Landscape garden with carbon neutralization and energy conservation functions

By designing track boxes and flowerpot structures in landscape gardens, and utilizing ball bearings and spring mechanisms to adjust plant movement, the problems of uneven plant distribution and the impact of electric light heat are solved, thus optimizing the carbon neutrality effect of landscape gardens and improving carbon dioxide offsetting capacity.

CN121497129APending Publication Date: 2026-02-10JIANGNAN FILM & TELEVISION ART VOCATIONAL COLLEGE
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Patent Information

Application Number
CN202511742241.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-25
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

Uneven distribution of plants in landscape gardens cannot promptly offset carbon dioxide emissions in densely populated areas, affecting carbon neutrality. Furthermore, the heat generated by electric lights and irrigation equipment increases carbon dioxide levels, making it difficult for plants to be moved to adjust carbon neutrality density.

Method used

Design a structure including a track box, planting bottle, and flower pot. The movement of the plant is adjusted by a ball bearing and spring mechanism. The flower pot design, combined with a lighting mechanism, optimizes the carbon neutrality effect. The position of the plant and the light is adjusted by using the track box and support ring to achieve dynamic adjustment of the carbon neutrality density.

Benefits of technology

It enables rapid plant movement in densely populated areas and carbon neutrality around electric lights, optimizes the carbon neutrality effect of landscape gardens, reduces temperature rise, and improves the ability of plants to offset carbon dioxide.

✦ Generated by Eureka AI based on patent content.

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    Figure CN121497129A_ABST
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Abstract

The landscape garden structurally comprises a leisure hall, a surrounding box, a light mechanism, a leisure negotiation area, a landscape pond, a leisure pavilion and a landscape waterscape, the leisure hall is connected with the light mechanism through plates, the surrounding box is installed on the surfaces of the leisure hall and the leisure negotiation area, the light mechanism is fixedly embedded in the surfaces of the leisure hall and the leisure negotiation area, and the landscape pond is installed in the leisure pavilion. The movable plates are manually pulled open so that the movable plates can be pushed to the position above the base table, the movable plates can slide and move on the first balls at the upper end of the base table, and plants in the planting bottles can be conveniently transferred; furthermore, plants in the planting bottle can be easily moved to a crowded area, the carbon neutralization density can be conveniently adjusted, the pot body is pushed, the arc-shaped angle formed by the five flowerpots can be freely adjusted, carbon neutralization is carried out on energy of the electric lamp through the plants on the five flowerpots, and the situation that carbon neutralization cannot be carried out due to the fact that the number of the plants around the electric lamp is small is prevented.
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Description

Technical Field

[0001] This invention relates to the field of landscape architecture technology, and more specifically, to a landscape garden with carbon neutrality and energy-saving functions. Background Technology

[0002] Carbon neutrality refers to the process of offsetting the total amount of carbon dioxide or greenhouse gas emissions generated directly or indirectly within a certain period of time through the use of plants or energy conservation and emission reduction methods, thereby achieving a relative "zero emission". In garden landscapes, plants with strong photosynthetic capacity are used to offset the carbon emissions generated in the garden, enabling the landscape garden to have a carbon neutral energy-saving effect.

[0003] However, the presence of electric lights and various irrigation devices within landscape gardens generates heat, which in turn affects the temperature within the garden. This heat causes a significant increase in the carbon dioxide content in the air. Since the plants in the landscape gardens are relatively few and located near the electric lights, they cannot effectively offset the carbon dioxide generated by the heat, thus affecting carbon neutrality. Furthermore, in some areas of the landscape gardens, people are densely packed, resulting in even greater carbon dioxide emissions. The plants in the landscape gardens cannot be moved to areas with high population density, which can easily lead to a situation where the carbon neutrality within the gardens cannot be effectively offset. The distribution of plants cannot be manually controlled to follow the movement of people, and the plants are too heavy to move easily, affecting the carbon neutrality effect. Summary of the Invention

[0004] The technical solution adopted by this invention to achieve its technical objective is as follows: a landscape garden with carbon neutrality and energy-saving functions, the structure of which includes a leisure hall, an enclosure, a lighting mechanism, a leisure and negotiation area, a landscape pond, a leisure pavilion, and a landscape water feature. The leisure hall is connected to the lighting mechanism panel, the enclosure is installed on the surface of the leisure hall and the leisure and negotiation area, the lighting mechanism is embedded in the surface of the leisure hall and the leisure and negotiation area, the leisure pavilion is built on the surface of the leisure hall, and the landscape water feature panel is connected to the side of the landscape pond. The enclosure has a track box, planting bottles, fixed railings, and track grooves. The track grooves are located inside the track box, the fixed railings slide inside the track box, the planting bottles are embedded in the upper end of the fixed railings, and the lower end of the track box is installed on the surface of the leisure hall and the leisure and negotiation area. The track box is in a continuous corner state, the fixed railings are spaced apart inside the track box, and plants can be planted in the planting bottles.

[0005] As a further improvement of the present invention, the track box is provided with a base plate, a first ball bearing, a movable plate, a base platform, and a moving plate. The first ball bearing is embedded in the bottom of the base platform, and the lower end of the base platform is engaged with the upper end of the base plate. The movable plate is installed inside the upper end of the base platform, and the moving plate slides in cooperation with the first ball bearing. The moving plate and the movable plate are also in a limited sliding cooperation. The fixed rail is embedded in the upper end of the moving plate, and the outer side of the fixed rail slides in cooperation with the inner side of the upper end of the movable plate. The lower end of the base plate is installed on the surface of the lounge and leisure negotiation area. There are two first ball bearings, which are symmetrically distributed with the moving plate as the central axis. The moving plate is in a horizontal state.

[0006] As a further improvement of the present invention, the movable plate is provided with a second ball bearing, a spring, a limiting plate, and a rotating block. The rotating block is embedded in the lower end of the spring, the spring is installed in the lower end of the limiting plate, the second ball bearing is engaged in the side of the limiting plate, and the rotating block is installed in the upper part of the base. The distance between the rotating block and the outermost right end on the base is shorter, and the distance from the base surface is longer. The spring is in a stretched state when it is vertical.

[0007] As a further improvement of the present invention, the movable plate is provided with a force-bearing strip, a rubber block, an arc-shaped plate, and a square plate. The rubber block is embedded in the side of the force-bearing strip, the upper side of the arc-shaped plate is installed on the inner side of the force-bearing strip, the left side of the arc-shaped plate is embedded in the outer side of the square plate, the lower surface of the square plate slides in cooperation with the first ball bearing, the force-bearing strip slides in cooperation with the movable plate, the force-bearing strip has a trapezoidal structure with an inclined surface at a 20-degree angle, the arc-shaped plate has an arc structure and only one end is embedded in the force-bearing strip, and there are four force-bearing strips distributed around the outer perimeter of the square plate.

[0008] As a further improvement of the present invention, the lighting mechanism includes a support ring, a flower pot, a power stake, and a light. The light is fixed to the upper end of the power stake, the flower pot is located at the upper end of the support ring, and the flower pot and the support ring slide against each other. The support ring is located around the power stake, and the power stake and the support ring are distributed and fixed to the surface of the lounge and casual negotiation area. The support ring is slightly lower than the height of the power stake, and there are five flower pots, which are distributed in a ring around the power stake at the upper end of the support ring.

[0009] As a further improvement of the present invention, the flowerpot is provided with a cup bottom block, a pot body, a third ball bearing, and a water trough. The third ball bearing is engaged inside the cup bottom block, the cup bottom block is installed inside the pot body, the water trough is located inside the pot body, the cup bottom block is located at the upper end of the support ring, and the third ball bearing slides in cooperation with the support ring. The cup bottom block is triangular in shape and its angle is consistent with the triangular shape at the upper end of the support ring. The water trough holds water and has a certain heat absorption effect. Plants are planted on the upper end of the cup bottom block, so that the height of the plants is similar to that of a light bulb. Beneficial effects

[0010] 1. In this invention, the movable plate is manually pulled open to push the moving plate above the base, and then the movable plate is pulled back to limit the moving plate above the base. By pushing the planting bottle, the moving plate slides on the first ball bearing at the top of the base, which facilitates the transfer of plants in the planting bottle. By pushing the fixed rail, the fixed rail slides in the track box, so that the plants in the planting bottle can be easily moved to densely populated areas, which facilitates the adjustment of carbon neutrality.

[0011] 2. In this invention, after the movable plate is placed above the base, the limiting plate is pushed from the side, causing the spring to rotate around the rotating block as the center. This causes the spring to rotate and move from the side of the base to the top of the base, while simultaneously stretching the spring. Under the elastic force of the spring, the limiting plate is elastically fixed to the top of the base, thus limiting and blocking the movable plate. This allows the upper side of the movable plate to slide into contact with the second ball bearing, enabling the movable plate to move and preventing it from jamming at corners, which would affect its movement.

[0012] 3. In this invention, five flowerpots form an arc shape at the upper end of the support ring, which neutralizes the carbon in the lamp at the upper end of the power station. The pot body is pushed, causing the third ball bearing on the inner side of the cup bottom block to slide on the side of the support ring. This allows the spacing between the five flowerpots on the support ring to be adjusted in an arc shape, enabling free adjustment of the arc angle formed by the five flowerpots. The plants on the five flowerpots neutralize the energy of the lamp, preventing weak carbon neutralization around the lamp from causing a temperature rise, and preventing insufficient plants around the lamp from failing to neutralize carbon. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of a landscape garden with carbon neutrality and energy-saving functions according to the present invention.

[0014] Figure 2 This is a schematic diagram of the planar structure of a box according to the present invention.

[0015] Figure 3 This is a side view of a track box according to the present invention.

[0016] Figure 4 This is a three-dimensional structural diagram of a movable plate according to the present invention.

[0017] Figure 5 This is a three-dimensional structural diagram of a movable plate according to the present invention.

[0018] Figure 6 This is a side view of a lighting mechanism according to the present invention.

[0019] Figure 7 This is a side view of a flowerpot according to the present invention.

[0020] In the diagram: Leisure Hall-1, Enclosed Box-2, Lighting Mechanism-3, Leisure and Negotiation Area-4, Landscape Pond-5, Leisure Pavilion-6, Landscape Water Feature-7, Track Box-21, Planting Bottle-22, Fixed Railing-23, Track Groove-24, Base Plate-w1, First Ball Bearing-w2, Movable Plate-w3, Base Platform-w4, Moving Plate-w5, Second Ball Bearing-w31, Spring-w32, Limiting Plate-w33, Rotating Block-w34, Force-Bearing Strip-w51, Rubber Block-w52, Arc Plate-w53, Square Plate-w54, Support Ring-t1, Flower Pot-t2, Electric Pile-t3, Electric Lamp-t4, Cup Bottom Block-t21, Pot Body-t22, Third Ball Bearing-t23, Water Tank-t24. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings: Example 1: As attached Figure 1 To be continued Figure 5 As shown: This invention discloses a landscape garden with carbon neutrality and energy-saving functions. Its structure includes a leisure hall 1, a surrounding enclosure 2, a lighting mechanism 3, a leisure and discussion area 4, a landscape pond 5, a leisure pavilion 6, and a landscape water feature 7. The leisure hall 1 is connected to the lighting mechanism 3. The surrounding enclosure 2 is installed on the surface of the leisure hall 1 and the leisure and discussion area 4. The lighting mechanism 3 is embedded in the surface of the leisure hall 1 and the leisure pavilion 6 is built on the surface of the leisure hall 1. The landscape water feature 7 is connected to the side of the landscape pond 5. The surrounding enclosure 2 is equipped with a track box 21, planting bottles 22, fixing rails 23, and a track trough 24. The channel 24 is located inside the track box 21. The fixed rail 23 slides inside the track box 21. The planting bottle 22 is embedded in the upper end of the fixed rail 23. The lower end of the track box 21 is installed on the surface of the lounge 1 and the leisure and negotiation area 4. The track box 21 is in a continuous corner state. The fixed rail 23 is distributed at intervals inside the track box 21. Plants can be planted in the planting bottle 22. By pushing the fixed rail 23, the fixed rail 23 can slide and move inside the track box 21. Thus, the plants in the planting bottle 22 can be easily moved to densely populated areas, which is convenient for adjusting the carbon neutrality.

[0022] The track box 21 includes a base plate w1, a first ball bearing w2, a movable plate w3, a base w4, and a moving plate w5. The first ball bearing w2 is embedded in the bottom of the base w4, and the lower end of the base w4 is engaged with the upper end of the base plate w1. The movable plate w3 is installed inside the upper end of the base w4. The moving plate w5 is slidably engaged with the first ball bearing w2 and is also in a limiting sliding engagement with the movable plate w3. The fixed rail 23 is embedded in the upper end of the moving plate w5, and the outer side of the fixed rail 23 is slidably engaged with the inner side of the upper end of the movable plate w3. The base plate... The lower end of w1 is installed on the surface of the lounge 1 and the leisure and negotiation area 4. There are two first ball bearings w2, which are symmetrically distributed with the moving plate w5 as the central axis. The moving plate w5 is in a horizontal state, so the base w4 is fixed on the upper end of the base plate w1. The movable plate w3 is manually pulled open to push the moving plate w5 above the base w4, and then the movable plate w3 is pulled again to limit the moving plate w5 above the base w4. By pushing the planting bottle 22, the moving plate w5 slides on the first ball bearing w2 at the upper end of the base w4, which facilitates the transfer of plants in the planting bottle 22.

[0023] The movable plate w3 is equipped with a second ball bearing w31, a spring w32, a limiting plate w33, and a rotating block w34. The rotating block w34 is embedded in the lower end of the spring w32, and the spring w32 is installed in the lower end of the limiting plate w33. The second ball bearing w31 is engaged with the side of the limiting plate w33. The rotating block w34 is installed inside the upper end of the base w4. The distance of the rotating block w34 from the outermost right end of the base w4 is relatively short, while the distance from the surface of the base w4 is relatively long. The spring w31 is embedded in the lower end of the spring w32, and the spring w32 is installed in the lower end of the limiting plate w33. The second ball bearing w31 is engaged in the side of the limiting plate w33. The rotating block w34 is installed inside the upper end of the base w4. The rotating block w34 is installed inside the lower end of the base w4. The second ball bearing w31 is engaged in the side of the limiting plate w33, and the second ball bearing w32 is installed inside the lower end of the limiting plate w3 ...2 is engaged in the side of the limiting plate w33, and the second ball bearing w33 is installed inside the lower end of the limiting plate w34. The second ball bearing w32 is engaged in the side of the limiting plate w33, and the second ball bearing w33 is engaged in the side of the limiting plate w33. The second ball bearing w32 is engaged in the side of the limiting plate w33, and the second ball bearing w33 is engaged in the side of the limiting plate w33. The second ball bearing w32 is engaged in the side of the When 32 is vertical, it is in a stretched state. After the moving plate w5 is placed above the base w4, the limiting plate w33 is pushed from the side, causing the spring w32 to rotate around the rotating block w34. This causes the spring w32 to rotate and move from the side of the base w4 to the top of the base w4, while simultaneously stretching the spring w32. Under the elastic force of the spring w32, the limiting plate w33 is elastically fixed downwards above the base w4, thus limiting and blocking the moving plate w5, allowing the upper side of the moving plate w5 to slide in contact with the second ball w31.

[0024] The movable plate w5 includes a force-bearing strip w51, a rubber block w52, an arc-shaped plate w53, and a square plate w54. The rubber block w52 is embedded in the side of the force-bearing strip w51. The upper side of the arc-shaped plate w53 is installed inside the force-bearing strip w51, and the left side of the arc-shaped plate w53 is embedded in the outer side of the square plate w54. The lower surface of the square plate w54 slides in engagement with the first ball bearing w2. The force-bearing strip w51 slides in engagement with the movable plate w3. The force-bearing strip w51 has a trapezoidal structure with an inclined surface at a 20-degree angle. The arc-shaped plate w53 has an arc-shaped structure, and only one end is fixed to the force-bearing strip w51. There are four force-bearing strips w51, which are distributed around the outer perimeter of the square plate w54. When the moving plate w5 moves to the corner of the track groove 24, the force-bearing strips w51 are squeezed against the arc-shaped plate w53 under the elastic force of the rubber block w52, so that the force-bearing strips w51 around the perimeter elastically expand and contract towards the square plate w54. As a result, the moving plate w5 is prevented from getting stuck at the corner of the track groove 24, thus realizing the movement of the moving plate w5 and avoiding the moving plate w5 from getting stuck at the corner and affecting the movement.

[0025] The specific usage and function of this embodiment are as follows: In this invention, when people move around in the leisure hall 1 and the leisure and negotiation area 4 to view the landscape water feature 7 and landscape pond 5, they can rest in the leisure pavilion 6. Thus, people mainly stay in the leisure hall 1. In the enclosure 2 at the edge of the leisure hall 1, the base w4 is fixed to the upper end of the base plate w1. The movable plate w3 is manually pulled open to push the moving plate w5 above the base w4. Then, the movable plate w3 is pulled again to limit the moving plate w5 above the base w4. By pushing the planting bottle 22, the moving plate w5 slides on the first ball bearing w2 at the upper end of the base w4, which facilitates the transfer of plants in the planting bottle 22. By pushing the fixed railing 23, the fixed railing 23 slides in the track box 21, so that the plants in the planting bottle 22 can be easily moved to densely populated areas, which facilitates the adjustment of carbon neutrality.

[0026] In this invention, after the movable plate w5 is placed above the base w4, the limiting plate w33 is pushed from the side, causing the spring w32 to rotate around the rotating block w34. This causes the spring w32 to rotate and move from the side of the base w4 to the top of the base w4, while simultaneously stretching the spring w32. Under the elastic force of the spring w32, the limiting plate w33 is elastically fixed downwards above the base w4, thus limiting and blocking the movable plate w5. This allows the upper side of the movable plate w5 to slide into contact with the second ball w31. When the movable plate w5 moves to the corner of the track groove 24, the force strip w51 is squeezed against the arc plate w53 under the elastic force of the rubber block w52, causing the force strips w51 around the perimeter to elastically extend and retract towards the square plate w54. Consequently, the movable plate w5 is prevented from getting stuck at the corner of the track groove 24, thus enabling the movable plate w5 to move and preventing it from getting stuck at the corner, which would affect its movement.

[0027] Example 2: As attached Figure 6 To be continued Figure 7 As shown: The lighting mechanism 3 includes a support ring t1, flower pots t2, electrical posts t3, and lamps t4. The lamp t4 is embedded in the upper end of the electrical post t3. The flower pot t2 is located above the support ring t1, and the flower pot t2 and the support ring t1 slide against each other. The support ring t1 is located around the electrical post t3. The electrical post t3 and the support ring t1 are distributed and embedded in the surfaces of the lounge 1 and the casual meeting area 4. The support ring t1 is slightly lower than the electrical post t3. There are five flower pots t2, arranged in order to accommodate the electrical post t3. The five flowerpots t2 are arranged in a ring around the upper end of the support ring t1, forming an arc shape on the upper end of the support ring t1. This neutralizes the carbon of the light bulb above the power station t3. There is a large gap between the flowerpots t2 to allow the light from the light bulb t4 to shine through. The gap between the flowerpots t2 does not block the light from the light bulb t4. At the same time, the plants on the five flowerpots t2 neutralize the carbon of the light bulb t4, preventing the temperature from rising due to weak carbon neutralization around the light bulb t4.

[0028] The flowerpot t2 includes a cup base t21, a pot body t22, a third ball bearing t23, and a water trough t24. The third ball bearing t23 engages with the inside of the cup base t21, which is installed inside the pot body t22. The water trough t24 is located inside the pot body t22. The cup base t21 is located at the upper end of the support ring t1, and the third ball bearing t23 slides with the support ring t1. The cup base t21 is triangular in shape, and its angle matches that of the triangle at the upper end of the support ring t1. The water trough t24 holds water and has a certain heat absorption effect. As a result, plants are planted on the upper part of the cup bottom block t21, making the height of the plants similar to that of the light bulb t4. This pushes the pot body t22, causing the third ball bearing t23 on the inner side of the cup bottom block t21 to slide on the side of the support ring t1. Consequently, the spacing of the five flower pots t2 on the support ring t1 is adjusted in an arc shape, allowing for free adjustment of the arc angle formed by the five flower pots t2. This allows the water in the water tank t24 to absorb some of the heat, while the plants around the light bulb t4 neutralize the carbon dioxide generated by the heat, preventing the light bulb t4 from being unable to neutralize carbon due to insufficient plants around it.

[0029] The specific usage and function of this embodiment are as follows: In this invention, five flowerpots t2 form an arc shape on the upper end of the support ring t1, neutralizing the carbon in the lamp at the upper end of the power station t3. This pushes the pot body t22, causing the third ball bearing t23 inside the cup bottom block t21 to slide on the side of the support ring t1. This allows for arc-shaped adjustment of the spacing between the five flowerpots t2 on the support ring t1, enabling free adjustment of the arc angle formed by the five flowerpots t2. Furthermore, the water in the water tank t24 absorbs some of the heat, while the plants around the lamp t4 neutralize the carbon dioxide generated by the heat. A large gap exists between the flowerpots t2 to allow the light from the lamp t4 to shine through, ensuring that the gap does not obstruct the light from the lamp t4. Simultaneously, the plants on the five flowerpots t2 neutralize the energy of the lamp t4, preventing weak carbon neutralization around the lamp t4 and thus avoiding temperature increases. This also prevents insufficient carbon neutralization around the lamp t4 due to a lack of plants.

[0030] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solutions described in this invention, or by designing similar technical solutions by those skilled in the art under the inspiration of the technical solutions described in this invention, falls within the protection scope of this invention.

Claims

1. A landscape garden with carbon neutrality and energy-saving functions, the structure of which includes a leisure hall (1), an enclosure (2), a lighting mechanism (3), a leisure and negotiation area (4), a landscape pond (5), a leisure pavilion (6), and a landscape water feature (7), characterized in that: The leisure hall (1) is connected to the lighting mechanism (3) panel, the enclosure (2) is installed on the surface of the leisure hall (1) and the leisure negotiation area (4), the lighting mechanism (3) is embedded in the surface of the leisure hall (1) and the leisure negotiation area (4), the leisure pavilion (6) is built on the surface of the leisure hall (1), and the landscape water feature (7) panel is connected to the side of the landscape pond (5). The enclosure (2) is provided with a track box (21), a planting bottle (22), a fixed rail (23), and a track groove (24). The track groove (24) is located inside the track box (21). The fixed rail (23) slides inside the track box (21). The planting bottle (22) is embedded in the upper end of the fixed rail (23). The lower end of the track box (21) is installed on the surface of the lounge (1) and the leisure and negotiation area (4).

2. A landscape garden with carbon neutrality and energy-saving function according to claim 1, characterized in that: The track box (21) is provided with a base plate (w1), a first ball bearing (w2), a movable plate (w3), a base (w4), and a moving plate (w5). The first ball bearing (w2) is embedded in the bottom of the base (w4). The lower end of the base (w4) is engaged with the upper end of the base plate (w1). The movable plate (w3) is installed inside the upper end of the base (w4). The moving plate (w5) is in sliding cooperation with the first ball bearing (w2). The moving plate (w5) is in limiting sliding cooperation with the movable plate (w3). The fixed rail (23) is embedded in the upper end of the moving plate (w5). The outer side of the fixed rail (23) is in sliding cooperation with the inner side of the upper end of the movable plate (w3). The lower end of the base plate (w1) is installed on the surface of the lounge (1) and the leisure and negotiation area (4).

3. A landscape garden with carbon neutrality and energy-saving function according to claim 2, characterized in that: The movable plate (w3) is provided with a second ball bearing (w31), a spring (w32), a limiting plate (w33), and a rotating block (w34). The rotating block (w34) is embedded in the lower end of the spring (w32), the spring (w32) is installed in the lower end of the limiting plate (w33), the second ball bearing (w31) is engaged in the side of the limiting plate (w33), and the rotating block (w34) is installed in the upper interior of the base (w4).

4. A landscape garden with carbon neutrality and energy-saving function according to claim 2, characterized in that: The movable plate (w5) is provided with a force-bearing strip (w51), a rubber block (w52), an arc-shaped plate (w53), and a square plate (w54). The rubber block (w52) is embedded in the side of the force-bearing strip (w51). The upper side of the arc-shaped plate (w53) is installed on the inner side of the force-bearing strip (w51). The left side of the arc-shaped plate (w53) is embedded in the outer side of the square plate (w54). The lower surface of the square plate (w54) is in sliding engagement with the first ball (w2). The force-bearing strip (w51) is in limiting sliding engagement with the movable plate (w3).

5. A landscape garden with carbon neutrality and energy-saving function according to claim 1, characterized in that: The lighting mechanism (3) includes a support ring (t1), a flower pot (t2), a power stake (t3), and a light (t4). The light (t4) is embedded in the upper end of the power stake (t3). The flower pot (t2) is located in the upper end of the support ring (t1), and the flower pot (t2) and the support ring (t1) slide together. The support ring (t1) is located around the power stake (t3). The power stake (t3) and the support ring (t1) are distributed and embedded in the surface of the lounge (1) and the leisure and negotiation area (4).

6. A landscape garden with carbon neutrality and energy-saving function according to claim 5, characterized in that: The flowerpot (t2) is provided with a cup bottom block (t21), a pot body (t22), a third ball bearing (t23), and a water trough (t24). The third ball bearing (t23) is engaged inside the cup bottom block (t21), the cup bottom block (t21) is installed inside the pot body (t22), the water trough (t24) is located inside the pot body (t22), the cup bottom block (t21) is located at the upper end of the support ring (t1), and the third ball bearing (t23) slides with the support ring (t1).