Ecological restoration water and soil conservation device
By burying the main pipe and installing nozzles on the slope, the problem of vegetation not being able to obtain sufficient moisture on the arched slope is solved, and flexible water replenishment and soil and water conservation are achieved.
Patent Information
- Application Number
- CN202510430930.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The slope shape is mostly made of arched concrete buildings. Vegetation is planted in the arched soil, which makes vegetation unable to obtain sufficient moisture and easily wither, affecting the maintenance of water.
An ecological restoration and soil and water conservation device is designed, including slopes, pumps and servo motors. By burying the main pipe on the slope, the main pipe is connected to the sub-pipe, the sub-pipe is placed in the concrete-wrapped soil position, the nozzle is installed on the sub-pipe, the nozzle can be watered to the vegetation position, and the spraying method is adjusted through the blocking seat and the blocking ring.
It has achieved flexible water replenishment of vegetation, ensured that vegetation is not prone to withering, effectively maintained the water and soil, and adapted to different vegetation growth conditions and weather conditions.
Smart Images

Figure CN120099981A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of retaining devices, in particular to an ecological restoration soil and water conservation device. Background Art
[0002] With the large-scale urbanization construction carried out with the development of society, a large number of mountains have been seriously damaged by landslides, mud-rock flows and soil erosion caused by continuous quarrying. The application scope of slope plant ecological restoration technology is becoming more and more extensive, and it has developed into an important part of various types of slope construction.
[0003] During the ecological restoration process, plants will be planted along the slopes to prevent water and soil loss through the rooting of the plants. However, the shape of the slopes is mostly composed of arched concrete buildings, and the vegetation will be planted in the arched soil. This will result in the vegetation not being able to obtain sufficient water, and the vegetation will easily wither, thus affecting the conservation of the water body. Summary of the invention
[0004] Technical issues solved
[0005] In view of the shortcomings of the prior art, the present invention provides an ecological restoration soil and water conservation device to solve the problem that the slope shape is mostly composed of arched concrete buildings, and vegetation will be planted in the arched soil, which will result in the vegetation not being able to obtain sufficient water and the vegetation is prone to withering, thus affecting the conservation of water bodies.
[0006] Technical Solution
[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: an ecological restoration soil and water conservation device, including a slope, a pump and a servo motor, a main pipe is buried on the slope, the main pipe is detachably connected to the pump, a secondary pipe is provided on the main pipe, a nozzle is detachably connected to the secondary pipe, a side opening is opened on the side edge of the nozzle, a plug is plugged on the port of the nozzle, the plug is rotatably connected to a mounting frame, one end of the mounting frame is detachably connected to the output end of a linkage frame, and the linkage frame is arranged on the output end of the servo motor.
[0008] Preferably, the nozzle and the auxiliary pipe are arranged in a T-shape as a whole, the nozzle is cylindrical as a whole, and the nozzle is slidably connected with a corresponding first blocking ring and a second blocking ring.
[0009] Preferably, the diameters of the first blocking ring and the second blocking ring are the same, the widths of the first blocking ring and the second blocking ring are greater than the width of the side port, the inner diameters of the first blocking ring and the second blocking ring are the same as the diameter of the nozzle, and a fixing frame is provided between the first blocking ring and the second blocking ring.
[0010] Preferably, a vertical frame is detachably connected to the side edge of the second blocking ring, and the other end of the vertical frame is detachably connected to the linkage frame, and the vertical frame and the linkage frame are arranged in an L shape as a whole.
[0011] Preferably, the mounting frame of the second blocking ring is U-shaped as a whole, and a rotating rod is rotatably connected to the mounting frame, and the rotating rod is detachably connected to the corresponding blocking seat.
[0012] Preferably, the blocking seat and the rotating rod are arranged in a T-shape as a whole, one end of the rotating rod is located outside the mounting frame, and a swing rod is detachably connected to the rotating rod outside the mounting frame.
[0013] Preferably, the swing arm and the rotating rod are arranged in a T-shape as a whole, a cross bar is arranged in the rotation direction of the swing arm, and the cross bar is detachably connected to the corresponding auxiliary pipe.
[0014] Preferably, the auxiliary pipe and the nozzle are parallel to each other, a threaded seat is detachably connected to the linkage frame above the auxiliary pipe, the threaded seat is threadedly connected to the screw, the input end of the screw is detachably connected to the servo motor, and a connecting rod is detachably connected between adjacent screws.
[0015] Beneficial Effects
[0016] The present invention provides an ecological restoration soil and water conservation device, which has the following beneficial effects:
[0017] The ecological restoration soil and water conservation device is provided by burying a main pipe on a slope, the main pipe can be laid on the outer circle of a concrete building, by installing a sub-pipe on the main pipe, the main pipe and the sub-pipe can be mutually connected, the water body can flow, the sub-pipe can be placed in the soil position wrapped by concrete, by installing a nozzle on the sub-pipe, the nozzle can correspond to the planted vegetation, the nozzle can irrigate the vegetation position, the nozzle is open, the opening of the nozzle is connected with a corresponding plugging seat, the plugging seat can block the nozzle, the side wall of the nozzle is provided with a corresponding side port, the first plugging ring and the second plugging ring sleeved on the nozzle can block the side port, the water body sprayed out from the side port is in an umbrella shape when spraying water, and the whole plant of the vegetation can be sprayed, when the water body is sprayed out from the opening position of the nozzle, the water body is sprayed out in a columnar shape, so as to directly irrigate the roots of the vegetation, and two different spraying methods can be selected according to the growth status of the vegetation and weather conditions, so as to make water replenishment more flexible.
[0018] The ecological restoration soil and water conservation device is provided with a first blocking ring and a second blocking ring on a nozzle, a fixing frame is installed between the first blocking ring and the second blocking ring, the first blocking ring and the second blocking ring can realize simultaneous movement through the fixing frame, when the second blocking ring is connected to the linkage frame through the vertical frame, the linkage frame can drive the first blocking ring and the second blocking ring to move simultaneously, the first blocking ring is away from the side port in an initial state, the second blocking ring is in an initial state to block the side port, the blocking seat is in an initial state to block the nozzle, when the second blocking ring is away from the side port, the side port is opened, the blocking seat still blocks the nozzle, when the first blocking ring blocks the side port, the blocking seat pulls out the nozzle, so that the path of water spraying is changed, thereby realizing the adjustment of the spraying path. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0020] Figure 2 It is a structural schematic diagram of the linkage frame in the present invention;
[0021] Figure 3 It is a structural schematic diagram of the crossbar in the present invention;
[0022] Figure 4 For the present invention Figure 2 A magnified image of area A;
[0023] Figure 5 For the present invention Figure 3 Enlarged view of area B.
[0024] In the figure:
[0025] 1. Slope; 2. Main pipe; 3. Auxiliary pipe; 4. Pump; 5. Linkage frame; 6. Servo motor; 7. Screw; 8. Threaded seat; 9. Connecting rod; 10. Cross bar; 11. Vertical frame; 12. First blocking ring; 13. Nozzle; 14. Side port; 15. Fixed frame; 16. Swing rod; 17. Rotating rod; 18. Second blocking ring; 19. Mounting frame; 20. Blocking seat; DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0027] See also Figure 1-Figure 5The present invention provides an ecological restoration soil and water conservation device, including a slope 1, a pump 4 and a servo motor 6. A main pipe 2 is buried on the slope 1, and the main pipe 2 is detachably connected to the pump 4. A secondary pipe 3 is provided on the main pipe 2, and a nozzle 13 is detachably connected to the secondary pipe 3. A side opening 14 is opened on the side edge of the nozzle 13, and a plug seat 20 is inserted on the port of the nozzle 13. The plug seat 20 is rotatably connected to a mounting frame 19, and one end of the mounting frame 19 is detachably connected to the output end of a linkage frame 5, and the linkage frame 5 is arranged on the output end of the servo motor 6. The main pipe 2 is pre-buried on the slope 1 as a whole, and then the nozzle 13 is directed toward the vegetation within the corresponding range. During use, sprinkler irrigation is carried out according to the growth conditions of the vegetation. During sprinkler irrigation, the servo motor 6 is started, and the servo motor 6 controls the linkage frame 5 to move. The linkage frame 5 can drive the first blocking ring 12, the second blocking ring 18 and the blocking seat 20 to move when moving. When moving to different positions, the paths of the water sprayed are different, so the sprinkler irrigation method is adjusted according to the needs of the vegetation. Through the setting, the vegetation can be flexibly replenished with water, so that the vegetation is not easy to wither, and the water and soil are maintained.
[0028] The nozzle 13 and the auxiliary pipe 3 are arranged in a T-shape as a whole. The nozzle 13 is cylindrical as a whole. The nozzle 13 is slidably connected with the corresponding first blocking ring 12 and second blocking ring 18. By setting the nozzle 13, the nozzle 13 can realize the external discharge of the water body.
[0029] The first blocking ring 12 and the second blocking ring 18 have the same diameter, the width of the first blocking ring 12 and the second blocking ring 18 is greater than the width of the side port 14, the inner diameter of the first blocking ring 12 and the second blocking ring 18 is the same as the diameter of the nozzle 13, and a fixing frame 15 is provided between the first blocking ring 12 and the second blocking ring 18. The side port 14 can be blocked and opened by the arrangement of the first blocking ring 12 and the second blocking ring 18.
[0030] The side edge of the second blocking ring 18 is detachably connected with a vertical frame 11, and the other end of the vertical frame 11 is detachably connected to the linkage frame 5, and the vertical frame 11 and the linkage frame 5 are arranged in an L shape as a whole. The second blocking ring 18 can be connected through the vertical frame 11, and the linkage frame 5 can drive the first blocking ring 12 and the second blocking ring 18 to move.
[0031] The mounting frame 19 of the second blocking ring 18 is in a U-shaped configuration as a whole, and the mounting frame 19 is rotatably connected with a rotating rod 17, which is detachably connected to the corresponding blocking seat 20. The mounting frame 19 can limit the rotating rod 17, and the rotating rod 17 can be rotated on the mounting frame 19. When the blocking seat 20 is pulled out of the nozzle 13, it will rotate due to its own gravity, so as not to affect the discharge of water from the nozzle 13.
[0032] The blocking seat 20 and the rotating rod 17 are integrally arranged in a T-shape, and one end of the rotating rod 17 is located outside the mounting frame 19, and the rotating rod 17 outside the mounting frame 19 is disassembled and connected with a swing rod 16. The swing rod 16 can be used to rotate following the rotating rod 17.
[0033] The swing rod 16 and the rotating rod 17 are arranged in a T-shape as a whole. A cross bar 10 is arranged in the rotation direction of the swing rod 16, and the cross bar 10 is detachably connected to the corresponding auxiliary pipe 3. When the plugging seat 20 is reset, it will move toward the position of the nozzle 13. During the movement, the swing rod 16 will rotate due to the push of the cross bar 10, and then rotate to the initial state, and the plugging seat 20 can be restored to its original position, so as to be inserted into the nozzle 13 again.
[0034] The auxiliary pipe 3 and the nozzle 13 are parallel to each other, and a threaded seat 8 is detachably connected to the linkage frame 5 above the auxiliary pipe 3, and the threaded seat 8 is threadedly connected to the screw rod 7. The input end of the screw rod 7 is detachably connected to the servo motor 6, and a connecting rod 9 is detachably connected between adjacent screw rods 7. The threaded seat 8 can be controlled by the screw rod 7, and the threaded seat 8 can move, thereby driving the linkage frame 5 to move when moving.
[0035] Working principle: by burying the main pipe 2 on the slope 1, the main pipe 2 can be laid on the outer circle of the concrete building, by installing the auxiliary pipe 3 on the main pipe 2, the main pipe 2 can be connected with the auxiliary pipe 3, the water body can flow, the auxiliary pipe 3 can be placed in the soil position wrapped by concrete, by installing the nozzle 13 on the auxiliary pipe 3, the nozzle 13 can correspond to the planted vegetation, the nozzle 13 can irrigate the vegetation position, the nozzle 13 is an open setting, the opening of the nozzle 13 is connected with the corresponding plugging seat 20, the plugging seat 20 can achieve the blocking of the nozzle 13, the side wall of the nozzle 13 is provided with a corresponding side port 14, the first blocking ring 12 and the second blocking ring 18 sleeved on the nozzle 13 can block the side port 14, the water sprayed from the side port 14 is in an umbrella shape, and the whole plant of the vegetation can be sprayed, and when the water is sprayed from the opening position of the nozzle 13, the water will be sprayed in a columnar shape, thereby directly irrigating the vegetation. The roots of the vegetation, two different spraying modes can be selected according to the growth conditions of the vegetation and the weather conditions, so as to replenish water more flexibly. By arranging the first blocking ring 12 and the second blocking ring 18 on the nozzle 13, a fixing frame 15 is installed between the first blocking ring 12 and the second blocking ring 18, and the first blocking ring 12 and the second blocking ring 18 can be moved simultaneously through the fixing frame 15. When the second blocking ring 18 is connected to the linkage frame 5 through the vertical frame 11, the linkage frame 5 can drive the first blocking ring 12 and the second blocking ring 18 to move simultaneously. The first blocking ring 12 is initially away from the side port 14, and the second blocking ring 18 is initially blocked from the side port 14. The blocking seat 20 is initially blocked from the nozzle 13. When the second blocking ring 18 is away from the side port 14, the side port 14 is opened, and the blocking seat 20 still blocks the nozzle 13. When the first blocking ring 12 blocks the side port 14, the blocking seat 20 pulls out the nozzle 13, thereby changing the path of water spraying, thereby realizing the adjustment of the spraying path.
[0036] Those skilled in the art can clearly understand that, for the convenience and brevity of description, the specific working processes of the systems, devices and units described above can refer to the corresponding processes in the aforementioned method embodiments and will not be repeated here.
[0037] In the several embodiments provided in the present application, it should be understood that the disclosed systems, devices and methods can be implemented in other ways. For example, the device embodiments described above are only schematic, for example, the division of units is only for some logical functions, and there may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms.
[0038] The above are only specific implementations of the present application, but the protection scope of the present application is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed in the present application, which should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.
Claims
1. An ecological restoration soil and water conservation device, comprising a slope (1), a pump (4) and a servo motor (6), characterized in that: A main pipe (2) is buried on the slope (1), and the main pipe (2) is detachably connected to a pump (4). A secondary pipe (3) is provided on the main pipe (2), and a nozzle (13) is detachably connected to the secondary pipe (3). A side opening (14) is provided on the side edge of the nozzle (13), and a plugging seat (20) is plugged into the port of the nozzle (13), and the plugging seat (20) is rotatably connected to a mounting frame (19). One end of the mounting frame (19) is detachably connected to an output end of a linkage frame (5), and the linkage frame (5) is arranged on the output end of a servo motor (6).
2. The ecological restoration soil and water conservation device according to claim 1, characterized in that: The nozzle (13) and the auxiliary pipe (3) are arranged in a T-shape as a whole. The nozzle (13) is cylindrical as a whole. The nozzle (13) is slidably connected with a corresponding first blocking ring (12) and a second blocking ring (18).
3. The ecological restoration soil and water conservation device according to claim 1 is characterized by: The diameters of the first blocking ring (12) and the second blocking ring (18) are the same, the widths of the first blocking ring (12) and the second blocking ring (18) are greater than the width of the side port (14), the inner diameters of the first blocking ring (12) and the second blocking ring (18) are the same as the diameter of the nozzle (13), and a fixing frame (15) is provided between the first blocking ring (12) and the second blocking ring (18).
4. The ecological restoration soil and water conservation device according to claim 1 is characterized by: A vertical frame (11) is detachably connected to the side edge of the second blocking ring (18), and the other end of the vertical frame (11) is detachably connected to the linkage frame (5). The vertical frame (11) and the linkage frame (5) are arranged in an L shape as a whole.
5. The ecological restoration soil and water conservation device according to claim 1 is characterized by: The mounting frame (19) of the second blocking ring (18) is arranged in a U-shape as a whole. A rotating rod (17) is rotatably connected to the mounting frame (19). The rotating rod (17) is detachably connected to the corresponding blocking seat (20).
6. The ecological restoration soil and water conservation device according to claim 1, characterized in that: The blocking seat (20) and the rotating rod (17) are arranged in a T-shape as a whole. One end of the rotating rod (17) is located outside the mounting frame (19). A swing rod (16) is detachably connected to the rotating rod (17) outside the mounting frame (19).
7. The ecological restoration soil and water conservation device according to claim 6, characterized in that: The swing rod (16) and the rotating rod (17) are arranged in a T-shape as a whole. A cross rod (10) is arranged in the rotation direction of the swing rod (16). The cross rod (10) is detachably connected to the corresponding auxiliary pipe (3).
8. The ecological restoration soil and water conservation device according to claim 1, characterized in that: The auxiliary pipe (3) and the nozzle (13) are parallel to each other. A threaded seat (8) is detachably connected to a linkage frame (5) above the auxiliary pipe (3). The threaded seat (8) is threadedly connected to a screw rod (7). The input end of the screw rod (7) is detachably connected to a servo motor (6). A connecting rod (9) is detachably connected between adjacent screw rods (7).