Soil and water conservation device based on artificial intelligence

By designing an AI-based soil and water conservation device, which utilizes components such as water channels, pump units, and waterproofing units, the problem of soil loss and water overflow in farmland diversion devices has been solved, realizing intelligent soil and water conservation and overflow prevention functions, and improving the ecological protection effect of farmland.

CN223593325UActive Publication Date: 2025-11-25ZHENGYE DESIGN CO LTD
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Patent Information

Application Number
CN202422961319.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-11-25
Estimated Expiration
2034-12-02

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  • Figure CN223593325U_ABST
    Figure CN223593325U_ABST
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Abstract

The application discloses an artificial intelligence-based water and soil conservation device, belongs to the field of water and soil conservation devices, and comprises a water channel groove assembly, a water pump unit, a waterproof plate unit and a fixing unit, the water pump unit is symmetrically fixed to the water channel groove assembly, the waterproof plate unit is symmetrically arranged on the water channel groove assembly, and the fixing unit is slidably connected to the water channel groove assembly. The application can solve the problems of the prior art, such as the fact that the existing farmland drainage is mostly simple ditching, long-term water body scouring leads to continuous soil loss on both sides of the ditch, and the existing drainage groove structure only has the function of water body drainage, and when it is rainy, the sudden increase of water flow leads to water body overflow in the drainage groove into the farmland, and further leads to the problem of water and soil loss.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the device field for water and soil conservation especially based on artificial intelligence's water and soil conservation device. BACKGROUND

[0002] Water and soil loss refers to the phenomenon that due to the influence of natural or human factors, rainwater cannot be consumed on site, and the phenomenon of soil erosion caused by the flow of water, the main reason is that the ground slope is large, the land is not used properly, the ground vegetation is damaged, the cultivation technique is not reasonable, the soil is loose, the forest is cut down, the overgrazing, etc., water and soil loss to soil, the existing farmland water and soil conservation management, using artificial intelligence, using unmanned aerial vehicle sensor to detect water flow, and detecting the location prone to water and soil loss, but the existing farmland drainage has the following disadvantages in the actual use process: the existing farmland drainage is mostly simple ditch, long-term water erosion will lead to the soil loss on both sides of the ditch, and the existing drainage groove structure only has the function of water drainage, when the rain weather, the water flow suddenly increases, which will cause the water in the drainage groove to overflow into the farmland, and further cause water and soil loss. SUMMARY

[0003] The utility model aims at solving the above -mentioned problems existing in prior art, provide a kind of based on artificial intelligence's water and soil conservation device.

[0004] To achieve the above object, the utility model takes the following technical scheme:

[0005] A kind of based on artificial intelligence's water and soil conservation device, including: water channel groove assembly, water pump unit, waterproof board unit and fixed unit, the water channel groove assembly is fixed with water pump unit symmetrically, the water channel groove assembly is symmetrically provided with waterproof board unit, the water channel groove assembly is slidably connected with multiple fixed units.

[0006] The water channel groove assembly includes: water channel, cavity, water-permeable hole and wave-damping baffle, the water channel both sides upper portion is provided with convex edge along its length direction, the water channel is symmetrically provided with the cavity in the inside, the water channel both opposite inner sides are provided with multiple water-permeable holes along its length direction, multiple water-permeable holes are all communicated with cavity, the water channel both opposite inner sides are provided with wave-damping baffle, and two wave-damping baffles are all located above water-permeable hole.

[0007] Two water pump units all include: water pump, water suction pipe and filter screen, the water pump water inlet end is fixedly connected with water suction pipe, the water suction pipe is arranged in water channel and passes through water channel inner side, and filter screen is arranged on the water suction pipe.

[0008] Two said waterproof board units all include: pontoon column, waterproof board, backwater pipe and water valve, the upper end of the pontoon column is fixed with the waterproof board, the pontonto column and the waterproof board are arranged in the cavity, one end of the backwater pipe is fixedly communicated with the bottom surface of the cavity, the other end of the backwater pipe is fixedly communicated with the water valve, the water valve is fixedly communicated with the water pump, the waterproof board slides out through the top surface of the cavity.

[0009] A plurality of said fixed units all include: soil piercing cone, long hole, guide column, sleeve, support rod and soil piercing plate, the soil piercing cone slides through the convex edge arranged in the water channel groove, a plurality of long holes are evenly arranged on the lateral surface of the soil piercing cone, the soil piercing cone is arranged as a hollow structure, the guide column is fixed on the inner bottom surface of the soil piercing cone, the sleeve is sleeved on the guide column, the support rod is provided as two, the distal ends of the two support rods are rotatably connected with the bottom surface of the soil piercing cone and below the sleeve respectively, the adjacent sections of the two support rods are rotatably connected with the soil piercing plate, and every two support rods and the soil piercing plate are arranged as a group, and the support rod and the soil piercing plate of each group correspond to a long hole.

[0010] Compared with the prior art, the beneficial effects of the utility model are:

[0011] The utility model provides a water and soil conservation device based on artificial intelligence can solve the background art proposed: the existing farmland drainage has the following disadvantages in actual use process: the existing farmland drainage is mostly simple ditch, and long -term water body wash will lead to the soil loss of the both sides of the ditch, and the existing drainage groove structure only has the effect of water body drainage, and when the weather is rainy, the water body flow is suddenly increased, which can cause the water body in the drainage groove to overflow into the farmland, and further can cause the problem of water and soil loss. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is the overall structure schematic diagram of the utility model;

[0013] Figure 2 It is fixed unit structure schematic diagram;

[0014] Figure 3 It is the overall structure test section view. DETAILED DESCRIPTION

[0015] The technical scheme in the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only a 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 the person skilled in the art without creative labor belong to the range of the utility model protection.

[0016] An artificial intelligence-based water and soil conservation device, comprising: a water channel groove assembly 1, a water pump unit 2, a waterproof board unit 3 and a fixing unit 4, the water pump unit 2 is symmetrically fixed on the water channel groove assembly 1, the waterproof board unit 3 is symmetrically arranged on the water channel groove assembly 1, and the fixing unit 4 is slidably connected to the water channel groove assembly 1.

[0017] The water channel groove assembly 1 comprises: a water channel groove 1-1, a cavity 1-2, a water permeable hole 1-3 and a wave absorbing baffle 1-4, the water channel groove 1-1 is provided with a convex edge along the length direction on both sides of the upper side, the cavity 1-2 is symmetrically arranged inside the water channel groove 1-1, a plurality of water permeable holes 1-3 are arranged along the length direction on both opposite inner sides of the water channel groove 1-1, the plurality of water permeable holes 1-3 are in communication with the cavity 1-2, and the wave absorbing baffles 1-4 are arranged on both opposite inner sides of the water channel groove 1-1, and the two wave absorbing baffles 1-4 are located above the water permeable holes 1-3.

[0018] The water pump unit 2 comprises: a water pump 2-1, a water suction pipe 2-2 and a filter screen 2-3, the water suction pipe 2-2 is fixedly connected to the water inlet end of the water pump 2-1, the water suction pipe 2-2 is arranged in the water channel groove 1-1 and penetrates the inner side of the water channel groove 1-1, and the filter screen 2-3 is arranged on the water suction pipe 2-2.

[0019] The waterproof board unit 3 comprises: a float column 3-1, a waterproof board 3-2, a water return pipe 3-3 and a water valve 3-4, the waterproof board 3-2 is fixedly connected to the upper end of the float column 3-1, the float column 3-1 and the waterproof board 3-2 are arranged in the cavity 1-2, one end of the water return pipe 3-3 is fixedly connected to the bottom surface of the cavity 1-2, the other end of the water return pipe 3-3 is fixedly connected to the water valve 3-4, the water valve 3-4 is fixedly connected to the water suction pipe 2-2, and the waterproof board 3-2 penetrates the top surface of the cavity 1-2.

[0020] The fixing unit 4 comprises: a soil piercing cone 4-1, a long hole 4-2, a guide column 4-3, a sleeve 4-4, a support rod 4-5 and a soil piercing plate 4-6, the soil piercing cone 4-1 penetrates the convex edge arranged on the water channel groove 1-1, a plurality of long holes 4-2 are uniformly arranged on the lateral surface of the soil piercing cone 4-1, the soil piercing cone 4-1 is arranged as a hollow structure, the guide column 4-3 is fixedly connected to the inner bottom surface of the soil piercing cone 4-1, the sleeve 4-4 is sleeved on the guide column 4-3, the support rod 4-5 is arranged in two, the distal ends of the two support rods 4-5 are respectively rotatably connected to the bottom surface of the soil piercing cone 4-1 and the lower side of the sleeve 4-4, the adjacent sections of the two support rods 4-5 are rotatably connected to the soil piercing plate 4-6, each two support rods 4-5 and the soil piercing plate 4-6 are arranged as a group, and the support rods 4-5 and the soil piercing plate 4-6 of each group correspond to a long hole 4-2.

[0021] The utility model discloses a working principle is:

[0022] The utility model discloses a working principle is:

[0023] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, the description of the specification is only for the sake of clarity, and the skilled person in the art should consider the specification as a whole, and the technical solutions in each example can be combined appropriately to form other embodiments that can be understood by the skilled person.

Claims

1. A soil and water conservation device based on artificial intelligence, characterized in that: include: The water channel assembly (1), water pump unit (2), waterproof plate unit (3) and fixing unit (4) are provided. The water channel assembly (1) is symmetrically fixed with water pump unit (2). The water channel assembly (1) is symmetrically provided with waterproof plate unit (3). The water channel assembly (1) is slidably connected with multiple fixing units (4).

2. The soil and water conservation device based on artificial intelligence according to claim 1, characterized in that: The water channel assembly (1) includes: a water channel (1-1), a cavity (1-2), a water permeable hole (1-3), and a wave-damping baffle (1-4). The water channel (1-1) has raised edges on both sides along its length. The cavity (1-2) is symmetrically arranged inside the water channel (1-1). Multiple water permeable holes (1-3) are arranged on both opposite inner sides of the water channel (1-1) along its length. The multiple water permeable holes (1-3) are all connected to the cavity (1-2). Wave-damping baffles (1-4) are arranged on both opposite inner sides of the water channel (1-1). Both wave-damping baffles (1-4) are located above the water permeable holes (1-3).

3. The soil and water conservation device based on artificial intelligence according to claim 2, characterized in that: Both pump units (2) include: a pump (2-1), a pump pipe (2-2), and a filter screen (2-3). The pump (2-1) is fixedly connected to the pump pipe (2-2) at its inlet end. The pump pipe (2-2) is installed in the water channel (1-1) and extends out of the inner side of the water channel (1-1). The pump pipe (2-2) is equipped with a filter screen (2-3).

4. The soil and water conservation device based on artificial intelligence according to claim 3, characterized in that: Both waterproofing units (3) include: a float column (3-1), a waterproofing plate (3-2), a return water pipe (3-3), and a water valve (3-4). The upper end of the float column (3-1) is fixed with the waterproofing plate (3-2). The float column (3-1) and the waterproofing plate (3-2) are both set in the cavity (1-2). One end of the return water pipe (3-3) is fixedly connected to the bottom surface of the cavity (1-2), and the other end of the return water pipe (3-3) is fixedly connected to the water valve (3-4). The water valve (3-4) is fixedly connected to the pumping pipe (2-2). The waterproofing plate (3-2) slides out of the top surface of the cavity (1-2).

5. A soil and water conservation device based on artificial intelligence according to claim 2, characterized in that: Each of the aforementioned fixing units (4) includes: a soil-piercing cone (4-1), an elongated hole (4-2), a guide post (4-3), a sleeve (4-4), a support rod (4-5), and a soil-piercing plate (4-6). The soil-piercing cone (4-1) slides through the protruding edge of the water channel (1-1). Multiple elongated holes (4-2) are evenly distributed on the periphery of the soil-piercing cone (4-1). The soil-piercing cone (4-1) is a hollow structure. A guide post (4-3) is fixed to the bottom surface of the soil-piercing cone (4-1). A sleeve (4-4) is fitted onto the guide post (4-3). Two support rods (4-5) are provided. The far ends of the two support rods (4-5) are rotatably connected to the bottom surface of the soil-piercing cone (4-1) and the lower part of the sleeve (4-4), respectively. The adjacent sections of the two support rods (4-5) are rotatably connected to the soil-piercing plate (4-6). Every two support rods (4-5) and soil-piercing plates (4-6) are set as a group. Each group of support rods (4-5) and soil-piercing plates (4-6) corresponds to an elongated hole (4-2).