Water conservancy irrigation device for water conservancy project building
By designing multi-irrigation mechanisms and automated control water conservancy irrigation devices, the flexibility and stability of existing devices are solved, multi-scene adaptation and dust treatment are achieved, and irrigation efficiency and safety are improved.
Patent Information
- Application Number
- CN202510204386.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-07-11
AI Technical Summary
The existing water conservancy irrigation devices cannot switch the operating mode according to the specifications of the water conservancy construction equipment for irrigation treatment, and require manual auxiliary pipeline connections, and dust particles are prone to cause equipment blockage, affecting normal use and health.
A water conservancy irrigation device including a first irrigation mechanism, a second irrigation mechanism and a third irrigation mechanism are designed, and the dust is recovered through various irrigation methods and angle adjustments, combined with infrared sensors and air pumps, to achieve automated control and equipment stability.
It improves the flexibility and stability of the irrigation device, reduces manual operation, prevents equipment blockage, and is suitable for water conservancy construction of different specifications and heights, meeting the needs of multiple scenarios.
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Figure CN120286226A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of hydraulic engineering construction equipment, and specifically relates to a hydraulic irrigation device for hydraulic engineering construction. Background Technique
[0002] A hydraulic project refers to a project for the development, utilization, regulation, and protection of water resources by constructing facilities such as dams, canals, gates, weirs, pumping stations, and by using technical measures such as culverts, water collection, water conveyance, water supply, drainage, and flood control of water. The main purpose of hydraulic projects is to rationally utilize water resources under different demands and situations to meet the needs of society in aspects such as farmland irrigation, urban water supply, industrial water use, power generation, shipping, drainage, flood control, and ecological restoration. In some areas, water resources are severely scarce, and the irrigation system needs to rely on limited water sources to meet agricultural irrigation requirements. Therefore, there is a need to develop a more efficient, water-saving, and convenient hydraulic irrigation device for hydraulic engineering construction.
[0003] Chinese Patent Publication No. CN 216796030 U discloses a hydraulic irrigation device for hydraulic engineering construction, belonging to the field of hydraulic technology. A hydraulic irrigation device for hydraulic engineering construction includes a mobile vehicle frame. A water baffle is fixedly arranged outside the mobile vehicle frame, a pump-containing water tank is fixedly arranged inside the mobile vehicle frame, a parts box body is fixedly arranged on the top surface of the mobile vehicle frame, a motor is embedded on the side wall of the parts box body, a half-face bevel gear is fixedly arranged at the output end of the motor, and two bevel gears are rotatably connected in a vertically symmetrical structure inside the parts box body relative to the position of the half-face bevel gear. A narrow gear is fixedly arranged on the outer wall of the lower bevel gear, a wide gear is rotatably connected inside the parts box body relative to the outside of the narrow gear, and two ring gear plates are rotatably connected in a vertically offset symmetrical structure inside the parts box body. A watering and spraying rod is fixedly arranged outside the ring gear plate, and a water connection nozzle is fixedly arranged outside the watering and spraying rod. Through the setting of the water baffle, the utility model makes it not easy to splash water when the watering and spraying rod swings and sprays, thereby improving the protection effect on users.
[0004] However, the following problems still exist in the above scheme: It is impossible to switch the operation mode according to the specifications of the hydraulic engineering construction equipment for irrigation treatment, and it can only be manually connected with various pipes for auxiliary irrigation treatment, which is time-consuming and laborious and brings many inconveniences. At the same time, dust particles are diffused at some hydraulic engineering sites, which is likely to cause equipment blockage, affect the normal irrigation use of the equipment, and also endanger the physical and mental health of the staff. Therefore, the present invention needs to design a hydraulic irrigation device for hydraulic engineering construction to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a hydraulic irrigation device for hydraulic engineering construction to solve the problems raised in the above background technique.
[0006] To achieve the above object, the present invention provides the following technical solution: A water conservancy irrigation device for a water conservancy project building, including a support bottom plate, further including:
[0007] The first irrigation mechanism, the first irrigation mechanism is located at the top of the support bottom plate, the first irrigation mechanism includes a first fixing frame and a water storage irrigation bin, two building placement plates are installed on the top of the support bottom plate, the first fixing frame is installed above the two building placement plates, the water storage irrigation bins are installed above the two first fixing frames, opening and closing covers are installed on the outer sides of the two water storage irrigation bins, water outlet inner cavities are opened inside the two opening and closing covers, first water outlet plates are installed inside the water outlet inner cavities, and water outlet holes are arranged at equal intervals inside the first water outlet plates. The first irrigation treatment is carried out through the cooperation of the water storage irrigation bin, the first water outlet plate and the water outlet holes;
[0008] The bottom protection plate, the bottom protection plate is located below the support bottom plate;
[0009] The second irrigation mechanism, the second irrigation mechanism is located between the bottom protection plate and the support bottom plate, the second irrigation mechanism includes a water storage tank, the water storage tank is installed on the top of the bottom protection plate, a second water outlet plate is installed on one side of the water storage tank, two guiding water outlet devices are installed at the bottom of the second water outlet plate, second water outlet pipes are installed inside the two guiding water outlet devices, and spraying discs are installed at the bottoms of the two second water outlet pipes. The second irrigation treatment is carried out through the two spraying discs;
[0010] The third irrigation mechanism, the third irrigation mechanism is located below one of the water storage irrigation bins, and the third irrigation treatment is carried out through the third irrigation mechanism;
[0011] The first water outlet pipe, the first water outlet pipe is located on one side of the water storage irrigation bin, a first water outlet is installed at one end of the top of the first water outlet pipe, the first water outlets are all located above the corresponding opening and closing covers, rotary connection sleeves are installed between the first water outlet pipe and the first water outlets, first valves are installed on the outer side of the first water outlet pipe and on one side of the rotary connection sleeve. The first valves are used to control the opening and closing of the corresponding first water outlet pipes. The other ends of the first water outlet pipes are all installed with first conveying pipes, external connection pipes are installed on the tops of the first conveying pipes, and one end of the top of the external connection pipe is connected to an external water conveying channel, so as to ensure that the first water outlet pipe can convey irrigation water into the water storage irrigation bin.
[0012] As a preferred embodiment of the present invention, second mounting rails are installed on both sides of the first fixing frame. Third pulleys are installed on the tops of the second mounting rails. The tops of the third pulleys are connected to the corresponding water storage and irrigation bins. A connecting shaft is installed between two second mounting rails on the same side. Connecting rods are installed on the closer sides of the two connecting shafts. Bottom support rods are installed at the bottoms of the two connecting rods. Second fixing frames are installed at the bottoms of the bottom support rods. Symmetrically distributed second pulleys are installed at the bottoms of the second fixing frames. The second pulleys cooperate with the first pulleys to drive the entire first irrigation mechanism to move in position, improving the stability of the equipment during movement.
[0013] As a preferred embodiment of the present invention, mounting grooves are provided at the tops of the two support bottom plates and on both sides of the building placement plate. First mounting rails are installed inside the mounting grooves. The first pulley and the second pulley both slide inside the corresponding first mounting rails. Mounting seats are installed on the outsides of the first fixing frame. One ends of the second mounting rails extend into the corresponding mounting seats. Positioning bolts passing through the corresponding second mounting rails are installed inside the first fixing frame. The first fixing frame, the mounting seat, and the second mounting rail are limited by the positioning bolts, improving the stability during equipment connection.
[0014] As a preferred embodiment of the present invention, a power storage bin is installed on the top of the bottom protection plate. The power storage bin is located on the side of the water storage tank away from the second water outlet plate. Second valves are fixedly connected to the outsides of the second water outlet pipes. Infrared sensors are fixedly connected to one side of the guiding water outlet device and above the second water outlet pipes. Remote monitoring is facilitated through the infrared sensors. The opening and closing of the second water outlet pipes are controlled by the second valves. A waterproof coating is applied to the outside of the power storage bin. The power storage bin provides power resource supply for the equipment. A water pump cooperating with the second water outlet plate is installed inside the water storage tank. Through the operation of the water pump, water is transported into the second water outlet plate and then into the corresponding second water outlet pipes. The corresponding second valves are opened, and water is discharged through the spraying disc. The second water outlet pipes are made of corrugated pipes and can be slightly adjusted in angle, meeting the requirements for irrigation at various angles.
[0015] As a preferred embodiment of the present invention, support frames are installed at the bottoms of the support bottom plates and on both sides of the bottom protection plate. Symmetrically distributed universal wheels are installed at the bottoms of the two support frames. The entire equipment is supported by the two support frames, and the entire equipment is conveniently moved by the universal wheels, meeting the irrigation requirements of water conservancy project equipment at different locations.
[0016] As a preferred embodiment of the present invention, the third irrigation mechanism includes a water outlet tank and a positioning frame. The water outlet tank is installed on the top of the building placement plate. The water outlet tank is located below the water storage and irrigation bin provided therein. A positioning frame is installed on one side of the water outlet tank. A second conveying pipe extending into the water outlet tank is installed inside the positioning frame. The other end of the second conveying pipe is installed with a third water outlet pipe. One end of the third water outlet pipe away from the second conveying pipe is installed with a second water outlet. The top of the third water outlet pipe is installed with equally spaced fourth water outlet pipes. Water outlet irrigation treatment is carried out through the cooperation of multiple fourth water outlet pipes and the second water outlet.
[0017] As a preferred embodiment of the present invention, a maintenance top cover is installed on the top of the water outlet tank. A water receiving pipe is installed at the bottom of the water outlet tank. One end of the bottom of the water receiving pipe extends into the water storage tank. A fourth valve is fixedly connected to the outside of the second water outlet. Fifth valves are fixedly connected to the outside of the fourth water outlet pipes. A connection joint is installed on the outside of the second conveying pipe and above the positioning frame. The second conveying pipe and the third water outlet pipe are connected through the connection joint to ensure normal water conveyance and irrigation operations. The fourth valve is used to control the opening and closing of the second water outlet, and the fifth valves are used to control the opening and closing of the fourth water outlet pipes, so as to carry out irrigation treatment during the construction of water conservancy projects in the required directions, achieving a three-time irrigation effect. The use of irrigation equipment in three different ways and different orientations improves the flexibility of the equipment.
[0018] As a preferred embodiment of the present invention, a recycling box is installed on one side of the water storage tank. A recycling bin is fixedly connected to one side of the recycling box. The recycling bin is located on the side of the recycling box away from the water storage tank. A recycling groove is opened inside the recycling bin.
[0019] As a preferred embodiment of the present invention, equally spaced on-site recycling pipes are installed on one side of the recycling box and above the recycling bin. Third valves are fixedly connected to the outside of the on-site recycling pipes. An air pump for cooperating with the on-site recycling pipes is installed inside the recycling box. During actual use, the air pump inside the recycling box operates, the corresponding third valves are opened, and on-site dust and particulate matter are recycled through multiple on-site recycling pipes. Larger particulate matters will not be able to enter the inside of the on-site recycling pipes and will fall into the recycling bin for unified collection, which is convenient for manual unified cleaning.
[0020] As a preferred embodiment of the present invention, a control panel is fixedly connected to the outside of the recycling bin. The control panel is located on the side adjacent to the recycling bin. The power storage bin, the first valve, the infrared sensor, the second valve, the third valve, the fourth valve and the fifth valve are all electrically connected to the control panel. The control panel is used to control the operation of the first valve, the power storage bin, the infrared sensor, the second valve, the third valve, the fourth valve and the fifth valve, realizing the unified management of power equipment and facilitating the remote control of equipment by water conservancy project staff.
[0021] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0022] 1. The present invention is provided with a first irrigation mechanism, a second irrigation mechanism and a third irrigation mechanism. When in use, the control panel is turned on. External pipelines are installed at the top of the first conveying pipeline. One end of the top of the external pipeline is connected to the external water conveying channel, so as to ensure that the first water outlet pipeline can convey irrigation water into the water storage and irrigation bin. The first irrigation mechanism is driven by the cooperation of the second pulley and the first pulley to move as a whole, improving the stability of the equipment during movement. The first fixing frame, the mounting seat and the second mounting guide rail are limited by positioning bolts, improving the stability of the equipment connection. Remote monitoring is facilitated through the infrared sensor. The opening and closing of the second water outlet pipeline is controlled by the second valve. When the corresponding second valve is opened, water flows out through the spraying disc. The material of the second water outlet pipeline is corrugated pipe, which can be slightly adjusted in angle, meeting the requirements of various angles during irrigation. Multiple fourth water outlet pipelines and the second water outlet cooperate to carry out water outlet and irrigation treatment. The second conveying pipeline and the third water outlet pipeline are connected by a connecting joint to ensure normal water conveyance and irrigation operation. The fourth valve is used to control the opening and closing of the second water outlet, and the fifth valve is used to control the opening and closing of the fourth water outlet pipeline, so as to carry out irrigation treatment during the construction of water conservancy projects in the required directions, achieving three irrigation effects. The use of irrigation equipment in three different ways and different orientations improves the flexibility of the equipment.
[0023] 2. The present invention is provided with a recycling bin, a power storage bin and a support frame. An air pump for cooperating with the on-site recycling pipeline is installed inside the recycling bin. During actual use, the air pump inside the recycling bin operates, and the corresponding third valve is opened. The on-site dust particles are recycled through multiple on-site recycling pipelines. Larger particles cannot enter the on-site recycling pipeline and fall into the recycling bin for unified collection, facilitating manual unified cleaning. The overall equipment is supported by two support frames, and the overall equipment is driven by universal wheels for convenient movement, meeting the irrigation requirements of water conservancy project equipment at different locations, facilitating separate irrigation operations for movable water conservancy buildings and fixed water conservancy buildings, and can be conveniently moved according to requirements, meeting the requirements of different operation scenarios, improving the overall flexibility of the equipment, and being suitable for popularization and use. Brief Description of the Drawings
[0024] Figure 1 This is a schematic diagram of the overall structure of a water conservancy irrigation device for a water conservancy project building according to the present invention Figure 1 ;
[0025] Figure 2 This is a schematic diagram of the overall structure of a water conservancy irrigation device for a water conservancy project building according to the present invention Figure 2 ;
[0026] Figure 3 This is an enlarged schematic diagram of the first irrigation mechanism of a water conservancy irrigation device for a water conservancy project building according to the present invention;
[0027] Figure 4 This is an internal view of the structure of the water storage irrigation bin of a water conservancy irrigation device for a water conservancy project building according to the present invention;
[0028] Figure 5 This is a schematic diagram of the second irrigation mechanism of a water conservancy irrigation device for a water conservancy project building according to the present invention Figure 1 ;
[0029] Figure 6 This is a schematic diagram of the second irrigation mechanism of a water conservancy irrigation device for a water conservancy project building according to the present invention Figure 2 ;
[0030] Figure 7 This is a schematic diagram of the third irrigation mechanism of a water conservancy irrigation device for a water conservancy project building according to the present invention;
[0031] Figure 8 This is an attachment of a water conservancy irrigation device for a water conservancy project building according to the present invention Figure 6 An enlarged schematic diagram of the structure at A in
[0032] In the figure:
[0033] 1. Support bottom plate; 11. Building placement plate; 12. Installation groove; 13. First installation guide rail; 14. First conveying pipeline; 15. First water outlet pipeline; 16. Rotary connection sleeve; 17. First water outlet; 18. First valve; 19. External pipeline;
[0034] 2. First fixing frame; 21. First pulley; 22. Mounting seat; 23. Second installation guide rail; 24. Positioning bolt; 25. Connecting shaft; 26. Connecting rod; 27. Bottom support rod; 28. Second fixing frame; 29. Second pulley;
[0035] 3. Water storage irrigation bin; 31. Opening and closing cover; 32. Water outlet inner cavity; 33. First water outlet plate; 34. Water outlet hole; 35. Third pulley;
[0036] 4. Bottom protection plate; 41. Energy storage bin; 42. Water storage tank; 43. Second water outlet plate; 44. Guided water outlet device; 45. Infrared sensor; 46. Second water outlet pipe; 47. Second valve; 48. Spraying disc;
[0037] 5. Recycling bin; 51. Control panel; 52. Recycling bin; 53. Recycling tank; 54. On-site recycling pipe; 55. Third valve;
[0038] 6. Water outlet tank; 61. Maintenance top cover; 62. Second conveying pipe; 63. Positioning frame; 64. Connecting joint; 65. Third water outlet pipe; 66. Second water outlet; 67. Fourth valve; 68. Fourth water outlet pipe; 69. Fifth valve;
[0039] 7. Support frame; 71. Universal wheel. Specific implementation manner
[0040] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0041] Please refer to Figures 1-8 , the present invention provides a technical solution: a water conservancy irrigation device for water conservancy engineering buildings, including a support bottom plate 1, and further including: a first irrigation mechanism, the first irrigation mechanism is located on the top of the support bottom plate 1, the first irrigation mechanism includes a first fixing frame 2 and a water storage and irrigation bin 3, two building placement plates 11 are installed on the top of the support bottom plate 1, a first fixing frame 2 is installed above the two building placement plates 11, water storage and irrigation bins 3 are installed above the two first fixing frames 2, opening and closing covers 31 are installed on the outer sides of the two water storage and irrigation bins 3, water outlet cavities 32 are opened inside the two opening and closing covers 31, first water outlet plates 33 are installed inside the water outlet cavities 32, and water outlet holes 34 are equidistantly distributed inside the first water outlet plates 33. The first irrigation treatment is carried out through the cooperation of the water storage and irrigation bin 3, the first water outlet plate 33 and the water outlet holes 34; a bottom protection plate 4, the bottom protection plate 4 is located below the support bottom plate 1;
[0042] In this solution, the second irrigation mechanism is located between the bottom protection plate 4 and the support bottom plate 1. The second irrigation mechanism includes a water storage tank 42. The water storage tank 42 is installed at the top of the bottom protection plate 4. A second water outlet plate 43 is installed on one side of the water storage tank 42. Two guiding water outlet devices 44 are installed at the bottom of the second water outlet plate 43. Second water outlet pipes 46 are installed inside the two guiding water outlet devices 44. Spraying discs 48 are installed at the bottoms of the two second water outlet pipes 46. Secondary irrigation treatment is carried out through the two spraying discs 48;
[0043] In this solution, the third irrigation mechanism is located below one of the water storage and irrigation bins 3. Tertiary irrigation treatment is carried out through the third irrigation mechanism;
[0044] In this solution, for the first water outlet pipe 15, the first water outlet pipe 15 is located on one side of the water storage and irrigation bin 3. One end of the top of the first water outlet pipe 15 is provided with a first water outlet 17. The first water outlets 17 are all located above the corresponding opening and closing covers 31. Rotary connection sleeves 16 are installed between the first water outlet pipe 15 and the first water outlets 17. First valves 18 are installed on the outer side of the first water outlet pipe 15 and on one side of the rotary connection sleeve 16. The first valves 18 are used to control the opening and closing of the corresponding first water outlet pipe 15. The other ends of the first water outlet pipes 15 are all installed with first conveying pipes 14. External connection pipes 19 are installed at the tops of the first conveying pipes 14. One end of the top of the external connection pipe 19 is connected to an external water conveying channel, so as to ensure that the first water outlet pipe 15 can convey irrigation water into the water storage and irrigation bin 3.
[0045] Please refer to Figures 1-3 , in this solution, second installation guide rails 23 are installed on both sides of the first fixing frame 2. Third pulleys 35 are installed at the tops of the second installation guide rails 23. The tops of the third pulleys 35 are all connected to the corresponding water storage and irrigation bins 3. A connecting shaft 25 is installed between the two second installation guide rails 23 on the same side. Connecting rods 26 are installed on the closer sides of the two connecting shafts 25. Bottom support rods 27 are installed at the bottoms of the two connecting rods 26. Second fixing frames 28 are installed at the bottoms of the bottom support rods 27. Symmetrically distributed second pulleys 29 are installed at the bottoms of the second fixing frames 28. The second pulleys 29 cooperate with the first pulleys 21 to drive the whole first irrigation mechanism to move in position, improving the equipment stability during movement.
[0046] In this solution, installation grooves 12 are provided at the tops of the two support bottom plates 1 and on both sides of the building placement plate 11. First installation guide rails 13 are installed inside the installation grooves 12. The first pulley 21 and the second pulley 29 both slide inside the corresponding first installation guide rails 13. Mounting seats 22 are installed on the outer sides of the first fixing frames 2. One ends of the second installation guide rails 23 extend into the corresponding mounting seats 22. Positioning bolts 24 penetrating the corresponding second installation guide rails 23 are installed inside the first fixing frames 2. The first fixing frames 2, the mounting seats 22, and the second installation guide rails 23 are limited by the positioning bolts 24, improving the stability during equipment connection.
[0047] Please refer to Figures 5-6 In this solution, a power storage bin 41 is installed at the top of the bottom protection plate 4. The power storage bin 41 is located on the side of the water storage tank 42 away from the second water outlet plate 43. Second valves 47 are fixedly connected to the outer sides of the second water outlet pipes 46. Infrared sensors 45 are fixedly connected to one side of the guiding water outlet device 44 and above the second water outlet pipes 46. Remote monitoring and processing are facilitated through the infrared sensors 45. The opening and closing of the second water outlet pipes 46 are controlled by the second valves 47. A waterproof coating is applied to the outer side of the power storage bin 41. The power storage bin 41 provides power resource supply for the equipment. A water pump for cooperating with the second water outlet plate 43 is installed inside the water storage tank 42. Through the operation of the water pump, water is transported into the second water outlet plate 43 and then into the corresponding second water outlet pipes 46. The corresponding second valves 47 are opened, and water is discharged through the spraying disc 48. The second water outlet pipes 46 are made of corrugated pipes and can be slightly adjusted in angle, meeting the requirements of various angles during irrigation.
[0048] Please refer to Figures 1-2 、 Figure 7 In this solution, the third irrigation mechanism includes a water outlet tank 6 and a positioning frame 63. The water outlet tank 6 is installed at the top of the building placement plate 11. The water outlet tank 6 is located below the water storage and irrigation bin 3 provided therein. A positioning frame 63 is installed on one side of the water outlet tank 6. A second conveying pipe 62 extending into the water outlet tank 6 is installed inside the positioning frame 63. The other end of the second conveying pipe 62 is installed with a third water outlet pipe 65. A second water outlet 66 is installed at the end of the third water outlet pipe 65 away from the second conveying pipe 62. Fourth water outlet pipes 68 are installed at equal intervals on the top of the third water outlet pipe 65. Water outlet irrigation treatment is carried out through the cooperation of the multiple fourth water outlet pipes 68 and the second water outlet 66.
[0049] In this solution, a maintenance top cover 61 is installed at the top of the water outlet tank 6, a water receiving pipe is installed at the bottom of the water outlet tank 6, and the bottom end of the water receiving pipe extends into the interior of the water storage tank 42. A fourth valve 67 is fixedly connected to the outside of the second water outlet 66, and fifth valves 69 are fixedly connected to the outside of the fourth water outlet pipes 68. A connection joint 64 is installed on the outside of the second conveying pipe 62 and above the positioning frame 63. The second conveying pipe 62 and the third water outlet pipe 65 are connected through the connection joint 64 to ensure normal water conveyance and irrigation operations. The fourth valve 67 is used to control the opening and closing of the second water outlet 66, and the fifth valve 69 is used to control the opening and closing of the fourth water outlet pipes 68, so as to perform irrigation treatment during the construction of water conservancy projects in the required directions, achieving a three-time irrigation effect. The coordinated use of irrigation devices in three different ways and different orientations improves the flexibility of equipment use.
[0050] Please refer to Figures 6-8 , in this solution, a recycling box 5 is installed on one side of the water storage tank 42. A recycling bin 52 is fixedly connected to one side of the recycling box 5. The recycling bin 52 is located on the side of the recycling box 5 away from the water storage tank 42, and a recycling slot 53 is opened inside the recycling bin 52.
[0051] In this solution, equidistantly distributed on-site recycling pipes 54 are installed on one side of the recycling box 5 and above the recycling bin 52. Third valves 55 are fixedly connected to the outside of the on-site recycling pipes 54. An air pump for cooperating with the on-site recycling pipes 54 is installed inside the recycling box 5. During actual use, the air pump inside the recycling box 5 operates, the corresponding third valves 55 are opened, and on-site dust and particulate matter are recycled through the multiple on-site recycling pipes 54. Larger particulate matters will not be able to enter the interior of the on-site recycling pipes 54 and will fall into the recycling bin 52 for unified collection, facilitating manual unified cleaning.
[0052] Please refer to Figures 1-8 , in this solution, support frames 7 are installed at the bottom of the support base plate 1 and on both sides of the bottom protection plate 4. Symmetrically distributed universal wheels 71 are installed at the bottoms of the two support frames 7. The overall equipment is supported by the two support frames 7, and the overall equipment is driven by the universal wheels 71 for convenient movement to meet the irrigation requirements of water conservancy project equipment at different locations.
[0053] A control panel 51 is fixedly connected to the outside of the recycling box 5. The control panel 51 is located on the side adjacent to the recycling bin 52. The power storage bin 41, the first valve 18, the infrared sensor 45, the second valve 47, the third valve 55, the fourth valve 67, and the fifth valve 69 are all electrically connected to the control panel 51. The control panel 51 is used to control the operation of the first valve 18, the power storage bin 41, the infrared sensor 45, the second valve 47, the third valve 55, the fourth valve 67, and the fifth valve 69, realizing the unified management of electrical equipment and facilitating the remote control of equipment by water conservancy project staff.
[0054] Please refer to Figures 1-8 , the working principle of the present invention:
[0055] The present invention is provided with a first irrigation mechanism, a second irrigation mechanism and a third irrigation mechanism. When in use, the control panel 51 is turned on. An external pipeline 19 is installed at the top of the first delivery pipeline 14. One end of the top of the external pipeline 19 is connected to an external water delivery channel, so as to ensure that the first water outlet pipeline 15 can deliver irrigation water into the water storage irrigation bin 3. The first irrigation mechanism is driven to move as a whole through the cooperation of the second pulley 29 and the first pulley 21, improving the equipment stability during movement.
[0056] The first fixing frame 2, the mounting seat 22 and the second mounting guide rail 23 are limited by the positioning bolt 24, improving the stability when the equipment is connected.
[0057] Remote monitoring and processing are facilitated through the infrared sensor 45. The opening and closing of the second water outlet pipeline 46 is controlled by the second valve 47. A waterproof coating is applied to the outside of the electricity storage bin 41, and the electricity storage bin 41 provides the power resource supply for the equipment.
[0058] A movable and detachable water conservancy project building is placed on the building placement plate 11. The opening and closing cover 31 at the top of the water storage irrigation bin 3 is opened, and water is received through the first water outlet pipeline 15 and introduced into the water storage irrigation bin 3. The first uniform irrigation operation is carried out through the water outlet holes 34 at the bottom of the water storage irrigation bin 3. A primary irrigation treatment is carried out through the cooperation of the water storage irrigation bin 3, the first water outlet plate 33 and the water outlet holes 34.
[0059] When carrying out irrigation operation on immovable water conservancy project buildings, mainly for buildings with smaller specifications and lower heights, through the operation of the water pump, water is conveyed into the second water outlet plate 43 and then conveyed into the corresponding second water outlet pipeline 46. The corresponding second valve 47 is opened, and water is discharged through the spraying disc 48 for secondary irrigation treatment. The material of the second water outlet pipeline 46 is corrugated pipe, which can be slightly adjusted in angle, meeting the requirements of various angles during irrigation.
[0060] When carrying out irrigation operation on immovable water conservancy project buildings, mainly for buildings with larger specifications and higher heights, water outlet and irrigation treatment are carried out through the cooperation of a plurality of fourth water outlet pipelines 68 and second water outlets 66. The second delivery pipeline 62 and the third water outlet pipeline 65 are connected through the connecting joint 64 to ensure normal water delivery and irrigation operation. The fourth valve 67 is used to control the opening of the second water outlet 66, and the fifth valve 69 is used to control the opening of the fourth water outlet pipeline 68 for water outlet and irrigation treatment.
[0061] Thus, irrigation treatment is carried out during the construction of water conservancy projects in the required directions, achieving three irrigation effects. By using irrigation devices with three different methods and different orientations in combination, the use of water conservancy project buildings of different specifications is satisfied, thereby improving the flexibility of the device use.
[0062] The present invention is provided with a recycling box 5, a power storage bin 41 and a support frame 7. The control panel 51 is used to control the operation of the first valve 18, the power storage bin 41, the infrared sensor 45, the second valve 47, the third valve 55, the fourth valve 67 and the fifth valve 69, realizing the unified management of power equipment and facilitating the remote control of the device by the staff of water conservancy projects.
[0063] An air pump for cooperating with the on-site recycling pipeline 54 is installed inside the recycling box 5. During actual use, the air pump inside the recycling box 5 operates, the corresponding third valve 55 is opened, and the on-site dust particles are recycled through a plurality of on-site recycling pipelines 54. Larger particles will not be able to enter the inside of the on-site recycling pipeline 54 and will fall into the recycling bin 52 for unified collection, facilitating unified manual cleaning.
[0064] The overall device is supported by two support frames 7, and the overall device is driven by the universal wheels 71 for convenient movement, meeting the irrigation requirements of water conservancy project devices at different locations, facilitating the separate irrigation operations for movable and immovable water conservancy project buildings, and at the same time, it can be conveniently moved according to requirements to meet the usage requirements of different operation scenarios, improving the overall flexibility of the device use and being suitable for popularization and use.
[0065] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A water conservancy irrigation device for water conservancy project construction, including a support bottom plate (1), characterized in that, Further comprising: The first irrigation mechanism, the first irrigation mechanism is located at the top of the support bottom plate (1), the first irrigation mechanism includes a first fixing frame (2) and a water storage and irrigation bin (3), two building placement plates (11) are installed on the top of the support bottom plate (1), the first fixing frame (2) is installed above the two building placement plates (11), the water storage and irrigation bins (3) are installed above the two first fixing frames (2), opening and closing covers (31) are installed on the outer sides of the two water storage and irrigation bins (3), water outlet inner cavities (32) are opened inside the two opening and closing covers (31), first water outlet plates (33) are installed inside the water outlet inner cavities (32), and water outlet holes (34) evenly distributed are opened inside the first water outlet plates (33); The bottom protection plate (4), the bottom protection plate (4) is located below the support bottom plate (1); The second irrigation mechanism, the second irrigation mechanism is located between the bottom protection plate (4) and the support bottom plate (1), the second irrigation mechanism includes a water storage tank (42), the water storage tank (42) is installed on the top of the bottom protection plate (4), a second water outlet plate (43) is installed on one side of the water storage tank (42), two guiding water outlet devices (44) are installed at the bottom of the second water outlet plate (43), second water outlet pipes (46) are installed inside the two guiding water outlet devices (44), and spraying discs (48) are installed at the bottoms of the two second water outlet pipes (46); The third irrigation mechanism, the third irrigation mechanism is located below one of the water storage and irrigation bins (3); The first water outlet pipe (15), the first water outlet pipe (15) is located on one side of the water storage and irrigation bin (3), and a first water outlet (17) is installed at one end of the top of the first water outlet pipe (15).
2. The water conservancy irrigation device for water conservancy project construction according to claim 1, characterized in that: Rotary connection sleeves (16) are installed between the first water outlet pipe (15) and the first water outlet (17), first valves (18) are installed on the outer side of the first water outlet pipe (15) and on one side of the rotary connection sleeve (16), first conveying pipes (14) are installed at the other ends of the first water outlet pipe (15), external pipes (19) are installed on the tops of the first conveying pipes (14), second installation guide rails (23) are installed on both sides of the first fixing frame (2), third pulleys (35) are installed on the tops of the second installation guide rails (23), the tops of the third pulleys (35) are connected to the corresponding water storage and irrigation bins (3), a connecting shaft (25) is installed between the two second installation guide rails (23) on the same side, connecting rods (26) are installed on the closer sides of the two connecting shafts (25), bottom support rods (27) are installed at the bottoms of the two connecting rods (26), second fixing frames (28) are installed at the bottoms of the bottom support rods (27), and symmetrically distributed second pulleys (29) are installed at the bottoms of the second fixing frames (28).
3. The water conservancy irrigation device for water conservancy project construction according to claim 2, characterized in that: On the top of the two support bottom plates (1) and on both sides of the building placement plate (11), mounting grooves (12) are provided. Inside the mounting grooves (12), first mounting guide rails (13) are installed. On the outer sides of the first fixing frames (2), mounting seats (22) are installed. One end of each second mounting guide rail (23) extends into the corresponding mounting seat (22). Inside the first fixing frames (2), positioning bolts (24) passing through the corresponding second mounting guide rails (23) are installed.
4. The water conservancy irrigation device for water conservancy project construction according to claim 2, wherein: On the top of the bottom protection plate (4), a power storage bin (41) is installed. The power storage bin (41) is located on the side of the water storage tank (42) away from the second water outlet plate (43). On the outer sides of the second water outlet pipes (46), second valves (47) are fixedly connected. On one side of the guiding water outlet device (44) and above the second water outlet pipes (46), infrared sensors (45) are fixedly connected.
5. The water conservancy irrigation device for water conservancy project construction according to claim 1, characterized in that: On the bottom of the support bottom plate (1) and on both sides of the bottom protection plate (4), support frames (7) are installed. On the bottoms of the two support frames (7), symmetrically distributed universal wheels (71) are installed.
6. The water conservancy irrigation device for water conservancy project construction according to claim 4, characterized in that: The third irrigation mechanism includes a water outlet tank (6) and a positioning frame (63). On the top of the building placement plate (11), a water outlet tank (6) is installed. On one side of the water outlet tank (6), a positioning frame (63) is installed. Inside the positioning frame (63), a second conveying pipe (62) extending into the water outlet tank (6) is installed. The other end of the second conveying pipe (62) is installed with a third water outlet pipe (65). The end of the third water outlet pipe (65) away from the second conveying pipe (62) is installed with a second water outlet (66). On the top of the third water outlet pipe (65), equidistantly distributed fourth water outlet pipes (68) are installed.
7. The water conservancy irrigation device for water conservancy project construction according to claim 6, characterized in that: On the top of the water outlet tank (6), a maintenance top cover (61) is installed. At the bottom of the water outlet tank (6), a water receiving pipe is installed. The bottom end of the water receiving pipe extends into the water storage tank (42). On the outer side of the second water outlet (66), a fourth valve (67) is fixedly connected. On the outer sides of the fourth water outlet pipes (68), fifth valves (69) are fixedly connected. Above the positioning frame (63) and on the outer side of the second conveying pipe (62), a connection joint (64) is installed.
8. The water conservancy irrigation device for water conservancy project construction according to claim 7, characterized in that: On one side of the water storage tank (42), a recycling box (5) is installed. On one side of the recycling box (5), a recycling bin (52) is fixedly connected. The recycling bin (52) is located on the side of the recycling box (5) away from the water storage tank (42). Inside the recycling bin (52), a recycling groove (53) is provided.
9. The water conservancy irrigation device for water conservancy project construction according to claim 8, characterized in that: On one side of the recycling box (5) and above the recycling bin (52), equidistantly distributed on-site recycling pipes (54) are installed. On the outer sides of the on-site recycling pipes (54), third valves (55) are fixedly connected.
10. The water conservancy irrigation device for water conservancy project construction according to claim 9, characterized in that: A control panel (51) is fixedly connected to the outer side of the recycling bin (5). The control panel (51) is located on the side adjacent to the recycling bin (52). The power storage bin (41), the first valve (18), the infrared sensor (45), the second valve (47), the third valve (55), the fourth valve (67), and the fifth valve (69) are all electrically connected to the control panel (51).
Citation Information
Patent Citations
Water conservancy irrigation device for water conservancy project building
CN216796030U