Greening landscape building for urban planning and design

By designing a water collection bucket and water control components, the problem of frequent manual monitoring of water usage in green landscape building flower pots has been solved, achieving automatic water supply and stable water level, and improving ease of use.

CN224178845UActive Publication Date: 2026-05-01GUANGZHOU TIANZUO ARCHITECTURAL PLANNING & DESIGN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU TIANZUO ARCHITECTURAL PLANNING & DESIGN CO LTD
Filing Date
2025-05-12
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing flower pots used in green landscape architecture require frequent manual monitoring of water usage, which is inconvenient.

Method used

A structure including a water collection bucket, a filter screen, a flower pot, a float, a water storage ring box, and a water control device is designed. Automatic water supply is achieved through the water control device and a pull line. Combined with an overflow port and a filter screen, excessive rainwater is prevented from entering, ensuring a stable water level in the flower pot.

Benefits of technology

It enables automatic water supply to flower pots, reducing the frequency of manual monitoring, avoiding damage to green plants caused by excessively high or low water levels, and improving ease of use.

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Abstract

The utility model discloses a greening landscape building for urban planning and design, and relates to the technical field of urban greening. The top end of the filter screen is sleeved with a flowerpot; the bottom of the flowerpot is fixedly connected with a floating block; a balancing weight is placed at the bottom of the water collecting bucket; a water absorption cotton strip is arranged between the balancing weight and the flowerpot; a plurality of water control pieces are evenly installed in the water storage ring box in the circumferential direction, a pull wire is installed between one side of each water control piece and the bottom face of the flowerpot, and a plurality of overflow ports are evenly formed in the middle of the water collecting bucket along the circumferential side face. The water storage ring box is arranged at the top of the water collecting bucket, the water control pieces with the pull wires are installed between the flowerpot installed in the middle of the water collecting bucket and the water storage ring box, the water storage ring box is controlled to supply water to the flowerpot periodically by means of rising and falling of the water level in the water collecting bucket, and the frequency that workers take care of green plants is reduced.
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Description

A type of green landscape architecture for urban planning and design Technical Field

[0001] This utility model belongs to the field of urban greening technology, and specifically relates to a green landscape building for urban planning and design. Background Technology

[0002] Green landscape architecture in urban planning and design is an important means to improve the quality of the city. By rationally arranging elements such as plants and landscape features, it can improve the ecological environment, provide recreational spaces for residents, and meet diverse needs. The design should follow the principles of ecology, functionality, artistry, and sustainability, and pay attention to the selection and matching of plants to create a beautiful and practical landscape effect.

[0003] The patent specification with publication number CN221598730U discloses a green landscape building for urban planning and design, including a water storage tank, a flower pot on top of the water storage tank, and a water supply unit between the water storage tank and the flower pot for continuously supplying water to the green plants planted in the flower pot; the water supply unit includes a water guide hopper on the top of the water storage tank, a buoyancy block on the bottom of the flower pot, multiple hanging ears fixedly connected to the top of the flower pot, a connecting shaft fixedly connected to the hanging ears, and multiple connecting blocks fixedly connected to the inner wall of the top of the water storage tank;

[0004] This flowerpot utilizes rainwater by placing it inside a water storage tank and using a buoyancy block at the bottom. Water is drawn from the tank to the pot using absorbent strips. However, this method has drawbacks. Because the rainwater source is unstable, manual replenishment is required when there is no rain for extended periods. Conversely, in cases of excessive rainfall, some water must be emptied to prevent the plants from being submerged. In short, the device requires frequent monitoring and is inconvenient to use.

[0005] No effective solutions have yet been proposed to address the problems in the relevant technologies. Summary of the Invention

[0006] The purpose of this utility model is to provide a green landscape building for urban planning and design. The technical problem to be solved is as follows: the existing flower pots for green landscape buildings require frequent manual watering and maintenance, which is inconvenient to use.

[0007] The objective of this utility model can be achieved through the following technical solutions:

[0008] A green landscape building for urban planning and design includes a water collection tank. A filter screen is fixedly connected to the middle of the water collection tank along the circumference. A flower pot is fitted onto the top of the filter screen. A float is fixedly connected to the bottom of the flower pot. A counterweight is placed at the bottom of the water collection tank. A water-absorbing cotton strip is arranged between the counterweight and the flower pot. A water storage ring box is arranged on the top periphery of the water collection tank. At least three water control devices are evenly installed in the circumference of the water storage ring box. A pull line is detachably connected between one side of the water control device and the bottom of the flower pot. The water control device is used to dynamically supply water to the inside of the water collection tank in conjunction with the pull line. Multiple overflow ports are evenly arranged on the middle periphery of the water collection tank.

[0009] As a further embodiment of this utility model: a plurality of hanging rods are fixedly connected to the top of the water collection tank along the circumferential direction, and a hanging ring is fixedly connected between the top ends of each of the hanging rods.

[0010] As a further embodiment of this utility model, the horizontal height of the top of the overflow outlet is lower than the horizontal height of the top of the flowerpot.

[0011] As a further embodiment of this utility model: filter holes are evenly arranged in the circumferential direction at both the top and bottom of the filter screen, and a limiting cylinder is provided at the center of the top. The flower pot is inserted into the limiting cylinder, and a cotton passage is opened on one side of the limiting cylinder.

[0012] As a further embodiment of this utility model: a water inlet is provided at the top of the water storage ring tank, a cap is provided at the top of the water inlet, and a viewing window is provided on one side of the water storage ring tank.

[0013] As a further embodiment of this utility model: the water control component includes a spring fixedly connected to one side of the inner wall of the water storage ring box, a drain cylinder fixedly connected to one side of the spring, a drain outlet provided at the top and top periphery of the drain cylinder, the bottom and bottom end of the drain cylinder being closed, a water inlet hole provided on the inner side of the water storage ring box adapted to the drain cylinder, a cable tie fixedly connected to the bottom surface of the drain cylinder, a cable tie opening provided at the bottom of the flowerpot adapted to the water control component, and a pull cable installed between the cable tie and the cable tie opening, passing through the filter holes of the filter screen.

[0014] The beneficial effects of this utility model are:

[0015] By installing a water storage ring box with a water inlet at the top of the water collection bucket, inserting a flowerpot with a float at the bottom into the middle of the water collection bucket, and installing multiple water control devices between the flowerpot and the water storage ring box, when in use, after adding water to the bottom of the water collection bucket and inside the water storage ring box, as the water level at the bottom of the water collection bucket continues to drop, the flowerpot pulls the pull line, and the drain outlet at the top of the drain tube of the water control device is pulled out of the water storage ring box, and water is replenished into the water collection bucket from the water storage ring box until the water level rises. Then the pull line returns to a slack state, causing the spring to return the drain tube to the position of blocking the water inlet. When the water level drops again, the water storage ring box replenishes water again, thus realizing the periodic automatic water supply to the flowerpot, while avoiding the water from being exposed and evaporated quickly, and also effectively reducing the frequency of staff to care for the green plants;

[0016] By installing a filter screen on the water collection bucket and placing flower pots inside, rainwater can be collected to supplement the water supply inside the water storage ring tank. An overflow outlet is installed in the middle of the water collection bucket to prevent excessive rainwater from damaging the plants while supplementing the water supply to the flower pots. Combined with the periodic automatic water supply from the water storage ring tank, the water level in the collection bucket at the bottom of the flower pots can always be kept at a stable and safe water level, allowing the plants to receive a stable water supply for a long time without human intervention. Attached Figure Description

[0017] The present invention will be further described below with reference to the accompanying drawings.

[0018] Figure 1 is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 is a partial cross-sectional view of this utility model;

[0020] Figure 3 is a detailed enlarged view of point A in Figure 2 of this utility model;

[0021] Figure 4 is a magnified view of the details at point B in Figure 2 of this utility model.

[0022] In the diagram: 1. Water collection bucket; 2. Filter screen; 3. Flower pot; 4. Float; 5. Counterweight; 6. Absorbent cotton strip; 7. Water storage ring box; 8. Water control component; 81. Spring; 82. Drain cylinder; 83. Drain outlet; 84. Water inlet hole; 85. Cable tie; 9. Pull cable; 10. Overflow outlet; 11. Hanging rod; 12. Hanging ring; 13. Limiting cylinder; 14. Cotton inlet; 15. Water inlet; 16. Viewing window; 17. Cable tie. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0024] As shown in Figures 1 to 4, a green landscape building for urban planning and design includes a water collection tank 1. A filter screen 2 is fixedly connected to the middle of the water collection tank 1 along the circumference. A flower pot 3 is fitted onto the top of the filter screen 2. A float 4 is fixedly connected to the bottom of the flower pot 3. A counterweight 5 is placed at the bottom of the water collection tank 1. A water-absorbing cotton strip 6 is set between the counterweight 5 and the flower pot 3. A water storage ring box 7 is set on the top periphery of the water collection tank 1. Three water control components 8 are installed in the water storage ring box 7 along the circumference. A pull line 9 is detachably connected between the water control component 8 and the bottom surface of the flower pot 3. The water control component 8 is used to dynamically supply water to the water collection tank 1 in conjunction with the pull line 9. Three overflow ports 10 are evenly arranged on the middle periphery of the water collection tank 1.

[0025] It should be noted that three hanging rods 11 are fixedly connected to the top of the water collection bucket 1 along the circumference, and hanging rings 12 are fixedly connected between the tops of each hanging rod 11. That is, when the landscape structure (hereinafter referred to as the landscape pot) is used, it is suspended around the urban road by the hanging rings 12. The top of the water collection bucket 1 is an open collection surface, and the bottom is a water collection part, which is used to collect rainwater. During the collection process, if the rainfall is large, the excess rainwater will be discharged through the overflow port 10 set in the middle of the water collection bucket 1, thereby avoiding the excessive rainwater from entering the flower pot 3 and causing seedling flooding. Specifically, the horizontal height of the overflow port 10 is lower than the height of the top of the flower pot 3.

[0026] As shown in Figures 1 and 2, filter holes are evenly arranged in the circumferential direction at both the top and bottom of the filter screen 2, and a limiting cylinder 13 is set at the center of the top. The flower pot 3 is inserted into the limiting cylinder 13. A cotton passage 14 is opened on one side of the limiting cylinder 13. The opening area of ​​the cotton passage 14 is larger than the circumferential side area of ​​the counterweight 5. The absorbent cotton strip 6 extends from the bottom of the water collection bucket 1 through the cotton passage 14 to the inside of the flower pot 3.

[0027] It should be noted that the filter screen 2 has filter holes all around the periphery and top, and only a cotton passage 14 is provided for the counterweight 5 to pass through. When the water collection bucket 1 receives rainwater, most of the impurities can be filtered out by the filter screen 2, which basically prevents impurities from entering the inside of the water collection bucket 1. The cotton passage 14 can be used to put in and take out the absorbent cotton strip 6 with the counterweight 5.

[0028] As shown in Figures 2 to 4, a water inlet 15 is provided at the top of the water storage ring tank 7. The water inlet 15 includes a water inlet pipe and a cap threadedly connected to its top. A viewing window 16 is provided on one side of the water storage ring tank 7.

[0029] It should be noted that before the landscape pot collects rainwater as supplementary water for watering the green plants, during the preparation for hanging, it is necessary to first store water in the water storage ring box 7 by opening the water inlet 15. That is, the main water for the flower pot 3 needs to come from a more stable artificial water supply to avoid the problem of water shortage for the green plants due to prolonged lack of rain. The artificial water supply is stored in the water storage ring box 7, which can effectively avoid the problem of rapid loss due to excessive evaporation caused by prolonged exposure. In addition, the staff can periodically judge the remaining water level inside through the viewing window 16 to add water in a timely manner.

[0030] The water control component 8 includes a spring 81 fixedly connected to one side of the inner wall of the water storage ring box 7. A drain cylinder 82 is fixedly connected to one side of the spring 81. Drain outlets 83 are opened at the top and the top periphery of the drain cylinder 82. The bottom and bottom end of the drain cylinder 82 are closed. A water inlet hole 84 is opened on the inner side of the water storage ring box 7 to accommodate the drain cylinder 82. A cable tie 85 is fixedly connected to the bottom surface of the drain cylinder 82. A cable tie port 17 is set at the bottom of the flowerpot 3 to accommodate the water control component 8. A pull cable 9 is installed between the cable tie port 85 and the cable tie port 17 and passes through the filter holes of the filter screen 2.

[0031] It should be noted that when hoisting the plant pot, water is first added to the water collection bucket 1 and the water storage ring box 7. At this time, the flower pot 3 is in a high position under the action of the float 4. The angle of inclination of the pull line 9 on the side closer to the flower pot 3 is small, and its bottom end is closer to the other end tied to the water control component 8, that is, it is in a loose state. Since the pull line 9 is in a loose state and has not yet pulled the drain pipe 82, the bottom of the drain pipe 82 blocks the water inlet hole 84, and the water stored in the water storage ring box 7 will not be discharged. Moreover, it is in a sealed state and is not easy to evaporate. As the water in the water collection bucket 1 is continuously consumed, the flower pot 3 continues to descend, and the pull line 9 gradually changes from a loose state to a taut state until it pulls the bottom of the drain pipe 82. The end of the drain pipe 82 away from the pull line 9 is fixedly connected to the inner wall of the water storage ring box 7 through the spring 81. At this time, the spring 81 is pulled open, and the drain ports 83 at the top and the top periphery of the drain pipe 82 are pulled to the water storage ring box 7. On the outside, the water stored in the water storage ring box 7 flows along the drain outlets 83 and through the filter holes of the filter screen 2 into the water collection tank 1. After the water level rises, the flower pot 3 floats up, and the pull line 9 returns to its relaxed state. The tension on the spring 81 disappears, and the spring rebounds, bringing the drain cylinder 82 back to its initial state. The drain outlets 83 return to the inside of the water storage ring box 7, and the water inlet hole 84 is blocked again. The water storage ring box 7 then stops supplying water to the flower pot 3 until the water level inside the water collection tank 1 drops again. This achieves periodic dynamic water supply from the water storage ring box 7 to the flower pot 3 in the water collection tank 1. On the one hand, it avoids the rapid evaporation and loss of the stored water, and on the other hand, it avoids insufficient water supply to the flower pot 3. Combined with the collection of rainwater in the water collection tank 1 and the discharge of excess rainwater from the overflow outlet 10, the green plants in the landscape pot can receive a stable and safe water supply for a long time with reduced staff attention, improving the convenience of use.

[0032] The above description provides a detailed account of one embodiment of the present invention. However, this description is merely a preferred embodiment and should not be construed as limiting the scope of the present invention. All equivalent variations and improvements made within the scope of the claims of the present invention should still fall within the patent coverage of the present invention.

Claims

1. A green landscape building for urban planning and design, comprising a water collection bucket (1), wherein a filter screen (2) is fixedly connected to the middle of the water collection bucket (1) along the circumferential direction, a flower pot (3) is sleeved on the top of the filter screen (2), a float (4) is fixedly connected to the bottom of the flower pot (3), a counterweight (5) is placed at the bottom of the water collection bucket (1), and an absorbent cotton strip (6) is provided between the counterweight (5) and the flower pot (3), characterized in that, The top periphery of the water collection bucket (1) is provided with a water storage ring box (7). At least three water control components (8) are evenly installed in the water storage ring box (7) along the circumferential direction. A pull line (9) is detachably connected between one side of the water control component (8) and the bottom surface of the flower pot (3). The water control component (8) is used to cooperate with the pull line (9) to dynamically supply water to the inside of the water collection bucket (1). Multiple overflow ports (10) are evenly provided in the middle of the water collection bucket (1) along the periphery.

2. A green landscape building for urban planning and design according to claim 1, characterized in that, The top of the water collection tank (1) is fixedly connected with a plurality of hanging rods (11) along the circumferential direction, and a hanging ring (12) is fixedly connected between the tops of each of the hanging rods (11).

3. A green landscape building for urban planning and design according to claim 1, characterized in that, The top of the overflow outlet (10) is at a lower level than the top of the flowerpot (3).

4. A green landscape building for urban planning and design according to claim 1, characterized in that, The filter screen (2) has filter holes evenly arranged in the circumferential direction at both the top and bottom, and a limiting cylinder (13) is provided at the center of the top. The flower pot (3) is inserted into the limiting cylinder (13), and a cotton passage (14) is opened on one side of the limiting cylinder (13).

5. A green landscape building for urban planning and design according to claim 1, characterized in that, The top of the water storage ring tank (7) is provided with a water inlet (15), the top of the water inlet (15) is provided with a cap, and a viewing window (16) is provided on one side of the water storage ring tank (7).

6. A green landscape building for urban planning and design according to claim 1, characterized in that, The water control component (8) includes a spring (81) fixedly connected to one side of the inner wall of the water storage ring box (7). A drain cylinder (82) is fixedly connected to one side of the spring (81). A drain outlet (83) is provided on the top and top periphery of the drain cylinder (82). The bottom and bottom end of the drain cylinder (82) are closed. A water replenishment hole (84) is provided on the inner side of the water storage ring box (7) to accommodate the drain cylinder (82). A tie seat (85) is fixedly connected to the bottom surface of the drain cylinder (82). A tie port (17) is provided on the bottom of the flower pot (3) to accommodate the water control component (8). The pull line (9) is installed between the tie seat (85) and the tie port (17) and passes through the filter holes of the filter screen (2).

Citation Information

Patent Citations

  • Greening landscape building for urban planning and design

    CN221598730U