Ecological greening protection slope for water and soil conservation
By laying green protection blocks and triangular blocks and other components on the slope surface, a directional drainage and buffer structure is formed, which solves the problem of rainwater and sediment loss in traditional slope protection systems and achieves effective conservation of water and soil resources and structural stability.
Patent Information
- Application Number
- CN202511078099.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2025-09-26
AI Technical Summary
Traditional slope protection systems have weak capabilities in draining rainwater and intercepting sediment, resulting in rapid rainwater flow that exacerbates soil erosion and may carry sediment to the slope foot, causing slope collapse. Furthermore, there is a lack of effective sediment grading, interception, and buffering mechanisms.
An ecological green slope protection for soil and water conservation is designed. Green protection blocks are spliced and laid on the slope surface. Combined with triangular blocks, closing covers, anchoring devices and other components, a directional drainage and buffer structure is formed. The slope of the triangular blocks guides the soil into the planting troughs, and the drain troughs drain excess rainwater. The anchoring devices enhance the stability of the structure.
It can effectively prevent soil loss, realize the rapid discharge of rainwater and collection of soil, enhance structural stability, reduce operation and maintenance costs, adapt to different slopes and rainwater scouring intensities, and improve soil and water conservation effects.
Smart Images

Figure CN120700904A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ecological environment construction, in particular to an ecological greening slope protection for soil and water conservation. Background Art
[0002] Ecological slope protection is a slope protection technology that integrates the basic knowledge of engineering mechanics, soil science, ecology, and botany to support slopes or side slopes, forming a comprehensive slope protection system composed of plants or engineering and plants. It is a vegetation restoration and reconstruction technology that uses plant planting and the interaction between plants and rock and soil (root anchoring) to protect and reinforce the slope surface. This method not only meets the requirements for slope surface stability but also restores the damaged natural ecological environment. It is an effective means of slope protection and consolidation.
[0003] Traditional slope protection systems have limited capabilities for draining rainwater and intercepting sediment. During rainfall, rainwater flows rapidly down the slope, exacerbating soil erosion and carrying sediment to the slope foot, potentially causing collapse. While some slope protection designs incorporate drainage channels, they lack a graded sediment interception and buffering mechanism, making it difficult to effectively conserve and utilize water and soil resources.
[0004] Therefore, it is necessary to propose an ecological greening slope protection for soil and water conservation to solve the above problems. Summary of the Invention
[0005] The present invention aims to provide an ecological greening slope protection system that conserves soil and water, addressing the limited ability of traditional slope protection systems to drain rainwater and intercept sediment. During rainfall, rainwater flows rapidly along the slope, exacerbating soil erosion and carrying sediment to the slope foot, potentially causing collapse. While some slope protection designs incorporate drainage channels, they lack a graded sediment interception and buffering mechanism, making it difficult to effectively conserve and utilize soil and water resources.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an ecological greening slope protection for soil and water conservation, comprising a slope body;
[0007] Greening protection blocks, wherein a plurality of greening protection blocks are provided and the plurality of greening protection blocks are spliced and laid on the slope surface;
[0008] A central groove is provided in the center of the greening protection block, and first side grooves are provided on both sides of the greening protection block along the length direction of the slope, and a sliding opening is provided in the first side groove, and both sliding openings are connected to the central groove;
[0009] The four corners of the top of the greening protection block are fixed with protruding blocks, and the protruding blocks at adjacent corners of the greening protection block are provided with first closing covers. A triangular stopper is provided between two adjacent first closing covers, and the cross section of the triangular stopper is provided in the shape of a right triangle, and the inclined surface of the right triangle is provided in the direction of the central groove;
[0010] A plurality of leakage grooves are provided on the triangular stopper.
[0011] Preferably, one right-angled side of the triangular stopper is in contact with the upper surface of the greening protection block, and the other right-angled side of the triangular stopper is perpendicular to the upper surface of the greening protection block;
[0012] Both ends of the triangular stopper are fixed with docking plates, the first closing cover is provided with a groove, the docking plate extends into the groove, and a fixing bolt is provided between the docking plate and the groove.
[0013] Preferably, two gathering blocks are provided on the inclined surface of the triangular stopper, and one side of the gathering block is engaged with the corresponding side surface of the first closing cover;
[0014] The oblique side of the gathering block is arranged toward the first side groove.
[0015] Preferably, a docking block is embedded in the central groove, a connecting block is fixed on the top of the docking block, a first anchoring device and a second anchoring device are provided on the plane at the top of the slope, a connecting rope is provided between the first anchoring device and the second anchoring device and the corresponding connecting block, a through hole is provided on the connecting block for the connecting rope to pass through and tie a knot, and the connecting rope passes through the leakage groove.
[0016] Preferably, a plug hole is opened at the center of the top of the protruding block, the plug hole passes through the bottom end of the greening protection block, and a fixed plug rod is inserted into the plug hole, and the bottom end of the fixed plug rod extends into the interior of the slope.
[0017] Preferably, the first anchoring device includes an anchor rod and a support column, the anchor rod is obliquely inserted into the slope, and the connection between the anchor rod and the connecting rope is distributed at an acute angle;
[0018] The support columns are distributed vertically on the slope, and are arranged between the anchor rods and the greening protection blocks. Support holes for the connecting ropes to pass through are provided on the support columns.
[0019] Preferably, the second anchoring device comprises an anchoring column, the anchoring column comprises a column body, a tip is fixed to the bottom end of the column body, the tip extends into the slope body, a reel is rotatably connected inside the anchoring column, and one end of the connecting rope is reeled on the reel;
[0020] A swivel is provided on one side of the anchor column, the swivel is connected to the reel, and a limiting mechanism is provided on the top of the anchor column.
[0021] Preferably, the limiting mechanism includes a positioning rod, and a plurality of insertion holes are provided around the center of the outer side of the winding wheel, and the bottom end of the positioning rod is inserted into the corresponding insertion hole;
[0022] The top end of the positioning rod extends out of the anchor column, and the extended end is connected to a fixing plate, and the top end of the fixing plate is fixed with an auxiliary handle.
[0023] Preferably, the connecting rope is a steel wire rope.
[0024] Preferably, the other two sides of the greening protection block are provided with second side grooves, and the protruding blocks at the two adjacent corners are provided with second closing covers.
[0025] Technical effects and advantages of the present invention:
[0026] 1. The right-angled sides of the triangular block are respectively fitted with the surface of the greening protection block, with the slope facing the central groove, forming a "directional drainage" channel. When rainwater carrying soil flows down the slope, it can directly block the soil particles, preventing large-scale soil and water loss. The slope guides the intercepted soil to slide toward the first side groove (rather than directly flowing down the slope), and is eventually stored in the planting area of the first side groove, providing natural soil supplement for plants. The setting of the drainage groove can not only quickly drain excess rainwater (preventing water accumulation from soaking plant roots), but also intercept fine soil particles, achieving "drainage without soil drainage."
[0027] 2. After the greening protection blocks are spliced, the protruding blocks at the four adjacent corners fit together, and the first closing cover is sleeved on the outside, which not only closes the top of the fixed plug rod and the plug hole (anti-corrosion, anti-intrusion of debris), but also limits the relative displacement of the four adjacent protruding blocks through "wrapping limit", thereby strengthening the integrity of the overall structure.
[0028] 3. The two gathering blocks on the inclined surface are distributed in an "eight-shaped" shape, with the inclined side facing the first side groove, which can enhance the structural stability and improve the connection strength between the triangular block and the first closing cover through friction to prevent loosening under the impact of heavy rain. At the same time, the soil accumulated at both ends of the triangular block is gathered to the middle and then introduced into the first side groove through the inclined surface to prevent the soil from accumulating at the edge of the block and then losing again.
[0029] 4. The triangular block is connected to the first closing cover through a docking plate, a groove and a fixing bolt. The installation density of the triangular block can be adjusted according to the slope and the intensity of rainwater scouring (such as denser settings in steep slope areas). The subsequent maintenance cost is low: when a single block or closing cover is damaged, there is no need to dismantle the entire block, only the damaged parts need to be replaced, which greatly reduces the operation and maintenance workload.
[0030] 5. In view of the difference in the plane length of the top of the slope, the first anchoring device (suitable for the long slope top) and the second anchoring device (suitable for the short slope top) are designed. The greening protection block is fixed to the deep layer of the slope through the connecting rope to form a "surface-deep" three-dimensional stability system. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 This is a schematic structural diagram of the ecological greening slope protection for soil and water conservation of the present invention.
[0032] Figure 2 It is a structural schematic diagram of the anchor rod and connecting rope of the present invention.
[0033] Figure 3 It is a structural diagram of the greening protection block of the present invention.
[0034] Figure 4 For the present invention Figure 1 Enlarged schematic diagram of point A in the middle.
[0035] Figure 5 It is a structural schematic diagram of the triangular stopper and the first closing cover of the present invention.
[0036] Figure 6 It is a structural schematic diagram of the gathering block of the present invention.
[0037] Figure 7 For the present invention Figure 5 Enlarged schematic diagram of point B in the middle.
[0038] Figure 8 This is a schematic structural diagram of the second anchoring device of the present invention.
[0039] In the figure: 1. Slope; 2. Greening protection block; 3. Anchor rod; 4. Connecting rope; 5. Support column; 6. Anchor column; 7. Protruding block; 8. Plug hole; 9. Fixed plug rod; 10. First side groove; 11. Second side groove; 12. Downward slide; 13. Docking block; 14. Triangular block; 15. First closing cover; 16. Gathering block; 17. Leakage groove; 18. Docking plate; 19. Groove; 20. Fixing bolt; 21. Second closing cover; 22. Center groove; 23. Column; 24. Tip; 25. Swivel; 26. Winding wheel; 27. Plug hole; 28. Positioning rod; 29. Fixed plate; 30. Auxiliary handle; 31. Connecting block. DETAILED DESCRIPTION
[0040] The present invention provides Figures 1 to 8 The ecological greening slope protection for soil and water conservation shown in the figure includes a slope body 1 and a greening protection block 2. A plurality of greening protection blocks 2 are provided, and the plurality of greening protection blocks 2 are spliced and laid on the surface of the slope body 1;
[0041] like Figure 1 As shown, multiple greening protection blocks 2 can form a layer of protection on the slope of the slope 1. When it rains, less rainwater can directly contact the slope 1, reducing soil erosion. At the same time, greening can be planted on the greening protection blocks 2 to achieve ecological greening protection and improve soil and water conservation.
[0042] like Figure 3 As shown, a central groove 22 is provided in the center of the greening protection block 2, first side grooves 10 are provided on both sides of the greening protection block 2 along the length direction of the slope 1, and second side grooves 11 are provided on the other two sides of the greening protection block 2. The combination of two adjacent first side grooves 10 can form a hexagon. In actual use, the first side grooves 10 and the second side grooves 11 can also be combined to form other stable shapes.
[0043] like Figure 5 As shown, when multiple greening protection blocks 2 are spliced together, the first side grooves 10 and the second side grooves 11 of the adjacent greening protection blocks 2 on both sides can form a larger planting groove, in which green plants can be planted. The first side grooves 10 and the second side grooves 11 provide space for planting green plants and can isolate the green plants in their respective areas, thereby improving the aesthetics and avoiding the impact between the green plants.
[0044] like Figure 3 As shown, a lower sliding opening 12 is provided in the first side groove 10, and the two lower sliding openings 12 are connected to the central groove 22. A protruding block 7 is fixed at the four corners of the top of the greening protection block 2. A plug-in hole 8 is provided at the center of the top of the protruding block 7. The plug-in hole 8 passes through the bottom end of the greening protection block 2, and a fixed plug-in rod 9 is inserted into the plug-in hole 8. The bottom end of the fixed plug-in rod 9 extends into the interior of the slope 1.
[0045] When the greening protection block 2 is laid on the inclined surface of the slope 1, the fixing rod 9 can be inserted into the protruding block 7, and the fixing rod 9 can be anchored inside the slope 1 using tools, so that the greening protection block 2 can be fixed on the slope 1, thereby enhancing the connection strength with the slope 1 and preventing the greening protection block 2 from moving in rainy weather.
[0046] like Figure 2 、 5 As shown, a first closing cover 15 is provided on the four protruding blocks 7 at adjacent corners, and a second closing cover 21 is provided on the protruding blocks 7 at two adjacent corners; the second closing cover 21 can be installed on the edge of the greening protection block 2, and a third closing cover that can cover a single protruding block 7 can also be added to ensure that all protruding blocks 7 can be covered.
[0047] When multiple greening protection blocks 2 are spliced together, the protruding blocks 7 on the corners of four adjacent greening protection blocks 2 will fit together. At this time, the first closing cover 15 can be used to be sleeved on the outside of the four protruding blocks 7 to seal the top of the fixed plug rod 9 and the plug hole 8, reducing the erosion of the environment on the fixed plug rod 9. At the same time, the first closing cover 15 can limit the four protruding blocks 7 at the same time, avoiding relative displacement between the greening protection blocks 2 and improving the strength and stability of the overall structure.
[0048] The second closing cover 21 is designed for the protruding blocks 7 at two adjacent corners to adapt to different splicing scenarios, ensuring that all fixed rods 9 are in a closed and protected state, further reducing maintenance costs.
[0049] A triangular stopper 14 is provided between two adjacent first closing covers 15 . The triangular stopper 14 is provided in the shape of a right triangle, with the inclined surface of the right triangle facing the central groove 22 . A plurality of leakage grooves 17 are provided on the triangular stopper 14 .
[0050] In the actual operation of the present invention, the two first side grooves 10 and the central groove 22 can form drainage channels for rainwater and soil along the length direction of the slope 1. When multiple greening protection blocks 2 are spliced together, a straight line inclined downward can be formed to facilitate the flow of mud and water.
[0051] like Figure 5 As shown, when one right-angled side of the triangular stopper 14 is in contact with the upper surface of the greening protection block 2, the other right-angled side of the triangular stopper 14 is perpendicular to the upper surface of the greening protection block 2;
[0052] When it is rainy, since the greening protection block 2 and the slope 1 have the same inclination, some rainwater will carry mud and flow along the surface of the greening protection block 2. At this time, the triangular block 14 can block the mud in the rainwater, while the remaining rainwater will continue to flow through the leakage groove 17. Since the inclined surface of the triangular block 14 is set towards the central groove 22 and corresponds to the first side groove 10, the mud slides down along the inclined surface and moves into the first side groove 10.
[0053] The other part of the muddy water flowing on the lower surface of the greening protection block can also move along the lower slide 12 to the central groove 22 and the next greening protection block 2. The muddy water can be buffered by multiple greening protection blocks 2 to slow down the flow, so that the soil in the muddy water can stay in the greening protection block 2.
[0054] It should be noted that it is not necessary to set the triangular block 14 on each greening protection block 2. The triangular block 14 can be set at intervals as needed. This will reduce costs while not affecting the collection and gathering of lost water and soil.
[0055] like Figure 7 As shown, when docking plates 18 are fixed at both ends of the triangular stopper 14, a groove 19 is provided on the first closing cover 15, the docking plate 18 extends into the groove 19, and a fixing bolt 20 is provided between the docking plate 18 and the groove 19. The connection method of the fixing bolt 20 can facilitate installation and subsequent disassembly. When one of the first closing cover 15 and the triangular stopper 14 is damaged.
[0056] Two gathering blocks 16 are provided on the inclined surface of the triangular stopper 14 . One side of the gathering block 16 is in contact with the corresponding side surface of the first closing cover 15 , and the oblique side of the gathering block 16 is disposed toward the first side groove 10 .
[0057] When the triangular block 14 is installed between the two corresponding first closing covers 15, the two gathering blocks 16 can be attached to one side of the first closing cover 15, thereby increasing the connection strength between the two ends of the triangular block 14 and the first closing cover 15 and improving stability. At the same time, the inclined surfaces of the two gathering blocks 16 can gather the collected soil to the position of the first side trough 10, thereby playing the role of gathering and collecting, and avoiding concentration at the two ends of the triangular block 14.
[0058] like Figure 4 As shown, a docking block 13 is embedded in the central groove 22, a connecting block 31 is fixed to the top of the docking block 13, a first anchoring device and a second anchoring device are provided on the top plane of the slope body 1, a connecting rope 4 is provided between the first anchoring device and the second anchoring device and the corresponding connecting block 31, and a through hole is opened on the connecting block 31 for the connecting rope 4 to pass through and tie a knot.
[0059] like Figure 1 、 2 As shown, the first anchoring device can be used for the area with a longer plane at the top of the slope 1. The first anchoring device includes an anchor rod 3 and a support column 5. The anchor rod 3 is inserted obliquely into the slope 1, and the connection between the anchor rod 3 and the connecting rope 4 is distributed at an acute angle.
[0060] In the actual operation of the present invention, the docking block 13 can be installed at the center groove 22 position of the greening protection block 2, and the anchor rod 3 is inserted into the slope 1 at an angle (angle 30°-45°), forming an acute angle (60°-75°) with the connecting rope 4. The tension of the greening protection block 2 can be decomposed into the pressure of the vertical slope and the tension along the slope 1, reducing the shear damage to the surface of the slope 1; the support column 5 is vertically arranged between the anchor rod 3 and the greening protection block 2, and the connecting rope 4 is supported by the support hole to form a fulcrum, so as to avoid the connecting rope 4 from fitting the surface of the greening protection block 2 and the generated tension from damaging the surface of the greening protection block 2. Since the connecting rope 4 can pass through the connecting block 31, it can be quickly installed by knotting, and multiple connecting blocks 31 in a straight line can be connected at the same time. A connecting rope 4 can simultaneously connect the greening protection blocks 2 in a straight line, thereby improving the overall structural strength and stability.
[0061] An appropriate number of docking blocks 13 can be selected as needed. After the docking blocks 13 are embedded in the central groove 22, the friction with the groove wall can resist the vertical displacement of the center of the greening protection block 2. Combined with the fixed plug rods 9 at the four corners, the greening protection block 2 forms a five-point force balance of "four corners-center", thereby improving the anti-deformation ability and avoiding the depression of the central area due to excessive force.
[0062] The support column 5 is distributed vertically on the slope 1 and is arranged between the anchor rod 3 and the greening protection block 2. A support hole is provided on the support column 5 for the connecting rope 4 to pass through, and the connecting rope 4 can pass through the leakage groove 17, which can enhance the stability of the triangular block 14.
[0063] It should be noted that the shape of the connecting block 31 can also be matched with the first side groove 10 and the second side groove 11, and the connecting block 31 can be inserted into the corresponding first side groove 10 or second side groove 11, and the greening protection block 2 can be connected using the first anchoring device and the second anchoring device, and the redundant slots, such as the center slot 22, can be used to plant green plants.
[0064] like Figure 8 As shown, in addition, a second anchoring device can be used for areas where the top plane distance of the slope body 1 is shorter. The second anchoring device includes an anchoring column 6, which includes a column body 23. A tip 24 is fixed to the bottom end of the column body 23, and the tip 24 extends into the slope body 1. A winding wheel 26 is rotatably connected inside the anchoring column 6, and one end of the connecting rope 4 is wound on the winding wheel 26. The tip 24 of the anchoring column 6 is convenient for manual insertion into the slope body 1.
[0065] A swivel 25 is provided on one side of the anchor column 6, and the swivel 25 is connected to the winding wheel 26. A limit mechanism is provided on the top of the anchor column 6, and the limit mechanism includes a positioning rod 28. A plurality of sockets 27 are provided around the center of the winding wheel 26, and the bottom ends of the positioning rods 28 are inserted into the corresponding sockets 27;
[0066] The top end of the positioning rod 28 extends out of the anchor column 6 , and the protruding end is connected to a fixing plate 29 , and an auxiliary handle 30 is fixed to the top end of the fixing plate 29 .
[0067] The reel 26 of the second anchoring device cooperates with the swivel 25, and the tightness of the connecting rope 4 can be adjusted by rotating the swivel 25 to adapt to the seasonal settlement of the slope 1 or the slight displacement of the greening protection block 2;
[0068] Inserting the positioning rod 28 of the limiting mechanism into the socket 27 of the reel 26 locks the reel 26 in place, preventing the connecting rope 4 from loosening and ensuring long-term tension stability. The anchor post 6 can also be installed in an area with a short distance between the top and bottom surfaces of the slope 1, facilitating manual operation. A single person can perform routine inspections and adjustments of the anchoring system, reducing maintenance costs.
[0069] The connecting rope 4 is a steel wire rope, which is twisted from multiple high-strength steel wires. It has extremely high tensile strength and fracture resistance, and the surface can be galvanized or plastic-coated to improve corrosion resistance or use high-strength polyethylene fiber rope, which has a tensile strength close to that of steel wire rope, is light in weight, resistant to acid and alkali, resistant to ultraviolet aging, and has excellent flexibility, and is not easy to wear the greening protection block 2 or other components.
[0070] The greening protection block 2 can be made of ordinary concrete, recycled aggregate concrete, polymer composite materials (recycled plastic or special resin as raw materials, molded by molds, the material is light, tough, and corrosion-resistant (especially suitable for rainy, humid or slightly salinized slope 1 environment), and no heavy machinery is required for transportation during construction) or mortar masonry (using stone slabs and blocks) for masonry or prefabricated molding, the material is natural, highly integrated with the surrounding ecological environment, and has strong aesthetics, suitable for areas with high requirements for landscape effects), and can be used selectively according to actual needs.
Claims
1. An ecological greening slope protection for soil and water conservation, characterized in that: include: Slope (1); Greening protection blocks (2), wherein a plurality of greening protection blocks (2) are provided, and the plurality of greening protection blocks (2) are spliced together and laid on the surface of the slope (1); The center of the greening protection block (2) is provided with a central groove (22), and the greening protection block (2) is provided with first side grooves (10) on both sides along the length direction of the slope (1), and a downward sliding opening (12) is provided in the first side groove (10), and both downward sliding openings (12) are connected to the central groove (22); The four corners of the top of the greening protection block (2) are all fixed with protruding blocks (7), and the protruding blocks (7) at the adjacent corners of the greening protection block (2) are provided with first closing covers (15), and a triangular stopper (14) is provided between two adjacent first closing covers (15), and the cross section of the triangular stopper (14) is provided in the form of a right triangle, and the inclined surface of the right triangle is provided in the direction of the central groove (22); The triangular stopper (14) is provided with a plurality of leakage grooves (17).
2. The ecological greening slope protection for soil and water conservation according to claim 1 is characterized by: One right-angled side of the triangular stopper (14) is in contact with the upper surface of the greening protection block (2), and the other right-angled side of the triangular stopper (14) is perpendicular to the upper surface of the greening protection block (2); Both ends of the triangular stopper (14) are fixed with docking plates (18), a groove (19) is provided on the first closing cover (15), the docking plate (18) extends into the groove (19), and a fixing bolt (20) is provided between the docking plate (18) and the groove (19).
3. The ecological greening slope protection for soil and water conservation according to claim 1 is characterized by: Two gathering blocks (16) are provided on the inclined surface of the triangular stopper (14), and one side of the gathering block (16) is in contact with the corresponding side surface of the first closing cover (15); The oblique edge of the gathering block (16) is arranged toward the first side groove (10).
4. The ecological greening slope protection for soil and water conservation according to claim 1 is characterized by: A docking block (13) is embedded in the central groove (22), a connecting block (31) is fixed to the top of the docking block (13), a first anchoring device and a second anchoring device are provided on the top plane of the slope body (1), a connecting rope (4) is provided between the first anchoring device and the second anchoring device and the corresponding connecting block (31), a through hole for the connecting rope (4) to pass through and tie a knot is opened on the connecting block (31), and the connecting rope (4) passes through the leakage groove (17).
5. The ecological greening slope protection for soil and water conservation according to claim 1 is characterized by: A plug hole (8) is provided at the center of the top of the protruding block (7), the plug hole (8) passes through the bottom end of the greening protection block (2), and a fixed plug rod (9) is inserted into the plug hole (8), and the bottom end of the fixed plug rod (9) extends into the interior of the slope (1).
6. The ecological greening slope protection for soil and water conservation according to claim 1 is characterized by: The first anchoring device comprises an anchor rod (3) and a support column (5); the anchor rod (3) is obliquely inserted into the slope (1); and the connection between the anchor rod (3) and the connecting rope (4) is distributed at an acute angle; The support columns (5) are distributed perpendicular to the slope (1), and are arranged between the anchor rods (3) and the greening protection blocks (2). Support holes for the connecting ropes (4) to pass through are provided on the support columns (5).
7. The ecological greening slope protection for soil and water conservation according to claim 1 is characterized by: The second anchoring device comprises an anchoring column (6), the anchoring column (6) comprises a column body (23), a tip (24) is fixed at the bottom end of the column body (23), the tip (24) extends into the slope body (1), a reel (26) is rotatably connected inside the anchoring column (6), and one end of the connecting rope (4) is reeled onto the reel (26); A swivel (25) is provided on one side of the anchoring column (6), the swivel (25) is connected to the reel (26), and a limiting mechanism is provided on the top of the anchoring column (6).
8. The ecological greening slope protection for soil and water conservation according to claim 7 is characterized by: The limiting mechanism includes a positioning rod (28), a plurality of insertion holes (27) are provided around the center of the outer side of the winding wheel (26), and the bottom end of the positioning rod (28) is inserted into the corresponding insertion hole (27); The top end of the positioning rod (28) extends out of the anchor column (6), and the extended end is connected to a fixing plate (29), and an auxiliary handle (30) is fixed to the top end of the fixing plate (29).
9. The ecological greening slope protection for soil and water conservation according to claim 1, characterized in that: The connecting rope (4) is a steel wire rope.
10. The ecological greening slope protection for soil and water conservation according to claim 1, characterized in that: The other two sides of the greening protection block (2) are each provided with a second side groove (11), and the protruding blocks (7) at the two adjacent corners are provided with a second closing cover (21).