Kiwi fruit planting irrigation device facilitating root irrigation

By designing a device combining irrigation pump group, water supply pipeline and irrigation water belt, the problems of high irrigation costs and high energy consumption in the prior art are solved, automatic water storage and regulation irrigation and power water supply irrigation are realized, and irrigation difficulty and cost are reduced.

CN120036222APending Publication Date: 2025-05-27XI AN YU YI NONG YE KE JI FU WU YOU XIAN ZE REN GONG SI
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Patent Information

Application Number
CN202510363840.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

The existing kiwi fruit planting and irrigation technology is costly and energy-consuming, and it is inconvenient to store water in mountainous areas, which increases the difficulty of irrigation.

Method used

A device including an irrigation pump group, a water supply main pipe, a water supply branch pipe, a No. 1 irrigation water belt and a No. 2 irrigation water belt was designed. Combined with a drainage ditch and a water reservoir, the terrain difference was used to realize automatic water storage and irrigation regulation.

Benefits of technology

The power water supply and automatic water storage and irrigation of kiwi fruit planting roots have been realized, which reduces irrigation costs and energy consumption, facilitates fertilization and pharmaceutical operations, and prevents irrigation water supply from being blocked through the filter layer.

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Abstract

The kiwi fruit planting irrigation device comprises an irrigation pump set, the input end of the irrigation pump set is connected with a water outlet of a reservoir through a water pipe, the output end of the irrigation pump set is connected with a water supply main pipe, and an adding mechanism is arranged on one side of the irrigation pump set and connected with the water supply main pipe. A plurality of water supply branch pipes are arranged on the water supply main pipe through pipe joints and distributed along kiwi fruit planting rows, a plurality of water supply branch pipes are arranged on the water supply branch pipes through pipe joints, and first irrigation water hoses are arranged at the ends, away from the water supply branch pipes, of the water supply branch pipes and arranged on the planting ground. A second irrigation water hose is laid in the planting soil layer on the inner side of the first irrigation water hose. By arranging a series of structures, power water supply irrigation of kiwi fruit planting roots is achieved, water supply irrigation, fertilizer application and pesticide application are facilitated, automatic water storage adjustment irrigation of the kiwi fruit planting roots is achieved through terrain difference, and irrigation is energy-saving and convenient.
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Description

Technical Field

[0001] The present invention relates to the technical field of kiwifruit planting irrigation, and specifically relates to a kiwifruit planting irrigation device convenient for root irrigation. Background Art

[0002] The planting conditions and climate requirements of kiwifruit mainly include aspects such as temperature, light, soil, water, and wind volume. Kiwifruit requires both sufficient water and is afraid of waterlogging, and it is necessary to reasonably control the soil humidity and air humidity during planting. Drainage work needs to be done well in rainy weather to prevent waterlogging from causing root rot.

[0003] At present, water pipes and irrigation pumps are used for irrigation of kiwifruit on mountains, but the cost and energy consumption required for irrigation in large - area kiwifruit planting areas are high, with single - power - driven irrigation. Moreover, it is inconvenient to store water on mountains, and the natural water supply source for irrigating kiwifruit is far away, increasing the difficulty of kiwifruit irrigation. Summary of the Invention

[0004] The purpose of the present invention is to provide a kiwifruit planting irrigation device convenient for root irrigation to solve the problems raised in the above - mentioned background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A kiwifruit planting irrigation device convenient for root irrigation, including an irrigation pump group. The input end of the irrigation pump group is connected to the water outlet of a water storage tank through a water pipe, the output end of the irrigation pump group is connected to a main water supply pipe. An adding mechanism is provided on one side of the irrigation pump group, and the adding mechanism is connected to the main water supply pipe. A number of water supply branch pipes are provided on the main water supply pipe through pipe joints. The water supply branch pipes are arranged along the kiwifruit planting rows. A number of water supply sub - branch pipes are provided on the water supply branch pipes through pipe joints. One - end of the water supply sub - branch pipe far from the water supply branch pipe is provided with a first irrigation water belt. The first irrigation water belt is arranged on the planting ground. A second irrigation water belt is laid in the planting soil layer inside the first irrigation water belt. A storage and drainage ditch is provided on the planting ground on one side of the water supply branch pipe. The water supply branch pipe and the storage and drainage ditch are horizontally and transversely arranged along the kiwifruit planting area. The storage and drainage ditch is arranged between two adjacent kiwifruit planting rows. An irrigation mechanism is provided on the storage and drainage ditch, and the irrigation mechanism is connected to the second irrigation water belt. The first irrigation water belt is laid around the roots of kiwifruit. The upper end of the storage and drainage ditch is connected to the water storage tank through a drain pipe. The main water supply pipe and the drain pipe are longitudinally laid from top to bottom along the kiwifruit planting area.

[0006] Specifically, the irrigation mechanism includes a connecting pipe, a water delivery pipe, and a water guiding pipe. The water delivery pipe is provided in the planting soil layer on the lower side of the inclined storage and drainage ditch. The water delivery pipe is horizontally laid along the kiwifruit planting area. The water delivery pipe is connected to the lower side of the inclined storage and drainage ditch through the connecting pipe. The water delivery pipe is connected to the second irrigation water belt through a branch water pipe. A water guiding pipe is provided at one end of the water delivery pipe away from the water delivery pipe. The water guiding pipe is provided at the lower end of the lower side of the inclined storage and drainage ditch. A drainage valve is provided on the water guiding pipe.

[0007] Preferably, a first water filtering plate is provided at the upper end inside the storage and drainage ditch. The first water filtering plate is arranged in a V-shaped structure. The drain pipe is provided below the first water filtering plate. A second water filtering plate is provided at the upper end inside the reservoir. A third water filtering plate is provided inside the reservoir near the water outlet end.

[0008] Preferably, both the first irrigation water belt and the second irrigation water belt are composed of a polyvinyl chloride water belt layer, irrigation ports, an inner braided layer, a filtering layer, and an outer braided layer. The polyvinyl chloride water belt layer is provided with irrigation ports. The outer part of the polyvinyl chloride water belt layer is wrapped with an inner braided layer. The outer part of the inner braided layer is wrapped with a filtering layer. The outer part of the filtering layer is wrapped with an outer braided layer. Water outlet holes are provided on both the inner braided layer and the outer braided layer.

[0009] Preferably, the adding mechanism includes an adding water tank, an adding pipe, a control valve, a water inlet pipe, an adding port, a stirrer, a servo motor, and a support frame. The adding water tank is provided at one end of the reservoir close to the irrigation pump group. The bottom of the adding water tank is provided with an adding pipe. The adding pipe is connected to the water supply main pipe. A control valve is provided on the adding pipe. The upper end of one side of the adding water tank is provided with a water inlet pipe. The bottom of the water inlet pipe is connected to the water supply main pipe through a pipe joint. A water inlet valve is provided on the water inlet pipe. The top of the adding water tank is provided with an adding port. A stirrer is provided inside the adding water tank. The top of the adding water tank is provided with a servo motor. The output end of the servo motor is connected to the stirrer through a coupling. The bottom of the adding water tank is provided with a support frame. The water supply main pipe passes through below the adding water tank.

[0010] Preferably, a first-stage valve is provided at one end of the water supply branch pipe close to the water supply main pipe. A second-stage valve is provided on the water supply branch pipe.

[0011] Preferably, both the first irrigation water belt and the second irrigation water belt are laid obliquely from top to bottom along the kiwifruit planting area. Both the first irrigation water belt and the second irrigation water belt are laid in an open annular structure.

[0012] Preferably, a solar panel is provided on one side of the top of the reservoir through a bracket. The lower end of the inclined solar panel faces the reservoir. A distribution box is provided on one side of the reservoir.

[0013] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0014] 1. For this kiwifruit planting irrigation device facilitating root irrigation, through the provided No. 1 irrigation water belt, in cooperation with the irrigation pump set, water supply main pipe, water supply branch pipes and water supply sub-branches, it realizes the power water supply irrigation for the roots of kiwifruit planting. Combined with the provided adding mechanism, it facilitates the operations of water supply irrigation, fertilization and pesticide application.

[0015] 2. For this kiwifruit planting irrigation device facilitating root irrigation, through the provided No. 2 irrigation water belt, combined with the storage drainage ditch, connecting pipe, water delivery pipe and water guiding pipe distributed according to the terrain of the kiwifruit planting area, it realizes the automatic water storage adjustment irrigation for the roots of kiwifruit planting by using the terrain difference, with energy-saving and convenient irrigation.

[0016] 3. For this kiwifruit planting irrigation device facilitating root irrigation, through the provided storage drainage ditch and water storage tank, it facilitates the drainage and water storage in the kiwifruit planting area, with convenient irrigation water supply. Combined with the provided No. 1 water filter plate, No. 2 water filter plate and No. 3 water filter plate, it filters the stored water to prevent the irrigation water supply from being blocked.

[0017] 4. For this kiwifruit planting irrigation device facilitating root irrigation, the provided No. 1 irrigation water belt and No. 2 irrigation water belt are composed of a polyvinyl chloride water belt layer, an inner braided layer, a filter layer and an outer braided layer. The No. 1 irrigation water belt and No. 2 irrigation water belt are anti-blocking, sun-proof and corrosion-resistant, with a long service life. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the overall structural schematic diagram of the present invention;

[0019] Figure 2 is the structural schematic diagram of the storage drainage ditch in the present invention;

[0020] Figure 3 of the present invention Figure 2 is the enlarged structural schematic diagram at A in;

[0021] Figure 4 is the structural schematic diagram of the No. 1 irrigation water belt in the present invention;

[0022] Figure 5 is the structural schematic diagram of the polyvinyl chloride water belt layer in the present invention;

[0023] Figure 6 is the structural schematic diagram of the adding water tank in the present invention.

[0024] In the figure: 1. Irrigation pump set; 2. Adding mechanism; 21. Adding water tank; 22. Adding pipe; 23. Control valve; 24. Water inlet pipe; 25. Adding port; 26. Agitator; 27. Servo motor; 28. Support frame; 3. Main water supply pipe; 4. Water supply branch pipe; 5. Water supply sub-branch pipe; 6. First irrigation water hose; 7. Storage drainage ditch; 71. First water filter plate; 8. Second irrigation water hose; 9. Connecting pipe; 10. Water delivery pipe; 11. Water guide pipe; 12. Drain pipe; 13. Water storage tank; 131. Second water filter plate; 132. Third water filter plate; 14. Solar panel; 15. Distribution box; 16. Polyvinyl chloride water hose layer; 17. Irrigation port; 18. Inner braided layer; 19. Filter layer; 20. Outer braided layer. Detailed implementation manners

[0025] 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.

[0026] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "outer", "front end", "rear end", "both ends", "one end", "the other end", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation of the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0027] Such as Figures 1 to 6As shown in the figure, the kiwifruit planting irrigation device facilitating root irrigation in this embodiment includes an irrigation pump group 1. The input end of the irrigation pump group 1 is connected to the water outlet of a water storage tank 13 through a water pipe. The output end of the irrigation pump group 1 is connected to a main water supply pipe 3. An adding mechanism 2 is provided on one side of the irrigation pump group 1, and the adding mechanism 2 is connected to the main water supply pipe 3. A number of water supply branch pipes 4 are provided on the main water supply pipe 3 through pipe joints. The water supply branch pipes 4 are arranged along the kiwifruit planting rows. A number of water supply sub-branches 5 are provided on the water supply branch pipes 4 through pipe joints. One end of the water supply sub-branch 5 far from the water supply branch pipe 4 is provided with a first irrigation water belt 6. The first irrigation water belt 6 is arranged on the planting ground. A second irrigation water belt 8 is laid in the planting soil layer inside the first irrigation water belt 6. A water storage and drainage ditch 7 is provided on the planting ground on one side of the water supply branch pipe 4. The water supply branch pipe 4 and the water storage and drainage ditch 7 are horizontally arranged along the kiwifruit planting area. The water storage and drainage ditch 7 is arranged between two adjacent kiwifruit planting rows. An irrigation mechanism is provided on the water storage and drainage ditch 7, and the irrigation mechanism is connected to the second irrigation water belt 8. The first irrigation water belt 6 is laid around the roots of the kiwifruit. The upper end of the water storage and drainage ditch 7 is connected to the water storage tank 13 through a drain pipe 12. The main water supply pipe 3 and the drain pipe 12 are longitudinally laid from top to bottom along the kiwifruit planting area, realizing power water supply irrigation for the roots of kiwifruit planting, facilitating water supply, irrigation, fertilization and pesticide application operations, realizing automatic water storage and regulation irrigation for the roots of kiwifruit planting by using the terrain difference, being energy-saving and convenient for irrigation, filtering water storage to prevent irrigation water supply blockage, and the irrigation water belt being anti-blocking, sun-proof and corrosion-resistant, with a long service life.

[0028] Specifically, the irrigation mechanism includes a connecting pipe 9, a water delivery pipe 10 and a guide pipe 11. The water delivery pipe 10 is arranged in the planting soil layer on the lower side of the inclined water storage and drainage ditch 7. The water delivery pipe 10 is horizontally laid along the kiwifruit planting area. The water delivery pipe 10 is connected to the lower side of the inclined water storage and drainage ditch 7 through the connecting pipe 9. The water delivery pipe 10 is connected to the second irrigation water belt 8 through a branch water pipe. One end of the water delivery pipe 10 far from the water delivery pipe 10 is provided with the guide pipe 11. The guide pipe 11 is arranged at the lower end of the lower side of the inclined water storage and drainage ditch 7. A drain valve is provided on the guide pipe 11. The second irrigation water belt 8 is connected to the lower side of the inclined water storage and drainage ditch 7 through the connecting pipe 9, the water delivery pipe 10 and the guide pipe 11, that is, the second irrigation water belt 8 is located at the low position of the water storage and drainage ditch 7. By using the gravity drop of the terrain water level, the rainwater stored in the water storage and drainage ditch 7 enters the inclined second irrigation water belt 8 through the guide pipe 11, the connecting pipe 9 and the water delivery pipe 10, and supplies water for irrigation around the kiwifruit roots through the irrigation openings 17 on the second irrigation water belt 8.

[0029] Furthermore, a first water filter plate 71 is provided at the upper end inside the water storage and drainage ditch 7. The first water filter plate 71 is arranged in a V-shaped structure. The drain pipe 12 is arranged below the first water filter plate 71. A second water filter plate 131 is provided at the upper end inside the water storage tank 13. A third water filter plate 132 is provided inside the water storage tank 13 near the water outlet end. Water storage is filtered to prevent irrigation water supply blockage.

[0030] Further, both the first irrigation hose 6 and the second irrigation hose 8 are composed of a polyvinyl chloride hose layer 16, irrigation ports 17, an inner braided layer 18, a filter layer 19, and an outer braided layer 20. The irrigation ports 17 are provided on the polyvinyl chloride hose layer 16. The outer part of the polyvinyl chloride hose layer 16 is wrapped with the inner braided layer 18. The outer part of the inner braided layer 18 is wrapped with the filter layer 19. The outer part of the filter layer 19 is wrapped with the outer braided layer 20. Water outlet holes are provided on both the inner braided layer 18 and the outer braided layer 20. The inner braided layer 18 is made of non-woven fabric. The outer braided layer 20 of the first irrigation hose 6 is made of sun-resistant non-woven fabric. The second irrigation hose 8 is made of corrosion-resistant non-woven fabric. The first irrigation hose 6 and the second irrigation hose 8 are anti-blocking, sun-resistant, and corrosion-resistant, and have a long service life.

[0031] Further, the adding mechanism 2 includes an adding water tank 21, an adding pipe 22, a control valve 23, a water inlet pipe 24, an adding port 25, a stirrer 26, a servo motor 27, and a support frame 28. The adding water tank 21 is provided at one end of the reservoir 13 close to the irrigation pump group 1. The adding pipe 22 is provided at the bottom of the adding water tank 21. The adding pipe 22 is connected to the water supply main pipe 3. The control valve 23 is provided on the adding pipe 22. The upper end on one side of the adding water tank 21 is provided with the water inlet pipe 24. The bottom of the water inlet pipe 24 is connected to the water supply main pipe 3 through a pipe joint. A water inlet valve is provided on the water inlet pipe 24. The adding port 25 is provided at the top of the adding water tank 21. The stirrer 26 is provided inside the adding water tank 21. The servo motor 27 is provided at the top of the adding water tank 21. The output end of the servo motor 27 is connected to the stirrer 26 through a coupling. The support frame 28 is provided at the bottom of the adding water tank 21. The water supply main pipe 3 passes through below the adding water tank 21. When kiwifruit needs to be fertilized or sprayed with pesticides, fertilizers or liquid medicines are added into the adding water tank 21 through the adding port 25. The water inlet valve on the water inlet pipe 24 is opened. The water supply main pipe 3 adds water into the adding water tank 21 through the water inlet pipe 24. The servo motor 27 drives the stirrer 26 to rotate inside the adding water tank 21 for stirring inside the adding water tank 21. The control valve 23 on the adding pipe 22 is opened. The water fertilizer or liquid medicine in the adding water tank 21 enters the water supply main pipe 3 through the adding pipe 22. During the water supply process, the water fertilizer or liquid medicine is applied to the planting soil with the irrigation water.

[0032] Further, a first-stage valve is provided at one end of the water supply branch pipe 4 close to the water supply main pipe 3, and a second-stage valve is provided on the water supply branch pipe 5, which is convenient for controlling multiple water supply branch pipes 4 and water supply branch pipes 5.

[0033] Further, both the first irrigation hose 6 and the second irrigation hose 8 are laid obliquely from top to bottom along the kiwifruit planting area. Both the first irrigation hose 6 and the second irrigation hose 8 are laid in an open-loop structure, and the irrigation is uniform.

[0034] Further, a solar panel 14 is provided on one side of the top of the reservoir 13 through a bracket. The lower end of the inclined solar panel 14 faces the reservoir 13. A distribution box 15 is provided on one side of the reservoir 13. A storage battery and an inverter are provided on the distribution box 15. The solar panel 14 converts solar energy into electrical energy to supply power to electrical equipment.

[0035] The usage method of this embodiment is as follows: Lay the irrigation facilities according to the terrain of the kiwifruit planting area. Horizontally distribute the water supply branch pipes 4, the storage and drainage ditches 7, and the water delivery pipes 10 along the horizontal direction of the kiwifruit planting rows. Vertically lay the water supply main pipe 3 and the drainage pipe 12 from top to bottom in the kiwifruit planting area. Lay the first irrigation water belt 6 around the roots of the kiwifruit. In the planting soil layer inside the first irrigation water belt 6, a second irrigation water belt 8 is laid. The water supply branch pipe 4 is connected to the water supply main pipe 3. The first irrigation water belt 6 is connected to the water supply branch pipe 4 through a water supply branch pipe 5. When it rains, the rainwater on the ground in the planting area flows from top to bottom due to the terrain. The rainwater passes through the first water filter plate 71 and enters the storage and drainage ditch 7. After the water level in the storage and drainage ditch 7 reaches the height of the drainage pipe 12, the rainwater in the storage and drainage ditch 7 is discharged into the reservoir 13 through the drainage pipe 12. When irrigation is required for kiwifruit planting, open the drainage valve on the water delivery pipe 11. Since the second irrigation water belt 8 is connected to the lower inclined side of the storage and drainage ditch 7 through the connecting pipe 9, the water delivery pipe 10, and the water delivery pipe 11, that is, the second irrigation water belt 8 is located at the lower position of the storage and drainage ditch 7. Utilize the gravity drop of the terrain water level to make the rainwater stored in the storage and drainage ditch 7 enter the inclined second irrigation water belt 8 through the water delivery pipe 11, the connecting pipe 9, and the water delivery pipe 10. Supply water for irrigation around the roots of the kiwifruit through the irrigation ports 17 on the second irrigation water belt 8. Realize the automatic water storage and regulation irrigation of the roots of kiwifruit planting by using the terrain difference. The irrigation is energy-saving and convenient;

[0036] The distribution box 15 supplies power to the irrigation pump group 1. The water in the reservoir 13 is filtered by the third water filter plate 132 and then conveyed to the first irrigation water belt 6 through the water supply main pipe 3, the water supply branch pipe 4 and the water supply branch pipe 5. The irrigation port 17 of the first irrigation water belt 6 supplies water to the kiwifruit roots for irrigation, realizing the power water supply irrigation for the roots of kiwifruit planting. When fertilization or pesticide application is required for kiwifruit, fertilizers or liquid medicines are added into the adding water tank 21 through the adding port 25. The water inlet valve on the water inlet pipe 24 is opened, and the water supply main pipe 3 adds water into the adding water tank 21 through the water inlet pipe 24. The servo motor 27 drives the stirrer 26 to rotate in the adding water tank 21 for stirring in the adding water tank 21. The control valve 23 on the adding pipe 22 is opened, and the water fertilizer or liquid medicine in the adding water tank 21 enters the water supply main pipe 3 through the adding pipe 22. During the water supply process, the water fertilizer or liquid medicine is applied to the planting soil together with the irrigation water, facilitating the operations of water supply irrigation, fertilization and pesticide application. Through the arranged storage drainage ditch 7 and reservoir 13, it is convenient for drainage and water storage in the kiwifruit planting area, and the irrigation water supply is convenient. Combined with the arranged first water filter plate 71, second water filter plate 131 and third water filter plate 132, water storage and filtration prevent the irrigation water supply from being blocked. The first irrigation water belt 6 and the second irrigation water belt 8 are composed of a polyvinyl chloride water belt layer 16, an inner braided layer 18, a filter layer 19 and an outer braided layer 20. The first irrigation water belt 6 and the second irrigation water belt 8 are anti-blocking, sun-proof and corrosion-resistant, and have a long service life.

[0037] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A kiwifruit planting irrigation device for facilitating root watering, comprising an irrigation pump set (1), characterized in that: The input end of the irrigation pump group (1) is connected to the water outlet of the water reservoir (13) through a water pipe, and the output end of the irrigation pump group (1) is connected to the water supply main pipe (3). A adding mechanism (2) is provided on one side of the irrigation pump group (1), and the adding mechanism (2) is connected to the water supply main pipe (3). The water supply main pipe (3) is provided with a plurality of water supply branches (4) through a pipe joint, and the water supply branches (4) are distributed along the kiwifruit planting row. The water supply branches (4) are provided with a plurality of water supply branch pipes (5) through a pipe joint, and a first irrigation water belt (6) is provided at one end of the water supply branch pipe (5) away from the water supply branch pipe (4). The first irrigation water belt (6) is arranged on the planting ground. A No. 2 irrigation water belt (8) is laid in the planting soil layer inside the water belt (6), and a water storage ditch (7) is provided on the planting ground on one side of the water supply branch (4). The water supply branch (4) and the water storage ditch (7) are horizontally arranged along the kiwi fruit planting area. The water storage ditch (7) is arranged between two adjacent kiwi fruit planting rows. An irrigation mechanism is provided on the water storage ditch (7), and the irrigation mechanism is connected to the No. 2 irrigation water belt (8). The No. 1 irrigation water belt (6) is laid around the roots of the kiwi fruit. The upper end of the water storage ditch (7) is connected to a water reservoir (13) through a drainage pipe (12). The water supply main pipe (3) and the drainage pipe (12) are laid longitudinally from top to bottom along the kiwi fruit planting area.

2. The kiwi fruit planting irrigation device for facilitating root watering according to claim 1, characterized in that: The irrigation mechanism comprises a connecting pipe (9), a water pipe (10) and a water guide pipe (11); a water pipe (10) is provided in the planting soil layer on the lower inclined side of the water storage and drainage ditch (7); the water pipe (10) is horizontally laid along the kiwi fruit planting area; the water pipe (10) is connected to the lower inclined side of the water storage and drainage ditch (7) through the connecting pipe (9); the water pipe (10) is connected to the No. 2 irrigation water belt (8) through a branch pipe; a water guide pipe (11) is provided at one end of the water pipe (10) away from the water pipe (10); the water guide pipe (11) is provided at the lower end of the lower inclined side of the water storage and drainage ditch (7); and a drainage valve is provided on the water guide pipe (11).

3. The kiwi fruit planting irrigation device for facilitating root watering according to claim 1, characterized in that: A first water filter plate (71) is provided at the upper end of the interior of the water storage and drainage ditch (7), and the first water filter plate (71) is arranged in a V-shaped structure. The drainage pipe (12) is arranged below the first water filter plate (71). A second water filter plate (131) is provided at the upper end of the interior of the water storage tank (13), and a third water filter plate (132) is provided at the interior of the water storage tank (13) near the water outlet.

4. The kiwi fruit planting irrigation device for facilitating root watering according to claim 1, characterized in that: The No. 1 irrigation water hose (6) and the No. 2 irrigation water hose (8) are both composed of a polyvinyl chloride water hose layer (16), an irrigation port (17), an inner braided layer (18), a filter layer (19) and an outer braided layer (20); the polyvinyl chloride water hose layer (16) is provided with an irrigation port (17); the outer part of the polyvinyl chloride water hose layer (16) is wrapped with an inner braided layer (18); the outer part of the inner braided layer (18) is wrapped with a filter layer (19); the outer part of the filter layer (19) is wrapped with an outer braided layer (20); and the inner braided layer (18) and the outer braided layer (20) are both provided with water outlet holes.

5. The kiwi fruit planting irrigation device for facilitating root watering according to claim 1, characterized in that: The adding mechanism (2) comprises an adding water tank (21), an adding pipe (22), a control valve (23), a water inlet pipe (24), an adding port (25), a stirrer (26), a servo motor (27) and a support frame (28). The water reservoir (13) is provided with an adding water tank (21) at one end close to the irrigation pump group (1). The bottom of the adding water tank (21) is provided with an adding pipe (22). The adding pipe (22) is connected to the water supply main pipe (3). The adding pipe (22) is provided with a control valve (23). The upper end of one side of the adding water tank (21) is provided with a water inlet pipe (2 4), the bottom of the water inlet pipe (24) is connected to the water supply pipe (3) through a pipe joint, the water inlet pipe (24) is provided with a water inlet valve, the top of the additional water tank (21) is provided with an addition port (25), the interior of the additional water tank (21) is provided with an agitator (26), the top of the additional water tank (21) is provided with a servo motor (27), the output end of the servo motor (27) is connected to the agitator (26) through a coupling, the bottom of the additional water tank (21) is provided with a support frame (28), and the water supply pipe (3) passes through the bottom of the additional water tank (21).

6. The kiwi fruit planting irrigation device for facilitating root watering according to claim 1, characterized in that: A primary valve is provided on one end of the water supply branch pipe (4) close to the water supply main pipe (3), and a secondary valve is provided on the water supply branch pipe (5).

7. The kiwi fruit planting irrigation device for facilitating root watering according to claim 1, characterized in that: The first irrigation water belt (6) and the second irrigation water belt (8) are both laid obliquely from top to bottom along the kiwi fruit planting area, and the first irrigation water belt (6) and the second irrigation water belt (8) are both laid in an open ring structure.

8. The kiwi fruit planting irrigation device for facilitating root watering according to claim 1, characterized in that: A solar panel (14) is provided on one side of the top of the water reservoir (13) via a bracket, the lower end of the solar panel (14) is inclined toward the water reservoir (13), and a distribution box (15) is provided on one side of the water reservoir (13).

Citation Information

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