Garden landscape water storage flower bed
By designing a garden landscape water storage flower bed and using a water pump and sensor control system, automatic watering of the plants in the center of the flower bed has been achieved, solving the problem of the inconvenience of watering with tools in the existing technology and improving the convenience of watering.
Patent Information
- Application Number
- CN202520897074.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2026-04-14
- Estimated Expiration
- 2035-05-08
AI Technical Summary
Watering the plants in the middle of the existing flower bed is inconvenient and requires tools, which is cumbersome.
Design a garden landscape water storage flower bed, including a pot body, a water tank, a water pump, a watering rack, and a sensor control system. Automatic watering is achieved by raising and lowering the watering rack and controlling the water pump to turn it on and off through sensors.
It allows for efficient watering of the center and outer edges of flower beds without the need for tools, and is easy to operate, reducing reliance on tools during the watering process.
Smart Images

Figure CN224111743U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of municipal landscaping, and in particular to a water-retaining flower bed for landscaping. Background Technology
[0002] Landscape architecture is an important component of urban planning and construction, making significant contributions to urban beautification and ecological environment improvement. Flower beds are an important element in landscape architecture, often used to decorate and beautify garden spaces.
[0003] For example, the utility model patent with patent publication number CN209527275U discloses a new type of flower bed for scenic spots, which includes side panels and pillars. There are four pillars arranged in a rectangular shape. Each pillar has a ground cone. The upper side of the ground cone and the bottom of the pillar are welded together. Both the pillar and the ground cone are made of alloy material. The outside of the ground cone is provided with a corrosion-resistant layer, which is formed by spraying corrosion-resistant paint onto the outer surface of the ground cone and solidifying it. The side panels are located between adjacent pillars. The pillar has a groove at one end near the side panel. The groove is integral with the pillar. The width of the groove is the same as the width of the side panel. The two ends of the side panel are embedded in the groove. The outside of the pillar has screw holes and bolts. The bolts pass through the screw holes and penetrate the pillar and the side panel.
[0004] When using the above-mentioned flower bed, staff can only stand at the edge of the flower bed to water the plants. Since the reach of their hands is limited, it is difficult to water the plants in the middle of the flower bed. Staff need to use tools (such as fixing the watering can to a long pole and extending the watering can to the middle of the flower bed) to water the plants in the middle of the flower bed, which is quite troublesome and needs to be improved. Utility Model Content
[0005] To address the problem of the inconvenience of watering plants located in the middle of a flower bed, this application provides a garden landscape water-retaining flower bed.
[0006] This application provides a garden landscape water storage flower bed, which adopts the following technical solution:
[0007] A garden landscape water storage flower bed includes a pot body, a water tank, and a water pump. The pot body has a receiving groove, the water tank has a water storage cavity, and the water pump has an inlet pipe and an outlet pipe. The inlet pipe passes through the water tank and communicates with the water storage cavity, and the outlet pipe passes through the pot body. A watering rack is raised and lowered and slidable on the pot body. The watering rack is located above the receiving groove and is rotatably connected to the pot body. The rotation axis of the watering rack is vertical. The watering rack and the pot body are spliced to form a water passage, which communicates with the outlet pipe. The watering rack has several water outlets located on the side of the watering rack near the receiving groove and are distributed at intervals along the radial direction of the rotation axis of the watering rack. The water outlets communicate with the water passage.
[0008] The watering rack is equipped with a fixing ring, which is sleeved on the outside of the watering rack. The pot body is equipped with a displacement sensor and a controller. The displacement sensor is used to sense the distance between itself and the fixing ring. When the fixing ring rises to a certain distance, the displacement sensor outputs a control signal to the controller, and the controller controls the water pump to turn on. When the fixing ring descends to the point where the watering rack abuts against the pot body for positioning, the displacement sensor outputs a control signal to the controller, and the controller controls the water pump to turn off.
[0009] By adopting the above technical solution, when watering is needed, the watering rack is raised upwards, causing the fixed ring to move upwards. When the fixed ring rises to a set distance, the displacement sensor outputs a control signal to the controller. The controller then controls the water pump to turn on. The water pump draws water from the water tank through the inlet pipe and sends the water into the water passage through the outlet pipe. Then, the water is sprayed out through several outlets to water the plants in the container. The staff can hold the watering rack and walk around the outer perimeter of the pot to water the plants in the middle and outer edges of the pot without the need for other tools, making watering the flower bed more convenient. After watering, the watering rack is lowered so that it touches the pot to achieve positioning. At this time, the displacement sensor outputs a control signal to the controller, which then controls the water pump to turn off.
[0010] Optionally, a limiting cavity is formed inside the jar, and the watering rack includes a sliding part that slides and moves up and down on the jar, a limiting part and an extension part provided on the sliding part, the extension part being located on one side of the sliding part in the horizontal direction, the water passage being formed by splicing the sliding part, the extension part and the jar, the water outlet being provided on the extension part, and the limiting part being located inside the limiting cavity and surrounding the outer periphery of the sliding part.
[0011] By adopting the above technical solution, the watering rack's movement range is limited by the inner wall of the limiting cavity abutting against the limiting part, preventing the watering rack from detaching from the pot body when it is lifted, thus making the watering rack more convenient to use.
[0012] Optionally, the lower end of the limiting part is provided with a protrusion, and the bottom inner wall of the limiting cavity is provided with a plurality of grooves, which are circumferentially spaced around the outer periphery of the sliding part, and the grooves are for the protrusion to be inserted into.
[0013] By adopting the above technical solution, with protrusions and grooves, when the watering rack moves down to abut the pot body, the protrusions are engaged in the corresponding grooves. The watering rack is positioned by the protrusions abutting against the inner wall of the grooves, which reduces the possibility of the watering rack being accidentally touched by pedestrians, causing it to rotate and thus crushing the plants in the pot.
[0014] Optionally, the jar body is provided with a sealing ring, which surrounds the outer periphery of the sliding part and abuts against the sliding part.
[0015] By adopting the above technical solution and setting a sealing ring, the sealing between the sliding part and the jar body is increased, thereby reducing the leakage of water through the gap between the sliding part and the jar body during the watering process.
[0016] Optionally, the fixed ring is provided with a closed ring, which is arranged around the outer periphery of the fixed ring. The closed ring and the fixed ring form a relief groove, which is located below the fixed ring. When the watering rack abuts against the pot body, the displacement sensor is located in the relief groove.
[0017] By adopting the above technical solution, setting a closed ring and a clearance groove to shield the displacement sensor, it can be prevented from being wetted and damaged by rainwater when it rains, which helps to extend the service life of the displacement sensor.
[0018] Optionally, the water tank has an inlet that communicates with the water storage chamber, a cover plate is hinged to the water tank and covers the inlet, a water storage tank is provided on the upper end face of the water tank, a through rod is slidably raised and lowered on the water tank, a float is provided on the through rod and the float is located in the water storage tank, and a top rod is provided on the through rod and the top rod is located in the water outlet chamber and abuts against the cover plate.
[0019] By adopting the above technical solution, when it rains, rainwater is collected in the water storage tank, causing the water level in the tank to rise. The float rises under the action of buoyancy, and through the through rod, it drives the top rod to move upward. The top rod pushes the cover plate to flip over and expose the water inlet, allowing rainwater to enter the water storage chamber through the water inlet, thereby collecting rainwater for subsequent watering. When it does not rain, the water in the water storage tank evaporates, the water level drops, the float moves downward, and through the through rod, it drives the top rod to move downward. Under the action of gravity, the cover plate flips over and approaches the tank body to close the water inlet, thereby reducing the amount of debris such as leaves falling into the water storage chamber and contaminating the stored water.
[0020] In summary, this application includes at least one of the following beneficial technical effects:
[0021] 1. When watering is needed, raise the watering rack until the fixed ring reaches the set distance. The displacement sensor outputs a control signal to the controller, which then controls the water pump to turn on. The water pump draws water from the water tank through the inlet pipe and sends the water into the water passage. The water is then sprayed out through several outlets to water the plants in the container. The staff can hold the watering rack and walk around the outside of the pot to water the plants in the middle and outer edges of the pot without the need for other tools, making watering the flower bed more convenient.
[0022] 2. By setting protrusions and grooves, when the watering rack moves down to abut against the pot body, the protrusions are engaged in the corresponding grooves. The protrusions abut against the inner wall of the grooves to limit the watering rack, reducing the possibility of the watering rack being accidentally touched by pedestrians and rotating, which could then crush the plants in the pot.
[0023] 3. When it rains, rainwater can be collected in the water storage chamber for subsequent watering. When it does not rain, the water in the water storage tank evaporates, the water level drops, the float moves down, and the push rod moves down through the through rod. The cover plate flips up under the action of gravity and approaches the box body to close the water inlet, so as to reduce the amount of debris such as leaves falling into the water storage chamber and contaminating the stored water. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of an embodiment of this application.
[0025] Figure 2 This is a partial cross-sectional view of the water tank and cover plate of an embodiment of this application, mainly showing the structure of the through rod and the top rod.
[0026] Figure 3 This is a partial cross-sectional view of the structure of the jar and watering rack in an embodiment of this application, mainly showing the structure of the water passage.
[0027] Figure 4 for Figure 3 The enlarged view of section A mainly shows the structure of the limiting cavity, sealing ring, fixing ring, closing ring, and relief groove.
[0028] Figure 5 This is a partial cross-sectional view of the jar body and watering rack of an embodiment of this application, mainly showing the structure of the protrusions and grooves.
[0029] Explanation of reference numerals in the attached drawings: 1. Jar body; 11. Main body; 111. Receiving groove; 12. Column; 121. Limiting cavity; 122. Groove; 2. Water tank; 21. Water storage cavity; 22. Water inlet; 23. Water storage tank; 3. Water pump; 4. Cover plate; 5. Through rod; 6. Top rod; 61. Top plate; 62. Connecting part; 7. Water inlet pipe; 8. Water outlet pipe; 9. Watering rack; 91. Sliding part; 92. Limiting part; 93. Extension part; 931. Water outlet; 10. Sealing ring; 13. Protrusion; 14. Water passage; 15. Fixing ring; 16. Closing ring; 17. Relief groove; 18. Displacement sensor; 19. Controller; 20. Float. Detailed Implementation
[0030] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.
[0031] This application discloses a garden landscape water-retaining flower bed. See also... Figure 1 The garden landscape water storage flower bed includes a pot body 1, a water tank 2 and a water pump 3. The pot body 1 includes a main body 11 and a column 12. The upper end face of the main body 11 is provided with a receiving groove 111. The receiving groove 111 is circular. The column 12 is located inside the receiving groove 111 and at the center of the receiving groove 111. The column 12 and the main body 11 are fixedly connected.
[0032] See Figure 1 and Figure 2 Both the water tank 2 and the water pump 3 are located on the outside of the tank body 1. The water tank 2 is fixed to the tank body 1. A water storage chamber 21 is provided inside the water tank 2. A water inlet 22 is provided on the upper end face of the water tank 2, and the water inlet 22 is connected to the water storage chamber 21. A cover plate 4 is hinged to the water tank 2. The cover plate 4 is located above the water tank 2 and covers the water inlet 22. The hinge axis of the cover plate 4 is set horizontally. A water storage tank 23 is also provided on the upper end face of the water tank 2. The water storage tank 23 is in the shape of an inverted cone. The water tank 2 has a sliding mechanism that allows for lifting and lowering. A through rod 5 is attached to a float 20 at its upper end, which is located inside the water storage tank 23. The lower end of the through rod 5 extends into the water storage cavity 21. A top rod 6 is attached to the through rod 5 and is located inside the water storage cavity 21. The top rod 6 includes a top plate 61 and a connecting part 62. The top plate 61 is located below the cover plate 4 and abuts against the cover plate 4. The connecting part 62 is located between the top plate 61 and the through rod 5, and both ends of the connecting part 62 are fixedly connected to the lower end of the top plate 61 and the lower end of the through rod 5, respectively.
[0033] In practical use, when it rains, rainwater is collected in the water storage tank 23, causing the water level in the water storage tank 23 to rise. The float 20 floats up under the action of buoyancy, and through the through rod 5, it drives the top plate 61 and the connecting part 62 to move upward. The top plate 61 pushes the cover plate 4 to flip and expose the water inlet 22, so that rainwater enters the water storage chamber 21 through the water inlet 22, thereby collecting rainwater. When it does not rain, the water in the water storage tank 23 evaporates, the water level drops, the float 20 moves downward, and through the through rod 5, it drives the top plate 61 and the connecting part 62 to move downward. The cover plate 4 flips up under the action of gravity and approaches the box body to close the water inlet 22, so as to reduce the amount of debris such as leaves falling into the water storage chamber 21 and contaminating the stored water.
[0034] See Figure 1-4 The water pump 3 is fixed with an inlet pipe 7 and an outlet pipe 8. The inlet pipe 7 passes through the water tank 2 and is connected to the water storage chamber 21. The outlet pipe 8 passes through the main body 11. A limiting cavity 121 is opened in the column 12. A watering rack 9 is slidably raised and lowered on the column 12. The watering rack 9 is located above the receiving groove 111. The watering rack 9 includes a sliding part 91, a limiting part 92, and an extension part 93. The sliding part 91 is located above the column 12. The lower end of the sliding part 91 passes through the column 12 and slides and rises and falls on the column 12. The sliding part 91 is also rotatably connected to the column 12. The rotation axes of the sliding part 91 and the column 12 are vertically arranged. A sealing ring 10 is fixed on the column 12. The sealing ring 10 is located at the upper end of the column 12. The sealing ring 10 is arranged around the outer periphery of the sliding part 91 and abuts against the sliding part 91. In this embodiment, the sealing ring 10 is made of rubber.
[0035] See Figure 1-5 The limiting part 92 is located inside the limiting cavity 121 and is arranged around the outer periphery of the sliding part 91. The limiting part 92 is located at the lower end of the sliding part 91 and is fixedly connected to the sliding part 91. A plurality of protrusions 13 are fixed at the lower end of the limiting part 92. The plurality of protrusions 13 are evenly distributed in a circumferential direction around the outer periphery of the sliding part 91. A plurality of grooves 122 are provided on the bottom inner wall of the limiting cavity 121. The number and position of the plurality of grooves 122 correspond one-to-one with the number and position of the protrusions 13. The grooves 122 are for the protrusions 13 to be inserted.
[0036] See Figure 1-5 The extension 93 is located above the column 12 and on one side of the sliding part 91 along the horizontal direction. The upper ends of the extension 93 and the sliding part 91 are fixedly connected. The extension 93, the sliding part 91, the column 12 and the main body 11 are spliced to form a water passage 14. The water passage 14 is connected to the water outlet pipe 8. Several water outlets 931 are opened on the outer wall of the extension 93. The several water outlets 931 are located on the side of the extension 93 near the receiving groove 111 and are evenly distributed radially along the rotation axis of the sliding part 91. The water outlets 931 are connected to the water passage 14.
[0037] See Figure 1-5A fixing ring 15 is fixed on the sliding part 91. The fixing ring 15 is located above the column 12. The fixing ring 15 is sleeved on the outside of the sliding part 91 and fixedly connected to the sliding part 91. A closing ring 16 is fixed on the fixing ring 15. The closing ring 16 is arranged around the outer periphery of the fixing ring 15 and fixedly connected to the fixing ring 15. A clearance groove 17 is formed around the closing ring 16 and the fixing ring 15. The clearance groove 17 is located below the fixing ring 15.
[0038] See Figure 1-5 A displacement sensor 18 is fixed on the column 12. When the limiting part 92 abuts against the bottom inner wall of the limiting cavity 121, the displacement sensor 18 is located in the relief groove 17. The displacement sensor 18 is used to sense the distance between itself and the fixing ring 15. A controller 19 is fixed on the outer wall of the main body 11. When the fixing ring 15 rises to a certain distance, the displacement sensor 18 outputs a control signal to the controller 19. The controller 19 controls the water pump 3 to turn on. When the fixing ring 15 descends to the point where the limiting part 92 abuts against the bottom inner wall of the limiting cavity 121 and is positioned, the displacement sensor 18 outputs a control signal to the controller 19. The controller 19 controls the water pump 3 to turn off.
[0039] The implementation principle of a garden landscape water storage flower bed in this application embodiment is as follows:
[0040] When watering is needed, the extension 93 is raised upwards, causing the fixing ring 15 to move upwards. When the fixing ring 15 rises to the set distance, the displacement sensor 18 outputs a control signal to the controller 19. The controller 19 controls the water pump 3 to turn on. The water pump 3 draws water from the water tank 2 through the inlet pipe 7 and sends the water into the water passage 14 through the outlet pipe 8. Then, the water is sprayed out through several outlets 931 to water the plants in the receiving tank 111. The staff can hold the extension 93 and walk along the outer perimeter of the main body 11 to water the plants in the middle and outer edges of the main body 11 without the need for other tools, making it more convenient to water the flower bed. After watering, the extension 93 is lowered so that the limiting part 92 abuts against the bottom inner wall of the limiting cavity 121 to achieve positioning, and each protrusion 13 is inserted into the groove 122. At this time, the displacement sensor 18 outputs a control signal to the controller 19, and the controller 19 controls the water pump 3 to turn off.
[0041] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A landscape water storage planter, characterized in that: The device includes a container (1), a water tank (2), and a water pump (3). The container (1) has a receiving groove (111), and the water tank (2) has a water storage cavity (21). The water pump (3) has an inlet pipe (7) and an outlet pipe (8). The inlet pipe (7) passes through the water tank (2) and communicates with the water storage cavity (21). The outlet pipe (8) passes through the container (1). A watering rack (9) slides and moves up and down on the container (1). The watering rack (9) is located above the receiving groove (111). The watering rack (9) is also rotatably connected to the receiving groove (111). The watering rack (9) is attached to the jar body (1), and its rotation axis is set vertically. The watering rack (9) and the jar body (1) are spliced together to form a water passage (14). The water passage (14) is connected to the water outlet pipe (8). The watering rack (9) is provided with a plurality of water outlets (931). The plurality of water outlets (931) are located on the side of the watering rack (9) close to the receiving groove (111) and are distributed at intervals along the radial direction of the rotation axis of the watering rack (9). The water outlets (931) are connected to the water passage (14). The watering rack (9) is provided with a fixing ring (15), which is sleeved on the outside of the watering rack (9). The pot body (1) is provided with a displacement sensor (18) and a controller (19). The displacement sensor (18) is used to sense the distance between itself and the fixing ring (15). When the fixing ring (15) rises to a certain distance, the displacement sensor (18) outputs a control signal to the controller (19), and the controller (19) controls the water pump (3) to turn on. When the fixing ring (15) descends to the point where the watering rack (9) abuts against the pot body (1) and is positioned, the displacement sensor (18) outputs a control signal to the controller (19), and the controller (19) controls the water pump (3) to turn off.
2. The landscape water storage planter of claim 1, wherein: The jar body (1) has a limiting cavity (121) inside. The watering rack (9) includes a sliding part (91) that slides up and down on the jar body (1), a limiting part (92) and an extension part (93) provided on the sliding part (91). The extension part (93) is located on one side of the sliding part (91) in the horizontal direction. The water passage (14) is formed by splicing the sliding part (91), the extension part (93) and the jar body (1). The water outlet (931) is provided on the extension part (93). The limiting part (92) is located in the limiting cavity (121) and is provided around the outer periphery of the sliding part (91).
3. The landscape water storage planter of claim 2, wherein: The lower end of the limiting part (92) is provided with a protrusion (13), and the bottom inner wall of the limiting cavity (121) is provided with a plurality of grooves (122). The plurality of grooves (122) are distributed circumferentially around the outer periphery of the sliding part (91), and the grooves (122) are for the protrusion (13) to be inserted.
4. The landscape water storage planter of claim 2, wherein: The seal ring (10) is arranged around the outer periphery of the sliding part (91) and abuts against the sliding part (91).
5. The landscape water storage planter of claim 1, wherein: The fixed ring (15) is provided with a closing ring (16) arranged around the outer periphery of the fixed ring (15), and the closing ring (16) and the fixed ring (15) are provided with a displacement slot (17) formed therearound, the displacement slot (17) being located below the fixed ring (15), and the displacement sensor (18) is located in the displacement slot (17) when the watering rack (9) abuts against the jar body (1).
6. The landscape water storage planter of claim 1, wherein: The water tank (2) is provided with a water inlet (22) communicated with the water storage cavity (21), the water tank (2) is hingedly connected with a cover plate (4), the cover plate (4) covers the water inlet (22), the upper end surface of the water tank (2) is provided with a water storage groove (23), the water tank (2) is provided with a penetrating rod (5) slidingly ascending and descending, the penetrating rod (5) is provided with a float ball (20), the float ball (20) is located in the water storage groove (23), the penetrating rod (5) is provided with a jacking rod (6), the jacking rod (6) is located in the water storage cavity (21) and abuts against the cover plate (4).
Citation Information
Patent Citations
Novel flower bed for scenic spots
CN209527275U