Lifting type water conservancy project gate for water conservancy project

By designing a lifting water conservancy project gate and using components such as a drive motor and a water collection box, multi-stage water blocking and speed-controlled water flow are achieved, solving the problems of debris handling and stability in traditional gates and improving the service life and efficiency of the equipment.

CN120666704APending Publication Date: 2025-09-19WANGJIANG COUNTY JIANGHUA EQUIP MFG CO LTD
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Patent Information

Application Number
CN202510773944.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

In the prior art, the lifting gates used in water conservancy projects cannot effectively handle debris and garbage in the water flow during traditional use, affecting the water filtration effect. In addition, the equipment has low blocking efficiency and poor stability and requires frequent maintenance.

Method used

A lifting water conservancy project gate consisting of a first and a second gate mechanism was designed. The reciprocating screw rod was driven by a driving motor to achieve two water-blocking operations. It was equipped with a water collection box and a water pump for speed-controlled transportation. Combined with a remote monitoring camera and a solar power supply system, the stability and service life of the equipment were improved.

Benefits of technology

It achieves efficient water flow blocking and speed-controlled delivery, reduces the frequency of manual maintenance, extends the service life of equipment, and meets the needs of different water conservancy project scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a lifting type water conservancy project gate for a water conservancy project, and relates to the technical field of water conservancy project equipment, the lifting type water conservancy project gate comprises a first gate mechanism and further comprises a second gate mechanism installed on one side of the first gate mechanism, and the lifting type water conservancy project gate has the beneficial effects that the first gate mechanism and the second gate mechanism are arranged, so that the water yield is conveniently controlled; the use flexibility of the equipment is improved; a water collecting box is arranged, water is conveyed into a water outlet baffle through a light-emitting plate through operation of a water pump, water is conveyed into a water outlet plate through the water outlet baffle, water is discharged through cooperation of the water outlet plate and a water outlet hole, speed-controlled conveying operation can be conveniently conducted on torrential water flow at the moment, and by limiting the sliding track of two second water baffles, the water flow can be conveniently discharged; and in cooperation with normal reset, the impact effect of water on equipment is reduced, the outer sides of the first positioning bolt, the second positioning bolt, the first gate and the second gate are all coated with waterproof paint, and therefore the service life of the equipment is prolonged.
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Description

Technical Field

[0001] The present invention relates to the technical field of water conservancy engineering equipment, in particular to a lifting type water conservancy engineering gate for water conservancy engineering. Background Art

[0002] A lifting water conservancy project gate for water conservancy projects; during the use of traditional water conservancy project gates, it is inconvenient to handle debris and garbage inside the water flow, which affects the water filtering effect of the gate, and thus it is inconvenient to conveniently collect impurities; the present application provides a lifting water conservancy project gate for water conservancy projects, including a lifting component and a collecting component; compared with traditional water conservancy project gates, during the use of traditional water conservancy project gates, it is inconvenient to handle debris and garbage inside the water flow, which affects the water filtering effect of the gate, and thus it is inconvenient to conveniently collect impurities, the water conservancy project gate is provided with a lifting structure and a collecting structure. Starting the lifting structure can drive the filtering structure to achieve the lifting effect. At the same time, the filtering structure can drive the collecting structure to lift, and the collecting structure can be moved through the transmission structure, thereby achieving the purpose of conveniently collecting impurities.

[0003] Chinese patent announcement No. discloses a lifting water conservancy project gate for water conservancy projects; during the use of traditional water conservancy project gates, it is inconvenient to handle the debris and garbage inside the water flow, which affects the water filtering effect of the gate, and thus it is inconvenient to conveniently collect impurities; the present application provides a lifting water conservancy project gate for water conservancy projects, including a lifting component and a collecting component; compared with traditional water conservancy project gates, during the use, it is inconvenient to handle the debris and garbage inside the water flow, which affects the water filtering effect of the gate, and thus it is inconvenient to conveniently collect impurities, the water conservancy project gate is provided with a lifting structure and a collecting structure. Starting the lifting structure can drive the filtering structure to achieve the lifting effect. At the same time, the filtering structure can drive the collecting structure to lift, and the collecting structure can be moved through the transmission structure, thereby achieving the purpose of conveniently collecting impurities.

[0004] However, the above scheme still has the following problems: the water flow can only be blocked once, resulting in low blocking efficiency, and the transported water flow cannot be effectively filtered, diverted, and speed-controlled, which affects the service life of the equipment and requires frequent manual maintenance and inspection, increasing the labor intensity of manual work. In addition, there is a problem of poor equipment installation stability, which brings many problems and cannot meet the needs of normal use. Therefore, the present invention needs to design a lifting water conservancy project gate for water conservancy projects to solve the above problems. Summary of the Invention

[0005] The object of the present invention is to provide a lifting type water conservancy engineering gate for water conservancy projects to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a lifting type hydraulic engineering gate for a hydraulic engineering project, comprising a first gate mechanism, and further comprising: A second gate mechanism is installed on one side of the first gate mechanism, the first gate mechanism includes a first gate, and a first water baffle is slidably connected to the interior of the first gate, the first water baffle is used for primary water blocking; The second gate mechanism includes a second gate, the second gate is located on one side of the first gate, the interior of the second gate is slidably connected to a second water baffle, two connecting blocks are installed on the top of the second water baffle, the two connecting blocks are symmetrically distributed, a reciprocating screw is rotatably connected between the two connecting blocks, the outer side of the reciprocating screw is threadedly connected to a first limiting slider, both sides of the first limiting slider are respectively connected to corresponding connecting blocks, and the second water baffle is used for secondary water retaining treatment; A water collecting box is installed at the bottom of the first gate and the second gate, a water blocking baffle is installed inside the water collecting box and on one side of the second gate, and equidistantly distributed installation pipes are installed inside the water blocking baffle, and one end of each installation pipe is installed with a water collecting pipe on one side of the second gate, the support plate is installed on one side of the water blocking baffle, a support vertical plate is installed on the top of the support plate, and a water outlet plate is installed on one side of the support vertical plate, and the water outlet plate is provided with equidistantly distributed water outlet holes inside the water outlet plate, and the support vertical plate is provided with a water outlet hole. Two fixing plates are installed between the two fixing plates, and a water pump is installed between the two fixing plates. The output end of the water pump is connected to the installation pipe, and the other end of the installation pipe extends to the inside of the water outlet plate. The water collecting pipe is used to guide water to the other side of the water blocking baffle. The water blocking baffle is used for water blocking. When the water pump is running, water is transported to the inside of the water outlet baffle through the light-emitting plate, and then transported to the inside of the water outlet plate through the water outlet baffle. Water is discharged through the water outlet plate and the water outlet hole. At this time, it is convenient to control the speed of the turbulent water flow. Two water inlet pipes for use with the first gate are installed on one side of the water collection box, and water is conveniently introduced into the first gate and the second gate through the two water inlet pipes for coordinated interception processing; A mounting horizontal plate is installed on the side of the first gate away from the second gate, and two connecting base plates are installed on the top of the mounting horizontal plate. The tops of the two connecting base plates are rotatably connected to the first rotating arms, the insides of the two first rotating arms are rotatably connected to the second rotating arms, and the tops of the two second rotating arms are rotatably connected to remote monitoring cameras. The two remote monitoring cameras face opposite directions, and the two connecting base plates are symmetrically distributed. All-round remote monitoring of the site is carried out through the two remote monitoring cameras, and the monitoring range is conveniently increased through the adjustable structure of the first rotating arm and the second rotating arm; An installation frame is installed on the top of the first gate, and an electricity storage mechanism is installed on the top of the installation frame. A charging controller is installed inside the electricity storage warehouse. The solar panels inside the electricity storage mechanism are used for outdoor solar energy resource collection operations, and the charging controller is used for cooperative power device storage. Through storage in the electricity storage warehouse, the power resource supply processing for outdoor equipment operation is realized. The first gate and the second gate cooperate to realize the lifting water retaining treatment on both sides. The water collection box is convenient for water collection and speed-controlled transportation, and it is also convenient to reinforce the first gate and the second gate, thereby improving the service life of the equipment and meeting the water retaining needs of water conservancy projects in different scenarios.

[0007] As a preferred embodiment of the present invention, the outer side of the mounting horizontal plate is threadedly connected to two fifth positioning bolts extending into the interior of the first gate, the outer side of the first rotating arm is installed with a first limiting shaft for cooperating with the second rotating arm, and the outer side of the second rotating arm is installed with a second limiting shaft for cooperating with the remote monitoring camera, one side of the supporting vertical plate and both sides of the water outlet plate are fixedly connected with a guide plate, the top of the supporting plate and the side of the water outlet plate away from the supporting vertical plate are rotatably connected with two symmetrically distributed limiting rotating shafts, the outer side of the limiting rotating shafts are installed with connecting rods, and one side of the connecting rods is installed with an adjusting plate, and the outer side of the fixed plate is installed with a fourth positioning bolt extending into the interior of the guide plate, and the fixed plate and the guide plate are positioned and installed by the fourth positioning bolt, and by providing two rotatable limiting rotating shafts, it is convenient to adjust the angle of the two adjustment plates, and auxiliary water outlet guiding processing is performed by the two guide plates and the two adjustment plates.

[0008] As a preferred embodiment of the present invention, a third limiting slide is provided inside the first gate and above the sliding rod, and an electric telescopic rod is installed inside the third limiting slide, the output end of the electric telescopic rod is fixedly connected to the sliding rod, one end of the bottom of the sliding rod is fixedly connected to a connecting ring, the bottom of the connecting ring is connected to the first water baffle, the bottom of the mounting cross plate is fixedly connected to a fixing column, the outer side of the fixing column is slidably connected to a mounting sleeve, a limiting guide rail is installed between the mounting cross plate and the first gate, the inside of the limiting guide rail is provided with a first limiting slide, the top of the mounting sleeve is fixedly connected to a second limiting slider extending into the inside of the first limiting slide, one end of the top of the second limiting slider is connected to the mounting frame, and a detachable cover is installed on both sides of the first gate. When the cover on one side of the first gate is opened, the mounting frame is manually adjusted to move to one side, which can drive the second limiting slider to slide inside the first limiting slide, and drive the bottom mounting sleeve to slide on the outside of the fixed column, so as to facilitate the removal of internal equipment for daily maintenance.

[0009] As a preferred embodiment of the present invention, a first valve is fixedly connected to the outside of the water inlet pipe, and a second valve is fixedly connected to the outside of the water collection pipe. The first valve is used to control the opening and closing of the corresponding water inlet pipe, and the second valve is used to control the opening and closing of the corresponding water collection pipe.

[0010] As a preferred embodiment of the present invention, two reinforcing side plates are fixedly connected to the side of the first gate away from the second gate, and the two reinforcing side plates are symmetrically distributed. One side of the two reinforcing side plates is fixedly connected to a positioning base plate, and the interior of the two positioning base plates is threadedly connected to a third positioning bolt extending to the interior of the water collecting box. The first gate and the second gate are supported as a whole by the two reinforcing side plates and the positioning base plate, and the positioning base plate and the water collecting box are positioned and installed by the third positioning bolt, thereby realizing a one-time fixing operation of the first gate, the second gate and the water collecting box.

[0011] As a preferred embodiment of the present invention, a protective cover is installed on the outside of the second gate, the bottom of the protective cover is fixedly connected to the limiting sleeve, the reciprocating screw passes through the protective cover and the limiting sleeve, and a motor mounting bracket is installed on the top of the second gate, and the top of the motor mounting bracket is fixedly connected to the driving motor, and the output end of the driving motor is fixedly connected to the top end of the reciprocating screw. When the driving motor is operated, the reciprocating screw is driven to rotate, and the first limiting slider on the outside is driven to move downward. Under the connection of the two connecting blocks, the second water baffle at the bottom is driven to move downward until the normal water blocking operation is performed. The cooperation of the first gate and the second gate realizes two water blocking operations, thereby improving the water blocking efficiency.

[0012] As a preferred embodiment of the present invention, two symmetrically distributed light-emitting panels are installed on the outer side of the second water baffle, and lighting lamps are installed inside the two light-emitting panels. Water outlet baffles with equal distances and different lengths are installed inside the second water baffle and between the two light-emitting panels. The second water baffle is provided with a fourth limiting groove for matching the installation of the water outlet baffle. The lighting lamp inside the light-emitting panel is operated to drive the light-emitting panel as a whole, which is convenient for night operations. Normal water blocking is performed by dropping the second water baffle. When the water output needs to be controlled, the water outlet baffle corresponding to the fourth limiting groove can be removed, which is convenient for controlling the water output and improves the flexibility of equipment use.

[0013] As a preferred embodiment of the present invention, a first installation inner cavity is opened inside the first gate to cooperate with the installation of the first water baffle, and a second installation inner cavity is opened inside the second gate to cooperate with the installation of the second water baffle. Second limiting slide grooves are opened on both sides of the inner wall of the second gate, and the sliding track of the second water baffle is limited by the two to cooperate with normal reset. The second installation inner cavity is opened inside the second gate to cooperate with the installation of the second water baffle, and the first installation inner cavity is opened inside the first gate to cooperate with the installation of the first water baffle.

[0014] As a preferred embodiment of the present invention, the power storage mechanism includes a solar panel and a power storage bin, the top of the mounting frame is fixedly connected to the power storage bin, a solar panel is installed on one side of the power storage bin, a main control board is provided inside the power storage bin, the first valve, drive motor, light-emitting panel, water pump, remote monitoring camera, electric telescopic rod, solar panel and power storage bin are all electrically connected to the main control board, the main control board is used to control the operation of the first valve, drive motor, light-emitting panel, water pump, remote monitoring camera, electric telescopic rod, solar panel and power storage bin, thereby realizing unified management of power equipment.

[0015] As a preferred embodiment of the present invention, the interior of the water collecting box is provided with a water collecting trough for use in conjunction with the installation of the first gate and the second gate, and second positioning bolts extending to the interior of the first gate are installed on both sides of the water collecting box, and first positioning bolts extending to the interior of the second gate are installed on both sides of the water collecting box, and the first positioning bolt is located on one side of the second positioning bolt. The water collecting box and the second gate are reinforced and installed by the first positioning bolt, and the water collecting box and the first gate are reinforced and installed by the second positioning bolt, thereby realizing a secondary fixing operation and reducing the impact effect of water on the equipment. The outer sides of the first positioning bolt, the second positioning bolt, the first gate and the second gate are coated with waterproof coating, thereby extending the service life of the equipment.

[0016] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention is provided with a first gate mechanism and a second gate mechanism. The driving motor is operated to drive the reciprocating screw to rotate, driving the first limiting slider on the outer side to move downward, and under the connection of the two connecting blocks, the second water baffle at the bottom is driven to move downward until normal water blocking operation is performed. The first gate and the second gate cooperate to realize two water blocking operations, thereby improving water blocking efficiency. The second water baffle is provided with a fourth limiting groove installed to match the water outlet baffle. The lighting lamp inside the light-emitting plate is operated to drive the light-emitting plate as a whole to emit light, which is convenient for night operation. Normal water blocking is performed by dropping the second water baffle. When it is necessary to control the water outlet, the water outlet baffle corresponding to the fourth limiting groove can be removed, which is convenient for controlling the water outlet and improving the flexibility of the equipment when used. 2. The present invention is provided with a water collecting box, which is operated by a water pump and transports water to the inside of the water outlet baffle through the light-emitting plate, and then transports water to the inside of the water outlet plate through the water outlet baffle, and discharges water through the water outlet plate and the water outlet hole. At this time, it is convenient to control the speed of the turbulent water flow. The two remote monitoring cameras face opposite directions, and the two connecting base plates are symmetrically distributed. The two remote monitoring cameras are used to perform on-site all-round remote monitoring and processing, which meets the water retaining needs of water conservancy projects in different scenarios. The fixing plate and the guide plate are positioned and installed by the fourth positioning bolt, and the first gate and the second gate are supported as a whole by the two reinforced side plates and the positioning base plate. The positioning base plate and the water collecting box are positioned and installed by the third positioning bolt, thereby realizing a one-time fixing operation of the first gate, the second gate and the water collecting box. The sliding track of the second water baffle is limited, and in conjunction with normal resetting, the water collecting box and the first gate are reinforced and installed through the second positioning bolt, thereby realizing a secondary fixing operation and reducing the impact effect of water on the equipment. The outer sides of the first positioning bolt, the second positioning bolt, the first gate and the second gate are coated with waterproof coating, thereby extending the service life of the equipment. The first gate and the second gate are coordinated to perform multi-stage water blocking operations, and the water flow is filtered and diverted through the water outlet plate and the water outlet hole, thereby effectively controlling the water flow rate, reducing damage to the equipment, and reducing the number of frequent manual maintenance, thereby reducing manual labor intensity, meeting the water blocking needs in different water conservancy project scenarios, and at the same time, through the multi-stage positioning effect, ensuring the stability of the internal equipment during operation, thereby cooperating with normal use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the overall structure of a lifting water conservancy project gate used in a water conservancy project of the present invention. Figure 1 ; Figure 2 This is a schematic diagram of the overall structure of a lifting water conservancy project gate used in a water conservancy project of the present invention. Figure 2 ; Figure 3 This is a schematic diagram of the overall structure of a lifting water conservancy project gate used in a water conservancy project of the present invention. Figure 3 ; Figure 4 This is an enlarged schematic diagram of the internal structure of the water collection box of a lifting water conservancy project gate used in a water conservancy project of the present invention. Figure 1 ; Figure 5 This is an enlarged schematic diagram of the internal structure of the water collection box of a lifting water conservancy project gate used in a water conservancy project of the present invention. Figure 2 ; Figure 6 This is an enlarged schematic diagram of a second gate mechanism of a lifting type hydraulic engineering gate for a hydraulic engineering project according to the present invention; Figure 7This is an enlarged schematic diagram of the first gate mechanism of a lifting water conservancy project gate used in a water conservancy project according to the present invention. Figure 1 ; Figure 8 This is an enlarged schematic diagram of the first gate mechanism of a lifting water conservancy project gate used in a water conservancy project according to the present invention. Figure 2 ; Figure 9 This invention is an accessory for a lifting type water conservancy engineering gate used in water conservancy projects. Figure 7 A schematic diagram of the structure enlargement at point A; Figure 10 This invention is an accessory for a lifting type water conservancy engineering gate used in water conservancy projects. Figure 8 Schematic diagram of the enlarged structure at point B in FIG.

[0018] In the picture: 1. Water collecting box; 11. Water inlet pipe; 12. First valve; 13. Water collecting tank; 14. First positioning bolt; 15. Second positioning bolt; 2. First gate; 21. First water baffle; 22. Connecting ring; 23. Slide rod; 24. First mounting cavity; 25. Reinforced side plate; 26. Positioning base plate; 27. Third positioning bolt; 28. Positioning guide rail; 29. ​​First position-limiting slide groove; 3. Second gate; 31. Protective cover; 32. Motor mounting bracket; 33. Drive motor; 34. Reciprocating screw; 35. Limit sleeve; 36. First limit slider; 37. Connecting block; 38. Second mounting cavity; 39. Second limit slide; 4. Water-blocking baffle; 41. Installation pipe; 42. Water collection pipe; 43. Second valve; 44. Support plate; 45. Guide plate; 46. Fixing plate; 47. Adjusting plate; 48. Water outlet plate; 49. Water outlet hole; 5. Second water baffle; 51. Water outlet baffle; 52. Light-emitting panel; 53. Water pump; 54. Support plate; 55. Connecting rod; 56. Positioning shaft; 57. Fourth positioning bolt; 6. Install the horizontal plate; 61. Connect the bottom plate; 62. First rotating arm; 63. Second rotating arm; 64. Remote monitoring camera; 65. Fifth positioning bolt; 7. Power storage mechanism; 71. Mounting frame; 72. Electric telescopic rod; 73. Second limiting slider; 74. Third limiting slide; 75. Fixed column; 76. Mounting sleeve. DETAILED DESCRIPTION

[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0020] See also Figures 1-10 The present invention provides a technical solution: a lifting water conservancy project gate for a water conservancy project, comprising a first gate mechanism, and further comprising: a second gate mechanism is installed on one side of the first gate mechanism, the first gate mechanism comprises a first gate 2, the interior of the first gate 2 is slidably connected to a first water baffle 21, the first water baffle 21 is used for primary water blocking; the second gate mechanism comprises a second gate 3, the second gate 3 is located on one side of the first gate 2, the interior of the second gate 3 is slidably connected to a second water baffle 5, two connecting blocks 37 are installed on the top of the second water baffle 5, the two connecting blocks 37 are symmetrically distributed, a reciprocating screw 34 is rotatably connected between the two connecting blocks 37, the outer side of the reciprocating screw 34 is threadedly connected to a first limiting slider 36, both sides of the first limiting slider 36 are respectively connected to the corresponding connecting blocks 37, and the second water baffle 5 is used for secondary water blocking; A water collecting box 1 is installed at the bottom of the first gate 2 and the second gate 3. A water blocking baffle 4 is installed inside the water collecting box 1 and on one side of the second gate 3. Evenly spaced installation pipes 41 are installed inside the water blocking baffle 4. One end of the installation pipe 41 is installed with a water collecting pipe 42 on one side of the second gate 3. A support plate 44 is installed on one side of the water blocking baffle 4. A support vertical plate 54 is installed on the top of the support plate 44. A water outlet plate 48 is installed on one side of the support vertical plate 54. Evenly spaced water outlet holes 49 are opened inside the water outlet plate 48. Two fixing plates 46 are installed between the support vertical plate 54 and the water blocking baffle 4. A water pump 53 is installed between the two fixing plates 46. The output of the water pump 53 The outlet end is connected to the installation pipe 41, and the other end of the installation pipe 41 extends to the inside of the water outlet plate 48. The water collecting pipe 42 is used to guide water to the other side of the water blocking baffle 4. The water blocking baffle 4 is used for water blocking treatment. The water is pumped by the water pump 53 to the inside of the water outlet baffle 51 through the light-emitting plate 52, and then the water is transported to the inside of the water outlet plate 48 through the water outlet baffle 51. The water is discharged through the water outlet plate 48 and the water outlet hole 49. At this time, it is convenient to control the speed of the turbulent water flow. Two water inlet pipes 11 used in conjunction with the first gate 2 are installed on one side of the water collecting box 1. The two water inlet pipes 11 are convenient for introducing water into the first gate 2 and the second gate 3 for coordinated interception treatment. In this solution, a mounting horizontal plate 6 is installed on the side of the first gate 2 away from the second gate 3, and two connecting base plates 61 are installed on the top of the mounting horizontal plate 6. The tops of the two connecting base plates 61 are rotatably connected to first rotating arms 62, and the insides of the two first rotating arms 62 are rotatably connected to second rotating arms 63. The tops of the two second rotating arms 63 are rotatably connected to remote monitoring cameras 64. The two remote monitoring cameras 64 face opposite directions, and the two connecting base plates 61 are symmetrically distributed. The two remote monitoring cameras 64 are used to perform on-site all-round remote monitoring processing, and the adjustable structure of the first rotating arm 62 and the second rotating arm 63 facilitates the improvement of the monitoring range. In this solution, a mounting frame 71 is installed on the top of the first gate 2, and a power storage mechanism 7 is installed on the top of the mounting frame 71. A charging controller is installed inside the power storage warehouse. The solar panels inside the power storage mechanism 7 are used for outdoor solar energy resource collection operations, and the charging controller is used for cooperative power device storage. Through storage in the power storage warehouse, the power resource supply processing for outdoor equipment operation is realized. The first gate 2 and the second gate 3 cooperate to realize the lifting water retaining treatment on both sides. The water collection box 1 is convenient for water collection and speed control transportation, and it is also convenient to reinforce the first gate 2 and the second gate 3, thereby improving the service life of the equipment and meeting the water retaining needs of water conservancy projects in different scenarios.

[0021] See also Figures 1-10 In this solution, the outer side of the horizontal plate 6 is threadedly connected to two fifth positioning bolts 65 extending into the interior of the first gate 2. The outer side of the first rotating arm 62 is installed with a first limiting shaft for use with the second rotating arm 63, and the outer side of the second rotating arm 63 is installed with a second limiting shaft for use with the remote monitoring camera 64. One side of the supporting vertical plate 54 and on both sides of the water outlet plate 48 are fixedly connected with a guide plate 45. The top of the supporting plate 44 and on the side of the water outlet plate 48 away from the supporting vertical plate 54 are rotatably connected to two symmetrically distributed limiting rotating shafts 56. The outer side of the limiting rotating shafts 56 are installed with connecting rods 55, and one side of the connecting rods 55 is installed with an adjusting plate 47. The outer side of the fixed plate 46 is installed with a fourth positioning bolt 57 extending into the interior of the guide plate 45. The fixing plate 46 and the guide plate 45 are positioned and installed by the fourth positioning bolt 57. The two rotatable limiting rotating shafts 56 facilitate the angle adjustment of the two adjusting plates 47, and the two guide plates 45 and the two adjusting plates 47 are used to assist in water outlet guidance.

[0022] See also Figures 1-8 、 Figure 10In this solution, a third limiting slot 74 is provided inside the first gate 2 and above the slide bar 23. An electric telescopic rod 72 is installed inside the third limiting slot 74. The output end of the electric telescopic rod 72 is fixedly connected to the slide bar 23. One end of the bottom of the slide bar 23 is fixedly connected to the connecting ring 22. The bottom of the connecting ring 22 is connected to the first water baffle 21. The bottom of the mounting cross plate 6 is fixedly connected to a fixing column 75. The outer side of the fixing column 75 is slidably connected to a mounting sleeve 76. A limiting guide rail 28 is installed between the mounting cross plate 6 and the first gate 2. The limiting guide rail 2 A first limiting slot 29 is provided inside 8, and the top of the mounting sleeve 76 is fixedly connected to a second limiting slider 73 extending into the first limiting slot 29. One end of the top of the second limiting slider 73 is connected to the mounting frame 71. Removable covers are installed on both sides of the first gate 2. Open the cover on one side of the first gate 2 and manually adjust the mounting frame 71 to move to one side, which can drive the second limiting slider 73 to slide inside the first limiting slot 29 and drive the bottom mounting sleeve 76 to slide outside the fixed column 75, making it convenient to remove the internal equipment for daily maintenance.

[0023] See also Figures 1-10 In this solution, a first valve 12 is fixedly connected to the outside of the water inlet pipe 11, and a second valve 43 is fixedly connected to the outside of the water collection pipe 42. The first valve 12 is used to control the opening and closing of the corresponding water inlet pipe 11, and the second valve 43 is used to control the opening and closing of the corresponding water collection pipe 42.

[0024] In this solution, a protective cover 31 is installed on the outside of the second gate 3, and the bottom of the protective cover 31 is fixedly connected to the limiting sleeve 35. The reciprocating screw 34 passes through the protective cover 31 and the limiting sleeve 35. A motor mounting bracket 32 ​​is installed on the top of the second gate 3, and the top of the motor mounting bracket 32 ​​is fixedly connected to the driving motor 33. The output end of the driving motor 33 is fixedly connected to the top end of the reciprocating screw 34. When the driving motor 33 is turned, the reciprocating screw 34 is driven to rotate, and the first limiting slider 36 on the outside is driven to move downward. Under the connection of the two connecting blocks 37, the second water baffle 5 at the bottom is driven to move downward until the normal water blocking operation is performed. The cooperation of the first gate 2 and the second gate 3 realizes two water blocking operations, thereby improving the water blocking efficiency.

[0025] In this solution, two symmetrically distributed light-emitting panels 52 are installed on the outer side of the second water baffle 5, and lighting lamps are installed inside the two light-emitting panels 52. Water outlet baffles 51 with equal distances and different lengths are installed inside the second water baffle 5 and between the two light-emitting panels 52. The second water baffle 5 is provided with a fourth limiting groove for the installation of the water outlet baffle 51. The lighting lamp inside the light-emitting panel 52 is operated to drive the light-emitting panel 52 as a whole to illuminate, which is convenient for night operations. The second water baffle 5 is lowered to perform normal water blocking processing. When it is necessary to control the water output, the water outlet baffle 51 corresponding to the fourth limiting groove can be removed, which is convenient for controlling the water output and improves the flexibility of equipment use.

[0026] In this solution, the power storage mechanism 7 includes a solar panel and a power storage bin. The top of the mounting frame 71 is fixedly connected to the power storage bin, and a solar panel is installed on one side of the power storage bin. A main control board is provided inside the power storage bin. The first valve 12, the drive motor 33, the light-emitting panel 52, the water pump 53, the remote monitoring camera 64, the electric telescopic rod 72, the solar panel and the power storage bin are all electrically connected to the main control board. The main control board is used to control the operation of the first valve 12, the drive motor 33, the light-emitting panel 52, the water pump 53, the remote monitoring camera 64, the electric telescopic rod 72, the solar panel and the power storage bin, thereby realizing unified management of power equipment.

[0027] See also Figure 1-3 、 Figure 7-Figure 8 In this solution, two reinforcing side plates 25 are fixedly connected to the side of the first gate 2 away from the second gate 3. The two reinforcing side plates 25 are symmetrically distributed. One side of the two reinforcing side plates 25 is fixedly connected to a positioning base plate 26. The interior of the two positioning base plates 26 is threadedly connected with a third positioning bolt 27 extending into the interior of the water collecting box 1. The two reinforcing side plates 25 and the positioning base plate 26 assist in supporting the first gate 2 and the second gate 3 as a whole. The positioning base plate 26 and the water collecting box 1 are positioned and installed by the third positioning bolt 27, thereby realizing a one-time fixing operation of the first gate 2, the second gate 3 and the water collecting box 1.

[0028] See also Figure 1-Figure 3 、 Figure 6-Figure 8 In this scheme, a first installation inner cavity 24 is opened inside the first gate 2 to cooperate with the installation of the first water baffle 21, and a second installation inner cavity 38 is opened inside the second gate 3 to cooperate with the installation of the second water baffle 5. Second limiting slide grooves 39 are opened on both sides of the inner wall of the second gate 3, and the sliding track of the second water baffle 5 is limited by the two. The second installation inner cavity 38 is opened inside the second gate 3 to cooperate with normal reset. The second water baffle 5 is installed by opening a second installation inner cavity 38 inside the second gate 3, and the first water baffle 21 is installed by opening a first installation inner cavity 24 inside the first gate 2.

[0029] In this solution, a water collecting tank 13 is provided inside the water collecting box 1 for use in conjunction with the first gate 2 and the second gate 3. Second positioning bolts 15 extending to the inside of the first gate 2 are installed on both sides of the water collecting box 1, and first positioning bolts 14 extending to the inside of the second gate 3 are installed on both sides of the water collecting box 1. The first positioning bolt 14 is located on one side of the second positioning bolt 15. The water collecting box 1 and the second gate 3 are reinforced and installed by the first positioning bolt 14, and the water collecting box 1 and the first gate 2 are reinforced and installed by the second positioning bolt 15, thereby realizing a secondary fixing operation and reducing the impact of water on the equipment. The outer sides of the first positioning bolt 14, the second positioning bolt 15, the first gate 2 and the second gate 3 are coated with waterproof paint, thereby extending the service life of the equipment.

[0030] See also Figures 1-10 , the working principle of the present invention: The present invention is provided with a first gate mechanism and a second gate mechanism, which facilitates the introduction of water into the first gate 2 and the second gate 3 through two water inlet pipes 11 for coordinated interception treatment. The first water baffle 21 is used for primary water blocking, and the second water baffle 5 is used for secondary water blocking treatment. Removable cover plates are installed on both sides of the first gate 2. Open the cover plate on one side of the first gate 2, and manually adjust the installation frame 71 to move to one side, which can drive the second limiting slider 73 to slide inside the first limiting slide groove 29, and drive the bottom installation sleeve 76 to slide outside the fixed column 75, so as to facilitate the removal of internal equipment for daily maintenance.

[0031] The outside of the water collecting pipe 42 is fixedly connected with a second valve 43. The first valve 12 is used to control the opening and closing of the corresponding water inlet pipe 11, and the second valve 43 is used to control the opening and closing of the corresponding water collecting pipe 42. By driving the motor 33, the reciprocating screw 34 is driven to rotate, and the first limiting slider 36 on the outside is driven to move downward. Under the connection of the two connecting blocks 37, the second water baffle 5 at the bottom is driven to move downward until normal water blocking operation is performed.

[0032] The cooperation of the first gate 2 and the second gate 3 realizes two water-blocking operations, thereby improving the water-blocking efficiency. The interior of the second water baffle 5 is provided with a fourth limiting groove for the installation of the water outlet baffle 51. The lighting lamp inside the light-emitting panel 52 is operated to drive the light-emitting panel 52 to emit light as a whole, thereby facilitating nighttime operations.

[0033] The second water baffle 5 is lowered to perform normal water blocking. When the water output needs to be controlled, the corresponding water baffle 51 inside the fourth limiting groove can be removed to facilitate the control of the water output and improve the flexibility of the equipment when used.

[0034] The main control panel is used to control the operation of the first valve 12, the drive motor 33, the light-emitting panel 52, the water pump 53, the remote monitoring camera 64, the electric telescopic rod 72, the solar panel and the power storage compartment, thereby realizing the unified management of the power equipment.

[0035] The present invention is provided with a water collecting box, and the water collecting pipe 42 is used to guide water to the other side of the water blocking baffle 4, and the water blocking baffle 4 is used for water blocking treatment.

[0036] By operating the water pump 53, water is transported to the inside of the water outlet baffle 51 through the light-emitting panel 52, and then to the inside of the water outlet plate 48 through the water outlet baffle 51. Water is discharged through the water outlet plate 48 and the water outlet hole 49. At this time, it is convenient to control the speed of the turbulent water flow.

[0037] The two remote monitoring cameras 64 face opposite directions, and the two connecting base plates 61 are symmetrically distributed. The two remote monitoring cameras 64 are used to perform all-round remote monitoring on site, and the adjustable structure of the first rotating arm 62 and the second rotating arm 63 facilitates the improvement of the monitoring range.

[0038] A charging controller is installed inside the storage warehouse. The solar panels inside the storage mechanism 7 are used for outdoor solar energy resource collection operations. The charging controller is used to cooperate with the power device for storage. Through storage in the storage warehouse, the power resource supply processing for outdoor equipment operation is realized.

[0039] The first gate 2 and the second gate 3 cooperate to realize the lifting water retaining treatment on both sides. The water collecting box 1 is convenient for collecting water and transporting it at a controlled speed, and it is also convenient to reinforce the first gate 2 and the second gate 3, thereby improving the service life of the equipment and meeting the water retaining needs of water conservancy projects in different scenarios.

[0040] The fixing plate 46 and the guide plate 45 are positioned and installed by the fourth positioning bolt 57. The two rotatable limiting shafts 56 are provided to facilitate the angle adjustment of the two adjustment plates 47, and auxiliary water outlet guiding processing is performed through the two guide plates 45 and the two adjustment plates 47.

[0041] The first gate 2 and the second gate 3 are supported as a whole by means of two reinforcing side plates 25 and a positioning base plate 26, and the positioning base plate 26 and the water collecting box 1 are positioned and installed by means of a third positioning bolt 27, thereby achieving a one-time fixing operation of the first gate 2, the second gate 3 and the water collecting box 1, and the sliding track of the second water baffle 5 is limited by two means to cooperate with normal reset.

[0042] By opening a second installation cavity 38 inside the second gate 3 to cooperate with the installation of the second water baffle 5, by opening a first installation cavity 24 inside the first gate 2 to cooperate with the installation of the first water baffle 21, the water collecting box 1 and the second gate 3 are reinforced and installed by the first positioning bolt 14, and the water collecting box 1 and the first gate 2 are reinforced and installed by the second positioning bolt 15, a secondary fixing operation is achieved, which reduces the impact effect of water on the equipment.

[0043] The outer sides of the first positioning bolt 14, the second positioning bolt 15, the first gate 2 and the second gate 3 are all coated with waterproof coating, thereby extending the service life of the equipment. The first gate 2 and the second gate 3 cooperate to perform multi-stage water blocking operations, and the water flow is filtered and diverted through the water outlet plate 48 and the water outlet hole 49, thereby effectively controlling the water flow rate, reducing damage to the equipment, and reducing the number of frequent manual maintenance, thereby reducing labor intensity, meeting the water blocking needs in different water conservancy project scenarios, and at the same time, through the multi-stage positioning effect, ensuring the stability of the internal equipment during operation, thereby cooperating with normal use.

[0044] The size of the water outlet 49 can be adjusted as needed to meet the needs of conveying water flow.

[0045] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A lifting type hydraulic engineering gate for a hydraulic engineering project, comprising a first gate mechanism, characterized in that: Also includes: A second gate mechanism is installed on one side of the first gate mechanism, the first gate mechanism comprising a first gate (2), the interior of the first gate (2) being slidably connected to a first water baffle (21); The second gate mechanism comprises a second gate (3), wherein the interior of the second gate (3) is slidably connected to a second water baffle (5); A water collecting box (1) is installed at the bottom of the first gate (2) and the second gate (3), a water blocking baffle (4) is installed inside the water collecting box (1), an installation pipe (41) is installed inside the water blocking baffle (4), one end of each installation pipe (41) is installed with a water collecting pipe (42), a support plate (44) and a support vertical plate (54) are installed on one side of the water blocking baffle (4), and a water outlet plate (48) is installed on one side of the support vertical plate (54); Two water inlet pipes (11) for use with the first gate (2) are installed on one side of the water collecting box (1); a mounting horizontal plate (6) is installed on the side of the first gate (2) away from the second gate (3); two connecting bottom plates (61) are installed on the top of the mounting horizontal plate (6); the tops of the two connecting bottom plates (61) are rotatably connected to a first rotating arm (62) and a second rotating arm (63); the tops of the two second rotating arms (63) are rotatably connected to a remote monitoring camera (64); A mounting frame (71) and a power storage mechanism (7) are installed on the top of the first gate (2).

2. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 1 is characterized in that: Two fixing plates (46) are installed between the supporting vertical plate (54) and the water blocking baffle (4), and a water pump (53) is installed between the two fixing plates (46). The outer side of the mounting transverse plate (6) is threadedly connected to two fifth positioning bolts (65) extending into the interior of the first gate (2). One side of the supporting vertical plate (54) and both sides of the water outlet plate (48) are fixedly connected to the guide plate (45). The top of the supporting plate (44) and the side of the water outlet plate (48) away from the supporting vertical plate (54) are rotatably connected to two symmetrically distributed limiting rotating shafts (56). The outer sides of the limiting rotating shafts (56) are each installed with a connecting rod (55), and one side of the connecting rod (55) is each installed with an adjusting plate (47). The outer sides of the fixing plates (46) are each installed with a fourth positioning bolt (57) extending into the interior of the guide plate (45).

3. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 2, characterized in that: A third limiting slide groove (74) is provided inside the first gate (2) and above the slide rod (23). An electric telescopic rod (72) is installed inside the third limiting slide groove (74). The output end of the electric telescopic rod (72) is fixedly connected to the slide rod (23). One end of the bottom of the slide rod (23) is fixedly connected to a connecting ring (22). The bottom of the connecting ring (22) is connected to the first water baffle (21). The bottom of the mounting cross plate (6) is fixedly connected to a fixed A fixed column (75) is provided, wherein the outer side of the fixed column (75) is slidably connected to a mounting sleeve (76), a limiting guide rail (28) is installed between the mounting horizontal plate (6) and the first gate (2), a first limiting slide groove (29) is provided inside the limiting guide rail (28), a second limiting slider (73) extending into the first limiting slide groove (29) is fixedly connected to the top of the mounting sleeve (76), and one end of the top of the second limiting slider (73) is connected to the mounting frame (71).

4. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 3 is characterized in that: The outer side of each water inlet pipe (11) is fixedly connected to a first valve (12), and the outer side of each water collection pipe (42) is fixedly connected to a second valve (43).

5. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 1 is characterized in that: Two reinforcing side plates (25) are fixedly connected to one side of the first gate (2) away from the second gate (3), and one side of each of the two reinforcing side plates (25) is fixedly connected to a positioning base plate (26). The interiors of the two positioning base plates (26) are threadedly connected to a third positioning bolt (27) extending into the interior of the water collecting box (1).

6. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 4, characterized in that: Two connecting blocks (37) are installed on the top of the second water baffle (5), and a reciprocating screw (34) is rotatably connected between the two connecting blocks (37). The outer side of the reciprocating screw (34) is threadedly connected to a first limiting slider (36), and both sides of the first limiting slider (36) are respectively connected to the corresponding connecting blocks (37). A protective cover (31) is installed on the outer side of the second gate (3), and the bottom of the protective cover (31) is fixedly connected to a limiting sleeve (35). The reciprocating screw (34) passes through the protective cover (31) and the limiting sleeve (35). A motor mounting frame (32) is installed on the top of the second gate (3), and a driving motor (33) is fixedly connected to the top of the motor mounting frame (32). The output end of the driving motor (33) is fixedly connected to one end of the top of the reciprocating screw (34).

7. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 6, characterized in that: Two symmetrically distributed light-emitting panels (52) are installed on the outside of the second water baffle (5), and water outlet baffles (51) with equal spacing and different lengths are installed inside the second water baffle (5) and between the two light-emitting panels (52).

8. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 6, characterized in that: A first mounting inner cavity (24) for mounting in cooperation with the first water baffle (21) is provided inside the first gate (2), a second mounting inner cavity (38) for mounting in cooperation with the second water baffle (5) is provided inside the second gate (3), and second limiting sliding grooves (39) are provided on both sides of the inner wall of the second gate (3).

9. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 7, characterized in that: The electricity storage mechanism (7) includes a solar panel and an electricity storage bin. The top of the mounting frame (71) is fixedly connected to the electricity storage bin. A solar panel is installed on one side of the electricity storage bin. A main control board is provided inside the electricity storage bin. The first valve (12), the drive motor (33), the light-emitting panel (52), the water pump (53), the remote monitoring camera (64), the electric telescopic rod (72), the solar panel and the electricity storage bin are all electrically connected to the main control board.

10. The lifting type hydraulic engineering gate for hydraulic engineering according to claim 8, characterized in that: The water collecting box (1) is provided with a water collecting trough (13) for use in conjunction with the first gate (2) and the second gate (3). Second positioning bolts (15) extending into the interior of the first gate (2) are installed on both sides of the water collecting box (1), and first positioning bolts (14) extending into the interior of the second gate (3) are installed on both sides of the water collecting box (1).