Fabricated water supply plant structure and manufacturing method thereof
By introducing lifting position control and self-cleaning filtration mechanisms into the water supply plant structure, the problem of blockage caused by fixed water intake positions was solved, and automated water intake position adjustment and filtration cleaning were achieved, thus improving water supply efficiency.
Patent Information
- Application Number
- CN202511919051.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-18
- Publication Date
- 2026-02-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The fixed location of the water intake structure in existing water supply plants makes it easy for excessive silt or debris to be drawn in when the water level changes, which can easily clog the filtration equipment and require frequent manual cleaning, resulting in low efficiency.
An assemblable water supply plant structure was designed, which includes a lifting position control mechanism, a rotation control mechanism, and a self-cleaning filtration mechanism. The structure uses a motor to drive the adjustment of the water intake position and the automatic cleaning of the filtration device, thereby avoiding blockage and improving water intake efficiency.
It enables dynamic adjustment of the water intake position, reduces clogging of the filtration equipment, reduces the frequency of manual cleaning, and improves water intake efficiency and automation.
Smart Images

Figure CN121473427A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of water supply plant structures, in particular to an assembly type water supply plant structure and a manufacturing method thereof. BACKGROUND
[0002] Water plants are important infrastructure for ensuring the water supply for residents' life and industrial production, and a water supply plant is mainly responsible for treating raw water into tap water meeting the drinking water standard and supplying it to residents and enterprises; wherein, a water intake structure of the water supply plant is an important facility for obtaining raw water from a water source (such as a river, a lake, a reservoir or underground water), and the water intake structure is built at a location of a river, a lake or a reservoir, etc., since the water intake structure after being built has a fixed water pumping position, and the water level will change high and low due to external factors, if the position is too low, there will be more silt and sludge, and if the position is too high, there will be more surface debris, which will cause trouble in later filtration, when water is taken, it is mainly filtered through a grid and a filter screen, which will be easily blocked after being used for a period of time, and the grid and the filter screen are underwater, so it is troublesome and inconvenient to clean them. SUMMARY
[0003] The present application relates to an assembly type water supply plant structure and a manufacturing method thereof, which has a lifting position control mechanism, can control the position assembly adjustment of a water intake port, control the water intake port to be at an intermediate position of a water source, avoid the problems of too much silt suction when the position is too low and too much debris suction when the position is too high, and reduce the subsequent filtration processing time; a rotary control mechanism and a position fixing support mechanism, the rotary control mechanism can control the sliding of a plug rod at any position to provide a limit support for a self-cleaning filtration mechanism, ensure that the assembly position of the self-cleaning filtration mechanism will not move, and facilitate subsequent water taking; the self-cleaning filtration mechanism can filter and clean larger sludge and impurities in water, can also automatically dredge filter holes to avoid filter hole blockage, improve water taking efficiency, and do not need manual underwater cleaning, which is time-saving and convenient.
[0004] The present application provides an assembly type water supply plant structure and a manufacturing method thereof, which specifically comprises: a support mechanism, a rotary control mechanism, a lifting position control mechanism, a water conveying assembly, a position fixing support mechanism and a self-cleaning filtration mechanism. The support mechanism is a whole rectangular structure; the rotary control mechanism is installed inside the support mechanism; the lifting position control mechanism is installed inside the support mechanism; the water conveying assembly is inserted into the inside of the support mechanism; the position fixing support mechanism is slidingly installed inside the support mechanism and connected with the lifting position control mechanism; the self-cleaning filtration mechanism is installed below the position fixing support mechanism and connected with the water conveying assembly; the lifting position control mechanism comprises: a fixed support plate and a control screw; the fixed support plate is a whole rectangular structure with an internal hollow; the control screw is rotationally installed inside the fixed support plate, and a motor is arranged at the top of the control screw.
[0005] Preferably, the support mechanism includes: a casting column, a support hole, a platform support plate, and an inner support frame; the casting column is a cuboid structure with an internal groove, and one side of the fixed support plate is fixedly connected to the casting column; the support hole is opened on both sides of the inner wall of the casting column; the platform support plate is fixedly installed on the top of the casting column; the inner support frame is a square frame structure and is fixedly installed on the inner wall of the casting column.
[0006] Preferably, the rotation control mechanism includes: a support platform, a through slot, a control component, a drive rod, and a bottom rotation support column; the support platform is a cuboid structure and is installed above the inner support frame; the through slot is formed on the surface of the support platform; the control component is installed inside the support platform; the drive rod is a hexagonal structure, which slides through the control component and inserts into the casting support column; the bottom rotation support column is a cylindrical structure with a hexagonal groove inside, and the bottom of the bottom rotation support column is rotatably connected to the casting support column, with the bottom of the drive rod slidingly inserted into the groove of the bottom rotation support column.
[0007] Preferably, the control assembly further includes: a rotating column, gear A, a drive chain, a control rod, gear B, a cover plate, and a motor A; the rotating column is rotatably connected to the support platform; gear A is fixedly installed on the surface of the rotating column; the inner side of the drive chain meshes with gear A; the bottom of the control rod is rotatably inserted into the groove of the support platform; gear B is fixedly installed on the surface of the control rod, and gear B meshes with the drive chain, enabling the control rod to rotate via the drive chain; the bottom of the cover plate is provided with a threaded hole, and the cover plate is rotatably installed on the top of the rotating column, serving as an auxiliary cover; motor A is installed above the support platform and connected to the control rod.
[0008] Preferably, the lifting position control mechanism further includes: a lifting plate, an auxiliary support rod, and a traction steel rope; the lifting plate is a cuboid structure, the lifting plate is slidably installed inside the slide groove of the fixed support plate and threadedly connected to the control screw, the rotation of the control screw can control the lifting plate to move up and down; one side of the auxiliary support rod is fixedly connected to the fixed support plate; two sets of traction steel ropes are provided, the traction steel ropes slide through the auxiliary support rod and are inserted into the fixed support plate, and the traction steel ropes are fixedly connected to the lifting plate.
[0009] Preferably, the water supply assembly includes: a water pump, a connecting pipe, a delivery pipe, a rubber sealing ring, and a connecting pipe; the water pump is installed above the platform support plate; one end of the connecting pipe is fixedly connected to the water pump, and the other end of the connecting pipe is fixedly inserted into the interior of the casting support; one side of the delivery pipe is connected to the water pump, and the other side of the delivery pipe is connected to the water supply plant; the rubber sealing ring is fixedly installed on the lower surface of the connecting pipe, and the rubber sealing ring can play an auxiliary sealing role; the connecting pipe is slidably connected to the connecting pipe.
[0010] Preferably, the position fixing support mechanism includes: a support plate, a rotary linkage assembly, a fixed support column, an insert rod, a push plate, and a threaded control rod; the support plate is a hollow cuboid structure, with its surface fixedly connected to the traction steel rope, and the surface of the connecting pipe fixedly connected to the support plate; the rotary linkage assembly is installed inside the support plate; the fixed support column is a cylindrical structure with a square groove on its surface, and is fixedly connected to the support plate; one side of the insert rod is slidably inserted into the fixed support column, and the other side of the insert rod is inserted into the support insertion hole to provide auxiliary support for the position fixing support mechanism; the number of push plates is set to two sets, with the push plates slidably installed inside the square groove of the fixed support column and fixedly connected to the other end of the insert rod; one side of the threaded control rod is rotatably connected to the support plate, and the surface of the threaded control rod is threadedly connected to the push plate, and the rotation of the threaded control rod can control the sliding of the push plate.
[0011] Preferably, the rotary linkage assembly further includes: a rotating rod, a drive slot, gear C, a linkage rod, gear D, a bevel gear assembly, an inner support plate, a drive rotating rod, and a worm gear connector; the rotating rod has a cylindrical structure and is rotatably connected to the support plate; the drive slot is opened inside the rotating rod, and the drive rod slides through the drive slot; gear C is fixedly installed on the surface of the rotating rod; the linkage rod is rotatably installed inside the support plate; gear D is fixedly installed on the surface of the linkage rod and meshes with gear C; one side of the bevel gear assembly is connected to the linkage rod; the top of the inner support plate is fixedly connected to the support plate; the surface of the drive rotating rod is provided with two sets of threads in opposite directions, and the drive rotating rod is rotatably connected to the support plate and the inner support plate; one side of the drive rotating rod is rotatably connected to the linkage rod through the bevel gear assembly; the other end of the threaded control rod is rotatably inserted into the inner support plate and is rotatably connected to the drive rotating rod through the worm gear connector.
[0012] Preferably, the self-cleaning filtration mechanism includes: a base box, filter holes, a sliding plate, a support frame, and a cleaning rod; the base box has a square structure, with its top fixedly connected to the support plate, and the base box fixedly connected to the connecting pipe; the filter holes are opened on the surface of the base box, and can be used to filter large debris in the water; the sliding plate is slidably installed inside the inner support plate and threadedly connected to the driving rod, and the rotation of the driving rod can control the two sets of sliding plates to slide inward or outward simultaneously; one side of the support frame is fixedly connected to the sliding plate; the cleaning rod is fixedly installed on one side of the support frame, and the cleaning rod can clean the filter holes on the surface of the base box.
[0013] Preferably, the prefabricated water supply plant structure and its assembly method are characterized by the following steps: S1, constructing a casting support column at a suitable location in a river, lake, or reservoir; fixing a platform support plate at the top of the casting support column; opening support insertion holes on both sides of the inner side of the casting support column; fixing a lifting position control mechanism on one side of the casting support column; and installing a traction steel rope inside the lifting position control mechanism, with one end of the traction steel rope slidably inserted into the fixed support plate and fixedly connected to the lifting plate; S2, fixing the other end of the traction steel rope to a position-fixed support mechanism and a self-cleaning filter mechanism slidably installed inside the casting support column; and inserting a traction steel rope into the bottom of the rotation control mechanism. Inside the cast-in-place support, the driving rod passes through the hexagonal groove of the rotating column, and also passes through the drive through groove and inserts into the bottom of the rotating support. A cover plate is installed on the top of the rotating column to limit and block the driving rod. S3: The water pump is installed on the top of the platform support plate. One end of the connecting pipe is connected to the self-cleaning filter mechanism, and the bottom of the connecting pipe at the water pump end is inserted into the connecting pipe to complete the connection. When there is a significant change in the external water level, motor A can be started. Motor A drives the main control rod to rotate, and the main control rod further controls the rotation of the rotating column through the drive chain. Because the driving rod slides through the rotating column and rotating rod, the rotating rod is controlled to rotate. The rod rotates under force, and through the linkage control of the linkage rod and bevel gear assembly, the rotating rod is driven to rotate under force. Since the rotating rod surface is equipped with two sets of worm gear connectors, multiple sets of threaded control rods can be controlled to rotate simultaneously through the worm gear connectors. The threads on its surface can control the sliding of the push plate and the insertion rod during its rotation. The insertion rod slides and retracts into the support plate, and the insertion rod is pulled out from the support insertion hole, releasing the limit support; S4. At this time, according to the water level, the height of the self-cleaning filter mechanism can be reassembled and adjusted. The control screw can be rotated by the motor, and the control screw rotation controls the lifting plate to rise and slide. At this time, the lifting plate is... The traction steel rope is fixedly connected to the position fixing support mechanism and the self-cleaning filter mechanism. The positions of the position fixing support mechanism and the self-cleaning filter mechanism are raised and lowered accordingly, and reassembled to a suitable position for better water intake. S5. When taking water, the water is filtered through the filter holes and enters the connecting pipe through the connecting pipe. Then, the water pump sends it to the water plant through the delivery pipe. After a period of water intake, the filter holes are prone to clogging. At this time, the rotating control mechanism can be used to control the rotating rod to rotate. During the rotation, the two sets of threads on the surface of the rotating rod can control the sliding plate, support frame and cleaning rod to slide outward and insert into the filter holes for auxiliary cleaning, ensuring that the device can take water normally.
[0014] The present invention has the following beneficial effects This invention includes a lifting position control mechanism installed on one side of the casting support. One end of the traction steel cable inside the mechanism is connected to a self-cleaning filter mechanism. The water intake is located inside the self-cleaning filter mechanism. When the water level changes in a lake or reservoir, the lifting position control mechanism can be used to reposition and adjust the water intake, ensuring it is positioned in the middle of the water source. This avoids the problem of excessive sediment absorption when the intake is too low, or excessive debris absorption when the intake is too high, thus reducing subsequent filtration processing time.
[0015] The invention also includes a rotation control mechanism and a position fixing support mechanism. The position fixing support mechanism is connected to the drive rod inside the rotation control mechanism. The rotation control mechanism can control the insertion rod at any position to slide. The insertion rod slides and inserts into the support insertion hole inside the inner wall of the casting column, which can provide limit support for the self-cleaning filter mechanism, ensuring that the assembly position of the self-cleaning filter mechanism will not move, and facilitating subsequent water intake.
[0016] The invention also includes a self-cleaning filtration mechanism, which is fixedly connected to the connecting pipe. When water is drawn, water enters through the filter holes, which can filter and clean larger pieces of sludge and impurities in the water, reducing subsequent purification processing time. After filtration for a period of time, the internal cleaning rod can be moved remotely through the position fixing support mechanism. The cleaning rod is inserted into the filter holes to unclog them, prevent clogging, improve water intake efficiency, and eliminate the need for manual cleaning, saving time and effort. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0018] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0019] In the attached diagram: Figure 1 A schematic diagram of the main body of the present invention is shown in the axial side view. Figure 2 A cross-sectional structural schematic diagram of the main body of the present invention is shown; Figure 3 A schematic diagram of the support mechanism of the present invention is shown from an axial side view. Figure 4 A schematic diagram of the rotation control mechanism of the present invention is shown from an axial side view. Figure 5 A cross-sectional structural schematic diagram of the control component of the present invention is shown; Figure 6 A cross-sectional structural schematic diagram of the lifting position control mechanism of the present invention is shown; Figure 7 The present invention is shown Figure 6 A partial enlarged structural diagram of A; Figure 8 A cross-sectional structural schematic diagram of the water conveyance assembly of the present invention is shown; Figure 9 A cross-sectional structural schematic diagram of the position fixing support mechanism of the present invention is shown; Figure 10 A cross-sectional structural schematic diagram of the rotary linkage component of the present invention is shown; Figure 11 A cross-sectional schematic diagram of the self-cleaning filter mechanism of the present invention is shown.
[0020] List of reference numerals 1. Support Mechanism; 101. Casting Support Column; 102. Support Hole; 103. Platform Support Plate; 104. Inner Support Frame; 2. Rotation Control Mechanism; 201. Support Platform; 202. Through Groove; 203. Control Components; 2031. Rotating Column; 2032. Gear A; 2033. Drive Chain; 2034. Control Main Rod; 2035. Gear B; 2036. Cover Plate; 2037. Motor A; 204. Drive Rod; 205. Bottom Rotating Support Column; 3. Lifting Position Control Mechanism; 301. Fixed Support Plate; 302. Control Screw; 303. Lifting Plate; 304. Auxiliary Support Rod; 305. Traction Steel Rope; 4. Water Supply Components; 401. Water Pump; 402. 403. Connecting pipe; 404. Conveying pipe; 405. Rubber sealing ring; 406. Connecting pipe; 5. Position fixing support mechanism; 501. Support plate; 502. Rotary linkage assembly; 5021. Rotating rod; 5022. Drive through groove; 5023. Gear C; 5024. Linkage rod; 5025. Gear D; 5026. Bevel gear assembly; 5027. Inner support plate; 5028. Drive rotating rod; 5029. Worm gear connector; 503. Fixed support column; 504. Insert rod; 505. Push plate; 506. Threaded control rod; 6. Self-cleaning filter mechanism; 601. Base box; 602. Filter hole; 603. Sliding plate; 604. Support frame; 605. Hole cleaning rod. Detailed Implementation
[0021] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples.
[0022] Example: Please refer to Figures 1 to 11 : This invention proposes a prefabricated water supply plant structure and its manufacturing method, comprising: a support mechanism 1, a rotation control mechanism 2, a lifting position control mechanism 3, a water conveying component 4, a position fixing support mechanism 5, and a self-cleaning filter mechanism 6. The support mechanism 1 is a rectangular parallelepiped structure. It is characterized by the following: a rotation control mechanism 2 is installed inside the support mechanism 1; a lifting position control mechanism 3 is installed inside the support mechanism 1; the bottom of the water supply component 4 is inserted into the support mechanism 1; a position-fixing support mechanism 5 is slidably installed inside the support mechanism 1 and connected to the lifting position control mechanism 3; a self-cleaning filter mechanism 6 is installed below the position-fixing support mechanism 5 and connected to the water supply component 4; the lifting position control mechanism 3 includes: a fixed support plate 301 and a control screw 302; the fixed support plate 301 is a hollow rectangular parallelepiped structure; the control screw 302 is rotatably installed inside the fixed support plate 301, and a motor is provided at the top of the control screw 302.
[0023] like Figure 3 As shown, the support mechanism 1 includes: a casting column 101, a support socket 102, a platform support plate 103, and an inner support frame 104; the casting column 101 is a cuboid structure with an internal groove, and one side of the fixed support plate 301 is fixedly connected to the casting column 101; the support socket 102 is opened on both sides of the inner wall of the casting column 101; the platform support plate 103 is fixedly installed on the top of the casting column 101; the inner support frame 104 is a square frame structure and is fixedly installed on the inner wall of the casting column 101.
[0024] like Figure 4 As shown, the rotation control mechanism 2 includes: a support platform 201, a through groove 202, a control component 203, a drive rod 204, and a bottom rotation support 205; the support platform 201 is a cuboid structure and is installed above the inner support frame 104; the through groove 202 is formed on the surface of the support platform 201; the control component 203 is installed inside the support platform 201; the drive rod 204 is a hexagonal structure and slides through the control component 203 and is inserted into the casting support 101; the bottom rotation support 205 is a cylindrical structure with a hexagonal groove inside, the bottom of the bottom rotation support 205 is rotatably connected to the casting support 101, and the bottom of the drive rod 204 slides into the groove of the bottom rotation support 205.
[0025] like Figure 5As shown, the control assembly 203 also includes: a rotating column 2031, a gear A 2032, a drive chain 2033, a control rod 2034, a gear B 2035, a cover plate 2036, and a motor A 2037; the rotating column 2031 is rotatably connected to the support platform 201; the gear A 2032 is fixedly installed on the surface of the rotating column 2031; the inner side of the drive chain 2033 meshes with the gear A 2032; the bottom of the control rod 2034 is rotatably inserted into the groove of the support platform 201; the gear Gear B2035 is fixedly installed on the surface of the control rod 2034. Gear B2035 is meshed with the drive chain 2033, and the control rod 2034 can be rotated by the drive chain 2033. The bottom of the cover plate 2036 is provided with a threaded hole. The cover plate 2036 is rotatably installed on the top of the rotating column 2031 and can play an auxiliary sealing role. The motor A2037 is installed above the support platform 201 and connected to the control rod 2034.
[0026] like Figure 6 As shown, the lifting position control mechanism 3 also includes: a lifting plate 303, an auxiliary support rod 304, and a traction steel rope 305; the lifting plate 303 is a cuboid structure, and the lifting plate 303 is slidably installed inside the slide groove of the fixed support plate 301 and threadedly connected to the control screw 302. The rotation of the control screw 302 can control the lifting plate 303 to lift and slide; one side of the auxiliary support rod 304 is fixedly connected to the fixed support plate 301; two sets of traction steel ropes 305 are provided, and the traction steel ropes 305 slide through the auxiliary support rod 304 and are inserted into the fixed support plate 301. The traction steel ropes 305 are fixedly connected to the lifting plate 303.
[0027] like Figure 8 As shown, the water supply assembly 4 includes: a water pump 401, a connecting pipe 402, a delivery pipe 403, a rubber sealing ring 404, and a connecting pipe 405; the water pump 401 is installed above the platform support plate 103; one end of the connecting pipe 402 is fixedly connected to the water pump 401, and the other end of the connecting pipe 402 is fixedly inserted into the casting support 101; one side of the delivery pipe 403 is connected to the water pump 401, and the other side of the delivery pipe 403 is connected to the water supply plant; the rubber sealing ring 404 is fixedly installed on the lower surface of the connecting pipe 402, and the rubber sealing ring 404 can play an auxiliary sealing role; the connecting pipe 405 is slidably connected to the connecting pipe 402.
[0028] like Figure 9As shown, the position-fixing support mechanism 5 includes: a support plate 501, a rotary linkage assembly 502, a fixed support column 503, an insert rod 504, a push plate 505, and a threaded control rod 506; the support plate 501 is a hollow cuboid structure, and its surface is fixedly connected to the traction steel rope 305, while the surface of the connecting pipe 405 is fixedly connected to the support plate 501; the rotary linkage assembly 502 is installed inside the support plate 501; the fixed support column 503 is a cylindrical structure with a square groove on its surface, and it is fixedly connected to the support plate 501. The insertion rod 504 slides into the fixed support column 503 on one side and is inserted into the support insertion hole 102 on the other side, providing auxiliary support for the position fixing support mechanism 5. The number of push plates 505 is set to two sets. The push plates 505 are slidably installed in the square groove of the fixed support column 503 and are fixedly connected to the other end of the insertion rod 504. The threaded control rod 506 is rotatably connected to the support plate 501 on one side and is threadedly connected to the push plate 505 on the surface. The rotation of the threaded control rod 506 can control the sliding of the push plate 505.
[0029] like Figure 10 As shown, the rotary linkage assembly 502 also includes: a rotating rod 5021, a drive slot 5022, a gear C 5023, a linkage rod 5024, a gear D 5025, a bevel gear assembly 5026, an inner support plate 5027, a drive rotating rod 5028, and a worm gear connector 5029; the rotating rod 5021 has a cylindrical structure and is rotatably connected to the support plate 501; the drive slot 5022 is formed inside the rotating rod 5021, and the drive rod 204 slides through the drive slot 5022; the gear C 5023 is fixedly installed on the surface of the rotating rod 5021; the linkage rod 5024 is rotatably installed inside the support plate 501; the gear D... 5025 is fixedly installed on the surface of the linkage rod 5024 and meshes with the gear C5023; one side of the bevel gear assembly 5026 is connected to the linkage rod 5024; the top of the inner support plate 5027 is fixedly connected to the support plate 501; the surface of the driving rod 5028 is provided with two sets of threads in opposite directions, driving the driving rod 5028 to rotate and connect with the support plate 501 and the inner support plate 5027, and one side of the driving rod 5028 is rotatably connected to the linkage rod 5024 through the bevel gear assembly 5026; the other end of the threaded control rod 506 is rotatably inserted into the inner support plate 5027 and is rotatably connected to the driving rod 5028 through the worm gear connector 5029.
[0030] like Figure 11As shown, the self-cleaning filter mechanism 6 includes: a base box 601, filter holes 602, a sliding plate 603, a support frame 604, and a cleaning rod 605. The base box 601 has a square structure, and its top is fixedly connected to the support plate 501. The base box 601 is also fixedly connected to the connecting pipe 405. The filter holes 602 are formed on the surface of the base box 601 and can be used to filter large debris in the water. The sliding plate 603 is slidably installed inside the inner support plate 5027 and threadedly connected to the driving rod 5028. Rotating the driving rod 5028 can control the two sets of sliding plates 603 to slide inward or outward simultaneously. One side of the support frame 604 is fixedly connected to the sliding plate 603. The cleaning rod 605 is fixedly installed on one side of the support frame 604 and can clean the filter holes 602 on the surface of the base box 601.
[0031] The specific usage and function of this invention: During the construction of the structure, a casting support column 101 is constructed at a suitable location in a river, lake, or reservoir. A platform support plate 103 is fixedly installed on the top of the casting support column 101. Support insertion holes 102 are opened on both sides of the inner side of the casting support column 101. A lifting position control mechanism 3 is fixedly installed on one side of the casting support column 101. A traction steel rope 305 is provided inside the lifting position control mechanism 3. One end of the traction steel rope 305 is slidably inserted into the fixed support plate 301 and fixedly connected to the lifting plate 303. The other end of the traction steel rope 305 is fixedly installed in a position slidably installed inside the casting support column 101. The fixed support mechanism 5 and the self-cleaning filter mechanism 6 are fixedly connected. The bottom of the rotation control mechanism 2 is inserted into the casting support column 101. The driving rod 204 passes through the hexagonal slide groove of the rotating column 2031 and also passes through the driving through groove 5022 and is inserted into the bottom rotating support column 205. The top of the rotating column 2031 is rotatably installed with a cover plate 2036 to limit and block the driving rod 204. The water pump 401 is installed on the top of the platform support plate 103. One end of the connecting pipe 405 is connected to the self-cleaning filter mechanism 6. The bottom of the connecting pipe 402 at one end of the water pump 401 is inserted into the connecting pipe 405 to complete the connection.When there is a significant change in the external water level, motor A2037 can be started. Motor A2037 drives the main control rod 2034 to rotate. The main control rod 2034 further controls the rotation of the rotating column 2031 by driving the chain 2033. Since the driving rod 204 slides through the rotating column 2031 and the rotating rod 5021, the rotating rod 5021 is controlled to rotate. The rotating rod 5021 rotates under force, and through the linkage control of the linkage rod 5024 and the bevel gear assembly 5026, the rotating column 2031 rotates. The rotating rod 5028 rotates under force. Because two sets of worm gear connectors 5029 are provided on the surface of the rotating rod 5028, multiple sets of threaded control rods 506 can be rotated simultaneously via the worm gear connectors 5029. The threads on their surfaces control the sliding of the push plate 505 and the insert rod 504 during rotation. The insert rod 504 slides and retracts into the support plate 501, and is pulled out from the support insertion hole 102, releasing the limiting support. At this time, depending on the water level, the self-cleaning process can be initiated. The height of the filtration mechanism 6 is readjusted by reassembling it. This can be achieved by rotating the control screw 302 via a motor, which in turn controls the lifting plate 303 to rise and slide. The lifting plate 303 is then fixedly connected to the position-fixed support mechanism 5 and the self-cleaning filtration mechanism 6 via a traction steel rope 305. The positions of the position-fixed support mechanism 5 and the self-cleaning filtration mechanism 6 are adjusted accordingly, allowing for reassembly to a suitable position for better water intake. During water intake, water is filtered through the filter hole 602 and enters the connecting pipe 402 via the connecting pipe 405. It is then pumped by the water pump 401 and delivered to the water plant via the delivery pipe 403. After a period of use, the filter hole 602 may become clogged. In this case, the rotating control mechanism can be used to rotate the rotating rod 5028. During rotation, the two sets of threads on the surface of the rotating rod 5028 can control the sliding plate 603, the support frame 604, and the cleaning rod 605 to slide outwards, inserting into the filter hole 602 for auxiliary cleaning, ensuring normal water intake of the device.
[0032] The following points should be noted in this article: 1. The accompanying drawings of the embodiments of the present invention only involve the structures involved in the embodiments of the present invention; other structures can refer to general designs.
[0033] 2. Where there is no conflict, the embodiments of the present invention and the features thereof can be combined with each other to obtain new embodiments.
[0034] The above are merely specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. Prefabricated water supply plant structures, including: Support mechanism (1), rotation control mechanism (2), lifting position control mechanism (3), water supply component (4), position fixing support mechanism (5) and self-cleaning filter mechanism (6); The support mechanism (1) is a rectangular parallelepiped structure. The rotation control mechanism (2) is installed inside the support mechanism (1). The lifting position control mechanism (3) is installed inside the support mechanism (1). The bottom of the water conveying component (4) is inserted into the support mechanism (1). The position fixing support mechanism (5) is slidably installed inside the support mechanism (1) and connected to the lifting position control mechanism (3). The self-cleaning filter mechanism (6) is installed below the position fixing support mechanism (5) and connected to the water conveying component (4). The lifting position control mechanism (3) includes a fixed support plate (301) and a control screw (302). The control screw (302) is rotatably installed inside the fixed support plate (301), and a motor is provided on the top of the control screw (302).
2. The prefabricated water supply plant structure according to claim 1, characterized in that: The support mechanism (1) includes: a casting column (101), a support hole (102), a platform support plate (103), and an inner support frame (104); one side of the fixed support plate (301) is fixedly connected to the casting column (101); the support hole (102) is opened on both sides of the inner wall of the casting column (101); the platform support plate (103) is fixedly installed on the top of the casting column (101); and the inner support frame (104) is fixedly installed on the inner wall of the casting column (101).
3. The prefabricated water supply plant structure according to claim 2, characterized in that: The rotation control mechanism (2) includes: a support platform (201), a through groove (202), a control component (203), a drive rod (204), and a bottom rotation support (205); the support platform (201) is installed above the inner support frame (104); the through groove (202) is opened on the surface of the support platform (201); the control component (203) is installed inside the support platform (201); the drive rod (204) slides through the control component (203) and is inserted into the casting support (101); the bottom of the bottom rotation support (205) is rotatably connected to the casting support (101), and the bottom of the drive rod (204) slides into the groove of the bottom rotation support (205).
4. The prefabricated water supply plant structure according to claim 3, characterized in that: The control component (203) further includes: a rotating column (2031), gear A (2032), a drive chain (2033), a control rod (2034), gear B (2035), a cover plate (2036), and a motor A (2037); the rotating column (2031) is rotatably connected to the support platform (201); gear A (2032) is fixedly installed on the surface of the rotating column (2031); the inner side of the drive chain (2033) meshes with gear A (2032); The bottom of the control rod (2034) is rotated and inserted into the groove of the support platform (201); the gear B (2035) is fixedly installed on the surface of the control rod (2034), and the gear B (2035) is meshed with the drive chain (2033); the bottom of the cover plate (2036) is provided with a threaded hole, and the cover plate (2036) is rotated and installed on the top of the rotating column (2031); the motor A (2037) is installed above the support platform (201) and connected to the control rod (2034).
5. The prefabricated water supply plant structure according to claim 1, characterized in that: The lifting position control mechanism (3) further includes: a lifting plate (303), an auxiliary support rod (304), and a traction steel rope (305); the lifting plate (303) is a cuboid structure, and the lifting plate (303) is slidably installed inside the groove of the fixed support plate (301) and threadedly connected to the control screw (302); one side of the auxiliary support rod (304) is fixedly connected to the fixed support plate (301); two sets of traction steel ropes (305) are provided, and the traction steel ropes (305) slide through the auxiliary support rod (304) and are inserted into the fixed support plate (301), and the traction steel ropes (305) are fixedly connected to the lifting plate (303).
6. The prefabricated water supply plant structure according to claim 2, characterized in that: The water conveying assembly (4) includes: a water pump (401), a connecting pipe (402), a conveying pipe (403), a rubber sealing ring (404), and a connecting pipe (405); the water pump (401) is installed above the platform support plate (103); one end of the connecting pipe (402) is fixedly connected to the water pump (401), and the other end of the connecting pipe (402) is fixedly inserted into the casting support (101); one side of the conveying pipe (403) is connected to the water pump (401), and the other side of the conveying pipe (403) is connected to the water supply plant; the rubber sealing ring (404) is fixedly installed on the lower surface of the connecting pipe (402); the connecting pipe (405) is slidably connected to the connecting pipe (402).
7. The prefabricated water supply plant structure according to claim 6, characterized in that: The position fixing support mechanism (5) includes: a support plate (501), a rotary linkage assembly (502), a fixed support column (503), a plug rod (504), a push plate (505), and a threaded control rod (506); the support plate (501) is a hollow cuboid structure, the surface of the support plate (501) is fixedly connected to the traction steel rope (305), and the surface of the connecting pipe (405) is fixedly connected to the support plate (501); the rotary linkage assembly (502) is installed inside the support plate (501); the fixed support column (503) is... A cylindrical structure with a square groove on its surface is provided. The fixed support column (503) is fixedly connected to the support plate (501). One side of the insertion rod (504) is slidably inserted into the fixed support column (503). Two sets of push plates (505) are provided. The push plates (505) are slidably installed in the square groove of the fixed support column (503) and fixedly connected to the other end of the insertion rod (504). One side of the threaded control rod (506) is rotatably connected to the support plate (501), and the surface of the threaded control rod (506) is threadedly connected to the push plate (505).
8. The prefabricated water supply plant structure according to claim 7, characterized in that: The rotary linkage assembly (502) further includes: a rotating rod (5021), a drive slot (5022), a gear C (5023), a linkage rod (5024), a gear D (5025), a bevel gear assembly (5026), an inner support plate (5027), a drive rotating rod (5028), and a worm gear connector (5029); the rotating rod (5021) is a cylindrical structure, and the rotating rod (5021) is rotatably connected to the support plate (501); the drive slot (5022) is opened inside the rotating rod (5021), and the drive rod (204) slides through the drive slot (5022); the gear C (5023) is fixedly installed on the surface of the rotating rod (5021); the linkage rod (5024) is rotatably installed inside the support plate (501); the gear C (5023) is fixedly installed on the surface of the rotating rod (5021); the linkage rod (5024) is rotatably installed inside the support plate (501); the gear C (5023) is fixedly installed on the surface of the rotating rod (5021); the gear C (5024) is rotatably installed on the surface of the support plate (501); the gear C (5023) is fixedly installed on the surface of the rotating rod (5021); the gear C (5024) is fixedly installed on the surface of the rotating rod (502 ... Wheel D (5025) is fixedly installed on the surface of linkage rod (5024) and meshes with gear C (5023); one side of bevel gear assembly (5026) is connected to linkage rod (5024); the top of inner support plate (5027) is fixedly connected to support plate (501); the surface of drive rod (5028) is provided with two sets of threads in opposite directions, drive rod (5028) to rotate and connect with support plate (501) and inner support plate (5027), drive rod (5028) one side to rotate and connect with linkage rod (5024) through bevel gear assembly (5026); the other end of thread control rod (506) is rotated and inserted into the inner support plate (5027) and rotated and connected with drive rod (5028) through worm gear connector (5029).
9. The prefabricated water supply plant structure according to claim 7, characterized in that: The self-cleaning filter mechanism (6) includes: a base box (601), a filter hole (602), a sliding plate (603), a support frame (604), and a cleaning rod (605); the base box (601) is a square structure, the top of the base box (601) is fixedly connected to the support plate (501), and the base box (601) is fixedly connected to the connecting pipe (405); the filter hole (602) is opened on the surface of the base box (601); the sliding plate (603) is slidably installed inside the inner support plate (5027) and threadedly connected to the driving rotating rod (5028), and the rotation of the driving rotating rod (5028) can control the two sets of sliding plates (603) to slide inward or outward at the same time; one side of the support frame (604) is fixedly connected to the sliding plate (603); the cleaning rod (605) is fixedly installed on one side of the support frame (604).
10. The prefabricated water supply plant structure and its assembly method according to any one of claims 1-9, characterized in that, The steps include: S1. Construct a casting support column (101) at a suitable location in a river, lake or reservoir. A platform support plate (103) is fixedly installed on the top of the casting support column (101). Support holes (102) are opened on both sides of the inner side of the casting support column (101). A lifting position control mechanism (3) is fixedly installed on one side of the casting support column (101). A traction steel rope (305) is installed inside the lifting position control mechanism (3). One end of the traction steel rope (305) is slidably inserted into the fixed support plate (301) and fixedly connected to the lifting plate (303). S2, the other end of the traction steel rope (305) is fixedly connected to the fixed support mechanism (5) and the self-cleaning filter mechanism (6) which are slidably installed inside the casting support (101). The bottom of the rotation control mechanism (2) is inserted into the casting support (101). The driving rod (204) passes through the hexagonal groove of the rotating column (2031) and also passes through the driving through groove (5022) and is inserted into the bottom rotating support (205). The top of the rotating column (2031) is rotated and installed with a cover plate (2036) to limit and block the driving rod (204). S3. The water pump (401) is installed on the top of the platform support plate (103). One end of the connecting pipe (405) is connected to the self-cleaning filter mechanism (6). The bottom of the connecting pipe (402) at one end of the water pump (401) is inserted into the connecting pipe (405) to complete the connection. When the external water level changes significantly, the motor A (2037) can be started. The motor A (2037) drives the control rod (2034) to rotate. The control rod (2034) further controls the rotating column (2031) to rotate by driving the chain (2033). Since the driving rod (204) slides through the rotating column (2031) and the rotating rod (5021), the rotating rod (5021) slides through the rotating column (2031) and the rotating rod (5021). 1) Under control, the rotating rod (5021) rotates under force. Through the linkage control of the linkage rod (5024) and the bevel gear assembly (5026), the rotating rod (5028) is driven to rotate under force. Since the rotating rod (5028) is provided with two sets of worm gear connectors (5029), multiple sets of threaded control rods (506) can be controlled to rotate simultaneously through the worm gear connectors (5029). The threads provided on its surface can control the sliding of the push plate (505) and the insertion rod (504) during its rotation. The insertion rod (504) slides and is pulled back into the support plate (501). The insertion rod (504) is pulled out from the support insertion hole (102), releasing the limit support. S4. At this time, the height of the self-cleaning filter mechanism (6) can be readjusted according to the water level. The control screw (302) can be rotated by the motor, and the control screw (302) can be rotated to control the lifting plate (303) to slide up and down. At this time, the lifting plate (303) is fixedly connected to the position fixing support mechanism (5) and the self-cleaning filter mechanism (6) through the traction steel rope (305). The positions of the position fixing support mechanism (5) and the self-cleaning filter mechanism (6) are adjusted accordingly to be reassembled to a suitable position for better water intake. S6. When taking water, the water is filtered through the filter hole (602) and enters the connecting pipe (402) through the connecting pipe (405). Then, the water pump (401) sends it to the water plant through the delivery pipe (403). After a period of use, the filter hole (602) is prone to blockage. At this time, the rotating control mechanism can be used to control the rotating rod (5028) to rotate. During the rotation, the two sets of threads on the surface of the rotating rod (5028) can control the sliding plate (603), the support (604) and the cleaning rod (605) to slide outward and insert into the filter hole (602) for auxiliary cleaning, so as to ensure that the device can take water normally.