Ecological floating island device for repairing urban water pollution

By designing an ecological floating island device, which utilizes photovoltaic panels for power supply, liquid pumping, spider web spray pipes for spraying, and J-shaped siphon pipes for diversion, the water pollution problem in the river ecological restoration system of sponge cities has been solved, achieving efficient purification and stable ecological restoration.

CN223963345UActive Publication Date: 2026-03-03SHENYANG LANDSCAPE CO LTD
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Patent Information

Application Number
CN202520241019.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-03-03
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing river ecological restoration systems based on the concept of sponge cities suffer from insufficient water storage in the aquifer, leading to the infiltration of industrial wastewater and domestic sewage into the aquifer, polluting the water and affecting plant growth and the stability of the ecological restoration system.

Method used

Design an ecological floating island device, which adopts components such as polygonal floating island plate, auxiliary support, photovoltaic panel, liquid pump, spider web ring spray pipe, J-type siphon pipe, filter liquid pumping box, and replaceable filter screen. The device is powered by photovoltaic panel, pumped water by liquid pump, sprayed water from multiple angles by spider web spray pipe, and guided by negative pressure by J-type siphon pipe. The water quality is purified by multiple filtrations, and the floating island plate is fixed by connecting components.

Benefits of technology

It achieves efficient water purification, ensures stable plant growth, features flexible device assembly, is powered by green energy, allows for quick fixing of connecting components, and incorporates intelligent water body monitoring, thus reducing maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an ecological floating island device for repairing urban water pollution, which comprises a plurality of polygonal floating island plates, a plurality of concave cylindrical blocks, an auxiliary support and an auxiliary structure, and the polygonal floating island plates are connected with one another through the auxiliary structure. The concave cylindrical blocks are uniformly mounted on the polygonal floating island plates, the auxiliary brackets are mounted on the polygonal floating island plates, and the auxiliary structures are mounted on the auxiliary brackets. The utility model relates to the technical field of water purification, and adopts the structure that a plurality of polygonal floating island plates are mutually connected through the auxiliary structures; the design is flexible, and splicing and expansion are facilitated; the photovoltaic panel on the auxiliary support provides power for electric appliances such as the infusion pump, and application of green energy is achieved; according to the device, liquid in the filtering and liquid pumping box is pumped through the liquid pumping pump and the liquid pumping pipe and is sprayed at multiple angles, and meanwhile, the J-shaped siphon is utilized for negative pressure drainage, so that the filtering efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of water purification technology, specifically to an ecological floating island device for remediating urban water pollution. Background Technology

[0002] The natural water quality in a river's ecosystem plays a crucial role in the sustainable development of surrounding cities. To address this technical challenge, the industry has proposed various methods for river ecological restoration. River ecological restoration refers to a technical approach that utilizes ecosystem principles to repair damaged aquatic ecosystems.

[0003] To promote the healthy growth of plants in ecological restoration systems, some river ecological restoration systems have incorporated the design concept of sponge cities. Specifically, this involves constructing a water storage layer on one side of the river to store and utilize natural rainfall, thereby providing sufficient water for plant growth and ensuring that the ecological restoration system can effectively repair the damaged aquatic ecosystem.

[0004] However, the inventors discovered in practice that the river ecological restoration system built based on the concept of sponge cities has obvious drawbacks:

[0005] Damaged aquatic ecosystems are filled with large amounts of industrial wastewater, domestic sewage, and garbage. When the water level in the aquifer is low, this wastewater gradually seeps into the aquifer, polluting the water and affecting the growth of plants in the ecological restoration system. Ultimately, this threatens the stability of the ecological restoration operation. While existing technologies may already offer solutions to these problems, this case aims to provide an alternative or replacement solution. Utility Model Content

[0006] To achieve the above objectives, this utility model provides the following technical solution: an ecological floating island device for remediating urban water pollution, comprising: several polygonal floating island plates, several concave cylindrical blocks, an auxiliary support, and an auxiliary structure. The polygonal floating island plates are interconnected through the auxiliary structure. The concave cylindrical blocks are evenly installed on the polygonal floating island plates. The auxiliary support is installed on the polygonal floating island plates. The auxiliary structure is installed on the auxiliary support. The auxiliary structure includes: a photovoltaic panel, a roller shutter baffle, a liquid pump, a liquid pumping pipe, a spider web-shaped ring spray pipe, several J-shaped siphon pipes, several spray nozzles, a filter liquid pumping tank, several set ring blocks, several replaceable filter screens, several filter ring layers, an ozone emitter, a bubble emitter, a storage battery, and connecting components.

[0007] The photovoltaic panel is mounted on the auxiliary support, the roller shutter baffle is mounted on the photovoltaic panel, the liquid extraction pipe is inserted into the polygonal floating island plate, the liquid extraction pump is mounted on the liquid extraction pipe, the spider web ring spray pipe is mounted on the auxiliary support and connected to the liquid extraction pipe, the filter liquid extraction box is mounted on the liquid extraction pipe, a plurality of spray nozzles are evenly mounted on the spider web ring spray pipe, a plurality of set ring blocks are respectively nested and mounted on the filter liquid extraction box, a plurality of replaceable filter screens are respectively mounted on pairs of set ring blocks, the connecting assembly is mounted on a plurality of polygonal floating island plates, a plurality of J-shaped siphon pipes are evenly inserted into the filter liquid extraction box, the ozone emitter and the bubble emitter are mounted on the filter liquid extraction box, and the storage battery is mounted on the auxiliary support.

[0008] It should be noted that, as described above, several polygonal floating islands are spliced ​​together. An auxiliary support is installed on the polygonal floating islands, and the photovoltaic panels on the auxiliary support power the liquid pump and other electrical components. The liquid pump pumps and pumps the liquid inside the filter tank through the liquid pumping pipe. The liquid is then directed to the spider web ring spray pipe through the liquid pumping pipe. Several spray nozzles on the spider web ring spray pipe spray the liquid inside the filter tank at multiple angles. At the same time, several J-shaped siphon pipes use negative pressure to direct the liquid into the inside of the filter tank. The liquid is then filtered through several set of ring blocks and replaceable filter screens. Several filter ring layers further filter the initially filtered liquid multiple times. The operation of the odor emitter and bubble emitter in the spider web of the filter tank also filters out the surrounding moisture.

[0009] Preferably, the connecting assembly includes: a plurality of insert sliders, a plurality of insert pins, two pairs of counterweight ropes, two pairs of anchor bolts, and a plurality of counterweight blocks;

[0010] A plurality of polygonal floating island plates are provided with a plurality of insertion slots, a plurality of insertion sliders are respectively installed on the plurality of polygonal floating island plates, and the plurality of insertion sliders are respectively movably inserted into the plurality of insertion slots, a plurality of insertion pins are respectively movably inserted into the inner side of the plurality of insertion sliders and the plurality of insertion slots, two pairs of counterweight ropes are respectively installed on two pairs of polygonal floating island plates, two pairs of anchor bolts are respectively installed on two pairs of counterweight ropes, and a plurality of counterweight blocks are respectively installed on two pairs of counterweight ropes;

[0011] It should be noted that, as described above, several polygonal floating islands are quickly fixed by the cooperation of several insert sliders with the insert slots on the polygonal floating islands, and several polygonal floating islands are quickly fixed and supported by the cooperation of two pairs of counterweight ropes, two pairs of anchor bolts and counterweight blocks.

[0012] Preferably, the auxiliary support is provided with a shield.

[0013] Preferably, each of the polygonal floating island plates is provided with an auxiliary annular airbag.

[0014] Preferably, a floating level gauge is provided on the polygonal floating island plate.

[0015] Preferably, a flow sensor is provided on the inner side of the liquid extraction tube. Beneficial effects

[0016] This invention provides an ecological floating island device for remediating urban water pollution. Compared with existing technologies, this ecological floating island device for remediating urban water pollution features: it uses several polygonal floating islands interconnected by auxiliary structures, offering flexible design and facilitating splicing and expansion; photovoltaic panels on the auxiliary support provide power to electrical appliances such as the liquid pump, realizing the application of green energy; the device uses a liquid pump and pipe to pump and spray liquid from the filtration tank at multiple angles, while utilizing a J-shaped siphon tube for negative pressure drainage, improving filtration efficiency; the design of the set of circular blocks and replaceable filter screens makes the filtration process more convenient and efficient, and the replaceable filter screens reduce maintenance costs; the arrangement of the filter ring layers enables multiple filtrations of the liquid, ensuring water cleanliness; furthermore, the design of the connecting components allows for quick and stable fixing of the floating islands, and the addition of baffles and auxiliary circular airbags enhances the stability and buoyancy of the device; the inclusion of a floating level gauge and flow sensor enables real-time monitoring and control of the water condition, improving the device's intelligence level. Attached Figure Description

[0017] Figure 1 This is a front sectional view of an ecological floating island device for remediating urban water pollution, as described in this utility model.

[0018] Figure 2 This is a top cross-sectional view of an ecological floating island device for remediating urban water pollution, as described in this utility model.

[0019] Figure 3 for Figure 1 A magnified view of the letter "A" in the image.

[0020] In the diagram: 1. Polygonal floating island plate; 2. Concave cylindrical block; 3. Photovoltaic panel; 4. Roller shutter baffle; 5. Liquid pump; 6. Liquid extraction pipe; 7. Spider web ring spray pipe; 8. J-type siphon pipe; 9. Spray nozzle; 10. Filter liquid extraction tank; 11. Set ring block; 12. Replaceable filter screen; 13. Filter ring layer; 14. Ozone emitter; 15. Bubble emitter; 16. Storage battery; 17. Insert slider; 18. Insert pin. Detailed Implementation

[0021] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0022] Those skilled in the art should connect all electrical components and their compatible power supplies in this case via wires. Appropriate controllers and encoders should be selected according to the actual situation to meet control requirements. The specific connection and control sequence should refer to the working principle described below, where the electrical components are connected in sequence. The detailed connection methods are well-known in the art. The following mainly introduces the working principle and process, and will not describe the electrical control further. Example

[0023] The present invention will now be described in detail with reference to the accompanying drawings, such as... Figure 1-3As shown, several polygonal floating island plates 1 are interconnected through the auxiliary structure, several concave cylindrical blocks 2 are evenly installed on the polygonal floating island plates 1, the auxiliary bracket is installed on the polygonal floating island plates 1, and the auxiliary structure is installed on the auxiliary bracket. The auxiliary structure includes: a photovoltaic panel 3, a roller shutter baffle 4, a liquid pump 5, a liquid pumping pipe 6, a spider web-shaped ring spray pipe 7, several J-shaped siphon pipes 8, several spray nozzles 9, a filter liquid pumping tank 10, several set ring blocks 11, several replaceable filter screens 12, several filter ring layers 13, an ozone emitter 14, a bubble emitter 15, a battery 16, and... The connection components include: the photovoltaic panel 3 mounted on the auxiliary support; the roller shutter baffle 4 mounted on the photovoltaic panel 3; the liquid extraction pipe 6 inserted into the polygonal floating island plate 1; the liquid extraction pump 5 mounted on the liquid extraction pipe 6; the spider web ring spray pipe 7 mounted on the auxiliary support and connected to the liquid extraction pipe 6; the filter liquid extraction box 10 mounted on the liquid extraction pipe 6; several spray nozzles 9 evenly installed on the spider web ring spray pipe 7; several set ring blocks 11 respectively nested and installed on the filter liquid extraction box 10; and several replaceable filter screens 12 respectively installed on both sides. The connecting assembly is mounted on a pair of ring blocks 11, and is installed on several polygonal floating island plates 1. Several J-shaped siphon tubes 8 are evenly inserted into the filter extraction tank 10. The ozone emitter 14 and the bubble emitter 15 are installed on the filter extraction tank 10. The battery 16 is installed on the auxiliary support. The connecting assembly includes several insertion sliders 17, several insertion pins 18, two pairs of counterweight ropes, two pairs of anchor bolts, and several counterweight blocks. Several insertion slots are respectively opened on several polygonal floating island plates 1, and several insertion sliders 17 are respectively installed on several polygonal floating islands. On plate 1, several of the inserted sliders 17 are movably inserted into several of the inserted slots, and several of the inserted pins 18 are movably inserted into the inner sides of several of the inserted sliders 17 and several of the inserted slots. Two pairs of counterweight ropes are respectively installed on two pairs of polygonal floating island plates 1, two pairs of anchor bolts are respectively installed on two pairs of counterweight ropes, and several counterweight blocks are respectively installed on two pairs of counterweight ropes. A baffle plate is provided on the auxiliary support. Auxiliary annular airbags are respectively provided on several polygonal floating island plates 1. A floating liquid level gauge is provided on the polygonal floating island plate 1. A flow sensor is provided on the inner side of the liquid extraction pipe 6.

[0024] According to the appendix Figure 1-3It is concluded that by splicing together several polygonal floating island plates 1, and by installing auxiliary supports on the polygonal floating island plates 1, the photovoltaic panels 3 on the auxiliary supports power the liquid pump 5 and other electrical components. The liquid pump 5 pumps and delivers the liquid inside the filter liquid collection tank 10 through the liquid collection pipe 6. The liquid is then guided to the spider web ring spray pipe 7 through the liquid collection pipe 6. Several spray nozzles 9 on the spider web ring spray pipe 7 spray the liquid inside the filter liquid collection tank 10 at multiple angles. At the same time, several J-shaped siphon pipes 8 guide the liquid to the inside of the filter liquid collection tank 10 through negative pressure. The liquid is filtered by several sets of circular blocks 11 and replaceable filter screens 12. The liquid after initial filtration is filtered multiple times by several filter ring layers 13. The operation of the odor emitter and bubble emitter 15 of the filter tank 10 filters the surrounding moisture. The polygonal floating island plates 1 are quickly fixed by several insert sliders 17 and insert slots on the polygonal floating island plates 1. The polygonal floating island plates 1 are quickly fixed and supported by two pairs of counterweight ropes, two pairs of anchor bolts and counterweight blocks.

[0025] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An ecological floating island device for remediation of urban water body pollution, comprising: A plurality of polygonal floating island plates, a plurality of concave cylindrical blocks, auxiliary supports and auxiliary structures, a plurality of the polygonal floating island plates are connected with each other through the auxiliary structures, a plurality of the concave cylindrical blocks are evenly installed on the polygonal floating island plates, the auxiliary supports are installed on the polygonal floating island plates, and the auxiliary structures are installed on the auxiliary supports, characterized in that the auxiliary structures comprise photovoltaic panels, roller shutter baffles, liquid pumping pumps, liquid pumping pipes, spider web circular ring spray pipes, a plurality of J-shaped siphon pipes, a plurality of spray nozzles, a filtering liquid pumping box, a plurality of sleeved circular ring blocks, a plurality of replaceable filter screens, a plurality of filtering circular ring layers, ozone emitters, bubble emitters, storage batteries and connecting assemblies. The photovoltaic panels are installed on the auxiliary supports, the roller shutter baffles are installed on the photovoltaic panels, the liquid pumping pipes are inserted into the polygonal floating island plates, the liquid pumping pumps are installed on the liquid pumping pipes, the spider web circular ring spray pipes are installed on the auxiliary supports and connected with the liquid pumping pipes, the filtering liquid pumping box is installed on the liquid pumping pipes, a plurality of the spray nozzles are evenly installed on the spider web circular ring spray pipes, a plurality of the sleeved circular ring blocks are sleeved with each other and installed on the filtering liquid pumping box, a plurality of the replaceable filter screens are installed on both sides of the sleeved circular ring blocks, the connecting assemblies are installed on a plurality of the polygonal floating island plates, a plurality of the J-shaped siphon pipes are evenly inserted into the filtering liquid pumping box, the ozone emitters and the bubble emitters are installed on the filtering liquid pumping box, and the storage batteries are installed on the auxiliary supports.

2. The ecological floating island device for repairing pollution of urban water bodies according to claim 1, characterized in that, The connecting assemblies comprise a plurality of inserted sliding blocks, a plurality of inserted pins, two pairs of counterweight ropes, two pairs of anchor bolts and a plurality of counterweight blocks. A plurality of the polygonal floating island plates are respectively provided with a plurality of inserted slots, a plurality of the inserted sliding blocks are respectively installed on a plurality of the polygonal floating island plates and movably inserted into a plurality of the inserted slots, a plurality of the inserted pins are movably inserted into a plurality of the inserted sliding blocks and the inner sides of a plurality of the inserted slots, two pairs of the counterweight ropes are respectively installed on two pairs of the polygonal floating island plates, two pairs of the anchor bolts are respectively installed on two pairs of the counterweight ropes, and a plurality of the counterweight blocks are respectively installed on two pairs of the counterweight ropes.

3. The ecological floating island device for repairing pollution of urban water bodies according to claim 2, characterized in that, The auxiliary supports are provided with shielding plates.

4. The ecological floating island device for repairing pollution of urban water bodies according to claim 3, characterized in that, A plurality of the polygonal floating island plates are respectively provided with auxiliary circular ring air bags.

5. The ecological floating island device for repairing pollution of urban water bodies according to claim 4, characterized in that, The polygonal floating island plates are provided with floating liquid level meters.

6. The ecological floating island device for repairing pollution of urban water bodies according to claim 5, characterized in that, The inner sides of the liquid pumping pipes are provided with flow sensors.