Special-shaped drop landscape structure

Through the design of special-shaped decorative panels and water replenishment components, the problems of high and uneven manufacturing and maintenance costs of water drop landscapes are solved, and the uniform distribution of water flow and the improvement of landscape effects are achieved.

CN223197306UActive Publication Date: 2025-08-08GUANGZHOU S P I DESIGN CO LTD
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Patent Information

Application Number
CN202422039028.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-08-08
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

The existing water drop landscape has high manufacturing and maintenance costs, and there is a problem of uneven water drops.

Method used

The design of special-shaped decorative panels and water replenishing components is adopted. The special-shaped decorative panels are arranged in M rows and N rows. The water replenishing components include water replenishing tanks, first and second water replenishing panels. The multi-stage water replenishing panels are clamped between the special-shaped decorative panels to form an L-shaped structure to ensure uniform distribution of water flow.

Benefits of technology

The water flow distribution of the special-shaped water drop landscape is achieved, which reduces maintenance costs and improves the ornamentality and fun of the landscape.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a special-shaped drop landscape structure, which relates to the technical field of landscape buildings and comprises a special-shaped veneer, a water replenishing component and a supporting component. The top face of the supporting assembly is arranged to be an inclined face, the multiple special-shaped veneers are arranged, and the multiple special-shaped veneers are arranged in M rows and N columns. The water replenishing assembly comprises a water replenishing tank, a first water replenishing plate and a second water replenishing plate, the water replenishing tank is embedded in the inclined plane, the first water replenishing plate and the second water replenishing plate are both located at the top of the water replenishing tank, communicated with the water replenishing tank and perpendicularly communicated with each other, and the first water replenishing plate and the second water replenishing plate are both provided with through water outlet holes; a first water replenishing plate is clamped between at least two adjacent special-shaped veneers in each row; and a second water replenishing plate is clamped between at least two adjacent special-shaped veneers in each row. According to the special-shaped drop water landscape structure, the technical problems that in the prior art, double-slope drop water is high in manufacturing, using and maintaining cost, and drop water is uneven are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of landscape architecture, in particular to a special-shaped waterfall landscape structure. Background Art

[0002] A waterfall is a regularly shaped water feature, often integrated with buildings, feature walls, and retaining walls. The most beautiful aspect of a waterfall is the lines of falling water, so a uniform flow is paramount. This landscape showcases the dynamic beauty of falling water, combining both formal and technical beauty. The splashing water increases humidity and filters dust, creating a unique visual and audible effect.

[0003] Existing floor-to-ceiling sloped waterfalls typically utilize the following water supply methods: First, universal direct-spray nozzles are used to achieve uniform water flow. However, these nozzles are currently expensive, have varying product quality, and require high maintenance costs. Damage to a single nozzle directly impacts the overall waterfall effect. Second, water is introduced from the top of the landscape, allowing it to fall freely. This water flow is formed by multiple stepped surfaces. If the waterfall surface is too long, the water flow is insufficient to fully immerse the entire surface. Furthermore, uneven steps can easily lead to water loss or uneven water flow. Third, multiple water supply troughs are installed to provide water supply across the stepped surface. However, when the stepped surface is uneven, the water supply required is inclined, preventing the troughs from reaching the higher slopes. Similarly, water flow may be absent or uneven at the junction of the slopes, resulting in chronic water shortages in parts of the waterfall, and an unsightly waterfall. Utility Model Content

[0004] The purpose of the utility model is to provide a special-shaped waterfall landscape structure to alleviate the technical problems of high manufacturing, use and maintenance costs of double-slope waterfalls and uneven waterfalls in the prior art.

[0005] In order to solve the above technical solutions, the technical solutions provided by the present utility model are:

[0006] The special-shaped waterfall landscape structure provided by the utility model comprises a special-shaped decorative panel, a water replenishment component and a support component;

[0007] The top surface of the support assembly is set as an inclined surface, and a plurality of special-shaped decorative panels are provided, and the plurality of special-shaped decorative panels are arranged in M rows and N columns; the M special-shaped decorative panels in each column are arranged in a stepped manner along the extension direction of the inclined surface, and the N special-shaped decorative panels in each row are arranged at intervals along the width direction of the inclined surface;

[0008] The water replenishment assembly includes a water replenishment tank, a first water replenishment plate and a second water replenishment plate. The water replenishment tank is embedded in the inclined surface. The first water replenishment plate and the second water replenishment plate are both located on the top of the water replenishment tank and communicate with the water replenishment tank, and are vertically connected to each other. The first water replenishment plate and the second water replenishment plate are both provided with a through water outlet hole.

[0009] The first water replenishment plate is sandwiched between at least two adjacent special-shaped decorative panels in each row; the second water replenishment plate is sandwiched between at least two adjacent special-shaped decorative panels in each column.

[0010] Furthermore, the special-shaped decorative panel is set to be square, and the top surface of the special-shaped decorative panel includes a first inclined surface and a second inclined surface arranged along the extension direction of the inclined surface;

[0011] The first inclined surface is parallel to the inclined surface, and the second inclined surface gradually inclines toward the inclined surface from an end close to the first inclined surface to an end far away from the first inclined surface.

[0012] Furthermore, the diagonal lines of the special-shaped decorative panels are arranged along the extension direction of the inclined surface.

[0013] Furthermore, the outer wall of the first water replenishing plate is flush with the first side wall of the water replenishing tank, the outer wall of the second water replenishing plate is flush with the second side wall of the water replenishing tank, and the first side wall is adjacent to and perpendicular to the second side wall.

[0014] Furthermore, the support assembly includes a support bottom layer, a brickwork layer, a concrete layer and a keel layer;

[0015] The bottom wall of the supporting bottom layer is provided with a limiting protrusion, and the limiting protrusion abuts against the end of the brickwork layer;

[0016] The brickwork layer is laid on top of the supporting bottom layer, the concrete layer is laid on top of the brickwork layer, and the top surface of the concrete layer forms the inclined surface;

[0017] The keel layer is arranged between the special-shaped decorative panel and the concrete layer.

[0018] Furthermore, a water reservoir and a water collection tank are respectively provided at both ends of the supporting bottom layer along the extending direction of the inclined surface, and the brickwork layer is located between the water reservoir and the water collection tank.

[0019] Furthermore, the bottom wall and inner side wall of the supporting bottom layer are both provided with a waterproof layer.

[0020] Furthermore, a main pipeline and a water supply pipe are buried in the concrete layer;

[0021] The main pipeline is connected to the water reservoir and the water collection tank, and the water supply pipe is connected to the water reservoir and the water supply tank.

[0022] Furthermore, the main pipeline is installed with a main water pump, and the water supply pipe is installed with an auxiliary water pump.

[0023] Furthermore, a landscape wall is installed on the side of the water reservoir away from the slope.

[0024] Based on the above technical solutions, the technical effects that can be achieved by this utility model are analyzed as follows:

[0025] The special-shaped waterfall landscape structure provided by the utility model includes a special-shaped decorative panel, a water replenishment component and a support component; the top surface of the support component is set as a slope, and a plurality of special-shaped decorative panels are provided, and the plurality of special-shaped decorative panels are arranged in M rows and N columns; the M special-shaped decorative panels in each column are arranged in a stepped manner along the extension direction of the slope, and the N special-shaped decorative panels in each row are arranged at intervals along the width direction of the slope; the water replenishment component includes a water replenishment tank, a first water replenishment plate and a second water replenishment plate, the water replenishment tank is embedded in the slope, the first water replenishment plate and the second water replenishment plate are both located at the top of the water replenishment tank and connected to the water replenishment tank, and are vertically connected to each other, and the first water replenishment plate and the second water replenishment plate are both provided with a through water outlet; a first water replenishment plate is sandwiched between at least two adjacent special-shaped decorative panels in each row; a second water replenishment plate is sandwiched between at least two adjacent special-shaped decorative panels in each column. During construction, multiple special-shaped decorative panels are embedded adjacent to each other on the slope, so that water flows on the slope formed by the entire special-shaped decorative panels; the bottom of the water replenishment tank in the water replenishment assembly is embedded in the support assembly, and the first water replenishment plate and the second water replenishment plate in the water replenishment assembly protrude from the support assembly and are combined to form an L-shape, with the height being flush with the special-shaped decorative panels embedded in adjacent positions. The four adjacent special-shaped decorative panels sandwich an L-shaped first water replenishment plate and a second water replenishment plate in the middle, and the water can flow directly from the water outlet to the special-shaped decorative panel; the number of water replenishment components in each row and column is set as needed according to the height and length of the on-site special-shaped waterfall landscape. When in use, water flows out from the water outlet of the first water replenishment plate and the second water replenishment plate, and flows along the outer surface of the special-shaped decorative panel due to the action of gravity.

[0026] The advantages of this water replenishment method are as follows: multiple rows of water replenishment components are arranged on the slope of the special-shaped waterfall landscape according to demand, and multi-level water replenishment is carried out according to local conditions, avoiding the problem of insufficient waterfall volume caused by the excessive length of the slope in the special-shaped waterfall landscape structure; each row is provided with multiple water replenishment components, which can evenly discharge water on the entire slope, and the first water replenishment plate and the second water replenishment plate are arranged in an L shape, so that the water flows not only from top to bottom over the special-shaped decorative panel, but also from left to right, which can take into account and be suitable for special-shaped outer surfaces, increasing the viewing and interest of the landscape. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0028] Figure 1 A cross-sectional view provided for an embodiment of the present utility model;

[0029] Figure 2 Schematic diagram of the water replenishment component in the special-shaped waterfall landscape structure provided by an embodiment of the utility model.

[0030] icon:

[0031] 110-slanted surface; 120-support bottom layer; 121-limiting protrusion; 122-waterproof layer; 130-brickwork layer; 140-concrete layer; 150-keel layer; 200-special-shaped decorative panel; 210-first inclined surface; 220-second inclined surface; 300-water replenishment component; 310-water replenishment tank; 320-first water replenishment plate; 330-second water replenishment plate; 340-water outlet; 400-water reservoir; 410-main pipeline; 420-water supply pipe; 500-water collection tank; 600-landscape wall. DETAILED DESCRIPTION

[0032] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0033] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are also within the scope of protection of the present invention.

[0034] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.

[0035] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer" and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the utility model product is typically placed when in use. These terms are intended solely to facilitate the description of this utility model and to simplify the description, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third," etc., are used solely to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0036] Furthermore, terms such as "horizontal," "vertical," and "overhanging" do not necessarily imply that a component must be absolutely horizontal or overhanging, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical," and does not mean that the structure must be completely horizontal, but rather that it can be slightly tilted.

[0037] It should also be noted that, in the description of this utility model, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0038] The following embodiments of the present invention are described in detail with reference to the accompanying drawings. In the absence of conflict, the following embodiments and features in the embodiments may be combined with each other.

[0039] The special-shaped waterfall landscape structure provided by the present invention includes a special-shaped decorative panel 200, a water replenishment component 300 and a support component; the top surface of the support component is set as an inclined surface 110, and a plurality of special-shaped decorative panels 200 are provided, and the plurality of special-shaped decorative panels 200 are arranged in M rows and N columns; the M special-shaped decorative panels 200 in each column are arranged in a stepped manner along the extension direction of the inclined surface 110, and the N special-shaped decorative panels 200 in each row are arranged at intervals along the width direction of the inclined surface 110; the water replenishment component 300 includes a water replenishment tank 310, a first water replenishment plate 310, and a plurality of special-shaped decorative panels 200. 20 and the second water replenishment plate 330, the water replenishment tank 310 is embedded in the inclined surface 110, the first water replenishment plate 320 and the second water replenishment plate 330 are both located at the top of the water replenishment tank 310 and connected to the water replenishment tank 310, and are vertically connected to each other, the first water replenishment plate 320 and the second water replenishment plate 330 are both provided with a through water outlet 340; there are at least two adjacent special-shaped decorative panels 200 in each row with a first water replenishment plate 320 sandwiched therebetween; there are at least two adjacent special-shaped decorative panels 200 in each column with a second water replenishment plate 330 sandwiched therebetween.

[0040] Specifically, if Figure 1 As shown, multiple special-shaped decorative panels 200 are embedded adjacent to each other and suspended on the inclined surface 110 by the keel layer 150. The bottom of the water replenishment box 310 in the water replenishment assembly 300 is embedded in the supporting assembly. The first water replenishment plate 320 and the second water replenishment plate 330 in the water replenishment assembly 300 protrude from the supporting assembly and form an L-shape. The height is flush with the special-shaped decorative panels 200 embedded in adjacent positions. The four adjacent special-shaped decorative panels 200 sandwich an L-shaped first water replenishment plate 320 and second water replenishment plate 330 in the middle; the number of water replenishment components 300 in each row and column is set as needed according to the height and length of the special-shaped waterfall landscape on site. When in use, water flows out from the water outlet 340 of the first water replenishment plate 320 and the second water replenishment plate 330, and flows along the outer surface of the special-shaped decorative panel 200 due to the action of gravity.

[0041] The advantages of this water replenishment method are as follows: multiple rows of water replenishment components 300 are provided on the slope 110 of the special-shaped waterfall landscape as needed, and multi-level water replenishment is carried out according to local conditions, thereby avoiding the problem of insufficient waterfall volume caused by the excessive length of the slope in the special-shaped waterfall landscape structure; multiple water replenishment components 300 are provided in each row, which can evenly discharge water on the entire slope 110, and the first water replenishment plate 320 and the second water replenishment plate 330 are arranged in an L shape, so that water flows not only from top to bottom over the special-shaped decorative panel 200, but also from left to right, which can take into account and be applicable to special-shaped outer surfaces, thereby increasing the ornamental value and interest of the landscape.

[0042] The following is a detailed description of the special-shaped waterfall landscape structure:

[0043] In an optional scheme of an embodiment of the present invention, the special-shaped decorative panel 200 is set to be square, and the top surface of the special-shaped decorative panel 200 includes a first inclined surface 210 and a second inclined surface 220 arranged along the extension direction of the inclined surface 110; the first inclined surface 210 is parallel to the inclined surface 110, and the second inclined surface 220 gradually inclines toward the direction close to the inclined surface 110 from one end close to the first inclined surface 210 to the end away from the first inclined surface 210.

[0044] Specifically, in this embodiment, the top view of the special-shaped decorative panel 200 is a square, and the entire panel is inclined along the extension direction of the inclined surface 110. The top surface of the square is divided into two triangular portions by the square diagonal line, and the two triangles have different inclination angles. The higher triangle has a smaller inclination angle, which is the same as the inclination angle of the inclined surface 110, while the lower triangle has a larger inclination angle. The top view of the special-shaped decorative panel 200 is a rectangle, which can achieve the same technical effect and should also be within the scope of protection of the present invention.

[0045] The special-shaped decorative panel 200 with a double-inclined surface design makes the surface of the entire slope 110 undulate, which is more interesting and makes the lines of water falling more beautiful when water flows through the surface of the special-shaped waterfall landscape structure; when part of the special-shaped decorative panel 200 or the water replenishment component 300 installed adjacent to the special-shaped decorative panel 200 is damaged, it is only necessary to remove the damaged special-shaped decorative panel 200 or the special-shaped decorative panel 200 adjacent to the damaged water replenishment component 300 for replacement and repair, without the need to remove the entire row of special-shaped decorative panels 200 or the entire row of water replenishment components 300, which is convenient for maintenance and lowers the cost.

[0046] In an optional solution of the embodiment of the present invention, the diagonal lines of the special-shaped decorative panels 200 are arranged along the extension direction of the inclined surface 110 .

[0047] Specifically, each special-shaped decorative panel 200 is installed on the entire inclined surface 110 to present a diamond-shaped appearance. The left and right special-shaped decorative panels 200 are arranged diagonally, and the upper and lower special-shaped decorative panels 200 are also arranged diagonally. The four corners are spliced together to form a whole. This splicing method extends as required in the length direction and extension direction of the inclined surface 110. During installation, it is important to note that the first inclined surface 210 with a smaller inclination angle is on the top, and the second inclined surface 220 with a larger inclination angle is on the bottom.

[0048] The diamond-shaped splicing design allows water to fall continuously from the upper special-shaped decorative panel 200 to the next special-shaped decorative panel 200. At this time, the water outlet 340 replenishes water at the same time, so that the amount of water falling from the first inclined surface 210 to the second inclined surface 220 is further replenished. The water flow can flow through the surface of the entire special-shaped waterfall landscape structure, and the water flow on the entire surface is more uniform and smoother.

[0049] In an optional solution of an embodiment of the present invention, the outer wall of the first water replenishment plate 320 is flush with the first side wall of the water replenishment tank 310, and the outer wall of the second water replenishment plate 330 is flush with the second side wall of the water replenishment tank 310, and the first side wall is adjacent to and perpendicular to the second side wall.

[0050] Specifically, if Figure 2 As shown, the water replenishment tank 310 is designed as a cube, and the first water replenishment plate 320 and the second water replenishment plate 330 are both thick plates with water outlet holes 340 on the side edges. One side of the thick plate with the through groove is welded to the water replenishment tank 310, and the other side extends out of the support assembly; when welding, the outer sides of the first water replenishment plate 320 and the second water replenishment plate 330 are flush with the outer side of the water replenishment tank 310, and the first water replenishment plate 320 and the second water replenishment plate 330 are L-shaped and stand on the water replenishment tank 310, and the water outlet holes 340 connect the first water replenishment plate 320, the second water replenishment plate 330 and the water replenishment tank 310.

[0051] The cubic water replenishment tank 310 and the first water replenishment plate 320 and the second water replenishment plate 330 flush with the side walls of the water replenishment tank 310 make the edges of the entire water replenishment assembly 300 all at right angles. When the first water replenishment plate 320 and the second water replenishment plate 330 are sandwiched between the special-shaped decorative panels 200, the components fit together and the gaps between the special-shaped decorative panels 200 can be minimized, making the outer surface of the special-shaped waterfall landscape structure smoother and the overall effect beautiful.

[0052] In an optional scheme of an embodiment of the present invention, the supporting assembly includes a supporting bottom layer 120, a brick layer 130, a concrete layer 140 and a keel layer 150; the bottom wall of the supporting bottom layer 120 is provided with a limiting protrusion 121, and the limiting protrusion 121 abuts against the end of the brick layer 130; the brick layer 130 is laid on the supporting bottom layer 120, the concrete layer 140 is laid on the brick layer 130, and the top surface of the concrete layer 140 forms a slope 110; the keel layer 150 is arranged between the special-shaped decorative panel 200 and the concrete layer 140.

[0053] Specifically, concrete is used to lay a supporting bottom layer 120 at the construction location, and the range of the supporting bottom layer 120 needs to cover the size of the entire special-shaped waterfall landscape structure; according to the requirements of the designed landscape finish surface, a raised structure is used to limit the predetermined position of the design elevation, and a brick layer 130 is laid obliquely on the inner side of the limiting protrusion 121, and the inclination direction extends from the limiting protrusion 121 toward the water collection tank 500. Bricks are laid layer by layer on the supporting bottom layer 120, and the height is adjusted by adjusting the number of laid layers; a concrete layer 140 and a keel layer 150 are laid in sequence on the brick layer 130. When laid, the concrete layer 140 and the keel layer 150 are parallel to the upper surface of the brick layer 130, and the keel layer 150 uses a steel structure.

[0054] The supporting bottom layer 120 is a whole and covers the entire special-shaped waterfall landscape structure. It can complete the waterproofing in one go and is easy to construct. The brickwork layer 130 is laid layer by layer using bricks. The height can be adjusted at will, and it can easily handle complex shapes. The purpose of installing the concrete layer 140 is to fix the water replenishment component 300, the main pipeline 410 and the water supply pipe 420. The construction of the water replenishment component 300, the main pipeline 410 and the water supply pipe 420 will not damage the waterproof layer 122 on the supporting bottom layer 120. The steel keel layer 150 is used to fix the special-shaped decorative panel 200 above. The keel layer 150 is used to tightly connect the supporting component and the special-shaped decorative panel 200. The fixing method of the keel layer 150 prevents the alkali problem caused by the traditional combination of imitation stone and cement mortar of the special-shaped decorative panel 200.

[0055] In an optional solution of the embodiment of the present invention, a water reservoir 400 and a water collection tank 500 are respectively embedded at both ends of the supporting bottom layer 120 along the extension direction of the inclined surface 110; the brick layer 130 is located between the water reservoir 400 and the water collection tank 500.

[0056] Specifically, the water reservoir 400 is installed on one side of the limiting protrusion 121 of the supporting bottom layer 120, and the water collection tank 500 is installed on the other side opposite thereto. When installed, the height of the water reservoir 400 is slightly higher than the limiting protrusion 121, and the height of the water collection tank 500 is slightly lower than the lowest point of the inclined surface 110.

[0057] By providing reservoir 400 and collection tank 500, water circulates throughout the irregular waterfall structure. Water falling from slope 110 is collected by collection tank 500 and transported to reservoir 400, where it then falls again from the top of reservoir 400, allowing it to be reused, significantly saving water. The inner walls of support base 120, which serve as reservoir 400 and collection tank 500, are also coated with a waterproof layer 122, providing a waterproofing effect.

[0058] In an optional solution of the embodiment of the present invention, both the bottom wall and the inner wall of the supporting bottom layer 120 are provided with a waterproof layer 122 .

[0059] Specifically, the waterproof layer 122 is constructed before the brickwork layer 130, the water reservoir 400 and the water collection tank 500. The exposed parts of the supporting bottom layer 120 need to be waterproofed. The waterproofing work includes the bottom wall and side walls of the supporting bottom layer 120, as well as the top of the limiting protrusion 121 and the inner walls of the water reservoir 400 and the water collection tank 500. The scope of the waterproofing work should be as larger as possible than the special-shaped waterfall landscape structure.

[0060] The waterproof layer 122 prevents water from seeping into the ground, preventing the supporting base layer 120 from being repeatedly soaked by water and causing uneven settlement. This also conserves water and reduces the need to frequently refill the reservoir 400. It also prevents groundwater from seeping into the irregular waterfall structure, causing alkali blooming and affecting the long-term aesthetics of the irregular waterfall structure. The waterproofing work extends beyond the irregular waterfall structure to account for water droplets splashing out of the waterfall and potentially affecting adjacent structures.

[0061] In an optional solution of the embodiment of the present invention, a main pipeline 410 and a water supply pipe 420 are buried in the concrete layer 140; the main pipeline 410 connects the water reservoir 400 and the water collection tank 500, and the water supply pipe 420 connects the water reservoir 400 and the water replenishment tank 310.

[0062] Specifically, the main pipeline 410 and the water supply pipe 420 are first laid on the brickwork layer 130 and then filled with concrete. One main pipeline 410 is provided, one end of which is connected to the water reservoir 400 and the other end is connected to the water collection tank 500. Multiple water supply pipes 420 are provided, arranged in a grid pattern within the inclined surface 110 of the special-shaped waterfall landscape structure. At least one water supply pipe 420 is designed for each row of water replenishment components 300, one end of which is connected to the water reservoir 400. A water distributor is connected to the water supply pipe 420, and the water distributor is used to supply water in the water supply pipe 420 to each water replenishment component 300.

[0063] The main pipe 410 resupplies the fallen water collected in the water collection tank 500 back to the water reservoir 400, allowing the water in the landscape to circulate back and forth. The water supply pipe 420 evenly distributes the water in the water reservoir 400 to each water replenishment component 300. The water is then evenly discharged from the water replenishment port of each water replenishment component 300 onto the special-shaped decorative panel 200, achieving a uniform water replenishment and even water drop. The mesh design of the water supply pipe 420 reduces the water pressure within a single water supply pipe 420, allowing the water supply pipe 420 to be designed to be thinner and more slender while supplying the same amount of water, thus saving costs.

[0064] In an optional solution of the embodiment of the present utility model, the main pipeline 410 is installed with a main water pump, and the water supply pipe 420 is installed with an auxiliary water pump.

[0065] A main water pump is installed on the main pipeline 410, and the main water pump supplies the falling water collected in the water collection tank 500 to the water reservoir 400 again, so that the water in the landscape can circulate back and forth; an auxiliary water pump is installed on the water supply pipe 420, and the auxiliary water pump distributes the water in the water reservoir 400 evenly to each water replenishment component 300, and then the water is evenly discharged from the water replenishment port of each water replenishment component 300 to the special-shaped decorative panel 200, achieving the effect of uniform water replenishment and uniform water drop.

[0066] In an optional solution of the embodiment of the present invention, a landscape wall 600 is installed on the side of the water reservoir 400 away from the slope 110 .

[0067] Specifically, the bottom of the landscape wall 600 is installed on the side wall of the water reservoir 400, and the inner wall of the landscape wall 600 is flush with the inner wall of the water reservoir 400. The landscape wall 600 plays the role of decoration and separation.

[0068] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A special-shaped waterfall landscape structure, characterized in that: include: Special-shaped decorative panel (200), water replenishment component (300) and support component; The top surface of the support assembly is set as an inclined surface (110), and a plurality of the special-shaped decorative panels (200) are provided, and the plurality of special-shaped decorative panels (200) are arranged in M rows and N columns; the M special-shaped decorative panels (200) in each column are arranged in a stepped manner along the extension direction of the inclined surface (110), and the N special-shaped decorative panels (200) in each row are arranged at intervals along the width direction of the inclined surface (110); The water replenishment assembly (300) comprises a water replenishment tank (310), a first water replenishment plate (320) and a second water replenishment plate (330); the water replenishment tank (310) is embedded in the inclined surface (110); the first water replenishment plate (320) and the second water replenishment plate (330) are both located at the top of the water tank and communicate with the water replenishment tank (310), and are vertically connected to each other; the first water replenishment plate (320) and the second water replenishment plate (330) are both provided with a through water outlet (340); The first water replenishment plate (320) is sandwiched between at least two adjacent special-shaped decorative panels (200) in each row; and the second water replenishment plate (330) is sandwiched between at least two adjacent special-shaped decorative panels (200) in each column.

2. The special-shaped waterfall landscape structure according to claim 1, characterized in that: The special-shaped decorative panel (200) is arranged in a square shape, and the top surface of the special-shaped decorative panel (200) includes a first inclined surface (210) and a second inclined surface (220) arranged along the extension direction of the inclined surface (110); The first inclined surface (210) is parallel to the inclined surface (110), and the second inclined surface (220) gradually inclines toward the inclined surface (110) from an end close to the first inclined surface (210) to an end away from the first inclined surface (210).

3. The special-shaped waterfall landscape structure according to claim 2, characterized in that: The diagonal lines of the special-shaped decorative panels (200) are arranged along the extension direction of the inclined surface (110).

4. The special-shaped waterfall landscape structure according to claim 1, characterized in that: The outer wall of the first water replenishment plate (320) is flush with the first side wall of the water replenishment tank (310), the outer wall of the second water replenishment plate (330) is flush with the second side wall of the water replenishment tank (310), and the first side wall is adjacent to and perpendicular to the second side wall.

5. The special-shaped waterfall landscape structure according to claim 1, characterized in that: The support assembly includes a support bottom layer (120), a brickwork layer (130), a concrete layer (140) and a keel layer (150); The bottom wall of the supporting bottom layer (120) is provided with a limiting protrusion (121), and the limiting protrusion (121) abuts against the end of the brickwork layer (130); The brickwork layer (130) is laid on top of the supporting bottom layer (120), the concrete layer (140) is laid on top of the brickwork layer (130), and the top surface of the concrete layer (140) forms the inclined surface (110); The keel layer (150) is arranged between the special-shaped decorative panel (200) and the concrete layer (140).

6. The special-shaped waterfall landscape structure according to claim 5, characterized in that: A water reservoir (400) and a water collection pool (500) are respectively provided at both ends of the supporting bottom layer (120) along the extending direction of the inclined surface (110); and the brickwork layer (130) is located between the water reservoir (400) and the water collection pool (500).

7. The special-shaped waterfall landscape structure according to claim 5, characterized in that: The bottom wall and inner side wall of the supporting bottom layer (120) are both provided with a waterproof layer (122).

8. The special-shaped waterfall landscape structure according to claim 6, characterized in that: A main pipeline (410) and a water supply pipe (420) are buried in the concrete layer (140); The main pipeline (410) is connected to the water reservoir (400) and the water collection tank (500), and the water supply pipe (420) is connected to the water reservoir (400) and the water replenishment tank (310).

9. The special-shaped waterfall landscape structure according to claim 8, characterized in that: The main pipeline (410) is installed with a main water pump, and the water supply pipe (420) is installed with an auxiliary water pump.

10. The special-shaped waterfall landscape structure according to claim 6, characterized in that: A landscape wall (600) is installed on the side of the water reservoir (400) away from the slope (110).