Integrated farmland irrigation device for agricultural planting
By designing an integrated farmland irrigation device for agricultural planting, the problems of large energy and water consumption of existing irrigation methods are solved, precise irrigation and efficient water utilization are achieved, and healthy growth of crops is promoted.
Patent Information
- Application Number
- CN202421686958.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The existing irrigation methods have problems such as large energy and water consumption and low water utilization rate. Timed irrigation cannot meet the water demand of crops in real time, affecting the yield of crops.
An integrated farmland irrigation device for agricultural planting is designed, including multiple water storage chambers and water transport structures. By reasonably allocating water resources, precise irrigation of different crops and different growth stages is achieved. The device adopts a U-shaped fixing rod and water-coated pipe design to ensure that the moisture is evenly distributed to the farmland, and sprays water through the nozzle assembly in atomization or fine flow to reduce moisture evaporation and runoff losses.
Accurate irrigation of farmland has been achieved, water resource utilization efficiency has been improved, water resource waste has been reduced, and healthy crop growth has been promoted.
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Figure CN222954562U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water conservancy irrigation equipment, in particular to an integrated farmland irrigation device for agricultural planting. Background Technique
[0002] At present, the irrigation method mainly relies on digging canals to divert water. However, canal water diversion irrigation requires a large amount of manpower and material resources every year to clean the garbage and silt in the canals. Not only is the maintenance cost high, but also a large amount of water resources is wasted. Therefore, sprinkler irrigation is adopted for irrigation. However, the existing sprinkler irrigation method has problems such as high energy consumption, large water consumption, and low water resource utilization rate. With the development of technology, automatic irrigation systems are constantly put into use. Some of these irrigation systems are controlled by timers and will irrigate regularly whether it is sunny or rainy. This not only wastes a large amount of water resources, but also the regular irrigation cannot control the production of crops in real time and cannot meet the needs of crops in time, affecting the yield of crops. Therefore, we propose an integrated farmland irrigation device for agricultural planting. Content of the Utility Model
[0003] The purpose of the utility model is to provide an integrated farmland irrigation device for agricultural planting to solve the problems raised in the above background technique.
[0004] To achieve the above object, the utility model provides the following technical solutions: An integrated farmland irrigation device for agricultural planting, comprising a first water conveyance structure, a first water storage chamber, a second water storage chamber, a second water conveyance structure, a water conveyance component and a sprinkler component; A first water conveyance structure is arranged at the top of the first water storage chamber, and a second water conveyance structure is installed at the top of the second water storage chamber. The water storage structure includes a plurality of water storage chambers, each of which is used to store different types of irrigation water. A first water conveyance structure is arranged at the top of the first water storage chamber for conveying water sources to the farmland; A second water conveyance structure is installed at the top of the second water storage chamber for conveying treated irrigation water to the farmland. By reasonably allocating water resources, precise irrigation for different crops and different growth stages is realized, the irrigation efficiency is improved, and water resource waste is reduced. U-shaped fixing rods are installed at the tops of the first water conveyance structure and the second water conveyance structure, and a water distribution pipe is sleeved on the U-shaped fixing rods. The U-shaped fixing rods are used to fix the water distribution pipe. The design of the water distribution pipe enables water to be evenly distributed to the farmland, ensuring that crops are evenly irrigated. In addition, the device can flexibly adjust the position and angle of the U-shaped fixing rods according to the specific shape and area of the farmland to meet different planting requirements. A water conveyance component is installed on the cross bar of the U-shaped fixing rod. The water conveyance component is communicated with the water distribution pipe through a connecting hose. Fixing screws are arranged at both ends of the U-shaped fixing rod, and a sprinkler component is installed at the bottom of the water conveyance component. The water conveyance component installed on the cross bar is responsible for conveying water to the water distribution pipe. The water distribution pipe is designed with a plurality of water outlets to ensure that water is evenly distributed to the farmland. The connecting hose ensures a smooth connection between the water conveyance component and the water distribution pipe. The sprinkler component is installed at the bottom of the water conveyance component and sprays water evenly to the roots of the crops in the form of atomization or fine flow, reducing water evaporation and runoff loss, realizing precise irrigation of the farmland, improving the utilization efficiency of water resources, and promoting the healthy growth of crops.
[0005] Preferably, a water storage tank body is installed on the second water storage chamber. An inlet pipe and a drain pipe are installed on the front surface of the water storage tank body, and a stabilizing base is installed at the bottom of the water storage tank body. The water storage tank body is connected to the water source through the inlet pipe, and the precipitated water is discharged through the drain pipe. A stabilizing base is provided at the bottom of the water storage tank body to ensure the stable placement of the device. The device realizes automatic management through an intelligent control system and can automatically adjust the water inflow and drainage volume according to factors such as soil humidity and crop water demand to achieve precise irrigation.
[0006] Preferably, a transmission box body is installed on the second water conveyance structure. A shock-absorbing base is installed at the inner bottom end of the transmission box body. A water storage pump is installed on the shock-absorbing base. A water suction pipe is installed at the input end of the water storage pump, and a water outlet pipe is installed at the output end of the water storage pump. The second water conveyance structure is internally provided with a transmission box body to ensure the smooth transmission of water flow. The shock-absorbing base is installed at the bottom of the transmission box body to effectively absorb the vibration generated during irrigation and protect the stable operation of the equipment. The water storage pump is placed on the shock-absorbing base, sucks water from the water source through the water suction pipe, and after being pressurized by the water storage pump, is conveyed to the sprinkler head assembly through the water outlet pipe and then irrigated to the farmland.
[0007] Preferably, a water conveyance branch pipe is installed on the water conveyance component. The water conveyance branch pipe is fixedly connected to the water outlet connecting pipe through a water conveyance sealing connecting pipe, and a sealing connecting valve is installed on the water conveyance sealing connecting pipe. The water conveyance branch pipe is firmly connected to the water outlet connecting pipe through the water conveyance sealing connecting pipe. A sealing connecting valve is specially provided on the water conveyance sealing connecting pipe to ensure the sealing performance during the water flow transmission process and prevent water leakage. In addition, the device can achieve precise irrigation and meet the water and irrigation amount requirements of different crops by adjusting the lengths and layouts of the water conveyance branch pipe and the water outlet connecting pipe according to the specific needs of the farmland.
[0008] Preferably, a bracket is installed on the sprinkler head assembly. A nozzle is installed at the bottom of the bracket. The nozzle is communicated with the water outlet connecting pipe through a sealing conduit. The sprinkler head assembly is stably installed in the farmland through the bracket. The nozzle installed at the bottom of the bracket is connected to the water outlet connecting pipe through the sealing conduit to ensure that the water flow can be smoothly conveyed to each nozzle. The device adopts an integrated design, which not only reduces the installation and maintenance workload, but also can flexibly adjust the layout and water spraying amount of the nozzles according to the water demand and planting density of different crops to achieve precise irrigation.
[0009] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0010] 1. The water conveyance component installed on the cross bar of the present utility model is responsible for conveying water to the water distribution pipe. The water distribution pipe is designed with multiple water outlets to ensure that the water is evenly distributed to the farmland. The connecting hose ensures the smooth connection between the water conveyance component and the water distribution pipe. The sprinkler head assembly is installed at the bottom of the water conveyance component and sprays the water evenly onto the roots of the crops in the form of atomization or fine flow, reducing water evaporation and runoff loss, achieving precise irrigation of the farmland, improving the water resource utilization efficiency, and promoting the healthy growth of the crops at the same time.
[0011] 2. The water storage structure of the present utility model includes a plurality of water storage chambers, each of which is respectively used to store different types of irrigation water. A first water conveyance structure is arranged at the top of the first water storage chamber for conveying water sources to farmland; a second water conveyance structure is installed at the top of the second water storage chamber for conveying treated irrigation water to farmland. By reasonably allocating water resources, precise irrigation for different crops and different growth stages is achieved, irrigation efficiency is improved, and water resource waste is reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0013] Figure 2 is a schematic diagram of the water storage chamber of the present utility model;
[0014] Figure 3 is a schematic diagram of the water conveyance component of the present utility model.
[0015] In the figure: 1. First water conveyance structure; 2. First water storage chamber; 3. Second water storage chamber; 31. Inlet pipe; 32. Stable base; 33. Drain pipe; 34. Water storage tank body; 4. Second water conveyance structure; 41. Shock-absorbing base; 42. Water storage pump; 43. Outlet pipe; 44. Transmission box body; 45. Suction pipe; 5. Fixed screw; 6. U-shaped fixing rod; 7. Water distribution pipe; 8. Water conveyance component; 81. Water conveyance branch pipe; 82. Water conveyance sealing connecting pipe; 83. Sealing connection valve; 84. Outlet connecting pipe; 9. Connecting hose; 10. Sprinkler component; 101. Sealing conduit; 102. Nozzle; 103. Bracket. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0016] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0017] Please refer to Figures 1 - 3, an embodiment provided by the present utility model: an integrated farmland irrigation device for agricultural planting, comprising a first water conveyance structure 1, a first water storage chamber 2, a second water storage chamber 3, a second water conveyance structure 4, a water conveyance assembly 8 and a sprinkler assembly 10; a first water conveyance structure 1 is arranged at the top of the first water storage chamber 2, and a second water conveyance structure 4 is installed at the top of the second water storage chamber 3. The water storage structure includes a plurality of water storage chambers, and each water storage chamber is respectively used for storing different types of irrigation water. A first water conveyance structure 1 is arranged at the top of the first water storage chamber 2 for conveying water source to the farmland; a second water conveyance structure 4 is installed at the top of the second water storage chamber 3 for conveying the treated irrigation water to the farmland. By reasonably allocating water resources, precise irrigation for different crops and different growth stages is achieved, irrigation efficiency is improved, and water resource waste is reduced. A U-shaped fixing rod 6 is installed at the top of the first water conveyance structure 1 and the second water conveyance structure 4, and a water distribution pipe 7 is sleeved on the U-shaped fixing rod 6. The U-shaped fixing rod 6 is used for fixing the water distribution pipe 7. The design of the water distribution pipe 7 enables water to be evenly distributed to the farmland, ensuring that crops receive uniform irrigation. In addition, the device can flexibly adjust the position and angle of the U-shaped fixing rod 6 according to the specific shape and area of the farmland to adapt to different planting requirements. A water conveyance assembly 8 is installed on the cross bar of the U-shaped fixing rod 6, and the water conveyance assembly 8 is communicated with the water distribution pipe 7 through a connecting hose 9. Fixing screws 5 are arranged at both ends of the U-shaped fixing rod 6, and a sprinkler assembly 10 is installed at the bottom of the water conveyance assembly 8. The water conveyance assembly 8 installed on the cross bar is responsible for conveying water to the water distribution pipe 7. The water distribution pipe 7 is designed with a plurality of water outlets to ensure that water is evenly distributed to the farmland. The connecting hose 9 ensures a smooth connection between the water conveyance assembly 8 and the water distribution pipe 7. The sprinkler assembly 10 is installed at the bottom of the water conveyance assembly 8 and sprays water evenly onto the roots of crops in the form of atomization or fine flow, reducing water evaporation and runoff loss, achieving precise irrigation of the farmland, improving water resource utilization efficiency, and promoting the healthy growth of crops.
[0018] Preferably, a water storage tank body 34 is installed on the second water storage chamber 3. An inlet pipe 31 and a drain pipe 33 are installed on the front surface of the water storage tank body 34, and a stabilizing base 32 is installed at the bottom of the water storage tank body 34. The water storage tank body 34 is connected to the water source through the inlet pipe 31, and the precipitated water is discharged through the drain pipe 33. A stabilizing base 32 is provided at the bottom of the water storage tank body 34 to ensure stable placement of the device. The device realizes automatic management through an intelligent control system and can automatically adjust the water inlet volume and drainage volume according to factors such as soil humidity and crop water demand to achieve precise irrigation.
[0019] Preferably, a transmission box body 44 is installed on the second water delivery structure 4. A shock-absorbing base 41 is installed at the inner bottom end of the transmission box body 44. A water storage pump 42 is installed on the shock-absorbing base 41. A water suction pipe 45 is installed on the input end of the water storage pump 42. A water outlet pipe 43 is installed on the output end of the water storage pump 42. The second water delivery structure 4 is internally provided with a transmission box body 44 to ensure the smooth transmission of water flow. The shock-absorbing base 41 is installed at the bottom of the transmission box body 44 to effectively absorb the vibration generated during irrigation and protect the stable operation of the equipment. The water storage pump 42 is placed on the shock-absorbing base 41, sucks water from the water source through the water suction pipe 45, and after being pressurized by the water storage pump 42, is delivered to the nozzle assembly 10 through the water outlet pipe 43 and then irrigated to the farmland.
[0020] Preferably, a water delivery branch pipe 81 is installed on the water delivery assembly 8. The water delivery branch pipe 81 is fixedly connected to the water outlet connection pipe 84 through a water delivery sealing connection pipe 82, and a sealing connection valve 83 is installed on the water delivery sealing connection pipe 82. The water delivery branch pipe 81 is firmly connected to the water outlet connection pipe 84 through the water delivery sealing connection pipe 82. A sealing connection valve 83 is specifically provided on the water delivery sealing connection pipe 82 to ensure the tightness during the water flow transmission and prevent water leakage. In addition, the device can adjust the length and layout of the water delivery branch pipe 81 and the water outlet connection pipe 84 according to the specific needs of the farmland to achieve precise irrigation and meet the water and irrigation volume requirements of different crops.
[0021] Preferably, a bracket 103 is installed on the nozzle assembly 10. A nozzle 102 is installed at the bottom of the bracket 103. The nozzle 102 is communicated with the water outlet connection pipe 84 through a sealing conduit 101. The nozzle assembly 10 is stably installed in the farmland through the bracket 103. The nozzle 102 installed at the bottom of the bracket 103 is connected to the water outlet connection pipe 84 through the sealing conduit 101 to ensure that the water flow can be smoothly delivered to each nozzle 102. The device adopts an integrated design, which not only reduces the installation and maintenance workload, but also can flexibly adjust the layout and water spraying volume of the nozzle 102 according to the water demand and planting density of different crops to achieve precise irrigation.
[0022] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, it is intended to embrace all changes falling within the meaning and scope of the equivalent elements of the claims in the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.
Claims
1. A farmland irrigation device for agricultural planting integration, comprising a first water delivery structure (1), a first water storage chamber (2), a second water storage chamber (3), a second water delivery structure (4), a water delivery assembly (8) and a nozzle assembly (10); characterized in that: A first water delivery structure (1) is arranged on the top of the first water storage chamber (2), a second water delivery structure (4) is installed on the top of the second water storage chamber (3), U-shaped fixing rods (6) are installed on the tops of the first water delivery structure (1) and the second water delivery structure (4), a water distribution pipeline (7) is sleeved on the U-shaped fixing rod (6), a water delivery assembly (8) is installed on the cross bar of the U-shaped fixing rod (6), the water delivery assembly (8) is connected to the water distribution pipeline (7) through a connecting hose (9), fixing screws (5) are arranged at both ends of the U-shaped fixing rod (6), and a nozzle assembly (10) is installed at the bottom of the water delivery assembly (8).
2. The integrated farmland irrigation device for agricultural planting according to claim 1 is characterized by: A water storage box (34) is installed on the second water storage chamber (3), a water inlet pipe (31) and a water discharge pipe (33) are installed on the front surface of the water storage box (34), and a stable base (32) is installed at the bottom of the water storage box (34).
3. The integrated farmland irrigation device for agricultural planting according to claim 1 is characterized by: A transmission box (44) is installed on the second water delivery structure (4), a shock-absorbing base (41) is installed on the inner bottom of the transmission box (44), a water storage pump (42) is installed on the shock-absorbing base (41), a water suction pipe (45) is installed on the input end of the water storage pump (42), and a water outlet pipe (43) is installed on the output end of the water storage pump (42).
4. The integrated farmland irrigation device for agricultural planting according to claim 1 is characterized by: The water delivery assembly (8) is provided with a water delivery branch pipe (81), the water delivery branch pipe (81) is fixedly connected to a water outlet connection pipe (84) via a water delivery sealing connection pipe (82), and a sealing connection valve (83) is provided on the water delivery sealing connection pipe (82).
5. The integrated farmland irrigation device for agricultural planting according to claim 1 is characterized by: A bracket (103) is installed on the spray head assembly (10), a nozzle (102) is installed at the bottom of the bracket (103), and the nozzle (102) is connected to the water outlet connecting pipe (84) through a sealing conduit (101).