Water bank park planting and breeding ornamental equipment

By combining a balancing frame and a waterproof layer on the floating island, the problem of instability of the center of gravity of the floating island on the waterfront slope was solved, which improved stability and functionality, enhanced waterfront greening and visitor experience, and supported smart park management.

CN224154751UActive Publication Date: 2026-04-24王德普
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
王德普
Filing Date
2024-01-30
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

In existing technologies, the floating islands on the waterfront slopes are unstable when the water level changes, making them prone to tilting or overturning. They cannot simultaneously modify the waterfront and provide a place for people to walk, and the survival rate of plants is low, which limits the effect and function of waterfront greening.

Method used

Design a waterfront park planting, breeding, and viewing device that combines a floating island with a balancing frame. The floating island consists of multiple unit structures, and the balancing frame is connected to the waterfront sidewall through support plates and adjustable legs to ensure that the floating island remains level when the water level changes. The floating island is equipped with a waterproof layer and an irrigation system to support plant planting and visitor activities.

Benefits of technology

It achieves the stability and functionality of floating islands when water levels change, can beautify waterfronts, provide pedestrian access, improve plant survival rates, enhance urban green space and landscape aesthetics, and support smart park management.

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Abstract

The utility model discloses a water bank park planting and breeding ornamental device which is installed in cooperation with a water bank and comprises a floating island, the floating island is connected with the water bank and can float on the water surface or make contact with the side wall of the water bank along with the change of the water level of the water bank, and the floating island comprises a plurality of unit structures used for planting plants. Each unit structure is provided with at least one balancing frame used in cooperation with the unit structure, each balancing frame comprises a supporting plate making contact with the unit structure and a plurality of adjusting supporting feet arranged on the supporting plate and used in cooperation with the side wall of the water bank, and one or more of the adjusting supporting feet are of a telescopic rod structure. The multiple adjusting supporting feet are matched so that when the multiple adjusting supporting feet make contact with the side wall of the water bank, the supporting plate is horizontally arranged relative to the side wall of the water bank. The arrangement of the balancing frames can ensure that the unit structures can be basically in a horizontal state when floating on the water surface or making contact with a water bank slope, so that the floating island has the function of modifying the water bank slope, and meanwhile the purpose of being used in a water park can be achieved.
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Description

Technical Field

[0001] This utility model relates to the field of environmental protection technology, and in particular to a device for planting, breeding and viewing in waterfront parks. Background Technology

[0002] Urban and rural areas across the country are moving towards carbon neutrality, green development, eco-smart practices, global warming mitigation, peak carbon emissions before 2030, and carbon neutrality before 2060. Therefore, in the process of urban planning and construction, in addition to the management and control required during construction, urban greening is also an important assessment component. Furthermore, livable cities and towns are invariably located near rivers, lakes, and seas, and scenic spots are inseparable from water elements; thus, waterfront management has become a crucial indicator for evaluating a city's green and environmentally friendly development.

[0003] However, environmental protection still has the following defects and shortcomings:

[0004] Because the banks of bodies of water are submerged or exposed for extended periods during high and low water seasons—examples include the banks of Chongqing Chaotianmen Wharf, the Three Gorges Reservoir area, West Lake in Hangzhou, and Erhai Lake in Kunming—these slopes are subject to significant variations in water levels throughout the year. This results in banks being submerged for half the time and exposed, barren areas for the other half, severely impacting the city's image and landscape. These specific topographical and geographical locations cannot be directly shielded by buildings, and no green plants can survive for long periods on land in water several meters or even tens of meters deep. Therefore, the management of these riverbank slopes has become a major environmental protection challenge.

[0005] To address the aforementioned issues, existing technologies utilize floating islands that rise and fall with water levels to embellish riverbanks. Examples include the structures described in patent applications CN200820059872.5, CN201420549427.2, and CN202021067531.X. These structures use multiple modular units assembled into floating islands, on which greenery is planted. The floating islands are fixed to the riverbank and can float on the water's surface or descend onto the riverbank slope to shield it, preventing exposed barren areas from negatively impacting the city's image and scenery.

[0006] In the aforementioned patent, the unit structure can be a floating box or a floating trough, any structure capable of planting plants and floating on the water surface. To enable planting, soil is filled into the unit structure, increasing its overall weight. Furthermore, the floating islands formed by multiple unit structures are directly attached to the slope during the dry season. Given the long dry season, the soil and plants within the unit structure will tilt with the slope, causing a shift in the structure's center of gravity. When the flood season arrives, the unit structure floats on the water surface due to buoyancy. However, this shift in center of gravity makes the structure unstable, leading to significant water ingress and affecting the survival of the plants. Additionally, the shifted center of gravity of the floating islands also poses a risk of capsizing. Furthermore, during the dry season, floating islands conform to the slope of the waterfront. If the slope of the waterfront has a large inclination angle, the floating islands that conform to the slope can only serve to modify the slope and cannot form a park for people to walk on. This results in the existing floating islands that are spliced ​​together by modular structures having significant limitations. Utility Model Content

[0007] To address the shortcomings of existing technologies, this utility model provides a waterfront park planting, breeding, and ornamental equipment. It addresses the technical challenges of managing the barren landscapes of urban ports and wharves, the desolate appearance of waterways in the Jiangnan water towns during the dry season, and the inability to plant vegetation during the flood season, resulting in the neglect of areas worthy of beautification. This device transforms waste into valuable resources, solves rigid needs, and expands its applications, contributing to carbon neutrality, green development, ecological intelligence, and global climate governance through scientific and technological means.

[0008] By designing floating islands, the area is transformed into a green ecological park for people to relax and enjoy, significantly increasing the proportion of urban green space, enhancing the city's image, and becoming a flower and seedling base for families, public places, office buildings, and schools. With a point-to-point express delivery service for flowers, including planting, maintenance, and replacement, a brand-new management and operation model is adopted to expand and strengthen the sunrise industry of planting and growing flowers and grass. At the same time, the park is connected to mobile phones and computers on-site, enabling interactive online synchronous management and guidance. This provides technical support for making cities more livable, beautifying and greening scenic spots, and addressing global climate warming, thereby increasing land volume and improving productivity.

[0009] The floating island's unit structure is equipped with a balancing frame for coordinated use. The balancing frame ensures that the unit structure remains basically horizontal when floating on the water or in contact with the waterfront slope. This ensures that the position of the soil, plants, or other items within the unit structure changes minimally and does not affect the overall use of the floating island. It also ensures that visitors can walk on the floating island when it is in contact with the slope or floating on the water. Thus, the floating island serves to modify the waterfront slope while also achieving the purpose of a water park.

[0010] To achieve the above objectives, the present invention adopts the following technical solution: a waterfront park planting, breeding, and viewing device, which is installed in conjunction with the waterfront. The device includes a floating island, which is connected to the waterfront and can float on the water surface or be in contact with the side wall of the waterfront as the water level changes. The floating island includes multiple unit structures for planting plants. Each unit structure is provided with at least one balancing frame for use. The balancing frame includes a support plate in contact with the unit structure and multiple adjustable legs set on the support plate for use with the side wall of the waterfront. One or more of the multiple adjustable legs are telescopic rod structures. When the multiple adjustable legs are in contact with the side wall of the waterfront, the support plate is set horizontally relative to the side wall of the waterfront.

[0011] The principle of this utility model:

[0012] According to the design requirements, multiple unit structures are spliced ​​together to form a floating island. The unit structures can be connected by ropes. Plants can be planted, animals can be raised, or leisure areas can be set up within the unit structures according to the design requirements.

[0013] Before multiple unit structures are connected to each other, a balancing frame is set at the bottom of the unit structure. If the unit structure is a rectangular cavity structure with an open top, multiple balancing frames can be set along the length of the unit structure. The support plate of each balancing frame is fixed to the bottom of the unit structure. The length of multiple adjustable legs is adjusted to ensure that the support plate is relatively horizontal when the multiple adjustable legs are in contact with the horizontal slope. Then, the unit structure that cooperates with the support plate can be set relatively horizontally during the dry season. Multiple unit structures can form a stepped floating island during the dry season. This structure can both modify the waterfront slope and provide a place for tourists to walk.

[0014] Compared with the prior art, the present invention has the following beneficial effects:

[0015] The modular structures can be manufactured on a factory assembly line, then dispersed for storage and transportation to the site for installation, and finally assembled into floating islands. Within the modular structures, soil and water can be supported to form water pools, soil pools, wetland pools, water-soil pools, soil pools, and lightweight pavilions, terraces, and viewing / photography pools that can be constructed by laying paving materials. At the same time, fertilization systems, spraying systems, sprinkler systems, night lighting systems, surround music systems, and fountain systems can also be built on the floating islands. Through computer control, interactive online synchronous management and guidance can be achieved, enabling the floating islands to function as water parks.

[0016] The use of a balancing frame overcomes the problem of the unit structure tilting due to the landing slope during the dry season, enabling the floating island of this utility model to both modify the waterfront slope and achieve the purpose of the park during the dry season.

[0017] This invention utilizes waterfront park planting, breeding, and viewing equipment, which can be integrated with an online interactive IoT system for systematic processing. This enables the entire floating island to function as a smart park, allowing for standardized management of every execution or installation step. It provides a more intuitive, convenient, and efficient understanding of problems encountered throughout the process, compares and selects the best solutions based on past experiences, and stores the data for future corrections. This avoids repeated trial and error, ensuring standardized implementation and achieving carbon neutrality, green development, and ecological intelligence. It also contributes to the beautification and greening of urban landscapes, contributing to global climate change mitigation and air pollution control, thus addressing a critical need and expanding its applications.

[0018] Furthermore, the balancing frame is fixedly connected to the sidewall of the waterfront, or the balancing frame is fixedly connected to the unit structure. The main function of the balancing frame is to ensure that the unit structure can be set horizontally or basically horizontally when it is supported in conjunction with the waterfront slope during the dry season; therefore, the balancing frame only needs to serve the purpose of supporting the unit structure during the dry season. For this reason, the balancing frame can be fixed to the horizontal slope or to the unit structure.

[0019] If the hardness of the waterfront slope is low, the balance frame can be fixed to the horizontal slope. This installation method can extend the adjusting feet into the ground to a sufficient depth to ensure that the support plate will not tilt severely due to poor installation stability when it supports the unit structure falling during the dry season.

[0020] If the waterfront slope has been reinforced with concrete, then fixing the balance frame to the unit structure during installation can avoid the problem of difficulty in installing the balance frame on the waterfront slope.

[0021] Furthermore, the unit structure includes a pool body with a matching waterproof layer. The upper part of the pool body has an overflow outlet and a water level indicator area. The pool body is also connected to an irrigation pipe. The pool body needs to fulfill functions such as planting and aquaculture, therefore, it needs to be waterproof. Thus, a matching waterproof layer can be installed inside or outside the pool body. The waterproof layer can be achieved using waterproof fabric, giving the pool body buoyancy while also providing waterproofing. The overflow outlet and water level indicator area prevent the pool body from sinking due to high water levels. Simultaneously, the irrigation pipe, through the coordination of regulating valves and control valves, irrigates the plants grown in the pool body, achieving supplemental watering and facilitating automated control.

[0022] Furthermore, the pool body is a cavity structure with an open top, assembled from multiple unit components. Each unit component is a semi-enclosed plate-like structure with a through cavity. Any two unit components are joined together along the two ends of the through cavity by a connecting groove and a connecting boss. The two unit components located at the two ends of the connection direction of the multiple unit components are also provided with baffles. The two baffles cooperate with the multiple unit components to form the pool body. The connecting groove is opened at the end of the unit component along the through cavity direction, extending inward and recessed outward along the inner side wall. The boss is set at the end of the unit component along the through cavity direction, extending inward and recessed inward along the outer side wall. Each cooperating connecting groove and boss is fixed by a locking device.

[0023] The structure of this type of pool body is easy to process and assemble. Since the length of the unit structure can be set in the entire floating island design process, it is not conducive to production and processing if each size of pool body is produced separately, and the cost is high. However, by setting the pool body as a split structure, each unit component has the same structure, and through a limited number of splicing, a variety of pool bodies with different lengths can be constructed, making the processing of the pool body more convenient.

[0024] The connection between the groove and the boss allows for easy splicing of two adjacent unit components, with the joint between the two unit components being basically flush, facilitating the installation of the waterproof layer.

[0025] Furthermore, the pool body includes a built-in mounting frame and an external waterproof bag, with the waterproof bag fitted over the mounting frame and tensioned by the mounting frame. The pool body structure offers advantages such as convenient production, easy transportation, and simple assembly. Therefore, in addition to the above structure, another pool body structure can be provided. This structure has a lighter mounting frame than the aforementioned multi-unit splicing structure, making it more conducive to production and transportation, and easier to install, suitable for mass production and use. Simultaneously, the outer waterproof bag can be replaced promptly if damaged during use.

[0026] Furthermore, the mounting frame includes two spaced-apart support frames and multiple support rods disposed between the two support frames, with each support rod having its two ends detachably fixed to the two support frames respectively; each support rod is a telescopic rod structure with a variable length, or, a tensioning element is provided on the support rod for tensioning the pull rope fixed on the waterproof bag.

[0027] The main function of the mounting frame is to ensure the waterproof bag is stretched as tight as possible, allowing for planting, raising animals, or placing other items inside. Therefore, the mounting frame must be easy to assemble and capable of tensioning the waterproof bag. A support rod with a variable length is used, allowing the waterproof bag to be easily fitted onto the frame and its tension to be adjusted after it's in place. Alternatively, the waterproof bag can be tensioned using a tensioning device, such as a turnbuckle. The turnbuckle adjusts the tension between the two ropes that work together on the waterproof bag to keep it taut.

[0028] Furthermore, the unit structure also includes a floating walkway, which comprises an outer shell and corner brackets fixed to the bottom of the shell. The corner brackets are fixedly connected to the pool body, and a textured anti-slip layer is provided on the top of the outer shell. To improve the buoyancy of the pool body, the floating walkway can be fixed around the pool body. The floating walkway can be a hollow structure made of one-piece injection-molded plastic. Fixing the floating walkway around the pool body can improve the buoyancy of the pool body and make the pool body more load-bearing. Soil, artificial mountains, and other items can be placed inside the pool body. At the same time, the floating walkway can also function as a walkway, making it convenient for visitors to walk on the water.

[0029] Furthermore, the unit structure also includes floating flower racks, which consist of floats and supports and flower pots mounted on the floats. To enhance the three-dimensional effect of the entire floating island, the unit structure further includes floating flower racks. The floats of the floating flower racks can adopt a structure similar to that of the floating walkways, ensuring sufficient buoyancy. The flower pots mounted on the floats can be directly fixed to them or are potted plants for sale, with the potted plants fixed to the floats. The supports can function as railings; floating flower racks are installed adjacent to the floating walkways, using the supports on the floating flower racks as guardrails to prevent visitors from falling or slipping. The supports can also have various structures, such as flag structures, sail structures, shell structures, house structures, tripod structures, etc. Different support structures can make the overall design of the floating island more unique and aesthetically pleasing, enriching its overall appearance.

[0030] Furthermore, the support frame is equipped with a grid for hanging items. The grid allows vines and flowers planted in pots to easily climb on the support frame, which can also be used to hang colored lights, light tubes, hanging baskets, etc. In addition, the grid reduces large gaps on the support frame, which is beneficial to the safety of people walking on the floating island.

[0031] Furthermore, the floating island also includes an irrigation system, which comprises a main pipe and multiple outlet pipes connected to the main pipe, each outlet pipe being equipped with a control valve. Since the floating island of this invention can be used as a park, an irrigation system is provided to facilitate irrigation of the plants grown within the pond. The multiple outlet pipes of the irrigation system are respectively connected to the irrigation pipes of multiple pond bodies that require irrigation. The control valves can be manual valves or solenoid valves; opening and closing the control valves enables irrigation operations on the floating island.

[0032] During use, the pool body of the waterfront park planting, breeding and viewing equipment of this invention will age and be damaged and need repair. Regardless of whether it is the flood season or the receding season, and regardless of whether the pool body to be repaired is on a slope or in a deep water area, a new second waterproof bag can be installed over the pool body and the pool body can be repaired by manually tying ropes. The water between the second waterproof bag and the pool body can be drained by pumping to complete the repair work of the pool body. Attached Figure Description

[0033] Figure 1 This is a schematic diagram of one layout of the present utility model;

[0034] Figure 2 This is a schematic diagram showing the use of the pool body, the balance frame and the water bank slope of one of the structures of this utility model in conjunction with each other during the dry season.

[0035] Figure 3 for Figure 2 A schematic diagram showing the combined use of the pool body, balancing frame, and waterfront slope during the mid-flood season;

[0036] Figure 4 This is a schematic diagram showing the combined use of the pool body, another type of balance frame, and the waterfront slope of this utility model during the dry season.

[0037] Figure 5 for Figure 4 A schematic diagram showing the combined use of the pool body, balancing frame, and waterfront slope during the mid-flood season;

[0038] Figure 6 This is an exploded view of the structure of the pool body, horizontal plate and multiple balance frames of this utility model.

[0039] Figure 7 This is a schematic diagram of the structure of a balance frame in this utility model;

[0040] Figure 8 This is a schematic diagram of another type of balance frame in this utility model;

[0041] Figure 9 This is a schematic diagram of another type of balance frame in this utility model;

[0042] Figure 10 This is a schematic diagram of the structure of the support plate and the adjusting leg of this utility model when they are rotatably connected;

[0043] Figure 11 for Figure 10 A schematic diagram of another type of support plate rotatably connected to the adjusting leg;

[0044] Figure 12 This is a schematic diagram of the structure of the first pool body of this utility model;

[0045] Figure 13 This is another structural schematic diagram of the first pool body of this utility model;

[0046] Figure 14 This is a schematic diagram of the structure of the second pool body of this utility model;

[0047] Figure 15 for Figure 14 A schematic diagram of a type of support rod;

[0048] Figure 16 for Figure 14 Another structural diagram of the central support rod;

[0049] Figure 17 This is a schematic diagram of the structure of the floating walkway of this utility model;

[0050] Figure 18 These are schematic diagrams of five different structures of the floating flower rack of this utility model.

[0051] In the diagram: 1. Waterfront slope; 4. Ground pile; 200. Balance frame; 201. Support plate; 2011. Mounting groove; 2012. T-shaped rod; 2013. Rotating through hole; 2014. Rotating screw; 2015. Locking rod; 2016. Elastic element; 2017. Spring; 2018. Recessed hole; 2019. Threaded hole; 2010. Transition hole; 20111. Locking hole; 20112. Second support leg; 202. Upper screw; 2021. Threaded sleeve; 2022. Lower screw; 2023. Base plate; 203. Auxiliary plate; 204. Horizontal plate; 205. Third support leg; 206. First support leg; 207. Pool body; 300. First unit component; 301. 302. Baffle 303. Boss 304. Connecting through hole 305. Water level marking area 306. Overflow outlet 306. Connecting groove 308. Irrigation pipe 310. Second unit 3010. Third unit 3011. Floating box walkway 400. Shell 401. Angle frame 403. Sealing gasket 406. Anti-slip layer 404. Water pool 500. Soil pool 600. Wetland pool 700. Soil pot pool 800. Second pool body 900. Support frame 901. Support rod 902. Column 903. Waterproof bag 904. Floating flower rack 1000. Float 1005. Bracket 1001. Flower pot 1004. Grid 1002. Detailed Implementation

[0052] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0053] like Figure 1-18 As shown, a waterfront park planting, breeding and viewing device is installed in conjunction with the waterfront. The device includes a floating island, which includes multiple unit structures for planting plants. Each unit structure includes at least a pool body 300. Floating walkways 400 and floating flower racks 1000 can be selectively set around the pool body 300.

[0054] The main structure in the unit structure used for planting plants or raising animals is the pool body 300. The pool body 300 needs to have a cavity to hold soil, water, or other items, and it also needs to float on the water surface. Therefore, the pool body 300 can be designed as a cavity structure with an open top, such as float boxes or float troughs in the prior art (e.g., the floating structures described in patent applications CN200720104946.8 and CN201820578029.1). The connection method between unit structures can refer to the connection method between float boxes in the prior art (e.g., the structure described in patent application CN201610362133.2), or it can use the simplest rope connection. For example, fixing rings can be set on the pool body 300, and adjacent pool bodies 300 can be connected and fixed by ropes set between the two fixing rings. The pool body 300 can be equipped with floating walkways 400 and / or floating flower racks 1000 around its perimeter as needed. Both the floating walkways 400 and the floating flower racks 1000 are fixedly connected to the pool body 300.

[0055] Multiple modular structures are assembled to form a floating island. The floating island is adapted to the slope 1 of the waterfront to be modified. During installation, the floating island and the slope 1 are movably connected by ropes and ground stakes 4 (e.g., the structures described in patent applications CN200820059872.5, CN201420549427.2, and CN202021067531.X). This allows the floating island to float on the water surface or be in contact with the sidewall of the waterfront as the water level changes. To prevent excessive changes in the floating island's position, multiple anchor chains can be installed below it. These anchor chains reduce the distance the floating island moves with the water flow, ensuring that the floating island adapts to the position of the slope 1 after the water level drops.

[0056] The floating island structure assembled from the aforementioned modular units is similar to existing technologies. Its main function is to modify the waterfront slope 1, preventing watermarks from affecting the city's image during the dry season. The difference between this invention and existing technologies lies in the inclusion of balancing frames 200 for the modular units. The number of balancing frames 200 can be determined based on the width of the waterfront slope 1 along its perpendicular direction of inclination. If the width of the waterfront slope 1 is long, the modular units will extend along its width. Furthermore, if the length (or width) of a single modular unit along the width of the waterfront slope 1 is large, a single balancing frame 200 is insufficient to support it. Therefore, multiple balancing frames 200 arranged in rows along the width of the waterfront slope 1 are required. This ensures that the balancing frames 200 can adjust the position of the modular units during the dry season, ensuring that the modular units (pool body 300) can be positioned as horizontally as possible during the dry season for easy pedestrian access.

[0057] To enable the balancing frame 200 to perform the aforementioned functions, the balancing frame 200 of this utility model includes a support plate 201 that contacts the unit structure and multiple adjustable legs mounted on the support plate 201 for use with the waterfront sidewall. One or more of the multiple adjustable legs are telescopic rod structures. When the multiple adjustable legs are in contact with the waterfront sidewall, the support plate 201 is horizontally positioned relative to the waterfront sidewall. The support plate 201 is mainly used in conjunction with the pool body 300 of the unit structure. The support plate 201 is located below the pool body 300. If the bottom of the pool body 300 is a horizontal surface, the support plate 201 is a horizontal plate structure; if the outer bottom of the pool body 300 is a downwardly convex arc-shaped structure, the corresponding support plate 201 is a downwardly concave arc-shaped plate structure. The support plate 201 is used in close contact with the pool body 300, and the structure of the support plate 201 changes with the structure of the pool body 300. In this embodiment, the pool body 300 has a rectangular structure and the bottom of the pool body 300 is horizontally set. Correspondingly, in this embodiment, the support plate 201 has a horizontal plate structure.

[0058] Multiple adjustable legs are provided below the support plate 201. At least two adjustable legs are required for the cooperation of the support plate 201 to form a structure that supports a triangular frame-like structure. Furthermore, to ensure that the cooperation between the two adjustable legs and the support plate 201 can support the pool body 300, the installation position of the two adjustable legs must ensure that the direction of the line connecting the lower ends of the two adjustable legs is consistent with the inclination direction of the waterfront slope 1. If more than two adjustable legs are provided below the support plate 201, the placement of the adjustable legs below the support plate 201 should ensure that the multiple adjustable legs are arranged in a row, and the projection of the arrangement direction of the multiple adjustable legs needs to be parallel to the projection of the inclination direction of the waterfront slope 1, so that after the multiple adjustable legs are adjusted in length, the direction of the line connecting the lower ends of the multiple adjustable legs is consistent with the inclination direction of the waterfront slope 1.

[0059] In this embodiment, two adjustable feet are provided below the support plate 201. The distance between the two adjustable feet is determined according to the inclination angle of the waterfront slope 1 to be modified. If the inclination angle of the waterfront slope 1 to be modified is small, the distance between the two adjustable feet can be slightly larger so that the extension and retraction distance of the adjustable feet is not too large; similarly, if the inclination angle of the waterfront slope 1 to be modified is large, the distance between the two adjustable feet can be slightly smaller so that the extension and retraction distance of the adjustable feet is not too large. (Refer to...) Figure 2-5 As shown, when a floating island composed of multiple unit structures is used in conjunction with a waterfront slope 1 with different inclination angles, the spacing between the two adjustable legs under the support plate 201 of the balance frame 200 used in conjunction with different waterfront slopes 1 is different in order to adapt to the different inclination angles of the waterfront slope 1.

[0060] In the above structure, the adjusting feet are positioned below and perpendicular to the support plate 201. This configuration of the balancing frame 200 is suitable for waterfront slopes 1 with an inclination angle of less than 30°. If the inclination angle of the waterfront slope 1 is between 31° and 90°, and the adjusting feet are positioned perpendicular to the support plate 201, there will be difficulty in contact between the adjusting feet and the waterfront slope 1, preventing the balancing frame 200 from fulfilling its intended purpose. Therefore, at the inclination angle of the waterfront slope 1, the adjusting feet are fixed at an inclination to the support plate 201 below it, and the adjusting feet are inclined towards the waterfront slope 1 from the support plate 201.

[0061] To enable the adjustable legs to be fixed both perpendicularly and inclined to the support plate 201, this utility model also provides a balance frame 200 structure. The installation angle between the adjustable legs of the balance frame 200 and the support plate 201 is adjustable. For details, please refer to... Figure 10As shown, a mounting groove 2011 is provided below the support plate 201. A rotatable T-shaped rod 2012 is provided in the mounting groove 2011. The two horizontal sections of the T-shaped rod 2012 are respectively inserted into two rotatable through holes 2013 opened on the side wall of the mounting groove 2011. The vertical section of the T-shaped rod 2012 is fixedly connected to the adjusting support foot. The rotating through hole 2013 has a stepped hole structure with three progressively smaller sections, including a sequentially connected insertion hole, transition hole 2010, and threaded hole 2019. The horizontal section of the T-shaped rod 2012 is inserted into the insertion hole. A locking hole 20112 with an inwardly recessed design is provided at the end of the horizontal section of the T-shaped rod 2012. The centerline of the locking hole 20112 is parallel to the through hole direction of the rotating through hole 2013. An elastic block is provided inside the locking hole 20112, and multiple springs 2017 are provided between the elastic block and the inner wall of the locking hole 20112. Under the action of the springs 2017, the elastic block partially extends out of the end of the locking hole 20112. A slidingly connected locking rod 2015 is provided inside the transition hole 2010. The inner wall structure of the transition hole 2010 is adapted to the shape of the locking rod 2015, ensuring that the locking rod 2015 slides within the transition hole 2010. One end of the locking rod 2015 can be inserted into the locking hole 20112, and the other end of the locking rod 2015 has a recessed hole 2018, which is positioned opposite the threaded hole 2019. A threaded rotating screw 2014 is provided in the threaded hole 2019. One end of the rotating screw 2014 is fixed to a rotating handle outside the threaded hole 2019, and the other end of the rotating screw 2014 is inserted into the recessed hole 2018 of the locking rod 2015. The cross-sections of the locking hole 20112, the transition hole 2010, and the locking rod 2015 can be hexagonal, octagonal, rectangular, square, etc., and the cross-section of the locking hole 20112 does not have to be circular. In this utility model, the cross-section of the locking hole 20112 is hexagonal, and correspondingly, the cross-sections of the locking rod 2015 and the transition hole 2010 are also hexagonal. In use, if... Figure 11As shown, this is the initial state. In this state, the T-shaped rod 2012 can be rotated as needed. After the T-shaped rod 2012 is rotated to a suitable position, an external force is applied to the rotating screw 2014, causing the rotating screw 2014 to rotate and extend into the locking rod 2015. This pushes the locking rod 2015 into the locking hole 20112 and compresses the elastic element 2016 until the locking rod 2015 is firmly locked in the locking hole 20112, thus locking the rotating screw 2014 and the T-shaped rod 2012. When the locking rod 2015 is inserted into the locking hole 20112, the T-shaped rod 2012 can be rotated appropriately to ensure smooth insertion of the locking rod 2015 into the locking hole 20112. Of course, the locking rod 2015 can also be designed as a threaded rod structure and integrated with the rotating screw 2014, as shown in the figure. By providing an internal thread to the inner cavity of the locking hole 20112, the rotation and locking of the T-shaped rod 2012 can be achieved by moving the rotating screw 2014. It is worth noting that regardless of... Figure 10 The structure in the middle, or Figure 11 In the structure, each T-shaped rod 2012 is equipped with two mating rotating bolts 2014. The threads of the two rotating bolts 2014 must be set in opposite directions to ensure that the T-shaped rod 2012 maintains good stability under external force when the rotating bolts 2014 lock it in place. To ensure the rotatable connection between the T-shaped rod 2012 and the two rotating through holes 2013, the two horizontal sections of the T-shaped rod 2012 can be designed as cylindrical structures, and bearings can be installed between the two horizontal sections of the T-shaped rod 2012 and the inner walls of the two rotating through holes 2013 for rotatable connection.

[0062] To allow for variable length adjustment of the support legs, the adjustment legs of this invention can be entirely telescopic rods, or partially telescopic rods. For example... Figure 7 As shown, the balance frame 200 of this structure is provided with two adjustable legs. Both adjustable legs are fixed perpendicularly to the support plate 201. One of the adjustable legs is a rod-shaped structure with a tapered lower end, which is called the first leg 207; the other adjustable leg is a telescopic rod structure, which is called the second leg 202. The second support leg 202 includes an upper screw 2021 and a lower screw 2023 arranged vertically. A threaded sleeve 2022 is provided between the upper screw 2021 and the lower screw 2023. The upper screw 2021 is fixedly connected to the support plate 201. A tapered insertion section is also provided at the lower end of the lower screw 2023, and a weight-increasing base 203 is fixed on the lower screw 2023 to increase the stability of the entire balance frame 200. The threaded sleeve 2022 fitted on the upper screw 2021 and the lower screw 2023 can be used to change the distance between them. The distance between the upper screw 2021 and the lower screw 2023 can be changed simply by rotating the threaded sleeve 2022 with external force, thereby making the second support leg 202 a telescopic rod structure. Figure 8As shown, the balance frame 200 of this structure is equipped with two adjustable legs, both of which are vertically fixed to the support plate 201, and both adjustable legs are telescopic rod structures. The structure of these adjustable legs is the same as the second leg 202 described above. Figure 9 As shown, the balance frame 200 of this structure is equipped with two adjustable legs, both of which are connected to the support plate 201 at varying angles. Both adjustable legs are telescopic rod structures, and this third adjustable leg is designated as the third leg 206. The third leg 206 is similar in structure to the second leg 202, except that a T-shaped rod 2012 is fixed to the end of the upper screw 2021. The fit between the T-shaped rod 2012 and the support plate 201 is described in reference [reference needed]. Figure 10 , 11 Settings in the middle.

[0063] Since the pool body 300 of this utility model is a rectangular structure, in order for the support plate 201 to support the pool body 300, the support plate 201 in this utility model is a rectangular plate structure. Two adjustable feet at the bottom of the support plate 201 are arranged along the length of the support plate 201, which is also arranged along the width of the pool body 300. An auxiliary plate 204 is vertically fixed at any end of the support plate 201 along its length, and the auxiliary plate 204 is used to contact the side wall of the pool body 300. In actual use, multiple balance frames 200 are arranged along the length of the pool body 300. To ensure better support of the multiple support plates 201 of the multiple balance frames 200, such as... Figure 6 As shown, a horizontal plate 205 is provided on multiple support plates 201 along the length of the pool body 300. The horizontal plate 205 and multiple balance frames 200 work together to provide stable support for the pool body 300, ensuring that during the dry season, the pool body 300 and the multiple balance frames 200 have sufficient support force, so that the relative position of the pool body 300 and the water bank slope 1 is fixed.

[0064] Furthermore, the balancing frame 200 is fixedly connected to the sidewall of the waterfront, or the balancing frame 200 is fixedly connected to the unit structure. The main function of the balancing frame 200 is to ensure that the unit structure can be set horizontally or basically horizontally when it is supported in conjunction with the waterfront slope 1 during the dry season. Therefore, the balancing frame 200 only needs to support the unit structure during the dry season. For this reason, the balancing frame 200 can be fixed to the horizontal slope or to the unit structure. If the hardness of the waterfront slope 1 is low, fixing the balancing frame 200 to the horizontal slope can allow the adjusting feet to penetrate deep enough into the ground, ensuring that the support plate 201 will not tilt severely due to poor installation stability of the support plate 201 when supporting the unit structure falling during the dry season. If the waterfront slope 1 has been reinforced with concrete structure, fixing the balancing frame 200 to the unit structure during installation can avoid the problem of difficulty in installing the balancing frame 200 on the waterfront slope 1.

[0065] Furthermore, the unit structure includes a pool body 300, which is equipped with a waterproof layer. The pool body 300 has an overflow outlet 306 and a water level indicator area 305 at its upper part, and is also connected to an irrigation pipe 310. The pool body 300, according to design requirements, needs to fulfill functions such as planting and aquaculture. Therefore, the pool body 300 needs to be waterproof. Thus, in this invention, a waterproof layer can be provided inside or outside the pool body 300. The waterproof layer can be made of PE waterproof fabric as in the prior art, or it can be made of waterproof roll material (PVC coated fabric, PU coated fabric, etc.). The pool body 300 serves as a supporting frame 901, and the waterproof layer provides waterproofing. The combination of the pool body 300 and the waterproof layer allows the pool body 300 to have both buoyancy and waterproofing. Of course, the pool body 300 is also a hollow structure with an open upper end, obtained by injection molding or blow molding of PVC or PE material. Meanwhile, the pool body 300 can also be made of metal. If the overall area of ​​the waterfront slope 1 to be modified is large, the pool body 300 should also be large enough in its design. In this case, the pool body 300 can be made of metal, similar to a ship hull, and thus have sufficient buoyancy. Since the pool body 300 is used for planting plants or raising animals, to prevent excessive water accumulation and submersion during the rainy season, the pool body 300 of this invention is equipped with an overflow outlet 306. The overflow outlet 306 has a through-cavity structure that penetrates the side wall and waterproof layer of the pool body 300, ensuring that the water level in the pool body 300 can drain through the overflow outlet 306 when it is higher than the overflow outlet 306. Of course, the number of overflow outlets 306 can be adapted to the inner volume of the pool body 300 to ensure that the water flow from the overflow outlets 306 can meet the demand during heavy rainfall, preventing the pool body 300 from submerging. A water level marking area 305 can be set at the overflow outlet 306, which can use water level scale lines or different colored marking strips. The purpose of the marking area 305 is to ensure that the water level in the pool body 300 is within the warning range, so as to avoid the problem of the pool body 300 submerging due to high water level. Of course, if the water level in the pool body 300 is too high, it can be drained. However, when the temperature is too high in summer, the water content in the pool body 300 will increase. At this time, whether planting plants or raising animals in the pool body 300, water replenishment is required. For this purpose, the pool body 300 is also equipped with an irrigation pipe 310. The irrigation pipe 310 can be equipped with regulating valves, control valves (on / off valves), etc., to facilitate automated control and irrigate the plants planted in the pool body 300 to achieve the purpose of water replenishment.

[0066] To facilitate the production, transportation, and installation of the pool body 300, this utility model designs the pool body 300 as a cavity structure with an open top, assembled from multiple unit components. The unit components can be manufactured and processed in a factory, and units with the same structure are easy to transport, saving transportation costs. Simultaneously, the simple structure of the unit components facilitates on-site assembly. Specifically, the unit components are semi-enclosed plate-like structures with a through-cavity structure. The front view of the unit components can be U-shaped, V-shaped, or ︺-shaped, etc. Since the pool body 300 of this utility model is a rectangular structure with an open top, the unit components in this utility model consist of a horizontally arranged strip plate and two vertically arranged connecting plates at both ends of the strip plate, forming a semi-enclosed plate-like structure. To facilitate the connection of any adjacent unit components, any two unit components are spliced ​​along the two ends of the through-cavity using a matching connecting groove 308 and a connecting boss 303. Multiple unit components, when sequentially assembled, can only form a trough-shaped structure. To enable this trough-shaped structure to form the pool body 300, two baffles 302 are provided at each end of the unit components at both ends of the connection direction. The two baffles 302, together with the multiple unit components, form the pool body 300. For ease of distinction, during production, the unit component with the baffles 302 can be referred to as the second unit component 3010, and the unit component without the baffles 302 can be referred to as the first unit component 301. The first unit component 301 and the second unit component 3010 can be mass-produced separately. To enable adjacent unit components to be fixedly connected by the connection groove 308 and the boss 303, in this embodiment, the connection groove 308 is formed at the end of the unit component along the cavity direction, extending inward and recessed outward along the inner side wall; the boss 303 is formed at the end of the unit component along the cavity direction, extending inward and recessed inward along the outer side wall; each mating connection groove 308 and boss 303 are fixed by a locking device.

[0067] Both the connecting groove 308 and the boss 303 extend along the opening of the unit component. Each unit component can have one connecting groove 308 and one boss 303 at each end of its cavity. Therefore, the structures of each unit component are basically similar. Multiple unit components can be assembled by using the installation sequence of the connecting grooves 308 and bosses 303. Alternatively, for two mating unit components, one unit can have two connecting grooves 308 at each end of its cavity, and the other unit can have two bosses 303 at each end of its cavity. Multiple unit components can be assembled by using the installation sequence of the connecting grooves 308 and bosses 303. Figure 13As shown, the present invention includes three types of unit components: a first unit component 301, a second unit component 3010, and a third unit component 3011. The first unit component 301 is a structure located at both ends of the pool body 300. A baffle 302 is fixed to one end of the first unit component 301 along its cavity, and a connecting groove 308 is provided at the other end. The second unit component 3010 has bosses 303 at both ends of its cavity. The third unit component 3011 has connecting grooves 308 at both ends of its cavity. In use, the third unit component 3011 can be used or not, depending on the required length of the assembled pool body 300. Figure 12 As shown, the pool body 300 of this structure does not include a third unit 3011; the pool body 300 of this structure is composed of two first unit 301s and one second unit 3010 joined together. Figure 13 As shown, the pool body 300 of this structure includes a third unit 3011. The pool body 300 of this structure is assembled from two first unit 301s, two second unit 3010s, and one third unit 3011. Of course, when the length of the pool body 300 is longer, it can be assembled using a limited number of first unit 301s, second unit 3010s, and third unit 3011s according to the relationship between the connecting groove 308 and the boss 303.

[0068] Correspondingly, when the connecting groove 308 and the boss 303 are fixedly connected, a locking device can be used. The locking device uses multiple bolts, and a sufficient number of connecting through holes 304 are set between the connecting groove 308 and the boss 303. By using multiple bolts to connect and fix the multiple connecting through holes 304 on the boss 303 and the multiple connecting through holes 304 on the connecting groove 308 respectively, the assembly and fixing of the two unit components can be realized. In order to facilitate the fixing of the two unit components, a gasket can be set between the connecting groove 308 and the boss 303. By using the gasket, the sealing effect at the connection position of the two unit components can be reduced, and the problem of damage when the connecting groove 308 and the boss 303 are connected can also be reduced.

[0069] To improve the crack resistance at the connection point between two adjacent unit components, such as Figure 12 , 13 As shown, multiple reinforcing ribs (not shown) extending outwards can be provided at both ends of the cavity of each unit component. The reinforcing ribs are distributed along the ends of the cavity of the unit component. At the same time, multiple insertion slots are provided on the unit component to cooperate with the multiple reinforcing ribs, ensuring that when two unit components are connected, the multiple reinforcing ribs of any unit component can be inserted into the multiple insertion slots of the other unit component. Since the reinforcing ribs are arranged along the splicing direction of multiple unit components, the crack resistance at the connection point of adjacent two unit components can be increased.

[0070] The pool body 300 with the above-described structure is easy to process and assemble. Since the length of each unit structure can be varied during the entire floating island design process, producing each size of pool body 300 separately would be inconvenient and costly. However, by designing the pool body 300 as a modular structure, with each unit having the same structure, various pool bodies 300 of different lengths can be constructed through a limited number of splicing operations, making the processing of the pool body 300 much easier. Furthermore, the cooperation between the connecting groove 308 and the boss 303 facilitates the splicing of two adjacent unit components, ensuring that the joint between the two unit components is essentially flush, which is convenient for the installation of the waterproof layer.

[0071] To further reduce the overall weight of the pool body 300, another embodiment of this utility model provides a pool body 300 structure. Specifically, the pool body 300 includes a built-in mounting frame and an external waterproof bag 904, the waterproof bag 904 being fitted over the mounting frame and tensioned by the mounting frame. For ease of distinction, the pool body 300 described above is referred to as the first pool body 300, and the pool body 300 in this embodiment is referred to as the second pool body 900. The second pool body 900 is larger than the first pool body 300 (…). Figure 12 , 13 As shown, the overall weight of the mounting frame can be designed to be lighter, making the second pool body 900 more conducive to production and transportation, and suitable for mass production and use. Specifically, in its installation, the mounting frame adopts a rectangular frame structure spliced ​​from multiple PVC or PE pipes; the waterproof bag 904 can be set as a cavity structure adapted to the mounting frame structure, so that the waterproof bag 904 can be fitted over the mounting frame and tensioned by the mounting frame, and the waterproof bag 904 can be fixed to the mounting frame by ropes. Of course, the mounting frame can also be set as a cylindrical frame structure, and the waterproof bag 904 can be set as a cavity structure adapted to this structure, so that the waterproof bag 904 can be fitted over the mounting frame and tensioned by the mounting frame.

[0072] Furthermore, to facilitate the production, transportation, and installation of the mounting frame, this embodiment features a split-type structure. Specifically, the mounting frame includes two spaced-apart support frames 901 and multiple support rods 902 positioned between the two support frames 901. Each support rod 902 is detachably fixed to both ends of the two support frames 901. Each support rod 902 is a telescopic rod structure with a variable length. The support frames 901 can be rectangular, circular, or other ring-shaped structures, and the support rods 902 can be telescopic rod structures. This allows the variable-length support rods 902 to be combined into mounting frames of various sizes, facilitating the placement of the waterproof bag 904 on the mounting frame and its tensioning by the mounting frame. Figure 14 , 15As shown, the support frame 901 has a rectangular frame structure. The two horizontal bars and two vertical bars in the rectangular frame can be connected by mortise and tenon joints. Of course, the support frame can also be set as an integrated structure during the production process. Four support rods 902 are set between the two support frames 901. The four support rods 902 are rectangularly distributed, and the two ends of each support rod 902 are respectively connected to the two support frames 901 by mortise and tenon joints. The support rods 902 have a telescopic rod structure. Specifically, the support rod 902 includes two fixed rods and a rotating screw set between the two fixed rods. The two fixed rods are respectively connected to the two support frames 901 by mortise and tenon joints, and the two ends of the rotating screw are respectively threaded to the two ends of the two fixed rods. The rotating screw is threaded to the two fixed rods by left-hand thread and right-hand thread respectively. In use, external force is applied to the rotating screw, which drives the rotating screw to rotate, causing the two fixed rods to move relative to each other or back to back, for fitting or tensioning the waterproof bag 904.

[0073] The telescopic design of the support rod 902 is intended to facilitate the smooth mounting of the waterproof bag 904 onto the mounting frame and its tensioning by the frame. To achieve the purpose of tensioning the waterproof bag 904 by the mounting frame, the support rod 902 can also be configured as a fixed-length rod structure, with a tensioning element fixed to it. The tensioning element can be a turnbuckle, a technology currently available. Figure 16 As shown, tensioning members are provided on the support rod 902 for tightening the pull ropes fixed to the waterproof bag 904. This invention has tensioning members fixed on two support rods 902 located at the upper installation position. Each tensioning member works with two pull ropes, one end of each pull rope is fixedly connected to the waterproof bag 904, and the other end of the pull rope is attached to one end of a turnbuckle. Since the mounting frame has a rectangular frame structure, two tensioning members are sufficient to tighten and fix the open end of the waterproof bag 904 to the mounting frame. Of course, after fixing the waterproof bag 904 with the tensioning members, the connection between the waterproof bag 904 and the support rod 902 with the tensioning members can be further reinforced with ropes.

[0074] To facilitate the mounting bracket securing the 904 waterproof bag, such as... Figure 14 As shown, four uprights 903 can be provided on the mounting frame, and hanging holes that cooperate with the four uprights 903 can be provided on the waterproof bag 904 to ensure that the waterproof bag 904 can be fixed on the mounting frame.

[0075] After the mounting bracket and waterproof bag 904 are fixed to form the second pool body 900, then, according to usage requirements, components such as irrigation pipe 310 and overflow outlet 306 are installed on the second pool body 900. When installing the irrigation pipe 310 connector, holes are drilled in the waterproof bag 904, and waterproof gaskets are installed on both sides of the waterproof bag 904. Through the cooperation of the waterproof gaskets on the inner and outer sides of the waterproof bag 904 and the connector, the purpose of connecting components on the waterproof bag 904 can be achieved. This operation is a standard operation in the field and does not affect the strength of the waterproof bag 904 after the hole is drilled. Similarly, when creating the overflow outlet 306 on the waterproof bag 904, holes are drilled in the waterproof bag 904, and annular waterproof gaskets are installed on both sides of the waterproof bag 904. The two waterproof gaskets are then locked with bolts.

[0076] Regardless of which type of pool body 300 is used in the unit structure, the pool body 300 can be used in conjunction with the balance frame 200.

[0077] Furthermore, to ensure that the floating islands assembled from the modular structures function as a water park, they also need to be walkable. Therefore, in addition to the pool body 300, the modular structure of this invention may also include a floating walkway 400. The floating walkway 400 includes a shell 401 and corner brackets 403 fixed to the bottom of the shell 401. The corner brackets 403 are fixedly connected to the pool body 300. A patterned anti-slip layer 404 is provided on the top of the shell 401. The main function of the floating walkway 400 is to ensure sufficient buoyancy for public walking. Therefore, the structure of the floating walkway 400 can be any structure that can float on water, as described in patent applications CN202221307036.0 and CN201610362133.2. Alternatively, the floating walkway 400 can also be a box-shaped structure with a sealed cavity, made of PVC or PE material through injection molding / blow molding. Figure 17As shown, in this utility model, the floating walkway 400 needs to both meet the function of public walking and provide more buoyancy for the pool body 300. Therefore, the floating walkway 400 of this utility model is equipped with an outer shell 401 and corner brackets 403 fixed below the outer shell 401. The outer shell 401 can be a box with a sealed cavity structure as in the prior art. To improve the anti-slip effect of the outer shell 401, an anti-slip layer 404 is provided on the outer shell 401. The anti-slip layer 404 can be an anti-slip coating or a raised anti-slip pattern. Adjacent outer shells 401 can be fixedly connected by ropes. Only pull rings need to be provided on the outer shell 401, and adjacent outer shells 401 can be connected by ropes fixed to the two pull rings. The outer shell 401 is fixed to the pool body 300 using the corner brackets 403. The corner brackets 403 are connected to the outer wall of the pool body 300 by bolts. To increase the waterproof effect, sealing gaskets 406 can be placed during the bolt fixing process. When bolting the bracket 403 to the waterproof bag 904, waterproof gaskets should be installed on both the inner and outer sides of the waterproof bag 904 to ensure the fixation of the outer shell 401 to the second pool body 900. Alternatively, the float walkway 400 can be omitted from the second pool body 900 and placed outside the first pool body 300 to avoid the problem of unstable connection between the float walkway 400 and the second pool body 900.

[0078] The floating walkway 400 is designed solely for public walking. However, water parks lack the stability of land parks. To prevent falls and injuries caused by water currents while walking on the floating islands, the unit structure of this invention may also include a floating flower rack 1000. The floating flower rack 1000 includes floats 1005 and supports 1001 and flower pots 1004 mounted on the floats 1005. The floats 1005 primarily provide buoyancy and can be injection-molded / blow-molded boxes with sealed cavities made of PVC or PE material. The floats 1005 can also be connected by ropes. The floating flower rack 1000 is positioned close to the floating walkway 400 to ensure that supports 1001 are available around the floating walkway 400 for handholds. The support frame 1001 functions as a railing. Floating flower racks 1000 are installed adjacent to the floating walkway 400, and the support frame 1001 on these floating flower racks acts as a guardrail to prevent visitors from falling or slipping. Furthermore, the structure of the support frame 1001 can be varied, such as… Figure 18 As shown, the bracket 1001 can be roughly shaped into a red flag structure. Figure 18 The structure of (3) in the middle), the sail structure ( Figure 18 The structure of (4) in the middle), the structure of the sun and moon shell ( Figure 18 The structure of the middle (5), the house structure ( Figure 18 The structure of (1) and the tripod ( Figure 18The structure of the bracket 1001 varies, and different structures can make the overall appearance of the floating island more unique and aesthetically pleasing, enriching the shape of the entire floating island. Of course, the bracket 1001 can also be a square bracket, a round bracket, a crescent-shaped bracket, or a heart-shaped bracket to enrich the shape of the floating island and make it more beautiful. The flower pot 1004 set on the float 1005 can be directly fixed on the float 1005, or it can be a potted plant for sale, which is fixed on the float 1005.

[0079] Furthermore, to enrich the function of the support 1001, a grid 1002 for hanging items is provided on the support 1001. The grid 1002 is a mesh structure woven from mesh cloth or rope. The grid 1002 allows vines and flowers planted in flower pots 1004 to climb on the support 1001. At the same time, colored lights, light tubes, hanging baskets, etc. can also be hung on the support 1001. In addition, the grid 1002 can reduce the large gaps on the support 1001, which is beneficial to the safety of people walking on the floating island.

[0080] The unit structure of this utility model includes at least a pool body 300, and can also be equipped with floating walkways 400 and / or floating flower racks 1000 around the pool body 300 to form floating islands with different structures. Since each pool body 300 can be set horizontally even in the dry season under the action of the corresponding balancing frame 200, the entire floating island also functions as a water park. To make the construction and management of the floating island more convenient, the specific process from design to management of the entire floating island can refer to the following steps.

[0081] Step 1—Contingency Plan Customization:

[0082] 1. Unit Division and Specimen Distribution: Based on design requirements, the distribution structure of the floating island park is provided, including the types of trees to be planted, the types of animals to be raised, and the locations of walkways. Pond body 300 filled with soil becomes soil pond 600; pond body 300 filled with water becomes water pond 500; placing soil-filled flower pots 1004 in water pond 500 creates a wetland pond; placing soil-filled flower pots 1004 in pond body 300 creates soil pond 800. This allows for the creation of ponds with different functions to meet various needs. Using these different functional ponds, artificial mountains, fountains, pavilions, etc., can be added to pond body 300 to enrich the overall shape of the floating island. When designing the layout, it is necessary to consider the dry season, ensuring that the components around pond body 300 can cooperate with each other after the balancing frame 200 supports each individual pond body 300.

[0083] 2. Based on the layout diagram, considering production capacity, load-bearing capacity, etc., ensure that the load-bearing capacity of each unit structure is suitable, and that the buoyancy and load-bearing capacity of the floating islands spliced ​​together by multiple unit structures are suitable.

[0084] Step 2—Base Setup:

[0085] During the dry season, the waterfront slope 1 to be decorated is cleaned. At this time, the balancing frame 200 can be fixed to the waterfront slope 1 in the preset direction, ensuring that the support plate 201 of the balancing frame 200 is set horizontally. At the same time, multiple ground stakes 4 need to be set to fix the entire floating island, so that the floating island and the multiple ground stakes 4 can be moved and connected by ropes.

[0086] Step 3—Warehouse Setup:

[0087] All the components, fertilizers, medicines, tools, power supplies, etc. required for building the floating island will be transported to the construction site, and a duty room and observation tower will be set up for rest, office and monitoring.

[0088] Step 4—Assembly of the 300 finished components of the pool body:

[0089] According to design requirements, the components are assembled into the first pool body 300 and / or the second pool body 900.

[0090] Step 5—On-site arrangement and combination of the pool body 300:

[0091] Based on the assembled pool body 300, each pool body 300 is placed on the horizontal plate 205 of the multiple matching balance frames 200 to ensure that the pool body 300 is in place.

[0092] Step 6—Installation and setup of the 400mm floating walkway and 1000mm floating flower rack:

[0093] According to design requirements, a corresponding number of floating walkways 400 are fixed around the perimeter of the corresponding pool body 300, and floating flower racks 1000 are installed around the floating walkways 400 to ensure that there are support brackets 1001 for holding onto around the floating walkways 400. The floats 1005 are connected to each other or to the outer shell 401 via ropes. After the floating walkways 400 and floating flower racks 1000 are installed in place, the pool bodies 300 can be fixedly connected to each other, or to the floats 1005, or to the outer shell 401 to form the frame structure of the floating island. A corresponding number of anchor chains are installed on the frame structure of the floating island to prevent the floating island from moving a certain distance with the water flow.

[0094] Step 7—Set up a 500 m³ water tank according to the plan:

[0095] According to the load-bearing requirements, lights, fountains, rocks, green plants, aquatic plants, and ornamental fish will be installed within the corresponding 300mm pool body.

[0096] Step 8—Set up a 700m wetland pond according to the plan:

[0097] According to the load-bearing requirements, lotus flowers, canna lilies, and aquatic plants are planted within the corresponding 300mm pool body.

[0098] Step 9—According to the pre-set soil pool 600:

[0099] According to the load-bearing requirements, trees taller than a person, such as osmanthus, camphor, peony, herbaceous peony, plum blossom, orchid, etc., are planted within the corresponding 300m of the pool body to form a tree-lined park.

[0100] Step 10—Set up the wetland pool according to the plan:

[0101] According to the load-bearing requirements, soil pots 1004 are placed in the corresponding pool body 300 to facilitate gardening, planting flowers and grass, aquatic green plants, etc.

[0102] Step 11—Set up an 800 m³ earthen pit according to the plan:

[0103] According to the load-bearing requirements, place soil pots 1004, rare and exotic plants, indoor flower decorations, etc. in the corresponding pool body 300.

[0104] Step 12—Setting up the fertilization, spraying, and watering network system:

[0105] For details regarding the detailed pipe network, including drip irrigation and fertilizer (pesticide) dilution design, please refer to the management process described in patent application number CN202311059780.2. The design of each pipe can be achieved by installing corresponding irrigation pipes 310 within each pool body 300 according to usage requirements.

[0106] Step 13—Automatic Management of Sensor, Instrument, and Computer System Settings:

[0107] For details, please refer to the management process described in the patent application number CN202311059780.2.

[0108] Step 14—Night Scene Lighting System Settings:

[0109] When setting the theme for the lighting, different styles of lighting effects can be set, such as quiet, serene, or seasonal, which can change with the seasons. For details, please refer to the management process described in the patent application number CN202111278412.8.

[0110] Step 15—Music Surround System Setup:

[0111] Broadcasting can be set up to play Western, classical, and light music, etc. For details, please refer to the management process described in the patent application with patent number CN201520653639.X.

[0112] Step 16—Pavilion and Building System Setup:

[0113] First, lay the base plate on the 300-meter-long pool body, and then install lightweight pavilions, flower racks, and other structures such as toilets.

[0114] Obviously, this utility model is not limited to planting and breeding in waterfront parks. In other vast non-scenic areas such as streams, rivers, lakes, ponds, and seashores, barren areas can be transformed into fertile land. Using the 300-meter pond body, a large amount of vegetables, fruits, Chinese medicinal herbs, grains, etc. can be planted, and a large amount of fish or other carnivorous animals can also be raised.

[0115] In summary, the equipment designed in this utility model utilizes factory-scale assembly line production, decentralized warehousing and transportation, on-site installation, and modular assembly into a pool body 300 to support soil and water, comprising a water pool 500, a soil pool 600, a wetland pool 700, a water-soil pool 800, and an earthen pool 800. It also includes a lightweight pavilion / paving platform for viewing and photography. A floating walkway 400 enhances buoyancy and provides planting and management trails, a fertilization, spraying, and watering system, a night lighting system, a surround sound system, and a fountain system. These systems are interconnected with mobile phones and computers for interactive online management and guidance. The load-bearing capacity is matched to buoyancy, creating a shady forest environment with a well-planned understory garden. The pool body 300 is prominently covered with flower racks and potted plants for flowers and evergreen vines. Steep slopes, artificial culverts, and dry bridge piers are also included. The pool body 300... The flower trellis is covered with evergreen vines, and the 1004 flowerpots always provide shade regardless of the water level, whether it's the dry or flood season. The 200-meter balancing frame overcomes the problem of the 300-meter pool tilting due to the landing slope during the dry season. The method of creating a waterfront park with fluctuating water levels is processed through an online interactive IoT system, ensuring standardized management of each execution or installation step. This allows for a more intuitive, convenient, and efficient understanding of problems encountered throughout the process. Problems are compared with best practices, and the best practices are selected and implemented. The system stores the solutions for future corrections, allowing for direct access to relevant instructions and data to avoid repeated trial and error. This standardization contributes to carbon neutrality, green development, and ecological intelligence, creating a more livable and scenic environment for global climate change mitigation. It addresses this critical need by contributing to global climate change and air pollution control, and also expands its applications to new areas.

[0116] Based on the aforementioned waterfront park planting, breeding, and viewing equipment, this utility model also provides a maintenance method. During use, the pool body 300 within the unit structure of the floating island may age and require replacement. However, since plants are planted or animals are raised within each pool body 300, replacing the entire pool body 300 would make it difficult to remove the items inside. Therefore, this utility model also facilitates the repair of aging or damaged pool bodies 300. Specifically, during the dry season, when there is still a certain gap between the pool body 300 to be repaired and the matching horizontal plate 205, the floating walkway 400 and floating flower rack 1000 around the pool body 300 are disassembled (with a person standing on the horizontal plate 205). Then, a newly equipped waterproof bag 904, larger than the size of the pool body 300, is placed on the horizontal plate 205, allowing passage through the horizontal plate 205. The four corners of the waterproof bag 904 are fixed to the uprights 903. As the water level gradually recedes, under the weight of the pool body 300 itself, the new waterproof bag 904 (i.e., the second waterproof bag) fits snugly against the original pool body 300 under the combined force of human intervention and the weight of the pool body 300 (regardless of whether it contains soil or water, it does not need to be removed). Then, the opening of the waterproof bag is tightened. Finally, the previously removed exposed components, such as the floating walkway 400 and the floating flower rack 1000, are reinstalled, thus completing the entire repair work. The repair method of this invention applies to both the injection-molded pool body 300 (… Figure 12 , 13 As shown), the pool body 300 is composed of a mortise and tenon structure plus a waterproof bag of 904. Figure 14 As shown, aging can be repaired by manually attaching a waterproof bag 904 to the original pool body 300 at the repair shop.

[0117] Of course, when a new waterproof bag 904 is installed over the pool body 300, there is water inside the waterproof bag 904. As the pool body 300 falls with the water level, the pool body 300 will squeeze the water in the waterproof bag 904, squeezing out some of the water. The remainder can be discharged by suction, avoiding excess water accumulation in the new waterproof bag 904, which would affect the load-bearing capacity of the pool body 300.

[0118] During the flood season or in deep water areas, the pool body 300 to be repaired can also be repaired by first removing the external parts, then manually tying ropes and pulling the bottom cover of the new waterproof bag 904 (second waterproof bag) outside the pool body 300, and then pumping water and manually fixing the opening of the waterproof bag 904.

[0119] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A waterfront park planting and breeding ornamental equipment, which is installed in cooperation with a waterfront, the equipment comprising a floating island, the floating island being connected with the waterfront and being able to float on the water surface or be arranged in contact with the side wall of the waterfront according to the change of the water level of the waterfront, the floating island comprising a plurality of unit structures for planting plants, characterized in that: The unit structure is provided with at least one balancing frame (200) for use. The balancing frame (200) includes a support plate (201) that contacts the unit structure and multiple adjustable legs that are set on the support plate (201) for use with the waterfront sidewall. One or more of the multiple adjustable legs are telescopic rod structures. When the multiple adjustable legs are in contact with the waterfront sidewall, the support plate (201) is set horizontally relative to the waterfront sidewall. The balancing frame (200) is fixedly connected to the sidewall of the waterfront, or The balance frame (200) is fixedly connected to the unit structure; The unit structure includes a pool body (300), which is provided with a waterproof layer for use. The upper part of the pool body (300) is provided with an overflow outlet (306) and a water level marking area (305). The pool body (300) is also connected to an irrigation pipe (310). A second waterproof bag for repair can be fitted over the pool body (300); The pool body (300) has a cavity structure with an open top, which is assembled from multiple unit components. The unit has a semi-enclosed plate structure with a through cavity. Any two unit components are spliced ​​together along the two ends of the through cavity by a connecting groove (308) and a connecting boss (303). The two unit components located at the two ends of the connection direction of multiple unit components are also provided with baffles (302). The two baffles (302) cooperate with multiple unit components to form the pool body (300). The connecting groove (308) is provided at the end of the unit part extending inward along the cavity direction and recessed outward along the inner side of the side wall; the boss (303) is provided at the end of the unit part extending inward along the cavity direction and recessed inward along the outer side of the side wall; each connecting groove (308) and boss (303) used in conjunction are fixed by a locking member.

2. The waterfront park planting and breeding ornamental equipment according to claim 1, characterized in that: The pool body (300) includes a built-in mounting frame and an external waterproof bag (904). The waterproof bag (904) is fitted over the mounting frame and tensioned by the mounting frame.

3. The waterfront park planting and breeding ornamental equipment according to claim 2, characterized in that: The mounting bracket includes two spaced-apart support frames (901) and multiple support rods (902) disposed between the two support frames (901), with each support rod (902) having its two ends detachably fixed to the two support frames (901); Each support rod (902) is a telescopic rod structure with a variable length, or... A tensioning element is provided on the support rod (902) for tensioning the pull rope fixed on the waterproof bag (904).

4. The waterfront park planting and breeding ornamental equipment according to claim 1, 2 or 3, characterized in that: The unit structure also includes a floating walkway (400), which includes an outer shell (401) and a corner frame (403) fixed below the outer shell (401). The corner frame (403) is fixedly connected to the pool body (300), and a patterned anti-slip layer (404) is provided on the top of the outer shell (401).

5. The waterfront park planting and breeding ornamental equipment according to claim 1, 2 or 3, characterized in that: The unit structure also includes a floating flower rack (1000), which includes a float (1005) and a support (1001) and a flower pot (1004) set on the float (1005).

6. The waterfront park planting and breeding ornamental equipment according to claim 5, characterized in that: The bracket (1001) is provided with a grid (1002) for hanging items.

7. The water-front park planting and breeding ornamental equipment according to claim 1, 2, 3 or 6, characterized in that: The floating island also includes an irrigation system, which includes a main pipe and multiple outlet pipes connected to the main pipe, each outlet pipe being equipped with a control valve.

Citation Information

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