energy-saving and environmentally friendly mechanism 3. The energy-saving and environmentally friendly mechanism 3 consists of a solar panel 31, mounting clips 32, wires 33, a storage battery 34, and mounting slots 35. The surface of the top position of the pump station box 1 is equipped with a solar panel 31. The inner wall of the pump station box 1 is provided with mounting slots 35, which slide and cooperate with the surface of the solar panel 31. The surface of the bottom position of the solar panel 31 is equipped with mounting clips 32, which are engaged with the inner wall of the pump station box 1. The inner wall of the pump station box 1 is equipped with a storage battery 34 for storing electrical energy. The surface of the storage battery 34 is equipped with wires 33. One end of the wires 33 passes through the pump station box 1 and is connected to the solar panel 31. The output end of the solar panel 31 is electrically connected to the input end of the storage battery 34 through the wires 33. The output end of the storage battery 34 is electrically connected to the first water pump 104.

[0028] During implementation, after the user places the solar panel 31 on the surface of the pump station box 1, the solar panel 31 drives the mounting clip 32 to automatically snap into the inner wall of the pump station box 1. Under the action of the mounting groove 35, the solar panel 31 is guided during installation, thereby stably installing the solar panel 31 on the surface of the pump station box 1. The solar panel 31 is converted into electrical energy by the photovoltaic controller and stored inside the battery 34. The battery 34 provides power to drive the first water pump 104. Specifically, the solar panel 31 is connected to the battery 34 through the wire 33 and the charging controller. The charging controller adjusts the output voltage and current of the solar panel 31 and converts them into a charging voltage and current suitable for the battery 34. The battery 34 directly provides power to the first water pump 104 to achieve the energy-saving and environmentally friendly function of the intelligent pump station.

[0029] Furthermore, such as Figure 2 and Figure 5 As shown, the interior of the cavity 111 is equipped with a water volume control mechanism 4, which consists of an alarm 41, an alarm 42, a float 43, a float plate 44, and a tank 45. The inner wall of the cavity 111 is equipped with an alarm 42, which can be a TB series model. The input end of the alarm 42 is electrically connected to the output end of the control button 101. The interior of the cavity 111 is equipped with a float plate 44, and a float 43 is installed on the surface of the top position of the float plate 44. An alarm 41 is installed on the surface of the float 43. The alarm 41 and the alarm 42 cooperate with each other. The inner wall of the water storage tank 103 is provided with a tank 45, and the surface of the tank 45 and the surface of the float plate 44 slide against each other.

[0030] During implementation, when water enters the water storage chamber 112, it also flows into the chamber 111. At this time, the float plate 44 and float rod 43 move upward as the water volume inside the chamber 111 increases. When the float plate 44 moves, it is guided by the tank 45. When there is too much water inside the chamber 111, the float rod 43 drives the alarm plate 41 to contact the surface of the alarm 42. At this time, the alarm 42 sounds an alarm and sends a signal to the control button 101. After receiving the signal, the control button 101 automatically controls the second valve 115 on the surface of the first drain pipe 113 to open, so that the water inside the chamber 111 is automatically discharged from the water storage tank 103 through the first drain pipe 113. After drainage, the alarm plate 41 will not contact the surface of the alarm 42, and the control button 101 automatically controls the second valve 115 on the surface of the first drain pipe 113 to close, so as to realize the function of intelligent pump station to control water volume.

[0031] Working Principle: In use, the pump station box 1 is first placed in the designated location. After the user places the solar panel 31 on the surface of the pump station box 1, the solar panel 31 automatically engages with the mounting clip 32, which in turn engages with the inner wall of the pump station box 1. The mounting groove 35 guides the solar panel 31 during installation, ensuring its stable installation on the surface of the pump station box 1. The solar panel 31 is converted into electrical energy by the photovoltaic controller and stored inside the battery 34. The battery 34 then provides power to the first water pump 104. Specifically, the solar panel 31 is connected to the battery 34 via wires 33 and a charging controller. The charging controller adjusts the output voltage and current of the solar panel 31, converting them into a suitable charging voltage and current for the battery 34. The battery 34 directly provides power to the first water pump 104, achieving the energy-saving and environmentally friendly function of the intelligent pump station. This allows the intelligent pump station to fully utilize solar energy to power the first water pump 104, making it more energy-efficient and environmentally friendly, with a wider range of applications.

[0032] Subsequently, if the water quality is relatively clean and does not require filtration, the first water pump 104 draws in water and discharges it directly through the second drain pipe 114. If the water needs to be filtered, the first water pump 104 pumps the wastewater into the suction pipe 107. After the wastewater enters the filter box 106 through the suction pipe 107, it automatically falls onto the surface of the large-pore filter screen 231 under the action of gravity. The large-pore filter screen 231 filters out large particles of impurities in the wastewater. Then, the wastewater falls onto the surface of the small-pore filter screen 22, where it filters out small pieces of impurities. When the wastewater falls onto the surface of the activated carbon filter screen 21, it is filtered out by the activated carbon filter screen 21. The system filters out tiny impurities in wastewater. When the user needs to clean the impurities on the surface of the large-pore filter screen 231, the door is removed from the surface of the filter box 106, and then the large-pore filter screen 231 is pulled. This causes the large-pore filter screen 231 to slide along the inner wall of the filter box 106, thereby pulling the large-pore filter screen 231 out of the filter box 106 and cleaning the large-volume impurities on the surface of the large-pore filter screen 231. Cleaning the surface of the large-pore filter screen 231 only requires periodic operation to realize the wastewater treatment function of the intelligent pump station. This allows the intelligent pump station to treat wastewater separately during use, while also achieving the goal of making the wastewater usable.

[0033] Subsequently, control button 101 controls the second water pump 108 to operate. Under the action of the second water pump 108, the water filtered inside the filter box 106 is pumped through the suction pipe 107 to the inside of the outlet pipe 110, and then introduced into the inside of the water storage chamber 112 through the outlet pipe 110. The water is stored inside the water storage chamber 112. Since the water storage chamber 112 and the cavity 111 are connected, when water enters the inside of the water storage chamber 112, water will also flow into the inside of the cavity 111. At this time, the float plate 44 and the float rod 43 move upward as the water volume inside the cavity 111 increases. When the float plate 44 moves, it is guided by the tank body 45. When the water volume inside the cavity 111 is too high, the float rod 43 drives the alarm plate 41 to move to contact the surface of the alarm 42. At this time, the alarm 42 sounds an alarm and sends a signal to the control button 101 to control the button. After receiving the signal, button 101 automatically controls the second valve 115 on the surface of the first drain pipe 113 to open, so that the water inside the cavity 111 is automatically discharged into the water storage tank 103 through the first drain pipe 113. After drainage, the touch plate 41 will not contact the surface of the alarm 42, and the control button 101 automatically controls the second valve 115 on the surface of the first drain pipe 113 to close, so as to realize the function of intelligent pump station to control water volume. This enables the intelligent pump station to accurately control the water level inside the water storage tank 103 during use, realize automatic drainage without manual intervention, and further improve water use efficiency. The connection between the alarm 42, control button 101 and valve is existing technology and will not be described in detail here. Under the action of temperature monitor 109, the temperature inside the pump station box 1 is monitored, making the pump station box 1 safer during use, and finally completing the use of the intelligent pump station.

[0034] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. An environmentally friendly intelligent pumping station, comprising a pumping station box (1), characterized in that: The surface of the pump station box (1) is equipped with a control button (101), and the surface of the pump station box (1) is provided with a baffle (102). The baffle (102) rotates with the surface of the pump station box (1). The pump station box (1) is equipped with a water storage tank (103). The water storage tank (103) has a water storage cavity (112) inside. The water storage tank (103) has a cavity (111) inside. The pump station box (1) is equipped with a filter box (106). The inner wall of the pump station box (1) is equipped with a first water pump (104). The filter box (106) is equipped with a sewage filtration mechanism (2). The inner wall of the pump station box (1) is equipped with an environmental protection and energy-saving mechanism (3). The cavity (111) is equipped with a water volume control mechanism (4).

2. The environmentally friendly intelligent pumping station according to claim 1, characterized in that: The cavity (111) is connected to the interior of the water storage cavity (112). A first drain pipe (113) is installed on the surface of the pump station box (1). One end of the first drain pipe (113) passes through the pump station box (1) and the water storage tank (103) and extends into the interior of the cavity (111). The input end of the first water pump (104) is electrically connected to the output end of the control button (101). A second drain pipe (114) is installed at the output end of the first water pump (104). One end of the second drain pipe (114) passes through the pump station box (111). The first water pump (104) extends to the outside of the pump station box (1), the input end of the first water pump (104) passes through the pump station box (1) and extends to the outside of the pump station box (1), a water guide pipe (105) is installed on the surface of the second drain pipe (114), one end of the water guide pipe (105) passes through the filter box (106) and extends into the interior of the filter box (106), the water guide pipe (105) is connected to the interior of the second drain pipe (114), a second water pump (108) is installed on the inner wall of the pump station box (1), the second water pump (108) extends to the outside of the pump station box (1) and extends to the outside of the pump station box (1), the input end of the second water pump (108) extends through the filter box (106) and extends into the interior of the filter box (106), the water guide pipe (108) is connected to the interior of the second drain pipe (114), a second water pump (108) is installed on the inner wall of the pump station box (1), the second water pump (108) extends through the filter box (106) and extends to the outside of the pump station box (1), the input end of the first water pump (108) extends through the filter box (106) and extends into the interior of the filter box (106), the input end of the first water pump (108) extends through ... The input terminal of the second water pump (108) is electrically connected to the output terminal of the control button (101). A suction pipe (107) is installed at the input terminal of the second water pump (108). One end of the suction pipe (107) passes through the filter box (106) and extends into the interior of the filter box (106). A discharge pipe (110) is installed at the output terminal of the second water pump (108). The discharge pipe (110) is fixed to the inner wall of the pump station box (1). One end of the discharge pipe (110) passes through the water storage tank (103) and extends into the interior of the water storage chamber (112). The surface of the water guide pipe (105) and the second drain pipe (114) are both fitted with a first valve, and the input end of the first valve is electrically connected to the output end of the control button (101). The inner wall of the pump station box (1) is equipped with a temperature monitor (109), and the input end of the temperature monitor (109) is electrically connected to the output end of the control button (101). The surface of the first drain pipe (113) is fitted with a second valve (115), and the input end of the second valve (115) is electrically connected to the output end of the control button (101).

3. The environmentally friendly intelligent pumping station according to claim 1, characterized in that: The wastewater filtration mechanism (2) consists of an activated carbon filter (21), a small-pore filter (22), and a wastewater filtration group (23). The wastewater filtration group (23) is located inside the filter box (106). The wastewater filtration group (23) consists of a large-pore filter (231) and a guide slider (232). The filter box (106) is equipped with a small-pore filter (22) and an activated carbon filter (21). The activated carbon filter (21) is located below the small-pore filter (22). The inner wall of the filter box (106) is equipped with a large-pore filter (231) for water filtration. The large-pore filter (231) is located above the small-pore filter (22). The pore size of the small-pore filter (22) is smaller than the pore size of the large-pore filter (231).

4. The environmentally friendly intelligent pumping station according to claim 3, characterized in that: Guide sliders (232) are installed on both sides of the large-pore filter screen (231). The guide sliders (232) slide against the inner wall of the filter box (106). The guide sliders (232) are snapped into the inner wall of the filter box (106). The surface of the filter box (106) is provided with a door, and the door is detachably connected to the filter box (106).

5. The environmentally friendly intelligent pumping station according to claim 1, characterized in that: The environmental protection and energy-saving mechanism (3) consists of a solar panel (31), mounting clips (32), wires (33), a battery (34), and mounting slots (35). The surface of the top of the pump station box (1) is provided with a solar panel (31). The inner wall of the pump station box (1) is provided with mounting slots (35). The mounting slots (35) and the surface of the solar panel (31) slide against each other. The surface of the bottom of the solar panel (31) is provided with mounting clips (32). The mounting clips (32) are engaged with the inner wall of the pump station box (1).

6. The environmentally friendly intelligent pumping station according to claim 1, characterized in that: The inner wall of the pump station box (1) is equipped with a storage battery (34) for storing electrical energy. A wire (33) is installed on the surface of the storage battery (34). One end of the wire (33) passes through the pump station box (1) and is connected to the solar panel (31). The output end of the solar panel (31) is electrically connected to the input end of the storage battery (34) through the wire (33). The output end of the storage battery (34) is electrically connected to the first water pump (104).

7. The environmentally friendly intelligent pumping station according to claim 1, characterized in that: The water volume control mechanism (4) consists of an alarm plate (41), an alarm (42), a float (43), a float plate (44), and a tank (45). The inner wall of the cavity (111) is equipped with an alarm (42). The input end of the alarm (42) is electrically connected to the output end of the control button (101). The inside of the cavity (111) is provided with a float plate (44), and a float (43) is installed on the surface of the top position of the float plate (44).

8. An environmentally friendly intelligent pumping station according to claim 7, characterized in that: The surface of the float (43) is equipped with an alarm plate (41), which cooperates with the alarm (42). The inner wall of the water tank (103) is provided with a groove (45), which slides with the surface of the float (44).