A forestry planting drip irrigation device
By designing an adjustable-height coiled pipe and a sealed connection structure, the problems of insufficient penetration and silt blockage caused by fixed drip irrigation pipe height are solved, achieving a stable and efficient drip irrigation effect, suitable for the complex environment of forestry planting and large-area planting areas.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HELEN CITY SHUANGHE FOREST FARM
- Filing Date
- 2025-07-08
- Publication Date
- 2026-06-02
AI Technical Summary
In existing forestry drip irrigation systems, the height of the drip irrigation pipes is fixed and cannot be adjusted according to different growth stages of plants and changes in terrain, resulting in insufficient drip irrigation penetration or silt blockage.
A device comprising a coiled tube, a retaining ring, a positioning rod, and a support plate was designed. Through threaded connection and rotary drive, the height of the drip irrigation tube can be flexibly adjusted, and the connection stability is ensured by sealing groove and sealing ring to prevent leakage.
It improves water use efficiency, prevents silt blockage, adapts to the drip irrigation needs of different growth stages, improves the efficiency of drip irrigation in forestry planting, and is suitable for complex environments and large-scale planting areas.
Smart Images

Figure CN224306504U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of forestry, and in particular to a drip irrigation device for forestry planting. Background Technology
[0002] An existing patent (publication number: CN213523322U) discloses a drip irrigation device for forestry planting, including a rainwater collection component, a storage component, a drip irrigation component, and a spraying component. The rainwater collection component is mounted on the storage component, the drip irrigation component is positioned below the storage component with one end connected to it, and the spraying component is positioned above the drip irrigation component with one end connected to it. However, the fixed height of the drip irrigation pipe in this device makes it impossible to adjust the height according to the drip irrigation needs of different plant growth stages and changes in terrain. This results in insufficient drip infiltration due to the pipe being too high, affecting plant absorption, or the pipe being too low, allowing ground sediment to easily enter and cause blockages, thus presenting drawbacks. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing a forestry drip irrigation device that is stable and supports the plant, improves the efficiency of drip irrigation in forestry planting through diversion drip irrigation, and allows for flexible adjustment of the setting height of the coiled pipe and drip irrigation pipe according to the drip irrigation needs of different growth stages of plants and changes in terrain undulations, preventing insufficient infiltration or silt blockage. It is suitable for drip irrigation needs in complex forestry planting environments and large-area forestry planting areas.
[0004] The objective of this utility model is achieved through the following technical solution:
[0005] A drip irrigation device for forestry planting includes a water supply pipe, a flexible hose, a coiled pipe, a retaining ring, a positioning plate, and a support plate. The coiled pipe has multiple drip irrigation tubes, and a retaining ring is connected to the outside of the coiled pipe. The retaining ring has a locking block, and the coiled pipe has a locking groove. The locking block is adapted to the locking groove and is connected to the locking groove. Connecting plates are located on both sides of the retaining ring, and a screw passes through the connecting plates. Nuts are threaded to both ends of the screw. The retaining ring is divided into an outer retaining ring and an inner retaining ring, with the outer retaining ring connected to the inner retaining ring. The outer retaining ring has a support plate, and a tapered rod is located at the bottom of the support plate. The tapered rod is inserted into the soil, and a bearing is connected to the upper part of the support plate. The bearing is connected to the lower end of a positioning rod, and a rotating wheel is located at the upper end of the positioning rod.
[0006] The positioning rod of this utility model passes through the positioning plate and is connected to the positioning plate by a thread. The positioning plate has multiple support rods and the support plate has multiple support rod through holes. The support rods are adapted to the support rod through holes and pass through the support rod through holes. The lower end of the support rod is connected to the support plate and the support plate is connected to the ground.
[0007] The coiled tube of this utility model is divided into a No. 1 coiled tube and a No. 2 coiled tube. The No. 1 coiled tube has a connecting tube. The No. 1 coiled tube is connected to the No. 2 coiled tube to form a sealing groove. The sealing groove is adapted to the sealing ring. The sealing ring is connected to the sealing groove. The No. 1 coiled tube has an insert tube. The No. 2 coiled tube has an insert tube groove. The insert tube is adapted to the insert tube groove. The insert tube is connected to the insert tube groove.
[0008] The water supply pipe of this utility model is connected to fixed support rods at both ends. The fixed support rods are connected to the ground and to a water pump. The water pump is connected to the water supply pipe. The water supply pipe has multiple branch pipes. The branch pipes are connected to one end of a flexible hose, and the other end of the flexible hose is connected to a connecting pipe. Beneficial effects
[0009] This utility model features a coiled tube that wraps around the roots of seedlings, facilitating even drip irrigation absorption. The first and second coiled tubes are designed as separate units, using a combination of sealing grooves and sealing rings, and inserts and insert grooves, to achieve rapid assembly and tight connection, preventing leakage at the connection points. Furthermore, a locking ring is added to secure and lock the connection between the first and second coiled tubes, ensuring a firm and stable connection.
[0010] This utility model's positioning rod is connected to the positioning disc via a threaded connection, allowing the rotating wheel to drive the positioning disc to synchronously raise and lower four sets of support rods. This enables flexible adjustment of the setting height of the coiled pipe and drip irrigation pipe according to the drip irrigation needs of different plant growth stages and changes in terrain. When the plant is in the seedling stage, the height of the drip irrigation pipe can be lowered, allowing water to be dripped more accurately to the vicinity of the root system, improving water use efficiency. As the plant grows, the drip irrigation pipe can be raised to prevent ground mud and sand from entering and clogging the pipe, while ensuring that water can effectively penetrate into the plant root area, providing a good water environment for plant growth and improving the efficiency of drip irrigation in forestry planting.
[0011] This utility model's support plate limits the depth of the cone rod's insertion into the soil while expanding the support area at the bottom of the device, providing stable support for the coiled pipe. By inserting the cone rod into the soil, it increases the device's stability and prevents it from swaying or tipping over due to wind, vibration, or other factors, ensuring the stability of the drip irrigation position and making it suitable for complex forestry planting environments.
[0012] This utility model's water supply pipe is stably erected on the ground by fixed support rods. Multiple branch pipes are connected to the coiled pipes in conjunction with flexible hoses to form a branch drip irrigation system. This system can evenly distribute water to each coiled pipe and drip irrigation pipe, which can simultaneously meet the drip irrigation needs of large-area forestry planting areas. It improves the drip irrigation efficiency of forestry planting while reducing manual labor and water waste. The structure is reasonable.
[0013] This utility model provides stable support and easy assembly and disassembly. By diverting drip irrigation, it improves the drip irrigation efficiency of forestry planting. The height of the coiled pipe and drip irrigation pipe can be flexibly adjusted according to the drip irrigation needs of different growth stages of plants and changes in terrain undulations to prevent insufficient infiltration or silt blockage. It is suitable for drip irrigation needs in complex forestry planting environments and large-area forestry planting areas. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of a forestry drip irrigation device according to the present invention.
[0015] Figure 2 This is a bottom view of the coiled tube support structure described in this utility model.
[0016] Figure 3 This is a schematic diagram of the support plate and rotating wheel structure described in this utility model.
[0017] Figure 4 This is a cross-sectional view of the coiled tube and buckle connection structure described in this utility model.
[0018] Figure 5 This is a cross-sectional view of the structure of the coiled tube, buckle, and positioning disc described in this utility model.
[0019] Figure 6 This is an exploded view of the coiled tube and buckle structure described in this utility model. Detailed Implementation
[0020] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:
[0021] Example 1:
[0022] A drip irrigation device for forestry planting includes a water supply pipe 03, a flexible hose 05, a coiled pipe 07, a retaining ring 13, a positioning plate 22, and a support plate 26. The coiled pipe 07 has multiple drip irrigation pipes 08. The retaining ring 13 is externally connected to the coiled pipe 07. The retaining ring 13 has a locking block 17, and the coiled pipe 07 has a locking groove 18. The locking block 17 is adapted to the locking groove 18 and is connected to the locking groove 18. The retaining ring 13 has connecting plates 14 on both sides. A screw 15 passes through the connecting plates 14, and the two ends of the screw 15 are connected to nuts 16 by threads. The retaining ring 13 is divided into an outer retaining ring 131 and an inner retaining ring 132. The outer retaining ring 131 is connected to the inner retaining ring 132. The outer retaining ring 131 has a support plate 26. The lower part of the support plate 26 has a cone rod 19 that is inserted into the soil. The upper part of the support plate 26 is connected to a bearing 25. The bearing 25 connects to the lower end of the positioning rod 23, and the upper end of the positioning rod 23 has a rotating wheel 24. The positioning rod 23 is connected to the positioning disk 22 by a thread, so that rotating the rotating wheel 24 can drive the positioning disk 22 to drive the four sets of support rods 21 to move up and down synchronously. This allows the setting height of the coiled pipe 07 and the drip irrigation pipe 08 to be flexibly adjusted according to the drip irrigation needs of different plant growth stages and the changes in terrain. When the plant is in the seedling stage, the height of the drip irrigation pipe 08 can be lowered so that the water can be dripped more accurately to the vicinity of the root system and improve water use efficiency. As the plant grows, the drip irrigation pipe 08 can be raised to prevent soil and sand from entering the drip irrigation pipe 08 and causing blockage. At the same time, it ensures that water can effectively penetrate into the plant root area, providing a good water environment for plant growth and improving the drip irrigation efficiency of forestry planting.
[0023] Example 2:
[0024] The positioning rod 23 of this utility model passes through the positioning disk 22 and is threadedly connected to the positioning disk 22. The positioning disk 22 has multiple support rods 21 and the support plate 26 has multiple support rod through holes 27. The support rods 21 are adapted to the support rod through holes 27 and pass through the support rod through holes 27. The lower end of the support rod 21 is connected to the support plate 20, which is connected to the ground. The support plate 20 limits the depth of the cone rod 19 into the soil and expands the bottom support area of the device, providing stable support for the coiled pipe 07. By inserting the cone rod 19 into the soil, the device's positioning stability is increased, preventing it from shaking or tipping due to wind, vibration, etc., ensuring the stability of the drip irrigation position and making it suitable for complex forestry planting environments.
[0025] Example 3:
[0026] The coiled tube 07 of this utility model is divided into a first coiled tube 071 and a second coiled tube 072. The first coiled tube 071 has a connecting tube 06. The first coiled tube 071 connects to the second coiled tube 072 to form a sealing groove 09. The sealing groove 09 is compatible with the sealing ring 10, and the sealing ring 10 is connected to the sealing groove 09. The first coiled tube 071 has an insertion tube 11, and the second coiled tube 072 has an insertion tube groove 12. The insertion tube 11 is compatible with the insertion tube groove 12, and the insertion tube 11 is connected to the insertion tube groove 12. The coiled tube 07 is wound around the roots of the seedling, which facilitates the uniform drip irrigation absorption of water. Moreover, the first coiled tube 071 and the second coiled tube 072 adopt a split splicing design, which is achieved through... The sealing groove 09 and sealing ring 10, and the insertion tube 11 and insertion groove 12 cooperate to achieve rapid assembly and tight connection, preventing leakage at the connection of the coiled tube 07. By adding a buckle 13, the connection of the coiled tube 07 is braked and locked to ensure a firm and stable connection between the first coiled tube 071 and the second coiled tube 072. This device is stably supported and easy to assemble and disassemble. Through diversion drip irrigation, it improves the drip irrigation efficiency of forestry planting. The setting height of the coiled tube 07 and drip irrigation tube 08 can be flexibly adjusted according to the drip irrigation needs of different growth stages of plants and changes in terrain undulations to prevent insufficient penetration or silt blockage. It is suitable for the drip irrigation needs of complex forestry planting environments and large-area forestry planting areas.
[0027] Example 4:
[0028] The water supply pipe 03 of this utility model is connected to fixed support rods 04 at both ends. The fixed support rods 04 are connected to the ground and to a water pump 02. The water pump 02 is connected to a water supply pipe 01. The water supply pipe 03 has multiple branch pipes 28. One end of the branch pipe 28 is connected to a flexible hose 05, and the other end of the flexible hose 05 is connected to a connecting pipe 06. The water supply pipe 03 is stably erected on the ground by the fixed support rods 04. The multiple branch pipes 28, together with the flexible hose 05 and the coiled pipe 07, form a branch drip irrigation system. This system can evenly distribute water to each coiled pipe 07 and drip irrigation pipe 08, which can simultaneously meet the drip irrigation needs of large-area forestry planting areas. It improves the drip irrigation efficiency of forestry planting while reducing manual labor and water waste. The structure is reasonable.
[0029] Example 5:
[0030] Installation steps: First, assemble the positioning structure of the support plate 20. Place the positioning plate 22 and the support plate 20 on the upper and lower sides of the support plate 26 respectively, and pass the support rod 21 through the support rod through hole 27 and fix it to the support plate 20. Then, place the rotating wheel 24 on the upper part of the positioning plate 22, and pass the positioning rod 23 through the positioning plate 22 and embed it in the bearing 25. The positioning rod 23 is positioned and connected to the positioning plate 22 by threads. After completing the assembly of the positioning structure of the support plate 20, assemble the support structure of the coiled tube 07. First, fasten the No. 1 coiled tube 071 and the No. 2 coiled tube 072 to the outer periphery of the seedling root, and embed the sealing ring 10 and the insertion tube 11 into the sealing groove 09 and the insertion tube groove 12 respectively. Then, place the buckle 13 on the outside of the coiled tube 07. The locking block 17 is embedded in the locking groove 18, and the outer buckle ring 131 and inner buckle ring 132 are fastened to each other and fixedly connected by screw 15 and nut 16. Then, the positioning plate 22 is driven by rotating wheel 24 to move the support plate 20 to a reasonable support height and place the support plate 20 on the ground. The cone rod 19 is inserted into the soil. After the assembly of the support structure of the coiled pipe 07 is completed, the pipe structure is connected. First, the water supply pipe 03 is erected and fixed on the ground by the fixed support rod 04, and the water supply pipe 03 is connected to the water pump 02. The water pump 02 is connected to one end of the water supply pipe 01, and the other end of the water supply pipe 01 is connected to the water source. Then, one end of the hose 05 is fixedly connected to the diversion pipe 28, and the other end of the hose 05 is fixedly connected to the connecting pipe 06 to complete the installation.
Claims
1. A drip irrigation device for forestry planting, characterized in that: The system includes a water supply pipe (03), a flexible hose (05), a coiled pipe (07), a retainer (13), a positioning plate (22), and a support plate (26). The coiled pipe (07) has multiple drip irrigation pipes (08). The coiled pipe (07) is externally connected to the retainer (13). The retainer (13) has a locking block (17). The coiled pipe (07) has a locking groove (18). The locking block (17) is adapted to the locking groove (18). The locking block (17) is connected to the locking groove (18). The retainer (13) has connecting plates (14) on both sides. A screw (15) passes through the retainer (13). The connecting plate (14) and the screw (15) are connected to the nuts (16) by threads at both ends. The buckle (13) is divided into an outer buckle (131) and an inner buckle (132). The outer buckle (131) is connected to the inner buckle (132). The outer buckle (131) has a support plate (26). The lower part of the support plate (26) has a cone rod (19). The cone rod (19) is inserted into the soil. The upper part of the support plate (26) is connected to a bearing (25). The bearing (25) is connected to the lower end of the positioning rod (23). The upper end of the positioning rod (23) has a wheel (24).
2. The forestry planting drip irrigation device according to claim 1, characterized in that: The positioning rod (23) passes through the positioning disk (22) and is connected to the positioning disk (22) by a thread. The positioning disk (22) has multiple support rods (21) and the support plate (26) has multiple support rod through holes (27). The support rods (21) are adapted to the support rod through holes (27) and pass through the support rod through holes (27). The lower end of the support rods (21) is connected to the support plate (20) and the support plate (20) is connected to the ground.
3. A drip irrigation device for forestry planting according to claim 2, characterized in that: The coiled tube (07) is divided into a first coiled tube (071) and a second coiled tube (072). The first coiled tube (071) has a connecting tube (06). The first coiled tube (071) is connected to the second coiled tube (072) to form a sealing groove (09). The sealing groove (09) is compatible with the sealing ring (10). The sealing ring (10) is connected to the sealing groove (09). The first coiled tube (071) has an insertion tube (11). The second coiled tube (072) has an insertion groove (12). The insertion tube (11) is compatible with the insertion groove (12). The insertion tube (11) is connected to the insertion groove (12).
4. A drip irrigation device for forestry planting according to claim 2, characterized in that: The water supply pipe (03) is connected to fixed support rods (04) at both ends. The fixed support rods (04) are connected to the ground and to a water pump (02). The water pump (02) is connected to a water supply pipe (01). The water supply pipe (03) has multiple branch pipes (28). The branch pipes (28) are connected to one end of a hose (05), and the other end of the hose (05) is connected to a connecting pipe (06).