Plant planting floating island suitable for water level change on slope

By setting up a bracket to connect the floating island in the hard inclined barrier area, the problem of limited drop distance when the floating island is installed in the hard inclined barrier area and the water level drops in the prior art is solved, and the adaptive lifting and stability of the floating island when the water level changes are achieved.

CN222852867UActive Publication Date: 2025-05-13SHANGHAI GARDEN ENG CO LTD
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Patent Information

Application Number
CN202421848547.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-05-13
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

In the hard inclined barrier area, existing floating island positioning devices such as guide rails and telescopic rods are difficult to install, and the floating island descending process is affected by the barrier when the water level drops, resulting in limited descent distance.

Method used

A floating island suitable for planting a plant on a slope is designed. By setting up a bracket at the hard barrier, the floating island is connected to the barrier, and the floating island is left a distance from the barrier. When the water level changes, the floating island can float up and down with the water level, and it is connected through the bracket to the reinforcement frame and the slope to avoid horizontal swing of the floating island.

Benefits of technology

The floating island is adaptively lifted and lowered when the water level changes, avoiding the floating island moving with the water flow and swinging laterally, and is suitable for hard inclined barrier areas.

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Abstract

The utility model relates to a plant planting floating island suitable for water level change on a slope. The plant planting floating island comprises a plurality of floating modules, a reinforcing frame and a support. Planting holes are formed in the middles of the floating modules, and connecting holes are formed in four corners of the floating modules; the floating modules are adjacently arranged in sequence, and the connecting holes of the adjacent floating modules are connected through first connecting pieces; a reinforcing frame is arranged along a circle of the outer side of the adjacent floating modules, and the reinforcing frame is connected with the connecting holes of the floating modules at the edge positions through second connecting pieces; one side of the support is movably installed on the slope, and the other side of the support is movably connected with the reinforcing frame. Through the arrangement of the support, the plant planting floating island is limited on one side of the slope, and through the connection of the support, the plant planting floating island is prevented from moving along with water flow; the support is movably connected with the reinforcing frame and the slope, so that when the water level changes, the plant planting floating island can adaptively ascend and descend along with the liquid level.
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Description

Technical Field

[0001] The utility model relates to the field of ecological floating islands, in particular to a plant planting floating island suitable for adapting to water level changes on a slope. Background Art

[0002] A floating island is an ecological facility artificially designed on the water surface for plants and microorganisms to survive and reproduce. Usually, floating islands are set on the water surface and plants are planted on them. If there is water flow and water level fluctuation in the water area where the floating island is located, the floating island will flow with the water flow and the water level will rise and fall.

[0003] In order to prevent the floating island from flowing with the water flow and adapting to the rise and fall of the water level, the prior art proposes to set up a structure that can be raised and lowered in the water area, such as a floating island positioning device disclosed in the invention patent with publication number CN103526725A, which realizes the positioning and up and down floating of the floating island by means of the cooperation of a guide rail and a sliding device; the prior art also discloses an artificial floating island and its positioning device, such as the invention patent with publication number CN114956345A, which uses a telescopic rod to position the floating island and adaptively float it up and down.

[0004] However, for the inclined hard revetment area, it is not easy to bury the guide rails and telescopic rods, and when the water level drops, the floating island may be affected by the inclined revetment and the descent process may be affected by the revetment. Utility Model Content

[0005] In order to solve the above technical problems, the utility model provides a floating island for planting plants on a slope that can adapt to water level changes. A bracket is arranged at a hard revetment, and the floating island is connected to the revetment through the bracket. The floating island is kept at a distance from the revetment. When the water level changes, the floating island floats up and down with the water level, and the lateral swing of the floating island can be avoided.

[0006] The technical purpose of the utility model is achieved through the following technical solutions:

[0007] A plant planting floating island suitable for adapting to water level changes on a slope comprises a plurality of floating modules, a reinforcement frame and a bracket; a planting hole is arranged in the middle of the floating module, and connection holes are respectively arranged at the four corners of the floating module; the floating modules are arranged adjacent to each other in sequence, and the connection holes of adjacent floating modules are connected by a first connection piece; a reinforcement frame is arranged along a circle outside the adjacently arranged floating modules, and the reinforcement frame is connected to the connection holes of the floating modules at the edge position by a second connection piece; one side of the bracket is movably installed on the slope, and the other side of the bracket is movably connected to the reinforcement frame.

[0008] Furthermore, the bracket is a triangular bracket, and at least two triangular brackets are arranged on a side of the reinforcement frame of each plant planting floating island close to the slope.

[0009] Furthermore, one corner of the triangular bracket is movably connected to the reinforcement frame; a fixing pile is respectively provided at the other two corners of the triangular bracket, the fixing pile is inserted on the slope, and the other two corners of the triangular bracket are respectively movably connected to the fixing pile.

[0010] Furthermore, the triangular bracket and the reinforcement frame are connected by binding with flexible ropes, and the triangular bracket and the fixing pile are also connected by binding with flexible ropes.

[0011] Furthermore, the triangular bracket and the fixing pile are hingedly connected.

[0012] Furthermore, the flexible rope is a binding belt, a steel wire rope or a nylon rope.

[0013] Furthermore, the height at which the bracket is movably installed on the slope is below the normal water level of the water area.

[0014] Furthermore, a hollow cavity is provided inside the floating module, and the cavity is formed in an outer area of ​​the planting hole.

[0015] Compared with the prior art, the beneficial effect of the utility model lies in that, through the setting of the bracket, the utility model limits the plant planting floating island to one side of the slope, and the connection of the bracket prevents the plant planting floating island from moving with the water flow; through the movable connection between the bracket, the reinforcement frame and the slope, when the water level changes, the plant planting floating island can be adaptively raised and lowered along with the liquid level. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the existing floating island setup.

[0017] Figure 2 This is a top view of the plant planting floating island suitable for adapting to water level changes on a slope of the present application.

[0018] Figure 3 It is a side view of a floating island for planting plants on a slope that can adapt to water level changes in the present application.

[0019] Figure 4 It is a schematic diagram of the hinged connection between the triangular bracket and the fixed pile in the embodiment of the present application.

[0020] Figure 5 It is a schematic diagram of the connection of the floating modules in the embodiment of the present application.

[0021] Figure 6 This is a schematic diagram of the installation of a floating island for growing plants in this application.

[0022] In the figure, 1. reinforcement frame; 2. floating module; 3. connection hole; 4. planting hole; 5. triangular bracket; 6. slope; 7. fixing pile. DETAILED DESCRIPTION

[0023] The technical solution of the utility model is further described below in conjunction with specific implementation methods:

[0024] Existing floating islands are installed in the water body through telescopic rods. When the water level changes, the telescopic rods are stretched by the buoyancy of the floating island to make the floating island rise; when the water level drops, the telescopic rods are compressed by the gravity of the floating island to make the floating island fall; However, for some hard inclined revetment areas, such as Figure 1 As shown in the figure, the length of the telescopic rod above the revetment is inconsistent, and the floating island is affected by the revetment when it descends, and the descending distance is limited. In addition, the hard revetment is usually hardened with cement and paved with stones, which makes the installation of the telescopic rod difficult.

[0025] Based on this, the utility model provides a plant planting floating island suitable for adapting to water level changes on a slope, such as Figure 2 and Figure 5 As shown, it includes several floating modules 2, a reinforcement frame 1, and a bracket; a planting hole 4 is set in the middle of the floating module 2, and connection holes 3 are set at the four corners of the floating module 2; the floating modules 2 are arranged adjacent to each other in sequence, and the connection holes 3 of adjacent floating modules 2 are connected by a first connection member; a reinforcement frame 1 is set along the outer side of the adjacently arranged floating modules 2, and the reinforcement frame 1 is connected to the connection holes 3 of the floating modules 2 at the edge position by a second connection member; one side of the bracket is movably installed on the slope 6, and the other side of the bracket is movably connected to the reinforcement frame 1. A hollow cavity is set inside the floating module 2, and the outside of the cavity is closed. The cavity is formed in the outer area of ​​the planting hole 4, and the floating module 2 is made of plastic.

[0026] In one embodiment, the first connecting member and the second connecting member are such as the flexible binding rope described below, and the first connecting member can also be a connecting member such as a bolt, and the first connecting member passes through the connecting hole to be connected to achieve connection.

[0027] The bracket 5 can be a triangular bracket, a rectangular bracket, a trapezoidal bracket, etc. In this embodiment, a triangular bracket 5 is provided, such as Figure 2 and Figure 3 As shown, at least two triangular brackets 5 are arranged on one side of the reinforcement frame 1 of each plant planting floating island close to the slope 6. In this embodiment, the triangular brackets 5 are connected by PVC pipes to form a triangle, and the connection can be made by corner joints, glue, etc. The reinforcement frame 1 can also be connected and enclosed by PVC pipes.

[0028] One corner of the triangular bracket 5 is movably connected to the reinforcement frame 1; the other two corners of the triangular bracket 5 are respectively provided with a fixing pile 7, and the fixing pile 7 is inserted on the slope 6. The fixing pile 7 is such as a galvanized steel pipe, and a pointed groove is opened at the bottom of the galvanized steel pipe, and the galvanized steel pipe is inserted into the inclined slope surface; anchor bolts driven into the ground can also be used as fixing piles; the other two corners of the triangular bracket 5 are respectively movably connected to the fixing piles 7.

[0029] In one embodiment, the triangular bracket 5 and the fixing pile 7 and the triangular bracket 5 and the reinforcement frame 1 can be tied and connected by flexible ropes, such as tying belts, steel wire ropes, nylon ropes, etc. When tying, the tied objects are kept as close as possible. The tying belts can be plastic tying belts or metal tying belts.

[0030] In another embodiment, the triangular bracket 5 and the fixing pile 7 may be hingedly connected. Figure 4 As shown, ear plates are provided at the hinged connection positions, the ear plates are connected via pins, and the triangular bracket 5 and the reinforcement frame 1 are connected by binding with flexible ropes.

[0031] The height at which the bracket is movably installed on the slope is below the normal water level of the water area, and more specifically, the installation height of the fixed pile 7 is within 30 cm below the normal water level. Figure 6 As shown, the bracket is located below the water surface under the normal water level, and the plant planting floating island is relatively floating on the water surface. The normal water level refers to the elevation value of the water level that is equal to or exceeds the water level for 50% of the time in a year or several years. Most of the brackets are kept in the water body to increase concealment.

[0032] This embodiment is only a further explanation of the utility model, not a limitation of the utility model. After reading this specification, those skilled in the art can make non-creative modifications to the embodiment as needed, but as long as it is within the scope of the claims of the utility model, it will be protected by the patent law.

Claims

1. A floating island for planting plants on a slope that can adapt to water level changes, characterized in that: The invention comprises a plurality of floating modules, a reinforcement frame and a bracket; a planting hole is arranged in the middle of the floating module, and connection holes are respectively arranged at the four corners of the floating module; the floating modules are arranged adjacent to each other in sequence, and the connection holes of adjacent floating modules are connected by a first connection piece; a reinforcement frame is arranged along a circle outside the adjacently arranged floating modules, and the reinforcement frame is connected to the connection holes of the floating modules at the edge position by a second connection piece; one side of the bracket is movably installed on a slope, and the other side of the bracket is movably connected to the reinforcement frame.

2. The floating island for planting plants on a slope that can adapt to water level changes according to claim 1, characterized in that: The bracket is a triangular bracket, and at least two triangular brackets are arranged on one side of the reinforcement frame of each plant planting floating island close to the slope.

3. The floating island for planting plants on a slope that can adapt to water level changes according to claim 2 is characterized in that: One corner of the triangular bracket is movably connected to the reinforcement frame; the other two corners of the triangular bracket are respectively provided with a fixing pile, the fixing pile is inserted on the slope, and the other two corners of the triangular bracket are respectively movably connected to the fixing pile.

4. The floating island for planting plants on a slope that can adapt to water level changes according to claim 3 is characterized in that: The triangular bracket and the reinforcement frame are connected by binding with flexible ropes, and the triangular bracket and the fixing pile are also connected by binding with flexible ropes.

5. The floating island for planting plants on a slope that can adapt to water level changes according to claim 3 is characterized in that: The triangular bracket and the fixing pile are hingedly connected.

6. The floating island for planting plants on a slope that can adapt to water level changes according to claim 4, characterized in that: The flexible rope is a binding belt, a steel wire rope or a nylon rope.

7. The floating island for planting plants on a slope that can adapt to water level changes according to claim 1, characterized in that: The support is movably installed on the slope at a height below the normal water level of the water area.

8. The floating island for planting plants on a slope that can adapt to water level changes according to claim 1, characterized in that: A hollow cavity is arranged inside the floating module, and the cavity is formed in the outer area of ​​the planting hole.

Citation Information

Patent Citations

  • Floating isle positioning device

    CN103526725A

  • Artificial floating island and positioning device thereof

    CN114956345A