Efficient floating island combining floating aeration and regular polygon spliced floating basins

The high-efficiency floating island, which combines floating aeration with regular polygonal splicing floating basins, solves the problems of plant support and water aeration, realizes stable plant growth and balance of the aquatic ecosystem, and improves the dissolved oxygen content and water quality.

CN223737831UActive Publication Date: 2025-12-30HANGZHOU LANGZHOU ENVIRONMENTAL PROTECTION ENG
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Patent Information

Application Number
CN202422924879.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-12-30
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Existing floating island devices cannot effectively support plants and cannot aerate the water, leading to plant lodging and water stratification, which affects the balance of the aquatic ecosystem.

Method used

A highly efficient floating island combining floating aeration with a regular polygonal splicing floating basin was designed. Through the combination of floating plate, pentagonal plate, planting trough, rubber tire, support mechanism and aeration generation mechanism, plant support and water aeration are achieved. The rubber tire buffers the impact, the support mechanism supports the plants, and the aeration generation mechanism creates negative pressure to draw in air and water, mix them and disperse them into bubbles to release oxygen.

Benefits of technology

It effectively supports plants, reduces lodging, increases dissolved oxygen content in water, improves water quality, maintains the balance of the aquatic ecosystem, and promotes plant growth and the reproduction of aquatic organisms.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a floating type aeration and regular polygon spliced floating basin combined efficient floating island which comprises a floating disc, a pentagonal disc is fixedly installed on the upper surface of the floating disc, frame plates are fixedly installed on the pentagonal lower surface of the pentagonal disc, and snap fasteners are fixedly installed at one ends of the frame plates, so that the floating disc can be buckled and spliced with another group of floating discs through the snap fasteners. Four groups of V-shaped frames are fixedly mounted in the floating disc, a planting groove is formed among the four groups of V-shaped frames, supporting mechanisms are rotatably mounted in the four groups of V-shaped frames, and each group of supporting mechanisms can be mutually buckled and spliced above the planting groove. Through the design of the supporting mechanism and the aeration generation mechanism, after plants are planted, surrounding rods can be formed through the supporting rods to support the plants, water flow impact is reduced, meanwhile, the aeration generation mechanism below the floating disc can aerate water, the content of dissolved oxygen in the water can be increased, and plant root respiration and water ecological system balance can be promoted.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of floating disc, concretely to a high -efficient floating island of floating aeration and positive polygon splicing floating basin combination. BACKGROUND

[0002] Environmental pollution has been a problem that deserves to be treated, among them, water resources is the most need to pay close attention to, its reason is that general family and industrial waste water, how much inevitably will be discharged to river or water ditch, in other words, river, lake is easy to be polluted. In view of this, some people think from another angle and develop the corresponding supporting measures, form ecological floating island by planting aquatic plants through a large number of planting floating disc, help to stabilize water quality, achieve the purpose of repairing environment.

[0003] The utility model discloses a planting floating disc, which is used for floating on a liquid surface, and comprises a body, at least one first connecting part and at least one second connecting part. The body has a receiving hole for receiving a planting seat. The at least one first connecting part is integrally extended from the body, and the at least one second connecting part is integrally extended from the body. The first connecting part is used for pivotally connecting with the second connecting part of another planting floating disc, and the second connecting part is used for pivotally connecting with the first connecting part of another planting floating disc. The utility model simultaneously provides two kinds of connecting parts, so that users can quickly connect two planting floating discs. When the planting floating disc is connected with another planting floating disc through the connecting parts, the connecting angle can be adjusted by pivoting relative to the external force, so as to avoid the breakage of the connecting parts due to long-term stress.

[0004] However, the above-mentioned planting floating disc cannot provide support for the planted plants. Without a support structure on the water surface, the plants may be blown down, impacted by water flow or unevenly grown, and thus die.

[0005] Meanwhile, the water cannot be aerated during daily use, which may cause stratification of the water body, reduce the exchange of substances between the upper and lower water bodies, and thus prevent the nutrients in the lower water body from being effectively brought to the upper layer for the plant roots to absorb, and the oxygen in the upper water body from penetrating into the lower layer, thereby affecting the balance of the entire water body ecosystem. UTILITY MODEL CONTENTS

[0006] The utility model discloses a floating aeration and positive polygon splicing floating basin combination high -efficient floating island, to solve the problem that the plant cannot be planted after planting and cannot be aerated in the water during daily use.

[0007] In order to achieve the above object, the utility model provides the following technical scheme:

[0008] A kind of high-efficiency floating island of floating aeration and positive polygon splicing floating basin combination, comprising: floating disc, the upper surface of the floating disc is fixedly installed with pentagonal disc, the lower surface of the pentagonal disc is fixedly installed with frame plate, one end of the frame plate is fixedly installed with snap, so that the floating disc can be assembled by snap with another set of floating disc;

[0009] Among them, four groups of V-shaped frames are fixedly installed in the floating disc, planting grooves are formed between the four groups of V-shaped frames, supporting mechanisms are rotatably installed in the four groups of V-shaped frames, and the supporting mechanisms can be assembled on the upper side of the planting grooves.

[0010] Among them, four groups of V-shaped frames are fixedly installed in the floating disc, planting grooves are formed between the four groups of V-shaped frames, supporting mechanisms are rotatably installed in the four groups of V-shaped frames, and the supporting mechanisms can be assembled on the upper side of the planting grooves.

[0011] Preferably, rubber tires are fixedly installed between the floating disc and the frame plate, so that the rubber tires can exert a protective force and a floating force on the floating disc.

[0012] Preferably, the outer surface of the rubber tire can be pulled out from the frame plate, so that the rubber tire is clamped between the frame plate and the floating disc, and when each group of floating discs is assembled through the snap at one end of the frame plate, the rubber tire extending out of the frame plate is touched, so as to achieve the purpose of buffering impact.

[0013] Preferably, the supporting mechanism comprises four groups of rotating rods, the rotating rods are rotatably installed in the four groups of V-shaped frames, the outer surface of each group of rotating rods is fixedly installed with two groups of supporting rods and forms an L shape, and the other end of each group of supporting rods is fixedly installed with a half-ring buckle.

[0014] Preferably, each group of half-ring buckles can be rotatably assembled on the outer surface of adjacent two groups of rotating rods and above the planting groove through the rotating rods.

[0015] Preferably, each group of supporting rods is in the shape of a n, so that when each group of rotating rods is assembled on the outer surface of adjacent two groups of rotating rods through the half-ring buckle at one end of the supporting rod, the supporting rod in the shape of a n forms a rectangular surrounding rod above the planting groove, and the plant planted in the planting groove can be supported, so as to prevent the plant from being blown down on the water surface.

[0016] Preferably, the rotating rod, the supporting rod and the half-ring buckle are integrally formed and made of plastic material.

[0017] Preferably, the aeration generating mechanism comprises a motor fixedly installed between the four V-shaped frames, an output shaft of the motor penetrating to the lower surface of the floating disc and rotating in a rotating drum fixedly installed on the lower surface of the floating disc, and an impeller rotatingly installed in the rotating drum and fixedly connected with the output shaft penetrating to the rotating drum and communicating the rotating drum with the floating disc to enable the air in the floating disc to be sucked into the rotating drum.

[0018] Preferably, the motor is powered by a photovoltaic panel installed annularly on the upper surface of the pentagonal disc.

[0019] Preferably, the lower surface of the rotating drum is provided with a water suction port, and the outer surface of the rotating drum is provided with a water outlet in a grid shape.

[0020] Preferably, the impeller is driven by the motor to rotate in the rotating drum to form a certain negative pressure environment in the rotating drum, thereby enabling the surrounding air and water to be sucked into the rotating drum, the sucked air and water being fully mixed by the stirring action of the impeller, and the mixed liquid being dispersed into smaller droplets and bubbles due to the blocking and dividing action of the grid of the water outlet when the mixed liquid with air reaches the water outlet, the bubbles gradually releasing the contained oxygen into the surrounding water body in the rising process, thereby realizing the aeration of the water body and improving the dissolved oxygen content in the water body.

[0021] Compared with the prior art, the aeration generating mechanism has the following advantages:

[0022] 1. The floating disc, the pentagonal disc, the planting groove, the rubber tire, the supporting mechanism and the aeration generating mechanism are designed, in use, the plurality of floating discs can be connected together by the snap fasteners according to the water area, the rubber tires sleeved on the outer surfaces of the floating discs are abutted against each other to play a buffering role in the connecting process, then the staff can plant plants in the planting grooves of each floating disc, the supporting mechanisms are buckled on the outer surfaces of the adjacent two supporting mechanisms and above the planting grooves after the plants are planted, the rectangular surrounding rods formed by the buckling of the supporting mechanisms can support the plants in the planting grooves, then the connected and planted floating discs can be pushed into the water, the aeration generating mechanism at the lower end of the floating disc is submerged in the water, the upper end is communicated with the floating disc, then the aeration generating mechanism is started to form a certain negative pressure environment in the interior, the surrounding air and water are sucked into the aeration generating mechanism to be fully mixed, then the mixed liquid is discharged from the outer surface and dispersed into smaller droplets and bubbles due to the blocking and dividing action of the grid of the discharge port, the bubbles gradually release the contained oxygen into the surrounding water body in the rising process, thereby realizing the aeration of the water body and improving the dissolved oxygen content in the water body.

[0023] The plurality of floating plates are spliced according to the water area by buckling, so that the water area space can be fully utilized, whether it is a small pond or a large lake, the splicing number and layout of the floating plates can be adjusted according to the actual situation, the water area is utilized to the maximum extent for plant planting, and the utilization rate of water area resources is improved;

[0024] The supporting mechanism is buckled to form a rectangular surrounding rod to support the plants in the planting groove, so that the plants are easily affected by water flow and wind force in the water surface environment. The supporting structure can effectively fix the plants, reduce the possibility of plant lodging, and ensure the normal growth of the plants.

[0025] The aeration generating mechanism inhales air and water by forming negative pressure and mixes them, and then disperses the mixed liquid into small droplets and bubbles through the grid-shaped discharge port to release oxygen into the water body. This process can significantly improve the dissolved oxygen content in the water body, improve the water quality, and sufficient dissolved oxygen is beneficial to the survival and reproduction of various organisms in the water, such as fish, shrimp and other aquatic animals, and microorganisms that decompose organic matter. The bubbles generated by aeration will drive the circulation of the upper and lower layers of the water body during the rising process, which helps to break the stratification phenomenon of the water body, exchanges the upper layer of water rich in oxygen with the lower layer of water, brings the nutrients in the lower layer of water to the upper layer for plant root absorption, and at the same time transports the oxygen in the upper layer to the lower layer, maintaining the balance of the entire water body ecosystem.

[0026] 2、By the design of the rotating rod, the supporting rod and the half-ring buckle, after the plants are planted in the planting groove, the staff can rotate the half-ring buckle at one end of the supporting rod on the outer surface of the four rotating rods and buckle it at the outer surface of the adjacent two rotating rods, so that the U-shaped supporting rod forms a rectangular surrounding rod above the planting groove, thereby supporting the plants planted in the planting groove, reducing the shaking of the plants caused by water flow impact, ensuring the stability of the plant roots, avoiding damage to the growth of the plants caused by water flow impact, and preventing the plants from growing disorderly on the water surface and entangling each other, ensuring that the plants have enough space to stretch their branches and leaves, and facilitating the photosynthesis of the plants.

[0027] 3、Through the design of the motor, the rotating drum, the water outlet, the impeller and the water suction port, after the floating disc is pushed into water, the floating disc can drive the rotating drum installed on the lower surface to sink into the water, then the motor can be started to drive the impeller fixedly connected to one end of the output shaft to rotate in the rotating drum, thereby the impeller can form a negative pressure space in the rotating drum, and the surrounding air and water can be sucked into the rotating drum under the action of the pressure difference, the air and water sucked into the rotating drum can be fully mixed under the stirring action of the impeller, the blade structure and the rotating motion of the impeller continuously change the flow direction and speed of the air and water, so that the air and water are uniformly mixed to form air-water mixture, when the water mixed with air is thrown to the water outlet, the grid structure of the water outlet plays a blocking and dividing role, the structure can disperse the mixture into smaller droplets and bubbles, during the rising process of the small droplets and bubbles, the oxygen in the bubbles can be gradually released into the surrounding water body due to the pressure difference between the water and the air and the contact interface between the bubbles and the water body, so that the aeration effect on the water body is realized, the dissolved oxygen content in the water body is finally improved, and the stratification phenomenon of the water body is also broken, so that the upper layer of water rich in oxygen exchanges with the lower layer of water, the nutrients in the lower layer of water are brought to the upper layer for the plant root system to absorb, and meanwhile, the oxygen in the upper layer can be transported to the lower layer to maintain the balance of the entire water body ecological system. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a structure schematic view of the plurality of floating discs of the utility model which are spliced through snap fasteners;

[0029] Figure 2 It is a structure schematic view of the long rectangle surrounding rod formed by the buckling of the supporting mechanism of the utility model;

[0030] Figure 3 It is a structure schematic view of the rubber tire extending out of the frame plate of the utility model;

[0031] Figure 4 It is a structure schematic view of the supporting mechanism of the utility model;

[0032] Figure 5 It is a structure schematic view of the photovoltaic panel of the utility model;

[0033] Figure 6 It is a structure schematic view of the floating disc of the utility model;

[0034] Figure 7 It is a structure schematic view of the rotating drum and the water outlet of the utility model;

[0035] Figure 8 It is a structure schematic view of the aeration generating mechanism of the utility model.

[0036] In the figure: 1, pentagonal disc; 101, frame plate; 102, buckle; 103, floating disc; 104, V-shaped frame; 105, planting groove; 106, rubber tire; 107, photovoltaic panel; 2, supporting mechanism; 201, rotating rod; 202, supporting rod; 203, half ring buckle; 3, aeration generating mechanism; 301, motor; 302, rotating drum; 303, water outlet; 304, impeller; 305, water suction port. DETAILED DESCRIPTION

[0037] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0038] Please refer to Figures 1-8 The embodiment provides the following technical scheme:

[0039] As Figures 1-3 shown, a high-efficiency floating island combining floating aeration and a regular polygon spliced floating pond comprises: a floating disc 103, a pentagonal disc 1 is fixedly installed on the upper surface of the floating disc 103, frame plates 101 are fixedly installed on the lower surfaces of the pentagonal disc 1, buckles 102 are fixedly installed at one end of the frame plates 101, so that the floating disc 103 can be spliced by buckling with another group of floating discs 103 through the buckles 102;

[0040] Among them, four groups of V-shaped frames 104 are fixedly installed in the floating disc 103, planting grooves 105 are formed between the four groups of V-shaped frames 104, supporting mechanisms 2 are rotatably installed in the four groups of V-shaped frames 104, each group of supporting mechanisms 2 can be spliced above the planting grooves 105 by buckling with each other, so that the supporting mechanisms 2 can support the plants planted in the planting grooves 105;

[0041] Among them, four groups of V-shaped frames 104 are fixedly installed in the floating disc 103, planting grooves 105 are formed between the four groups of V-shaped frames 104, supporting mechanisms 2 are rotatably installed in the four groups of V-shaped frames 104, each group of supporting mechanisms 2 can be spliced above the planting grooves 105 by buckling with each other, so that the supporting mechanisms 2 can support the plants planted in the planting grooves 105;

[0042] The rubber tire 106 is fixedly installed between the floating disc 103 and the frame plate 101, so that the rubber tire 106 can exert a protection force and a floating force on the floating disc 103.

[0043] The outer surface of the rubber tire 106 can be pulled out from the inside of the frame plate 101, so that the rubber tire 106 is clamped between the frame plate 101 and the floating disc 103, and when each group of floating discs 103 are spliced by the buckles 102 at one end of the frame plate 101, the rubber tire 106 extending out of the frame plate 101 is touched, so as to realize the purpose of buffering the impact force.

[0044] Through the design of the floating disc 103, the five-corner disc 1, the planting groove 105, the rubber tire 106, the supporting mechanism 2 and the aeration generating mechanism 3, in use, the staff can splice multiple sets of floating discs 103 together through the snap buttons 102 according to the water area, and in the process of splicing, the rubber tires 106 sleeved on the outer surfaces of the floating discs 103 will be in contact with each other to play a buffering role, then the staff can plant plants in the planting grooves 105 opened in each set of floating disc 103, and after planting, the staff can push the supporting mechanisms 2 to be buckled on the outer surfaces of the supporting mechanisms 2 of the adjacent two sets and above the planting grooves 105, and the rectangular surrounding rods formed by mutual buckling can exert a supporting function on the plants planted in the planting grooves 105, then the spliced and planted floating discs 103 can be pushed into the water, and the aeration generating mechanism 3 at the lower end of the floating disc 103 will be submerged in the water, and the upper end will be in communication with the floating disc 103, then the aeration generating mechanism 3 can be started to form a certain negative pressure environment inside, the surrounding air and water will be sucked into the aeration generating mechanism 3 and fully mixed, then the mixed liquid will be discharged from the outer surface, and due to the blocking and dividing effect of the grid of the discharge port, the mixed liquid will be dispersed into smaller droplets and bubbles, and the oxygen contained in the bubbles will be gradually released into the surrounding water body during the rising process, thereby realizing the aeration effect on the water body and improving the dissolved oxygen content in the water body;

[0045] Among them, multiple sets of floating discs 103 are spliced according to the water area through the snap buttons 102, which can make full use of the water area space, whether it is a small pond or a large lake, the number and layout of the floating discs 103 can be adjusted according to the actual situation, and the water area is used for plant planting to the maximum extent, thereby improving the utilization rate of water area resources;

[0046] And the supporting function of the rectangular surrounding rods formed by buckling the supporting mechanisms 2 on the plants in the planting grooves 105 makes the plants in the water surface environment easily affected by the water flow and wind force, and this supporting structure can effectively fix the plants and reduce the possibility of plant lodging, thereby ensuring the normal growth of the plants;

[0047] The aeration generating mechanism 3 inhales air and water by forming negative pressure and mixes them, and then releases oxygen into the water body by dispersing the mixed liquid into small droplets and bubbles through the grid-shaped discharge port. This process can significantly increase the dissolved oxygen content in the water body, improve water quality, and sufficient dissolved oxygen is conducive to the survival and reproduction of various organisms in the water, such as fish, shrimp and other aquatic animals, as well as microorganisms that decompose organic matter. In addition, the bubbles generated by aeration can drive the circulation of the upper and lower layers of the water body during their upward movement, which helps to break the stratification phenomenon of the water body and exchange the oxygen-rich water in the upper layer with the water in the lower layer, bringing nutrients in the lower layer to the upper layer for plant root absorption, while also transporting oxygen from the upper layer to the lower layer, maintaining the balance of the entire water ecosystem.

[0048] As shown in Figures 4-5 The supporting mechanism 2 includes four groups of rotating rods 201, which are respectively rotatably installed in the four V-shaped frames 104. Each group of rotating rods 201 has two groups of supporting rods 202 fixedly installed on the outer surface and forms an L shape. The other end of each group of supporting rods 202 is fixedly installed with a half-ring buckle 203.

[0049] Each group of half-ring buckles 203 can be rotatably buckled on the outer surfaces of the adjacent two groups of rotating rods 201 and above the planting groove 105.

[0050] Each group of supporting rods 202 is in the shape of a n-shaped, so that when the four groups of rotating rods 201 are buckled on the outer surfaces of the adjacent two groups of rotating rods 201 through the half-ring buckles 203 at one end of the supporting rods 202, the n-shaped supporting rods 202 can form a rectangular fence above the planting groove 105, thereby supporting the plants planted in the planting groove 105 to prevent them from being blown down by the wind on the water surface.

[0051] The rotating rod 201, the supporting rod 202 and the half-ring buckle 203 are designed as an integral molding and are made of plastic material.

[0052] Through the design of the rotating rod 201, the supporting rod 202 and the half-ring buckle 203, after the plants are planted in the planting groove 105, the staff can rotate the half-ring buckles 203 at one end of the supporting rods 202 on the outer surfaces of the four groups of rotating rods 201 to be buckled on the outer surfaces of the adjacent two groups of rotating rods 201, so that the n-shaped supporting rods 202 can form a rectangular fence above the planting groove 105, thereby supporting the plants planted in the planting groove 105 to prevent them from being blown down by the wind on the water surface. This can reduce the shaking of the plants caused by the water flow, ensure the stability of the plant roots, avoid damage to the growth of the plants caused by the water flow, prevent the plants from growing disorderly on the water surface and entangling with each other, and ensure that the plants have enough space to stretch their branches and leaves, which is conducive to the photosynthesis of the plants.

[0053] As shown in Figures 6-8As shown, the aeration generating mechanism 3 comprises a motor 301 fixedly installed between the four sets of V-shaped frames 104, the output shaft of the motor 301 penetrates to the lower surface of the floating plate 103 and rotates in the rotating drum 302 fixedly installed on the lower surface of the floating plate 103, the impeller 304 is rotatably installed in the rotating drum 302, the impeller 304 is fixedly connected with the output shaft penetrating into the rotating drum 302, and the rotating drum 302 is communicated with the floating plate 103, so that the air in the floating plate 103 can be sucked into the rotating drum 302;

[0054] The motor 301 can be powered by the photovoltaic panel 107, and the photovoltaic panel 107 is annularly arranged on the upper surface of the five-cornered plate 1.

[0055] The lower surface of the rotating drum 302 is provided with a water suction port 305, and the outer surface of the rotating drum 302 is provided with a water outlet 303 in a grid shape.

[0056] The impeller 304 can be driven by the motor 301 to rotate in the rotating drum 302, and a certain negative pressure environment is formed in the rotating drum 302, so that the surrounding air and water can be sucked into the rotating drum 302, the sucked air and water can be fully mixed by the stirring action of the impeller 304, when the mixed water reaches the water outlet 303, the mixed liquid will be dispersed into smaller droplets and bubbles due to the blocking and dividing action of the grid of the water outlet 303, the bubbles will gradually release the oxygen contained therein to the surrounding water body during the rising process, thereby realizing the aeration effect on the water body and improving the dissolved oxygen content in the water body.

[0057] Through the design of the motor 301, the rotating drum 302, the water outlet 303, the impeller 304 and the water suction port 305, after the floating disc 103 is pushed into the water, the floating disc 103 can drive the rotating drum 302 installed on the lower surface to sink into the water, and then the motor 301 can be started to drive the impeller 304 fixedly connected to one end of the output shaft to rotate in the rotating drum 302, so that the impeller 304 can form a negative pressure space in the rotating drum 302, and the surrounding air and water can be sucked into the rotating drum 302 under the action of the pressure difference. The air and water sucked into the rotating drum 302 can be fully mixed under the stirring action of the impeller 304. The blade structure and rotating motion of the impeller 304 continuously change the flow direction and speed of the air and water, so that the air and water are uniformly mixed to form a gas-water mixture. When the water mixed with air is thrown to the water outlet 303, the grid structure of the water outlet 303 plays a blocking and dividing role. This structure can disperse the mixture into smaller droplets and bubbles. During the rising process of the small droplets and bubbles, due to the pressure difference between the water and the air and the contact interface between the bubbles and the water body, the oxygen in the bubbles will gradually be released into the surrounding water body, thereby realizing the aeration effect on the water body, finally improving the dissolved oxygen content in the water body, and helping to break the stratification phenomenon of the water body, so that the upper layer of water rich in oxygen exchanges with the lower layer of water, brings the nutrients in the lower layer of water to the upper layer for plant root absorption, and at the same time, the oxygen in the upper layer is transported to the lower layer, maintaining the balance of the entire water body ecosystem.

[0058] Specifically, in the embodiment, the buoyancy of the floating disc is calculated by the following equation:

[0059] Buoyancy = p water × g × V displaced .

[0060] Example: Assuming that the density of water is p water = 1000 kg / m 3 , the acceleration of gravity is g = = 9.8 m / s 2 , and the volume of water displaced by the floating disc is V displaced = 0.1 m 3 , then the buoyancy is:

[0061] Buoyancy = 1000 kg / m 3 × 9.8 m / s 2 × 0.1 m 3 = 980 N.

[0062] Technical effect: sufficient buoyancy can ensure that the floating disc stably floats on the water surface and provide a stable plant growth environment.

[0063] According to the above technical scheme, the working steps of the present scheme are summarized and combed: when in use, the staff can splice multiple groups of floating discs 103 together through buckles 102 according to the water area, and in the process of splicing, the rubber tires 106 sleeved on the outer surfaces of the floating discs 103 will be touched and contacted with each other to play a buffering role, then the staff can plant plants in the planting grooves 105 opened in each group of floating discs 103, and after planting, when the staff rotates the half-ring buckles 203 at one end of the supporting rods 202 on the outer surfaces of the four groups of rotating rods 201 to be buckled and sleeved on the outer surfaces of the adjacent two groups of rotating rods 201, the U-shaped supporting rods 202 can form a rectangular surrounding rod above the planting grooves 105, so as to support the plants planted in the planting grooves 105, thereby reducing the shaking of the plants caused by water flow impact, ensuring the stability of the roots of the plants, then the spliced and planted floating discs 103 can be pushed into the water, so that the floating discs 103 drive the rotating drum 302 connected and installed on the lower surface to immerse in the water, then the motor 301 can be started to drive the impeller 304 fixedly connected at one end of the output shaft to rotate in the rotating drum 302, so that the impeller 304 can form a negative pressure space in the rotating drum 302, and the surrounding air and water can be sucked into the rotating drum 302 under the action of the pressure difference, and the air and water sucked into the rotating drum 302 can be fully mixed under the stirring action of the impeller 304, the blade structure and rotating motion of the impeller 304 continuously change the flow direction and speed of the air and water, so that the air and water are uniformly mixed to form air-water mixture, when the water mixed with air is thrown to the water outlet 303, the grid structure of the water outlet 303 plays a blocking and dividing role, and this structure can disperse the mixture into smaller droplets and bubbles, and in the rising process, the oxygen in the bubbles will gradually be released into the surrounding water body due to the pressure difference between the water and the air and the contact interface between the bubbles and the water body, so as to realize the aeration of the water body.

[0064] In summary: when in use, the staff can splice multiple groups of floating discs 103 according to the water area, and after planting plants, the staff can also form a surrounding rod through the supporting rods 202 to support the plants, reduce the water flow impact, and at the same time, the aeration generating mechanism 3 under the floating discs 103 can aerate the water body, improve the dissolved oxygen content in the water body, improve the water quality, and promote the plant root respiration and the balance of the water body ecosystem.

[0065] The parts not involved in the present application are the same as or can be realized by the prior art. Although embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A high efficiency floating island combining floating aeration and regular polygonal tessellation floating ponds, characterized in that, Include: The floating disc (103) is fixedly installed with a pentagonal disc (1) on the upper surface, the lower surface of the pentagonal disc (1) is fixedly installed with a frame plate (101), one end of the frame plate (101) is fixedly installed with a buckle (102), and the floating disc (103) can be buckled and spliced with another set of floating disc (103) through the buckle (102). Four groups of V-shaped frames (104) are fixedly installed in the floating disc (103), and planting grooves (105) are formed between the four groups of V-shaped frames (104). A supporting mechanism (2) is rotatably installed in each of the four groups of V-shaped frames (104). Each of the supporting mechanisms (2) can be buckled and spliced above the planting grooves (105), so that the supporting mechanism (2) can support the plants planted in the planting grooves (105). Four groups of aeration generating mechanisms (3) are fixedly installed between the four groups of V-shaped frames (104), and the air outlet ends of the aeration generating mechanisms (3) are installed through the lower surface of the floating disc (103).

2. The high-efficiency floating island of claim 1, wherein: A rubber tire (106) is fixedly installed between the floating disc (103) and the frame plate (101), so that the rubber tire (106) can exert a protection force and a floating force on the floating disc (103).

3. The high-efficiency floating island of claim 2, wherein: The outer surface of the rubber tire (106) can be pulled out from the frame plate (101), so that the rubber tire (106) is clamped between the frame plate (101) and the floating disc (103), and when each group of floating discs (103) are spliced through the buckles (102) at one end of the frame plate (101), the rubber tire (106) extending out of the frame plate (101) is pushed to achieve the purpose of buffering the impact force.

4. The high-efficiency floating island of claim 1, wherein: The supporting mechanism (2) includes four groups of rotating rods (201), and each group of rotating rods (201) is rotatably installed in the four groups of V-shaped frames (104). Two groups of supporting rods (202) are fixedly installed on the outer surface of each group of rotating rods (201) and form an L shape. The other end of each group of supporting rods (202) is fixedly installed with a half ring buckle (203).

5. The high-efficiency floating island of claim 4, wherein: Each group of half ring buckles (203) can be buckled and installed on the outer surface of the adjacent two groups of rotating rods (201) through the rotating rod (201) and above the planting groove (105).

6. The high-efficiency floating island of claim 4, wherein: Each group of supporting rods (202) is in the shape of a n, so that when the four groups of rotating rods (201) are buckled and installed on the outer surface of the adjacent two groups of rotating rods (201) through the half ring buckles (203) at one end of the supporting rods (202), the supporting rods (202) in the shape of n can form a rectangular surrounding rod above the planting groove (105), thereby supporting the plants planted in the planting groove (105) to prevent the plants from being blown down on the water surface.

7. The high-efficiency floating island of claim 6, wherein: The rotating rod (201), the supporting rod (202), and the half ring buckle (203) are integrally formed and made of plastic material.

8. The high-efficiency floating island of claim 1, wherein: The aeration generating mechanism (3) comprises a motor (301) fixedly installed between four V-shaped frames (104), an output shaft of the motor (301) penetrating to the lower surface of the floating disc (103) and rotating in a rotating drum (302) fixedly installed on the lower surface of the floating disc (103), an impeller (304) rotatingly installed in the rotating drum (302), the impeller (304) being fixedly connected with the output shaft penetrating to the rotating drum (302) and making the rotating drum (302) communicate with the floating disc (103) so that air in the floating disc (103) can be sucked into the rotating drum (302); Wherein, the motor (301) can be powered by a photovoltaic panel (107) arranged in a ring shape on the upper surface of the five-corner disc (1).

9. The high-efficiency floating island of claim 8, wherein: The lower surface of the rotating drum (302) is provided with a water suction port (305), and the outer surface of the rotating drum (302) is provided with a water outlet (303) in a grid shape.

Citation Information

Patent Citations

  • Plant and plant floating plate

    CN205222818U