Agricultural irrigation control system
Through the design of C-shaped tube and support shell structure, the existing irrigation system has solved the problems in surrounding settings and stable insertion of soil, achieving stable surround and deep irrigation effects, and adjusting the water output, improving the stability and flexibility of the irrigation system.
Patent Information
- Application Number
- CN202422521654.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-18
AI Technical Summary
The existing irrigation control system is difficult to ensure the range of surrounding settings and stable insertion into the soil at the same time. Soft materials are prone to deform, while hard materials have large openings, resulting in a reduced range.
The C-shaped tube and support shell structure are adopted, and the sub-shell is rotated at the hinge to form an annular structure. The support C-shaped tube is stably surrounding the crop rhizomes, and the water output is adjusted through the first and second tips, using the waist-shaped hole to avoid interference, the buckle grooves and buckle blocks are locked, and the clamping edges are stably inserted.
It has achieved stable shape and range of surrounding crop rhizomes, facilitated deep irrigation, and adjusted water effluent, improved structural stability, and avoided motion interference.
Smart Images

Figure CN223219668U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of agricultural irrigation, in particular to an agricultural irrigation control system. Background Art
[0002] As the imbalance between water supply and demand intensifies, countries around the world are placing great emphasis on developing water-saving agriculture. Developed countries, in addition to widely adopting advanced water-saving irrigation technologies such as sprinkler irrigation and micro-irrigation, are also applying advanced automated control technologies for precision irrigation. Based on actual crop water requirements and leveraging information technology, these technologies improve irrigation accuracy, implement rational irrigation schedules, and increase water utilization. Intelligent automated irrigation can improve irrigation management, change the haphazard nature of manual operations, and reduce irrigation labor, lower management costs, and significantly improve efficiency. Therefore, promoting the implementation of automated irrigation, replacing the currently prevalent extensive irrigation methods and improving irrigation water utilization, is a necessary measure to effectively address the issue of water conservation in irrigation.
[0003] Existing irrigation control systems are configured with multiple hollow conical structures at the bottom of an annular cavity. An opening is provided on one side of the annular cavity for surrounding crop roots and inserting into the soil for deep irrigation. When the annular cavity is made of soft material, the opening can be set smaller, and the bendable annular cavity is convenient for crop roots to pass through and can ensure a larger surrounding range. Annular cavities made of soft materials lack support, making it inconvenient to squeeze the hollow conical structure into the soil. Soft materials are easily deformed during squeezing, making it inconvenient to stabilize the shape and range of the surrounding. Conversely, when the annular cavity is made of hard material, the hollow conical structure can be stably inserted into the soil. At the same time, to ensure that the crop roots pass through, the opening needs to be wider, but this results in a reduced surrounding range. Therefore, the structure of the above-mentioned prior art is difficult to simultaneously ensure the surrounding range and stable insertion into the soil, and needs to be improved. Utility Model Content
[0004] In response to the above problems, the utility model provides an agricultural irrigation control system that can completely surround the crop roots, stabilize the surrounding shape and range, and can be easily squeezed into the soil for deep irrigation.
[0005] The technical solution of the utility model is as follows:
[0006] An agricultural irrigation control system includes a control end, a network unit and an irrigation end, the irrigation end includes a water pump, a water pipe and an irrigation structure, the water pipe includes a main pipe and multiple branch pipes arranged on the main pipe, the water pump is connected to the main pipe after being connected to the water source, the irrigation structure includes a C-shaped pipe, a water outlet pipe, a support shell and a first tip, both ends of the C-shaped pipe are closed, the water outlet pipe includes multiple outlet pipes, which are arranged at intervals on the C-shaped pipe, the ends of the branch pipes are connected to the C-shaped pipe, the support shell includes an annular structure consisting of a main shell with a superior arc and a secondary shell with a inferior arc, an annular groove is opened on the top of the annular structure, one end of the main shell is hinged to the secondary shell, the C-shaped pipe is arranged in the annular groove, the bottom of the annular groove is provided with a through hole for the water outlet pipe to pass through, the first tip is provided at the end of the water outlet pipe, and the first tip is provided with a water outlet hole.
[0007] In a further technical solution, a second pointed tip is also included, and the first pointed tip and the second pointed tip are respectively connected to different water outlet pipes.
[0008] In a further technical solution, the end of the water outlet pipe is provided with an external thread, and the first pointed head and the second pointed head are respectively threadedly connected to the water outlet pipe.
[0009] In a further technical solution, the through-holes on the auxiliary shell are waist-shaped holes.
[0010] In a further technical solution, a plurality of overflow holes are further provided on the top side of the C-shaped tube.
[0011] In a further technical solution, the end of the main shell and the end of the auxiliary shell are respectively provided with buckle grooves and buckle blocks that match each other.
[0012] In a further technical solution, the top side of the first prong and the top side of the second prong are both provided with a clamping edge with a diameter larger than the perforation.
[0013] The beneficial effects of the utility model are:
[0014] 1. By providing an annular support shell to support the C-shaped tube, when it is necessary to surround the root of the crop, the auxiliary shell can be rotated relative to the main shell at the hinge. This way, a larger opening can be opened to facilitate the passage of the root of the crop. After the root of the crop passes through, the auxiliary shell can be reset. The main shell and auxiliary shell are combined to form an annular structure that completely surrounds the root of the crop. The C-shaped tube is supported by the support shell and its shape is stable, which facilitates the stable shape and range of the surrounding area and is easy to squeeze into the soil for deep irrigation.
[0015] 2. The first and second prongs are easy to disassemble and assemble, and the number of the first and second prongs can be adjusted according to needs to adjust the water output;
[0016] 3. The waist-shaped hole on the auxiliary shell can provide space for the outlet pipe to move when the auxiliary shell is rotated, avoiding large motion interference;
[0017] 4. The overflow hole can deliver water to the shallow soil of the rhizome;
[0018] 5. The buckle groove and buckle block can lock the position of the auxiliary shell, making the structure more stable;
[0019] 6. The clamping edge abuts against the bottom of the support shell, which is conducive to the stable downward pressure of the first prong and the second prong, further facilitating the stable insertion into the soil. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a structural diagram of the agricultural irrigation control system according to an embodiment of the present utility model;
[0021] Figure 2 This is a top view of a C-shaped tube installed on a support shell according to an embodiment of the present invention;
[0022] Figure 3 This is a top view schematic diagram of the disassembly of the C-shaped tube from the support shell according to an embodiment of the present invention;
[0023] Figure 4 This is a three-dimensional schematic diagram of the support shell according to an embodiment of the present utility model;
[0024] Figure 5 It is a three-dimensional schematic diagram of the C-shaped tube described in the embodiment of the present utility model.
[0025] Description of reference numerals:
[0026] 10. Water pump; 21. Main pipe; 22. Branch pipe; 30. C-shaped pipe; 31. Joint; 32. Overflow hole; 40. Water outlet pipe; 51. Main casing; 52. Sub-casing; 53. Annular groove; 54. Perforation; 55. Buckle block; 61. First tip; 62. Water outlet; 63. Second tip; 64. Card edge. DETAILED DESCRIPTION
[0027] The embodiments of the present invention will be further described below with reference to the accompanying drawings.
[0028] Example:
[0029] like Figure 1-Figure 5As shown, an agricultural irrigation control system includes a control end, a network unit and an irrigation end. The irrigation end includes a water pump 10, a water pipe and an irrigation structure. The water pipe includes a main pipe 21 and multiple branch pipes 22 arranged on the main pipe 21. The water pump 10 is connected to the main pipe 21 after being connected to the water source. The irrigation structure includes a C-shaped pipe 30, an outlet pipe 40, a support shell and a first tip 61. The two ends of the C-shaped pipe 30 are closed. The outlet pipe 40 includes multiple outlet pipes, which are arranged at intervals on the bottom side of the C-shaped pipe 30. The middle part of the C-shaped pipe 30 is provided with a connection to the branch pipe 22. The support shell includes an annular structure consisting of a main shell 51 with a superior arc and a secondary shell 52 with a inferior arc. An annular groove 53 is provided on the top of the annular structure. One end of the main shell 51 is hinged to the secondary shell 52. The C-shaped tube 30 is arranged in the annular groove 53. The two ends of the C-shaped tube 30 are respectively in the main shell 51 and the secondary shell 52. The bottom of the annular groove 53 is provided with a through hole 54 for the water outlet pipe 40 to pass through. The first tip 61 is provided at the end of the water outlet pipe 40, and the first tip 61 is provided with a water outlet hole 62.
[0030] The working principle of the above technical solution is as follows:
[0031] When the irrigation end of the agricultural irrigation control system is arranged, the irrigation structure should correspond to one crop. The auxiliary shell 52 can be rotated relative to the main shell 51 at the hinge to open a larger opening to facilitate the passage of the crop roots. After passing through, the auxiliary shell 52 can be reset to combine the main shell 51 and the auxiliary shell 52 to form an annular structure that completely surrounds the crop roots. At this time, the top of the support shell is installed and the first protrusion 61 is pressed down to insert it into the soil; the existing control end (such as a mobile phone or computer) can control the water pump 10 to start through the network unit, pumping water into the main pipe 21 to each branch pipe 22, and the C-shaped tube 30 disperses the water to the outlet pipe 40, and finally enters the first protrusion 61, and penetrates into the deep soil from the outlet hole 62 of the first protrusion 61 for deep irrigation.
[0032] In another embodiment, Figure 1 As shown, the system also includes a second pointed tip 63, the first pointed tip 61 and the second pointed tip 63 are respectively connected to different water outlet pipes 40, and the first pointed tip 61 and the second pointed tip 63 can optionally have an internal hollow conical structure; in addition, the end of the water outlet pipe 40 is provided with an external thread, and the inner sides of the first pointed tip 61 and the second pointed tip 63 are respectively provided with an internal thread matching the external thread, and a sealing ring is provided, and the first pointed tip 61 and the second pointed tip 63 are respectively threadedly connected to the water outlet pipe 40.
[0033] The first pointed head 61 and the second pointed head 63 are convenient to assemble and disassemble, and the number of the first pointed head 61 and the second pointed head 63 can be conveniently adjusted according to the needs, and the water outlet position and water outlet amount can be adjusted under the premise of ensuring stable insertion into the soil.
[0034] In another embodiment, Figure 3As shown, the through hole 54 on the auxiliary housing 52 is a waist-shaped hole.
[0035] When the auxiliary housing 52 rotates, the C-shaped tube 30 will deform and move relative to the auxiliary housing 52. The waist-shaped hole on the auxiliary housing 52 can provide space for the water outlet pipe 40 to move when the auxiliary housing 52 rotates, avoiding large movement interference.
[0036] In another embodiment, Figure 2 and Figure 4 As shown, the top side of the C-shaped tube 30 is also provided with a plurality of overflow holes 32. The overflow holes 32 can deliver water to the shallow soil of the rhizome.
[0037] In another embodiment, Figure 1-4 As shown, the ends of the main housing 51 and the auxiliary housing 52 are respectively provided with mutually matching buckle grooves and buckle blocks 55. The buckle grooves and buckle blocks 55 can lock the position of the auxiliary housing 52, making the structure more stable.
[0038] In another embodiment, Figure 1 As shown, the top sides of the first prong 61 and the second prong 63 are both provided with a clamping edge 64 having a diameter larger than the through hole 54. The clamping edge 64 abuts against the bottom of the support shell, which helps to stabilize the downward pressure of the first prong 61 and the second prong 63, further facilitating stable insertion into the soil.
[0039] The above-described embodiments merely represent specific implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the scope of the present invention, all of which fall within the scope of protection of the present invention.
Claims
1. An agricultural irrigation control system, comprising a control terminal, a network unit and an irrigation terminal, characterized in that: The irrigation end includes a water pump, a water pipe and an irrigation structure. The water pipe includes a main pipe and multiple branch pipes arranged on the main pipe. The water pump is connected to the main pipe after being connected to the water source. The irrigation structure includes a C-shaped pipe, a water outlet pipe, a support shell and a first pointed head. Both ends of the C-shaped pipe are closed. The water outlet pipe includes multiple outlet pipes, which are arranged at intervals on the C-shaped pipe. The ends of the branch pipes are connected to the C-shaped pipe. The support shell includes an annular structure composed of a main shell with a superior arc and a secondary shell with a inferior arc. An annular groove is provided on the top of the annular structure. One end of the main shell is hinged to the secondary shell. The C-shaped pipe is arranged in the annular groove. The bottom of the annular groove is provided with a through hole for the water outlet pipe to pass through. The first pointed head is provided at the end of the water outlet pipe, and the first pointed head is provided with a water outlet hole.
2. The agricultural irrigation control system according to claim 1, characterized in that: It also includes a second pointed end, wherein the first pointed end and the second pointed end are respectively connected to different water outlet pipes.
3. The agricultural irrigation control system according to claim 2, characterized in that: The end of the water outlet pipe is provided with an external thread, and the first pointed head and the second pointed head are respectively threadedly connected to the water outlet pipe.
4. The agricultural irrigation control system according to claim 3, characterized in that: The through hole on the auxiliary shell is a waist-shaped hole.
5. The agricultural irrigation control system according to claim 1, characterized in that: The top side of the C-shaped tube is also provided with a plurality of overflow holes.
6. The agricultural irrigation control system according to claim 1, characterized in that: The ends of the main shell and the auxiliary shell are respectively provided with buckle grooves and buckle blocks that match each other.
7. The agricultural irrigation control system according to claim 4, characterized in that: The top side of the first prong and the top side of the second prong are both provided with a clamping edge with a diameter larger than the through hole.