Fountain device for landscape architecture
By designing a fountain device for garden landscape, and using a pump, a tee pipe and a drive mechanism to switch between fountain and green plant watering modes, the problem that existing fountain devices are unable to utilize water resources and flexibly adjust the direction of water spraying is solved, the multifunctionality of viewing and irrigation is achieved, and the water resource utilization rate and the applicability of the device are improved.
Patent Information
- Application Number
- CN202422597935.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-10-28
AI Technical Summary
Existing fountain devices only have ornamental functions and fail to effectively utilize water resources in garden landscapes. They also do not have flexible water spraying directions and coverage areas, and cannot assist in the irrigation needs of garden plants.
A fountain device for garden landscape is designed. Through the combination of a pump, a three-way pipe, a solenoid valve and a drive mechanism, it can realize the switching between the fountain mode and the green plant watering mode. Combined with the drive mechanism to drive the nozzle to rotate, the water spray direction can be flexibly adjusted to meet the needs of viewing and irrigation.
It improves the utilization rate of water resources, realizes the multifunctionality of fountain device in viewing and irrigation, avoids the waste of water resources, improves the applicability and flexibility of the device, and meets the green plant watering needs of different garden areas.
Smart Images

Figure CN223475392U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fountain device technology, specifically a fountain device for garden landscape. Background Technology
[0002] In existing landscape design, fountain installations are widely used as decorative features in various gardens, squares, and public spaces. Traditional fountain installations primarily aim to beautify the landscape, create atmosphere, and attract visitors. They provide visual effects through the height, shape, and variations of water flow, and may even be enhanced with lighting and music. The design of these fountain installations typically emphasizes the artistic expression of water features. Common fountain forms include geysers, waterfalls, and rotating water jets, primarily existing as ornamental facilities.
[0003] However, existing fountain installations are only for ornamental purposes and do not consider the irrigation needs of green plants in gardens, resulting in the ineffective use of landscape water resources. Especially in areas with a large number of green plants in gardens, the water source used by fountain installations cannot achieve multi-purpose utilization. At the same time, these purely ornamental fountain systems usually lack flexible water spray direction and coverage, thus having certain limitations in garden greening maintenance and failing to assist in the daily irrigation of garden plants. Utility Model Content
[0004] In view of the shortcomings of the existing technology, this utility model provides a fountain device for garden landscape, which solves the existing problems.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a fountain device for garden landscapes, comprising a pool body, a mounting cavity in the center of the pool body, the bottom of the mounting cavity being open, and the bottom of the mounting cavity being connected to the bottom wall of the pool body via a support portion, with a gap between the support portions; a partition is provided inside the mounting cavity, a pump is provided on the partition, the input end of the pump is connected to a water supply pipe passing through the partition, the output end of the pump is connected to one end of a three-way pipe, the other two ends of the three-way pipe are respectively provided with a first solenoid valve and a second solenoid valve, the three-way pipe is connected to a circular pipe and a first nozzle, a second nozzle is provided on the circular pipe, the first nozzle is rotatably connected to the three-way pipe, and the first nozzle is connected to a driving mechanism for driving the first nozzle to rotate.
[0006] Preferably, the pool body is further provided with a filter plate, and the filter plate is provided with filter holes.
[0007] Preferably, the pool body is provided with a support frame inside, the support frame is provided with protrusions that match the water filter holes, the support frame is slidably connected to the mounting cavity, and the bottom of the pool body is provided with four electric push rods, the electric push rods are connected to the support frame, and are used to drive the support frame to perform lifting and lowering movements.
[0008] Preferably, a slide is provided at the edge of the pool body, a connecting rod is rotatably connected to the mounting cavity, a brush is provided on the lower surface of the connecting rod, a support rod is provided on the lower surface of the connecting rod, and the support rod extends into the slide and is slidably connected to the slide.
[0009] Preferably, a column is installed on the mounting cavity, and the end of the three-way pipe with the first nozzle extends out from the column.
[0010] Preferably, the drive mechanism includes a motor, a driving pulley, a driven pulley, and a transmission belt; the motor is fixedly connected to the column, the output end of the motor is connected to the driving pulley, the driven pulley is connected to the first nozzle, and the transmission belt is connected between the driving pulley and the driven pulley.
[0011] Beneficial effects
[0012] This invention provides a fountain device for garden landscapes. Through the combined control of components such as a pump, a three-way pipe, a first solenoid valve, and a second solenoid valve, it switches between two modes: fountain and plant irrigation. This allows the water flow to provide both aesthetic appeal and irrigation for the garden plants. This design significantly improves water resource utilization and avoids water waste caused by purely ornamental fountains that fail to provide irrigation. The drive mechanism rotates the first nozzle, allowing for flexible adjustment of the water spray direction to meet the irrigation needs of different garden areas, thus enhancing the device's applicability and flexibility. Through the combination of a circular pipe and multiple second nozzles, this device provides a richly layered fountain effect in landscape mode, satisfying aesthetic requirements. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of a fountain device for garden landscape described in this utility model.
[0014] Figure 2 This is a cross-sectional structural diagram of a fountain device for garden landscapes according to the present invention.
[0015] Figure 3 This is an exploded view of a fountain device for garden landscapes as described in this utility model.
[0016] Figure 4This is a schematic diagram of the connection structure of the pump, tee pipe, first nozzle, and second nozzle of the garden landscape fountain device described in this utility model from a first-view perspective.
[0017] Figure 5 This is a schematic diagram of the connection structure of the pump, tee pipe, first nozzle and second nozzle of the garden landscape fountain device described in this utility model from a second perspective.
[0018] Description of Reference Numerals
[0019] 1-Pool body, 2-Installation cavity, 201-Support, 3-Baffle, 4-Pump, 5-Water supply pipe, 6-T-pipe, 7-First solenoid valve, 8-Second solenoid valve, 9-Circular pipe, 10-First nozzle, 11-Second nozzle, 12-Drive mechanism, 1201-Motor, 1202-Drive pulley, 1203-Moving pulley, 1204-Transmission belt, 13-Filter plate, 1301-Water hole, 14-Bearing frame, 1401-Protrusion, 15-Electric push rod, 16-Slide rail, 17-Connecting rod, 18-Brush, 19-Support rod, 20-Column. Detailed Implementation
[0020] 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 protection scope of the present utility model.
[0021] Please see Figures 1 to 5 This utility model provides a fountain device for garden landscapes, comprising a pool body 1, with an installation cavity 2 in the center of the pool body 1. The bottom of the installation cavity 2 is open and connected to the bottom wall of the pool body 1 via support parts 201, with gaps between the support parts 201 allowing free water flow. A partition 3 is provided inside the installation cavity 2, and a pump 4 is fixedly installed on the partition 3. The input end of the pump 4 is connected to the pool body 1 via a water supply pipe 5, which passes through the partition 3 to ensure water is delivered from the pool body 1 to the pump 4. The output end of the pump 4 is connected to one end of a three-way pipe 6, and the other two ends of the three-way pipe 6 are respectively connected to a first solenoid valve 7 and a second solenoid valve 8. The three-way pipe 6 is connected to a circular pipe 9 and a first nozzle 10. Multiple second nozzles 11 are installed on the circular pipe 9, while the first nozzle 10 is connected to the three-way pipe 6 via a rotating connector. A drive mechanism 12 is connected to the first nozzle 10 to drive the first nozzle 10 to rotate, thereby adjusting its water spray direction.
[0022] When the fountain needs to be activated for viewing, the control unit closes the first solenoid valve 7 and opens the second solenoid valve 8, so that the pump 4 can transport water in the pool 1 through the water supply pipe 5 and the three-way pipe 6 to the circular pipe 9. The water is then sprayed out through multiple second nozzles 11 on the circular pipe 9, forming a fountain effect with surging water and distinct layers, thus providing a water feature with aesthetic value.
[0023] When watering is needed for the plants in the garden, the control unit closes the second solenoid valve 8 and opens the first solenoid valve 7. The pump 4 delivers water to the first sprinkler head 10 through the water pipe 5 and the tee pipe 6. Subsequently, the control drive mechanism 12 starts, driving the first sprinkler head 10 to rotate and adjusting the spray direction of the first sprinkler head 10 to ensure that the water covers the plants in the garden, achieving a uniform watering effect. Through the rotation control of the drive mechanism 12, the first sprinkler head 10 can flexibly adjust the spray direction according to the needs of the garden, improving the efficiency and effect of watering the plants.
[0024] By combining and controlling components such as pump 4, three-way pipe 6, first solenoid valve 7, and second solenoid valve 8, the system switches between two modes: fountain and plant irrigation. This allows the water flow to provide both aesthetic appeal and irrigation for the garden plants. This design significantly improves water resource utilization and avoids water waste caused by purely ornamental fountains that fail to provide irrigation. The drive mechanism 12 rotates the first nozzle 10, allowing for flexible adjustment of the water spray direction to meet the irrigation needs of different garden areas, thus enhancing the applicability and flexibility of the device. Through the combination of circular pipe 9 and multiple second nozzles 11, this device provides a richly layered fountain effect in landscape mode, satisfying aesthetic requirements.
[0025] In this embodiment, a filter plate 13 is also provided on the pool body 1, and the filter plate 13 is provided with filter holes 1301. The filter plate 13 is also provided inside the pool body 1, and the filter plate 13 has multiple filter holes 1301. The filter plate 13 is installed between the pool body 1 and the mounting cavity 2, which can effectively filter the water in the pool body 1, preventing larger particles of impurities from entering the mounting cavity 2 and the pump 4, thereby reducing the risk of impurities clogging the pump 4, the first nozzle 10, and the second nozzle 11, and extending the service life of the device.
[0026] In this embodiment, the support frame 14 can rise or fall under the drive of the electric push rod 15, thereby controlling the opening and closing of the filter holes 1301. When the electric push rod 15 drives the support frame 14 to move to an appropriate position, the protrusion 1401 on the support frame 14 will extend into the filter holes 1301 on the filter plate 13, thereby sealing the filter holes 1301 to prevent fallen leaves, debris, etc. from entering the pool 1. Especially when the fountain device is not used, sealing can effectively reduce the accumulation of debris in the pool and keep the water clean.
[0027] Furthermore, to facilitate cleaning of debris on the filter plate 13, a slide rail 16 is provided along the edge of the pool body 1. A connecting rod 17 is rotatably connected to the mounting cavity 2. A brush 18 and a support rod 19 are provided on the lower surface of the connecting rod 17. The support rod 19 is inserted into the slide rail 16 and slidably connected to it. Thus, when cleaning the filter plate 13, by moving the connecting rod 17, the connecting rod 17 rotates relative to the mounting cavity 2, causing the brush 18 to slide on the upper surface of the filter plate 13. The brush 18 can sweep the accumulated fallen leaves and debris on the filter plate 13 into a pile for workers to clean in one go.
[0028] After cleaning is completed, the electric push rod 15 is lowered, causing the support frame 14 to move down accordingly. The protrusion 1401 retracts from the filter hole 1301, and the filter plate 13 returns to the open state. At this time, the pool body 1 can normally receive the water flow sprayed from the second nozzle 11, supplying the fountain device for normal operation.
[0029] In this embodiment, a column 20 is installed on the mounting cavity 2, and one end of the three-way pipe with the first nozzle 10 is extended from the column 20.
[0030] When the fountain is not in use, the support frame 14 moves upward via the electric push rod 15, and the protrusion 1401 blocks the filter hole 1301, effectively preventing fallen leaves, debris, and other contaminants from entering the pool 1, keeping the pool clean and reducing the frequency of subsequent cleaning and maintenance. The design of the slide 16, connecting rod 17, brush 18, and support rod 19 makes it easier and faster to clean fallen leaves and debris from the filter plate 13. The brush 18 can concentrate and sweep away debris, helping workers to complete the cleaning work quickly. The electric push rod 15 can efficiently switch between opening and closing the filter hole 1301, making it convenient to switch between the fountain's ornamental and cleaning functions, further improving the practicality and reliability of the device.
[0031] In this embodiment, to achieve the rotation of the first nozzle 10, the drive mechanism 12 includes a motor 1201, a driving pulley 1202, a driven pulley 1203, and a transmission belt 1204. The motor 1201 is fixedly mounted on the column 20. The output end of the motor 1201 is connected to the driving pulley 1202, which is connected to the driven pulley 1203 via the transmission belt 1204. The driven pulley 1203 is fixedly connected to the first nozzle 10. When the motor 1201 starts, it drives the driving pulley 1202 to rotate, which in turn drives the transmission belt 1204, causing the driven pulley 1203 to rotate synchronously, thereby driving the first nozzle 10 to achieve rotational adjustment.
[0032] The design of this drive mechanism 12 enables the first nozzle 10 to rotate at a set angle and speed, achieving precise control over the water spray direction to meet the irrigation needs of different garden areas or adjust the landscape fountain effect. Through the combined design of the motor 1201, pulley drive, and transmission belt 1204, the drive mechanism 12 can smoothly and precisely control the rotation angle of the first nozzle 10, allowing it to cover different areas of the garden, achieving uniform irrigation or adjusting the fountain direction, thus improving the adaptability of the device. By controlling the speed of the motor 1201, the drive mechanism 12 can achieve different rotation speeds for the first nozzle 10, thereby adapting to different water spray requirements. This flexible control method enhances the ease of operation and practicality of the fountain device.
[0033] It should be noted that in this paper, relational terms such as first and second are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations.
Claims
1. A fountain device for garden landscape use, comprising a pool body (1), characterized in that, A mounting cavity (2) is provided in the center of the pool body (1). The bottom of the mounting cavity (2) is open, and the bottom of the mounting cavity (2) is connected to the bottom wall of the pool body (1) through a support (201). There is a gap between the support (201). A partition (3) is provided inside the mounting cavity (2). A pump (4) is provided on the partition (3). The input end of the pump (4) is connected to a water supply pipe (5). The water supply pipe (5) passes through the partition (3). The output end of the device is connected to one end of a three-way pipe (6). The other two ends of the three-way pipe (6) are respectively provided with a first solenoid valve (7) and a second solenoid valve (8). The three-way pipe (6) is connected to a circular pipe (9) and a first nozzle (10). A second nozzle (11) is provided on the circular pipe (9). The first nozzle (10) is rotatably connected to the three-way pipe (6). The first nozzle (10) is connected to a drive mechanism (12). The drive mechanism (12) is used to drive the first nozzle (10) to rotate.
2. A fountain device for garden landscapes according to claim 1, characterized in that, The pool body (1) is also provided with a filter plate (13), and the filter plate (13) is provided with filter holes (1301).
3. A fountain device for garden landscapes according to claim 2, characterized in that, The pool body (1) is provided with a support frame (14) inside. The support frame (14) is provided with a protrusion (1401) that matches the water filter hole (1301). The support frame (14) is slidably connected to the mounting cavity (2). The bottom of the pool body (1) is provided with four electric push rods (15). The electric push rods (15) are connected to the support frame (14) and are used to drive the support frame (14) to move up and down.
4. A fountain device for garden landscapes according to claim 3, characterized in that, A slide (16) is provided at the edge of the pool body (1). A connecting rod (17) is rotatably connected to the mounting cavity (2). A brush (18) is provided on the lower surface of the connecting rod (17). A support rod (19) is provided on the lower surface of the connecting rod (17). The support rod (19) extends into the slide (16) and is slidably connected to the slide (16).
5. A fountain device for garden landscapes according to claim 1, characterized in that, A column (20) is installed on the mounting cavity (2), and one end of the three-way pipe on which the first nozzle (10) is installed extends out from the column (20).
6. A fountain device for garden landscapes according to claim 5, characterized in that, The drive mechanism (12) includes a motor (1201), a drive pulley (1202), a driven pulley (1203), and a transmission belt (1204); the motor (1201) is fixedly connected to the column (20), the output end of the motor (1201) is connected to the drive pulley (1202), the driven pulley (1203) is connected to the first nozzle (10), and the transmission belt (1204) is connected between the drive pulley (1202) and the driven pulley (1203).