Water-saving irrigation device for orchard water and soil loss treatment

By designing intercepting ditches, drainage ditches, and water storage ponds in the orchard to collect rainwater, and combining them with an automatic water supply control system, the problems of water waste and high irrigation costs have been solved, achieving soil and water conservation and efficient use of water resources in the orchard, and improving the economic benefits of the orchard.

CN223568259UActive Publication Date: 2025-11-21HAINAN WATER RESOURCES & HYDRO POWER CONSTR SURVEYING & MAPPING DESIGN INST
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Patent Information

Application Number
CN202423035333.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-21
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

In existing technologies, although diverting rainwater to rivers through intercepting ditches and drainage ditches solves the problem of soil erosion, it leads to water waste and high irrigation costs for fruit trees, thus affecting water resource utilization.

Method used

Design a water-saving irrigation device for orchard soil and water conservation. Collect rainwater into a storage tank through intercepting ditches and drainage ditches, use the recovered rainwater for orchard irrigation, and switch to water supply through the inlet pipe after the rainwater is used up. Combined with solenoid valves and level gauges, the water supply source switching is automatically controlled to reduce manual operation.

Benefits of technology

It effectively reduces soil erosion in orchards, lowers irrigation costs, improves water resource utilization, enhances the economic benefits of orchards, and improves the efficiency and reliability of irrigation systems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The water-saving irrigation device comprises a mountain body, side slopes are arranged at the top of the mountain body at equal intervals, planting flat ground is arranged at the top of the mountain body at equal intervals, the side slopes and the planting flat ground are arranged at intervals, and fruit trees are arranged at the top of the planting flat ground at equal intervals. Recycling pipe network structures are arranged at the top of the mountain body at equal intervals. The recycling pipe network structure comprises an intercepting ditch, a drainage ditch, a reservoir, a water pump, a water conveying pipe and a water inlet pipe; the intercepting ditches are distributed at the bottom of the side slope, and one end of each intercepting ditch is communicated with a drainage ditch. The utility model relates to the technical field of agricultural water-saving irrigation, and solves the problems that in the prior art, rainwater is drained to a river through an intercepting ditch and a drainage ditch, although the problem of water and soil loss can be solved, a large amount of water resources are wasted, additional water is needed to irrigate fruit trees, the irrigation cost of the fruit trees is high, and the irrigation cost is high. And the utilization rate of water resources is influenced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of agricultural water saving irrigation technology, specifically to a water saving irrigation device for orchard water and soil loss treatment. BACKGROUND

[0002] Due to the special geographical environment, the orchard planted on the hillside is easily affected by the summer rainwater erosion, causing the problems such as water and soil loss of the orchard. Usually, the water interception ditch and the drainage ditch are built in the orchard to drain the rainwater to the river, reducing the soil erosion of the rainwater. In the prior art, the rainwater is drained to the river through the water interception ditch and the drainage ditch, which can solve the problem of water and soil loss, but causes a large amount of waste of water resources, and additional water is needed for irrigation of the fruit trees, resulting in high cost of irrigation of the fruit trees and affecting the utilization rate of water resources. SUMMARY

[0003] In view of the deficiencies of the prior art, the utility model provides a water saving irrigation device for orchard water and soil loss treatment, which solves the problem that in the prior art, the rainwater is drained to the river through the water interception ditch and the drainage ditch, which can solve the problem of water and soil loss, but causes a large amount of waste of water resources, and additional water is needed for irrigation of the fruit trees, resulting in high cost of irrigation of the fruit trees and affecting the utilization rate of water resources.

[0004] To achieve the above-mentioned purpose, the utility model realizes the following technical scheme: a water saving irrigation device for orchard water and soil loss treatment, comprising a mountain body, a side slope is equidistantly arranged on the top of the mountain body, a planting flat ground is equidistantly arranged on the top of the mountain body, the side slope and the planting flat ground are arranged at intervals, fruit trees are equidistantly arranged on the top of the planting flat ground, and a recovery pipe network structure is equidistantly arranged on the top of the mountain body; the recovery pipe network structure comprises a water interception ditch, a drainage ditch, a water storage tank, a water pump, a water delivery pipe and a water inlet pipe; a plurality of water interception ditches are arranged, which are distributed at the bottom of the side slope, one end of the water interception ditch is communicated with the drainage ditch, one end of the bottom of the drainage ditch is communicated with the water storage tank, the water pump is arranged on one side of the top of the water storage tank, the input end of the water pump is communicated with the water inlet pipe, the inside of the water storage tank is communicated with the water delivery pipe, and the water delivery pipe is communicated with the water inlet pipe.

[0005] Preferably, the output end of the water pump is provided with an irrigation pipe network structure; the irrigation pipe network structure comprises a water supply pipe, an irrigation pipe, a control valve and a spraying pipe; the water supply pipe is communicated with the output end of the water pump, irrigation pipes are equidistantly communicated on both sides of the water supply pipe, the control valve is arranged at one end of the irrigation pipe close to the water supply pipe, and the spraying pipes are equidistantly communicated on the top of the irrigation pipe.

[0006] Preferably, one side of the water pump is provided with a water supply control assembly; the water supply control assembly comprises a first electromagnetic valve, a second electromagnetic valve and a float liquid level meter; the first electromagnetic valve is installed at one end of the water inlet pipe close to the water delivery pipe, the second electromagnetic valve is installed at one end of the water delivery pipe close to the water inlet pipe, and the float liquid level meter is installed at the top of the water storage tank.

[0007] Preferably, the inside of the water interception ditch and the drainage ditch is provided with a sundry filtering assembly; the sundry filtering assembly comprises a first intercepting net, a second intercepting net, a placing groove, a placing plate and an intercepting protrusion; a plurality of the first intercepting nets are arranged at the inside of the water interception ditch at equal intervals, a plurality of the second intercepting nets are arranged at the inside of the drainage ditch, the placing groove is arranged at the bottom of one end of the water interception ditch close to the drainage ditch, the inside of the placing groove is provided with the placing plate, and the top of the placing plate is provided with the intercepting protrusion at equal intervals.

[0008] Preferably, the inside of the water storage tank is provided with a water supply filtering assembly; the water supply filtering assembly comprises a filtering tank and a filtering net; the filtering tank is arranged at one side of the inside of the water storage tank, the filtering tank is arranged outside the water delivery pipe, the outer wall of the filtering tank is provided with the filtering net at equal intervals, and the filtering tank is in communication with the water storage tank through the filtering net.

[0009] Preferably, the bottom of the irrigation pipe is provided with water pipe fixing clamps at equal intervals, and the water pipe fixing clamps are inserted into the planting flat ground.

[0010] The water-saving irrigation device for orchard water and soil loss control has the following beneficial effects: in rainy weather, the water-saving irrigation device for orchard water and soil loss control intercepts the rainwater flowing down the side slope through the water interception ditch, and collects and stores the rainwater in the water storage tank through the drainage ditch, when irrigating the orchard plants, the recycled rainwater is used preferentially for irrigation by connecting the water delivery pipe and the water pump, and after the recycled rainwater is used up, the water supply source is switched to the water inlet pipe to supply water to the water pump, thereby effectively reducing the water and soil loss of the orchard, reducing the water cost of the orchard irrigation, maximizing the use of external water resources, and improving the economic benefit of the orchard.

[0011] Through the cooperation of the water pump, the water delivery pipe, the water inlet pipe, the first electromagnetic valve, the second electromagnetic valve and the float liquid level meter, the float liquid level meter monitors the water level in the water storage tank and transmits the sensing signal to the control system of the irrigation pipe network in real time, so that the control system of the irrigation pipe network can automatically control the opening and closing of the first electromagnetic valve and the second electromagnetic valve according to the set program, and then automatically switch the water supply source according to the change of the water level in the water storage tank, and the switching process does not need manual operation, thereby improving the efficiency and reliability of the irrigation system. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is the schematic view of the appearance of the utility model;

[0013] Figure 2 It is the structural schematic view of the water intercepting ditch, the first intercepting net and the intercepting convex in the utility model;

[0014] Figure 3 It is Figure 1 It is the local enlarged view of A area in the utility model;

[0015] Figure 4 It is Figure 1 It is the local enlarged view of B area in the utility model;

[0016] Figure 5 It is Figure 1 It is the local enlarged view of C area in the utility model.

[0017] In the drawing: 1, mountain; 2, side slope; 3, planting flat ground; 4, fruit tree; 5, recovery pipe network structure; 51, water intercepting ditch; 52, drainage ditch; 53, water storage tank; 54, water pump; 55, water delivery pipe; 56, water inlet pipe; 6, irrigation pipe network structure; 61, water supply pipe; 62, irrigation pipe; 63, control valve; 64, spray pipe; 7, water supply control assembly; 71, first electromagnetic valve; 72, second electromagnetic valve; 73, float ball liquid level meter; 8, sundry filtering assembly; 81, first intercepting net; 82, second intercepting net; 83, placing groove; 84, placing plate; 85, intercepting convex; 9, water supply filtering assembly; 91, filter tank; 92, filter screen; 10, water pipe fixing clamp. DETAILED DESCRIPTION

[0018] The technical scheme in the embodiments of the utility model will be described clearly and completely in conjunction with the drawings of the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0019] In the prior art, rainwater is drained to a river through a water intercepting ditch and a drainage ditch, which can solve the problem of water and soil loss, but causes a large amount of waste of water resources, and additional water is needed to irrigate fruit trees, resulting in high cost of irrigation of fruit trees and affecting the utilization rate of water resources.

[0020] Therefore, the utility model provides a kind of orchard water and soil loss management is with water-saving irrigation device, through the cooperation between mountain, side slope, planting flat, water intercepting ditch, drainage ditch, water reservoir, water pump, water pipe and inlet pipe, in rain weather, the rainwater that flows down in side slope is intercepted by water intercepting ditch, and is collected and stored by being converged into water reservoir by drainage ditch, when the water reservoir stores collected rainwater when irrigating orchard plant, water pipe is communicated with water pump, recycled rainwater is used preferentially to irrigate, after recycled rainwater is used up, switch to inlet pipe to water pump for water supply again, effectively reduce orchard water and soil loss, while, it can reduce the water cost of orchard irrigation, realize the maximization utilization of external water resource, improve the economic benefit of orchard.

[0021] By the person skilled in the art, all electrical components in the case and their adapted power supply are connected by wires, and appropriate controllers and encoders should be selected according to actual conditions to meet the control requirements. The specific connection and control sequence should be completed according to the working order of each electrical component in the working principle described below. The detailed connection means is a well-known technology in the art. The working principle and process are mainly introduced below, and the electrical control is not described.

[0022] By Figures 1-5 It can be known that a kind of orchard water and soil loss management is with water-saving irrigation device, including mountain 1, the top of mountain 1 is equidistantly provided with side slope 2, the top of mountain 1 is equidistantly provided with planting flat 3, side slope 2 and planting flat 3 are arranged at intervals, the top of planting flat 3 is equidistantly provided with fruit tree 4, the top of mountain 1 is equidistantly provided with recovery pipe network structure 5;Recovery pipe network structure 5 includes water intercepting ditch 51, drainage ditch 52, water reservoir 53, water pump 54, water pipe 55 and inlet pipe 56;Water intercepting ditch 51 is provided with multiple, is distributed in the bottom of side slope 2, one end of water intercepting ditch 51 is communicated with drainage ditch 52, the number and position of drainage ditch 52 can be set according to actual conditions, meet the drainage demand, the bottom of drainage ditch 52 one end is communicated with water reservoir 53, water reservoir 53 is arranged at the low-lying place of the bottom of mountain 1, its size can be set according to actual use demand, to gather and collect rainwater, the top of water reservoir 53 one side is provided with water pump 54, the input end of water pump 54 is communicated with inlet pipe 56, the inside of water reservoir 53 is communicated with water pipe 55, water pipe 55 is communicated with inlet pipe 56;

[0023] In the specific implementation process, it is particularly worth pointing out that through the cooperation between the mountain 1, the side slope 2, the planting flat land 3 and the fruit trees 4, the mountain 1 is excavated and laid to form a multi-layer planting structure similar to terraces, and the fruit trees 4 are planted on each layer of the planting flat land 3, which not only improves the utilization rate of land, but also effectively prevents soil erosion, provides strong protection for the healthy growth of fruit plants, the number and position of the drainage ditches 52 can be set according to actual conditions to meet the drainage demand, the water storage tank 53 is arranged at the bottom of the mountain 1, and the size thereof can be set according to actual use demand to gather and collect rainwater, through the cooperation between the mountain 1, the side slope 2, the planting flat land 3, the water interception ditch 51, the drainage ditch 52 and the water storage tank 53, the water interception ditch 51 is arranged at the bottom of the side slope 2, in rainy weather, the water interception ditch 51 intercepts and diverts the rainwater flowing down the side slope 2, so that the rainwater enters the drainage ditch 52 at the end of the water interception ditch 51 and flows into the water storage tank 53 at the bottom of the drainage ditch 52 for collection and storage to be used for subsequent water supply, through the cooperation between the water storage tank 53, the water pump 54, the water conveying pipe 55 and the water inlet pipe 56, the input end of the water pump 54 is connected with the water conveying pipe 55 and the water inlet pipe 56, the output end of the water pump 54 is connected with the irrigation pipe network, and the water conveying pipe 55 and the water inlet pipe 56 are both provided with valves to switch the water supply mode, when the water storage tank 53 stores collected rainwater, the water conveying pipe 55 is connected with the water pump 54 to preferentially use the recycled rainwater for irrigation, and after the recycled rainwater is used up, the water supply mode is switched to use the water inlet pipe 56 to supply water to the water pump 54, thereby improving the utilization rate of water resources and reducing the water cost of orchard irrigation, through the cooperation between the mountain 1, the side slope 2, the planting flat land 3, the water interception ditch 51, the drainage ditch 52, the water storage tank 53, the water pump 54, the water conveying pipe 55 and the water inlet pipe 56, in rainy weather, the water interception ditch 51 intercepts the rainwater flowing down the side slope 2, and the rainwater flows into the water storage tank 53 through the drainage ditch 52 for collection and storage, when the water storage tank 53 stores collected rainwater, the water conveying pipe 55 is connected with the water pump 54 to preferentially use the recycled rainwater for irrigation, and after the recycled rainwater is used up, the water supply mode is switched to use the water inlet pipe 56 to supply water to the water pump 54, thereby effectively reducing the soil erosion of the orchard and reducing the water cost of orchard irrigation to maximize the use of external water resources and improve the economic benefit of the orchard, wherein the specific model of the water pump 54 is not limited, and the use demand is met.

[0024] It can be understood that the mountain 1 described in the embodiment does not belong to the structure in the case, the structure in the case is built and arranged on the mountain 1, and is described and explained in order to facilitate the understanding of the scheme.

[0025] Further, the output end of the water pump 54 is provided with an irrigation pipe network structure 6; the irrigation pipe network structure 6 comprises a water supply pipe 61, a watering pipe 62, a control valve 63 and a spray pipe 64; the water supply pipe 61 is connected with the output end of the water pump 54, the watering pipe 62 is connected with the two sides of the water supply pipe 61 at equal intervals, the control valve 63 is arranged at one end of the watering pipe 62 close to the water supply pipe 61, and the spray pipe 64 is connected with the top of the watering pipe 62 at equal intervals;

[0026] In the specific implementation process, it is particularly worth pointing out that the orchard irrigation pipe network is composed of the water pump 54, the water supply pipe 61, the watering pipe 62, the control valve 63 and the spray pipe 64 through cooperation, the irrigation water is delivered to the water supply pipe 61 and the watering pipe 62 through the water pump 54, the irrigation water is sprayed to the bottom of the fruit tree 4 through the spray head of the spray pipe 64, the irrigation of the orchard plants is realized, and the water supply of the spray pipe 64 can be controlled through the control valve 63 according to the irrigation condition, so as to ensure the uniformity of the orchard plant irrigation;

[0027] It can be understood that the fruit tree 4 of the orchard can be sprayed and irrigated through the spray pipe 64, or the water delivery hose can be connected with the watering pipe 62, so that the irrigation water is delivered to the bottom of the fruit tree 4, so as to meet different needs of the growth of the fruit plants.

[0028] Further, one side of the water pump 54 is provided with a water supply control assembly 7; the water supply control assembly 7 comprises a first electromagnetic valve 71, a second electromagnetic valve 72 and a float liquid level meter 73; the first electromagnetic valve 71 is installed at one end of the water inlet pipe 56 close to the water delivery pipe 55, the second electromagnetic valve 72 is installed at one end of the water delivery pipe 55 close to the water inlet pipe 56, and the float liquid level meter 73 is installed at the top of the water storage tank 53;

[0029] In the specific implementation process, it is particularly worth pointing out that the float liquid level meter 73 is used for monitoring the water level in the water storage tank 53, through cooperation between the water pump 54, the water delivery pipe 55, the water inlet pipe 56, the first electromagnetic valve 71, the second electromagnetic valve 72 and the float liquid level meter 73, the float liquid level meter 73 monitors the water level in the water storage tank 53 and transmits the sensing signal to the control system of the irrigation pipe network in real time, when a certain amount of rainwater is collected in the water storage tank 53, the control system of the irrigation pipe network automatically opens the second electromagnetic valve 72 and keeps the first electromagnetic valve 71 in the closed state, the rainwater in the water storage tank 53 is pumped to the irrigation pipe network through the water pump 54 and the water delivery pipe 55, when the water level in the water storage tank 53 decreases to a certain height, the control system of the irrigation pipe network automatically opens the first electromagnetic valve 71 and closes the second electromagnetic valve 72, and the water supply is performed through the water inlet pipe 56, so as to realize automatic monitoring of the water level in the water storage tank 53 and automatic switching of the water supply source according to the change of the water level, the switching process does not need manual operation, the efficiency and reliability of the irrigation system are improved, and the specific type of the first electromagnetic valve 71, the second electromagnetic valve 72 and the float liquid level meter 73 is not limited, which meets the use requirement.

[0030] Further, the inside of the water intercepting groove 51 and the drainage ditch 52 is provided with a sundry filtering assembly 8; the sundry filtering assembly 8 comprises a first intercepting net 81, a second intercepting net 82, a placing groove 83, a placing plate 84 and an intercepting protrusion 85; the first intercepting net 81 is provided with a plurality of, equidistantly distributed in the inside of the water intercepting groove 51, the second intercepting net 82 is provided with a plurality of, distributed in the inside of the drainage ditch 52, the placing groove 83 is provided at the bottom of one end of the water intercepting groove 51 close to the drainage ditch 52, the inside of the placing groove 83 is provided with the placing plate 84, and the top of the placing plate 84 is equidistantly provided with the intercepting protrusion 85;

[0031] In the specific implementation process, it is particularly worth pointing out that through the cooperation between the water intercepting groove 51, the drainage ditch 52, the first intercepting net 81 and the second intercepting net 82, the larger sundries in the rainwater are intercepted by the first intercepting net 81 and the second intercepting net 82 during the drainage and transportation of the rainwater in the water intercepting groove 51 and the drainage ditch 52, so as to avoid sundries such as branches, leaves or plastic bags from entering the inside of the water storage pool 53; through the cooperation between the water intercepting groove 51, the placing groove 83, the placing plate 84 and the intercepting protrusion 85, the placing plate 84 is placed in the inside of the placing groove 83, so that the placing plate 84 is stably arranged at the end of the water intercepting groove 51; the sand in the rainwater is intercepted by the intercepting protrusion 85 before the rainwater enters the drainage ditch 52 from the water intercepting groove 51, so as to reduce the sand content of the rainwater entering the drainage ditch 52, and further reduce the maintenance frequency of the water storage pool 53 and the irrigation pipe network;

[0032] Further, the inside of the water storage pool 53 is provided with a water supply filtering assembly 9; the water supply filtering assembly 9 comprises a filtering pool 91 and a filtering net 92; the filtering pool 91 is arranged at one side of the inside of the water storage pool 53, the filtering pool 91 is arranged outside the water delivery pipe 55, the outer wall of the filtering pool 91 is equidistantly provided with the filtering net 92, and the filtering pool 91 is connected with the water storage pool 53 in communication through the filtering net 92;

[0033] In the specific implementation process, it is particularly worth pointing out that through the cooperation between the water storage pool 53, the water delivery pipe 55, the filtering pool 91 and the filtering net 92, the rainwater entering the water storage pool 53 enters the inside of the filtering pool 91 under the action of pressure, and the sundries in the rainwater are filtered by the filtering net 92, so as to effectively avoid the influence of the sundries on the subsequent water supply transportation, and improve the reliability of the water-saving irrigation system;

[0034] Further, the bottom of the irrigation pipe 62 is equidistantly provided with a water pipe fixing clamp 10, which is used for supporting and fixing the irrigation pipe 62, so that the irrigation pipe 62 remains stable during irrigation, and the water pipe fixing clamp 10 is inserted into the planting flat ground 3;

[0035] In the implementation process, it is worth pointing out that the water pipe fixing clamp 10 is used for supporting and fixing the irrigation pipe 62, so that the irrigation pipe 62 can be kept stable during irrigation.

[0036] It should be noted that, in this document, the terms such as first and second are used merely to distinguish one entity or operation from another, and do not necessarily require or imply these entities or operations have any such actual relationship or order. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment. Without more limitations, the statement "including a limited element" does not exclude the existence of other identical elements in the process, method, article or equipment including the element.

[0037] In the utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection" and the like should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrated; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through intermediate medium, it can be the communication or interaction relationship between two elements, unless otherwise explicitly limited, for the ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0038] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A water-saving irrigation device for orchard soil erosion control, comprising a mountain body (1), characterized in that: The top of the mountain (1) is provided with side slopes (2) at equal intervals, and the top of the mountain (1) is provided with planting flat land (3) at equal intervals. The side slopes (2) and planting flat land (3) are arranged alternately. Fruit trees (4) are provided at equal intervals on the top of the planting flat land (3). The top of the mountain (1) is provided with recycling pipeline structure (5) at equal intervals. The recycling pipeline structure (5) includes a water interception ditch (51), a drainage ditch (52), a water storage tank (53), a water pump (54), a water delivery pipe (55), and an inlet pipe (56); Multiple intercepting ditches (51) are provided and distributed at the bottom of the side slope (2). One end of the intercepting ditch (51) is connected to the drainage ditch (52). One end of the bottom of the drainage ditch (52) is connected to the water storage tank (53). A water pump (54) is provided on one side of the top of the water storage tank (53). The input end of the water pump (54) is connected to the water inlet pipe (56). The inside of the water storage tank (53) is connected to the water delivery pipe (55). The water delivery pipe (55) is connected to the water inlet pipe (56).

2. The water-saving irrigation device for orchard soil erosion control according to claim 1, characterized in that: The output end of the water pump (54) is provided with an irrigation pipe network structure (6). The irrigation network structure (6) includes a water supply pipe (61), an irrigation pipe (62), a control valve (63), and a sprinkler pipe (64). The water supply pipe (61) is connected to the output end of the water pump (54). Irrigation pipes (62) are connected at equal intervals on both sides of the water supply pipe (61). A control valve (63) is provided at one end of the irrigation pipe (62) near the water supply pipe (61). Spray pipes (64) are connected at equal intervals at the top of the irrigation pipe (62).

3. The water-saving irrigation device for orchard soil erosion control according to claim 1, characterized in that: A water supply control component (7) is provided on one side of the water pump (54). The water supply control component (7) includes a first solenoid valve (71), a second solenoid valve (72), and a float level gauge (73). The first solenoid valve (71) is installed at one end of the inlet pipe (56) near the water supply pipe (55), the second solenoid valve (72) is installed at one end of the water supply pipe (55) near the inlet pipe (56), and the float level gauge (73) is installed on the top of the water storage tank (53).

4. The water-saving irrigation device for orchard soil erosion control according to claim 1, characterized in that: The intercepting ditch (51) and the drainage ditch (52) are equipped with debris filtering components (8). The debris filtering assembly (8) includes a first intercepting mesh (81), a second intercepting mesh (82), a placement groove (83), a placement plate (84), and an intercepting protrusion (85). Multiple first intercepting nets (81) are provided and are equidistantly distributed inside the intercepting ditch (51). Multiple second intercepting nets (82) are provided and are distributed inside the drainage ditch (52). The placement groove (83) is provided at the bottom of one end of the intercepting ditch (51) near the drainage ditch (52). A placement plate (84) is provided inside the placement groove (83). Intercepting protrusions (85) are equidistantly provided on the top of the placement plate (84).

5. The water-saving irrigation device for orchard soil erosion control according to claim 1, characterized in that: The water storage tank (53) is equipped with a water supply filtration assembly (9). The water supply filtration assembly (9) includes a filter tank (91) and a filter screen (92); The filter tank (91) is arranged at the inner side of the water storage tank (53), the filter tank (91) is arranged outside the water delivery pipe (55), the outer wall of the filter tank (91) is equidistantly provided with a filter screen (92), and the filter tank (91) is communicated with the water storage tank (53) through the filter screen (92).

6. The water-saving irrigation device for orchard soil erosion control according to claim 2, characterized in that: The bottom of the irrigation pipe (62) is equidistantly provided with a water pipe fixing clamp (10), and the water pipe fixing clamp (10) is inserted into the planting flat ground (3).