Urban road automatic water supplementing flower box
By designing automatic water-replenishing flower boxes for urban roads, the system utilizes water flow power to drive the spraying components to rotate. Combined with a rainwater collection and filtration system, it solves the problem of inconvenience in automatic water spraying of flower boxes, reduces costs, and improves maintenance efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YATE LANDSCAPE ENG GRP CO LTD
- Filing Date
- 2025-05-27
- Publication Date
- 2026-05-12
AI Technical Summary
Existing urban road flower boxes lack automatic water spraying function, which makes them inconvenient to use, and existing automatic water spraying flower boxes require additional drive motors, increasing costs.
An automatic water replenishment flower box for urban roads was designed. It uses water flow power to drive the spraying components to rotate. Combined with a rainwater collection and filtration system, it reduces the need for additional rotating structures and achieves automatic water replenishment using a submersible pump and rainwater collection components.
It achieves automatic water replenishment without the need for additional rotating structures, reducing costs and improving maintenance efficiency, while also utilizing rainwater resources to improve water resource utilization efficiency.
Smart Images

Figure CN224218989U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flower boxes, specifically an automatic water replenishment flower box for urban roads. Background Technology
[0002] Flower boxes are made of sturdy, durable, and aesthetically pleasing materials to meet the needs of urban road landscaping. They are typically used for planting flowers and other plants and are of great significance in urban road greening construction. However, the flower boxes currently installed in urban road medians do not have automatic water spraying functions, which causes inconvenience in their use.
[0003] The prior art 202221731281.4 discloses an automatic water spraying flower box for urban road landscape isolation strips. Although it solves the above problems, it requires an additional drive motor to drive the submersible pump and water pipes to rotate, which increases the cost. Utility Model Content
[0004] The purpose of this invention is to overcome the shortcomings of the existing technology and provide an automatic water replenishment flower box for urban roads.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: an automatic watering flower box for urban roads, comprising a cylindrical flower box, a perforated partition inside the flower box, a perforated baffle located directly below the partition inside the flower box, a filter sponge between the partition and the baffle, a rotatable spraying assembly located on one side of the top surface of a slide for watering the flowers, a water supply assembly located at the bottom of the flower box for supplying water to the spraying assembly and simultaneously rotating the spraying assembly through water flow, and a rainwater collection assembly located in a ring on the outer wall of the flower box and below the partition for collecting rainwater; the spraying assembly includes an inverted L-shaped support located on one side of the top surface of the flower box. The system comprises: a block; a U-shaped water trough arranged horizontally within the horizontal end of the support block; an n-shaped spray pipe positioned directly below the horizontal end of the support block with an inner wall length matching the diameter of the flower box's inner wall; several atomizing water outlets on the spray pipe for replenishing water to the flowers in the flower box; a connecting pipe with one end penetrating the support block and the U-shaped water trough into the upper channel of the U-shaped water trough, and the other end connected to the spray pipe; several blades arranged in a ring on one end of the connecting pipe located in the upper channel of the U-shaped water trough; and several water inlet holes arranged in a ring on a section of the connecting pipe located in the lower channel of the U-shaped water trough. The connecting pipe is connected to the support block via bearings; the upper channel of the U-shaped water trough is connected to the water outlet of the water supply component.
[0006] Preferably, the water supply assembly includes a submersible pump located at the bottom of the flower box and a water supply pipe with one end connected to the output end of the submersible pump and the other end connected to the channel above the U-shaped water tank.
[0007] Preferably, the rainwater collection assembly includes a water guide plate arranged in a ring on the outer wall of the flower box and inclined, and a plurality of flow guide holes arranged in a ring at the bottom of the flower box for rainwater to flow into the bottom of the flower box.
[0008] Preferably, the flower box is equipped with a filter screen; the filter screen is located directly below the flow guide hole.
[0009] Preferably, one end of the connecting pipe passes through one side of the upper and lower channels of the U-shaped water tank.
[0010] Due to the application of the above technical solution, this utility model has the following advantages compared with the prior art:
[0011] This invention combines a spraying component and a water supply component, using the power of water flow to drive the spraying end of the spraying component to rotate. This eliminates the need for an additional rotating structure, reducing costs and improving maintenance efficiency. Attached Figure Description
[0012] The technical solution of this utility model will be further described below with reference to the accompanying drawings:
[0013] Appendix Figure 1 This is a schematic diagram of the overall structure of the automatic water replenishment flower box for urban roads according to this utility model;
[0014] Appendix Figure 2 This is a cross-sectional structural diagram of the automatic water replenishment flower box for urban roads according to the present invention;
[0015] Appendix Figure 3 This is a top sectional view of the support block for the automatic water replenishment flower box on urban roads according to the present invention.
[0016] The components include: 1. Flower box; 2. Partition; 3. Baffle; 4. Filter sponge; 5. Spraying assembly; 51. Support block; 52. U-shaped water trough; 53. Spray pipe; 54. Atomizing water outlet; 55. Connecting pipe; 56. Blade; 57. Water inlet; 6. Water supply assembly; 61. Submersible pump; 62. Water supply pipe; 7. Rainwater collection assembly; 71. Water guide plate; 72. Flow guide hole; 8. Filter screen. Detailed Implementation
[0017] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0018] Appendix Figure 1-3The automatic watering flower box for urban roads according to this utility model includes a cylindrical flower box 1, a perforated partition 2 inside the flower box 1, a perforated baffle 3 located directly below the partition 2 inside the flower box 1, a filter sponge 4 between the partition 2 and the baffle 3, a rotatable spraying assembly 5 located on one side of the top surface of the slide for watering the flowers, a water supply assembly 6 located at the bottom of the flower box 1 for supplying water to the spraying assembly 5 and driving the spraying assembly 5 to rotate through the water flow, and a rainwater collection assembly 7 located in a ring on the outer wall of the flower box 1 and below the partition 2 for collecting rainwater; the spraying assembly 5 includes an inverted L-shaped support block 51 located on one side of the top surface of the flower box 1, a U-shaped water trough 52 located on the side of the horizontal end of the support block 51, an n-shaped water pipe located directly below the horizontal end of the support block 51 with an inner wall length consistent with the inner wall diameter of the flower box 1, and a water pipe 53 located on the water pipe 53 for watering the flowers in the flower box 1. The flower box 1 has several atomizing water outlet holes 54, a connecting pipe 55 with one end penetrating through the support block 51 and the U-shaped water trough 52 to the upper channel of the U-shaped water trough 52 and the other end connected to the spray pipe 53, several blades 56 arranged in a ring on one end of the connecting pipe 55 located in the upper channel of the U-shaped water trough 52, and several water inlet holes 57 arranged in a ring on a section of the connecting pipe 55 located in the lower channel of the U-shaped water trough 52; the connecting pipe 55 is connected to the support block 51 through a bearing; the upper channel of the U-shaped water trough 52 is connected to the water outlet of the water supply component 6; the water supply component 6 includes a submersible pump 61 located at the bottom of the flower box 1, and a water supply pipe 62 with one end connected to the output end of the submersible pump 61 and the other end connected to the upper channel of the U-shaped water trough 52; the rainwater collection component 7 includes a water guide plate 71 arranged in a ring on the outer wall of the flower box 1 and inclined, and several guide holes 72 arranged in a ring at the bottom of the flower box 1 for rainwater to flow into the bottom of the flower box 1.
[0019] Furthermore, a filter screen 8 is provided inside the flower box 1; the filter screen 8 is located directly below the guide hole 72 to prevent impurities from falling in.
[0020] Furthermore, one end of the connecting pipe 55 passes through one side of the upper and lower channels of the U-shaped water tank 52 to improve rotation efficiency.
[0021] In use: When watering the flowers in flower box 1 is required, first start the submersible pump 61. The submersible pump 61 delivers water to the U-shaped water channel 52. The water then flows along the U-shaped water channel 52. When it passes the top of the connecting pipe 55, the water flow pushes several blades 56 to rotate. The blades 56 then drive the connecting pipe 55 to rotate, which in turn drives the spray pipe 53 to rotate. The water then flows through the U-shaped water channel 52 to a section below the top of the connecting pipe 55. The water then enters the connecting pipe 55 through the inlet hole 57, and then flows back into the spray pipe 53 through the connecting pipe 55, before exiting through the atomizing outlet of the spray pipe 53. The water is sprayed out from the nozzle 54. During the spraying process, the water pipe 53 rotates, which can evenly spray the flowers in the flower box 1. During the watering process, the soil absorbs the water, and then the excess water seeps through the holes of the partition 2 to the filter sponge 4, where it is absorbed. After the filter sponge 4 is saturated, the excess water flows back to the bottom of the flower box 1, and the filter screen 8 filters the returning water. When it rains, the rainwater is collected by the water guide plate 71 and then flows along the water guide plate 71 to the guide hole 72, and then flows into the flower box 1 through the guide hole 72. The filter screen 8 filters the rainwater, effectively utilizing resources.
[0022] The above are merely specific application examples of this utility model and do not constitute any limitation on the scope of protection of this utility model. All technical solutions formed by equivalent transformations or equivalent substitutions fall within the scope of protection of this utility model.
Claims
1. An automatic watering flower box for urban roads, characterized in that: The device includes a cylindrical flower box, a perforated partition inside the flower box, a perforated baffle located directly below the partition inside the flower box, a filter sponge between the partition and the baffle, a rotatable spray assembly located on one side of the top surface of a slide for watering the flowers, a water supply assembly located at the bottom of the flower box for supplying water to the spray assembly and simultaneously rotating the spray assembly via water flow, and a rainwater collection assembly located in a ring on the outer wall of the flower box below the partition for collecting rainwater; the spray assembly includes an inverted L-shaped support block located on one side of the top surface of the flower box, and a sideways arrangement within the horizontal end of the support block. The system includes a U-shaped water trough, a spray pipe shaped like an "n" with its inner wall length matching the diameter of the flower box's inner wall, positioned directly below the horizontal end of the support block, several atomizing water outlets on the spray pipe for watering the flowers in the flower box, a connecting pipe with one end penetrating the support block and the U-shaped water trough into the upper channel of the U-shaped water trough and the other end connected to the spray pipe, several blades arranged in a ring on one end of the connecting pipe located in the upper channel of the U-shaped water trough, and several water inlet holes arranged in a ring on a section of the connecting pipe located in the lower channel of the U-shaped water trough; the connecting pipe is connected to the support block via bearings; the upper channel of the U-shaped water trough is connected to the water outlet of the water supply component.
2. The automatic water replenishment flower box for urban roads according to claim 1, characterized in that: The water supply assembly includes a submersible pump located at the bottom of the flower box and a water supply pipe with one end connected to the output end of the submersible pump and the other end connected to the channel above the U-shaped water tank.
3. The automatic water replenishment flower box for urban roads according to claim 1, characterized in that: The rainwater collection assembly includes a water guide plate arranged in a ring on the outer wall of the flower box and tilted, and several guide holes arranged in a ring at the bottom of the flower box for rainwater to flow into the bottom of the flower box.
4. The automatic water replenishment flower box for urban roads according to claim 1, characterized in that: The flower box is equipped with a filter screen; the filter screen is located directly below the flow guide hole.
5. The automatic water replenishment flower box for urban roads according to claim 1, characterized in that: One end of the connecting pipe passes through one side of the upper and lower channels of the U-shaped water tank.