Split type water curtain mounting structure
The modular design of the split-type water curtain installation structure solves the problems of complex installation and insufficient structural strength of traditional water curtain systems, achieving efficient water flow control and stable connection, and improving the aesthetics and user experience of the water curtain.
Patent Information
- Application Number
- CN202511751172.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-26
- Publication Date
- 2026-02-17
AI Technical Summary
Traditional water curtain systems have complex upper reservoirs that are difficult to install and maintain, and their structural strength is insufficient, making them difficult to adapt to different spatial layouts.
The design adopts a split structure, with the upper and lower water storage tanks and the flow guiding components modularly connected. Stable connections are formed through snap-fit components and support components. The flow guiding channel ensures precise water flow, reduces the force on the walls, and improves structural strength.
Simplify the installation process, improve the stability and visual appeal of the water curtain, reduce noise, extend the lifespan of connecting components, and enhance the user experience.
Smart Images

Figure CN121539077A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of architectural decoration, and more specifically to a split-type water curtain installation structure. Background Technology
[0002] In landscape decoration, water curtains, as devices that combine functionality and aesthetics, directly impact the overall effect through the stability of their installation structure and the precision of water flow control. Traditional water curtain systems often employ an integrated design, combining the upper reservoir and flow guiding components into a single structure. This results in complex installation, difficult maintenance, and limited adaptability to different spatial layouts. For example, fixed upper reservoirs require pre-cast foundations, leading to long construction periods. While prefabricated upper reservoirs offer the advantage of easy disassembly, direct threaded installation onto the wall can damage connectors, reducing the reservoir's lifespan. Therefore, the technical problem this application aims to solve is: how to improve the structural strength of the upper reservoir during installation. Summary of the Invention
[0003] To address the aforementioned technical problems, this invention proposes a split-type water curtain installation structure. The technical advantages of this solution are as follows: This split-type water curtain installation structure achieves efficient water flow control through the modular design of upper and lower water storage tanks and flow guiding components. The upper water storage tank is fixed to the wall, while the lower water storage tank is placed on the ground, with the two forming a stable connection through snap-fit components and supports. The flow guiding components have flow guiding grooves on their surface to ensure precise guidance of water flow from the outlet of the upper water storage tank, forming a uniform water curtain. The supports provide support for the upper water storage tank, reducing the force exerted by the upper water storage tank on the wall, thereby reducing the load on the connecting components and effectively improving the structural strength of the upper water storage tank. This structure simplifies the installation process, enhances the stability and aesthetics of the water curtain, reduces noise, and improves the user experience.
[0004] Specifically, this invention proposes a split-type water curtain installation structure, including an upper water storage tank, a lower water storage tank, and a flow guiding component. The lower water storage tank is located on the ground, and the flow guiding component is installed in the lower water storage tank via a support member. The top of the flow guiding component is installed on the bottom plate of the upper water storage tank via a snap-fit member. The upper water storage tank is installed on a wall via a connecting assembly. The upper water storage tank is provided with a water outlet for guiding water flow to the flow guiding component, and the surface of the flow guiding component is provided with a flow guiding groove for guiding the water flow.
[0005] Preferably, the flow guiding component is frustum-shaped, and the diameter of the top surface of the flow guiding component is smaller than the diameter of the bottom surface of the flow guiding component.
[0006] Preferably, the guide groove is a spiral groove.
[0007] Preferably, the flow guiding component has a downward-facing receiving cavity, the lower end of the support member is fixed in the lower water storage tank, and the upper end of the support member extends into the receiving cavity to support the flow guiding component.
[0008] Preferably, the support member is an elastic member.
[0009] Preferably, the base plate has a through opening along the vertical direction and a water outlet along the vertical direction, the water outlet and the through opening being connected; the upper surface of the base plate has a limiting groove, the limiting groove being connected to the through opening.
[0010] Preferably, the snap-fit component includes a connecting post and a horizontal limiting block, the horizontal limiting block being fixed to the circumferential surface of the connecting post; the connecting post is inserted into the through-hole, and the lower end of the connecting post is fixed to the top of the flow guiding component; the horizontal limiting block moves through the water outlet to the upper surface of the base plate, and after rotating about the axis of the connecting post, the horizontal limiting block falls into the limiting groove.
[0011] Preferably, the horizontal limiting block is provided with a snap-fit block, and the side wall of the limiting groove is provided with a snap-fit groove for snapping the snap-fit block.
[0012] Preferably, the number of water outlets is the same as the number of limiting grooves, and the water outlets and the limiting grooves are uniformly distributed in a circular array with the axis of the connecting column as the reference.
[0013] Preferably, the water outlet and the limiting groove are arranged in a cross pattern. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0015] Figure 1 This is an installation diagram of the split-type water curtain installation structure proposed in this embodiment;
[0016] Figure 2 yes Figure 1 A magnified schematic diagram of the local structure at point A;
[0017] Figure 3 This is a schematic diagram showing the positional relationship between the upper and lower water storage tanks in this embodiment;
[0018] Figure 4 yes Figure 3 A magnified view of the structure at point B in the middle;
[0019] Figure 5 This is a schematic diagram of the support structure in this embodiment;
[0020] Figure 6 yes Figure 5 A magnified schematic diagram of the local structure at point C;
[0021] Figure 7 This is a three-dimensional structural diagram of the split-type water curtain installation structure in this embodiment;
[0022] Figure 8 This is a three-dimensional structural diagram of the upper water storage tank in this embodiment;
[0023] Figure 9 middle Figure 8 A magnified schematic diagram of the structure at point D.
[0024] The reference numerals used in the attached figures are as follows:
[0025] 11-Upper reservoir; 12-Lower reservoir; 13-Flow guiding component; 14-Snap-fit component; 15-Base plate; 16-Connecting assembly; 17-Wall; 18-Flow guiding channel; 19-Receiving cavity; 20-Support component; 21-Through opening; 22-Outlet; 23-Limiting groove; 24-Connecting column; 25-Horizontal limiting block; 26-Snap-fit block; 27-Snap-fit groove; 28-Inlet; 29-First overflow area; 30-First drain outlet; 31-Second overflow area; 32-Second drain outlet; 33-Sleeve; 34-Sliding rod; 35-Spring; 36-First corner bracket; 37-Second corner bracket; 38-Hanging seat; 39-Adjusting block; 40-Tightening screw. Detailed Implementation
[0026] The technical solutions of this application will be further described below with reference to specific embodiments, but this application is not limited to these embodiments.
[0027] like Figures 1 to 9 As shown, this embodiment proposes a split-type water curtain installation structure, including an upper water storage tank 11, a lower water storage tank 12, and a flow guiding component 13. The lower water storage tank 12 is set on the ground, and the flow guiding component 13 is installed in the lower water storage tank 12 through a support member 20. The top of the flow guiding component 13 is installed on the bottom plate 15 of the upper water storage tank 11 through a snap-fit member 14. The upper water storage tank 11 is installed on a wall 17 through a connecting assembly 16. The upper water storage tank 11 is provided with a water outlet 22 for guiding water flow to the flow guiding component 13, and the surface of the flow guiding component 13 is provided with a flow guiding groove 18 for guiding the water flow.
[0028] The technical advantages of this solution are as follows: This split-type water curtain installation structure achieves efficient water flow control through the modular design of the upper and lower water storage tanks 12 and the flow guiding component 13. The upper water storage tank 11 is fixed to the wall, and the lower water storage tank 12 is placed on the ground. The two are stably connected by the snap-fit component 14 and the support component 20. The surface of the flow guiding component 13 is provided with a flow guiding groove 18 to ensure that the water flow is accurately guided from the outlet 22 of the upper water storage tank 11 to form a uniform water curtain. The support component 20 supports the upper water storage tank 11, reduces the force of the upper water storage tank 11 on the wall, thereby reducing the load on the connecting component 16 and effectively improving the structural strength of the upper water storage tank 11. This structure simplifies the installation process, improves the stability and aesthetics of the water curtain, reduces noise, and improves the user experience.
[0029] Furthermore, the connecting component 16 includes a first angle bracket 36 and a second angle bracket 37. The first angle bracket 36 is directly fixed to the wall 17 by expansion bolts, which is not shown in the accompanying drawings. Alternatively, the first angle bracket 36 can be installed on the wall 17 via a mounting bracket 38. The upper water storage tank 11 is fixed to the first angle bracket 36 by the second angle bracket 37.
[0030] In one embodiment of this invention, the flow guiding component 13 is frustum-shaped, and the diameter of the top surface of the flow guiding component 13 is smaller than the diameter of the bottom surface of the flow guiding component 13. The frustum-shaped shape of the flow guiding component 13 ensures that water flows over its surface.
[0031] In one embodiment of this invention, the guide channel 18 is a spiral channel. The guide channel 18 employs a spiral channel structure, designed based on fluid mechanics principles. By guiding the water flow along a spiral trajectory, it forms a stable centrifugal force field. This structure can significantly reduce the kinetic energy of the reservoir 12 under the vertical impact of the water flow, allowing the water flow to be distributed in a smooth spiral shape, thereby effectively dispersing the impact force of the water flow, reducing turbulent vibration, and thus effectively reducing noise.
[0032] In one embodiment of this invention, the flow guiding component 13 is provided with a downward-facing receiving cavity 19, the lower end of the support member 20 is fixed in the lower water storage tank 12, and the upper end of the support member 20 is inserted into the receiving cavity 19 to support the flow guiding component 13.
[0033] In one embodiment of this invention, the support member 20 is an elastic member.
[0034] The support member 20 is mainly used to provide an upward thrust to the guide member 13, thereby reducing the load on the upper water storage tank 11 and thus improving the service life of the connecting assembly 16.
[0035] The elastic element includes a sleeve 33 and a sliding rod 34. The sleeve 33 is fixed in the lower water storage tank 12. A spring 35 is provided in the sleeve. The sliding rod 34 is inserted into the sleeve 33. The lower end of the sliding rod 34 is used to press the spring 35, and the upper end of the sliding rod 34 is used to support the flow guiding component 13.
[0036] Furthermore, the height of the sleeve 33 is higher than the height of the lower reservoir 12.
[0037] As one embodiment of this example, the base plate 15 is provided with a through opening 21 in the vertical direction, and the base plate 15 is provided with a water outlet 22 in the vertical direction, the water outlet 22 and the through opening 21 are connected; the upper surface of the base plate 15 is provided with a limiting groove 23, the limiting groove 23 and the through opening 21 are connected.
[0038] In one embodiment of this invention, the snap-fit component 14 includes a connecting post 24 and a horizontal limiting block 25. The horizontal limiting block 25 is fixed to the circumferential surface of the connecting post 24. The connecting post 24 passes through the through-hole 21, and the lower end of the connecting post 24 is fixed to the top of the flow guiding component 13. The horizontal limiting block 25 passes through the outlet 22 and moves to the upper surface of the base plate 15. After rotating about the axis of the connecting post 24, the horizontal limiting block 25 falls into the limiting groove 23.
[0039] As one embodiment of this example, the horizontal limiting block 25 is provided with a snap-fit block 26, and the side wall of the limiting groove 23 is provided with a snap-fit groove 27 for snapping the snap-fit block 26.
[0040] The horizontal limiting block 25 has a sliding channel on its side and an adjustment port on its upper surface that communicates with the sliding channel.
[0041] The snap-fit block 26 is installed in the sliding channel, and the adjustment port is provided with an adjustment block 39. The adjustment block 39 is installed on the snap-fit block 26 by a tightening screw 40.
[0042] The snap-fit block 26 has threaded holes at both its upper and lower ends, and the tightening screw 40 is installed in the threaded holes. When the lower end of the tightening screw 40 contacts the bottom surface of the sliding channel, tightening the tightening screw 40 further can lock the snap-fit block 26, thereby restricting the movement of the snap-fit block 26.
[0043] The adjusting block 39 is provided with a clearance hole for the tightening screw 40 to pass through. When the tightening screw 40 is loosened, the tightening screw 40 does not disengage from the locking block 26. The locking block 26 can be installed into the locking groove by moving the adjusting block 39, and the position of the locking block 26 can be fixed by tightening the tightening screw 40.
[0044] The materials of the snap-fit block 26, the adjusting block 39, and the tightening screw 40 can be stainless steel, copper alloy, titanium alloy, or plastic.
[0045] During construction, the lower water storage tank 12 and support member 20 are installed first. After the flow guiding component 13 is installed on the support member 20, the upper water storage tank 11 is installed last. The upper water storage tank 11 is moved from top to bottom so that the horizontal limiting block 25 passes through the outlet 22 and is located above the outlet 22. Then, the flow guiding component 13 is rotated. Since the flow guiding component 13 is placed on top of the support member 20, it can be rotated and adjusted to move the horizontal limiting block 25 into the limiting groove 23. The locking block 26 is inserted into the locking groove by adjusting the block 39. Then, the tightening screw 40 is tightened to fix the locking block 26.
[0046] At this point, the support member 20 provides support for the upper water reservoir 11. Manually pressing the upper water reservoir 11 causes the spring 35 to contract slightly. Then, the upper water reservoir 11 is fixed to the wall 17 via the connecting assembly 16. This design prevents the upper water reservoir 11 from falling off, effectively reduces the load on the connecting assembly 16, and improves the safety of the water curtain structure.
[0047] In one embodiment of this invention, the number of water outlets 22 is the same as the number of limiting grooves 23, and the water outlets 22 and the limiting grooves 23 are uniformly distributed in a circular array with the axis of the connecting column 24 as the reference.
[0048] In one embodiment of this invention, the water outlet 22 and the limiting groove 23 are arranged in a cross pattern.
[0049] Furthermore, the upper reservoir 11 is provided with an inlet 28, and the upper reservoir 11 is provided with a first overflow area 29, and the first overflow area 29 is provided with a first drain outlet 30.
[0050] In one embodiment of this invention, the lower reservoir 12 is provided with a second overflow area 31, and the second overflow area 31 is provided with a second drain outlet 32, a first drain outlet 30, and a second drain outlet 32. The first drain outlet 30 and the second drain outlet 32 transport water to the water tower through water pipes and water pumps. The water tower then transports water to the inlet 28 of the upper reservoir 11 through other water pumps and water pipes. This solution proposes a water circulation scheme. Alternatively, other water circulation schemes in the prior art can also be used to achieve water circulation between the upper reservoir 11 and the lower reservoir 12.
[0051] For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this invention, and these all fall within the protection scope of this invention.
Claims
1. A split type water curtain installation structure, characterized by, The utility model provides a water conservancy storage device, including upper reservoir (11), lower reservoir (12) and diversion component (13), lower reservoir (12) sets up on ground, diversion component (13) is installed in lower reservoir (12) through support (20), and the top of diversion component (13) is installed on the bottom plate (15) of upper reservoir (11) through joint piece (14), upper reservoir (11) is installed on wall (17) through connecting assembly (16), and the water outlet (22) of upper reservoir (11) is equipped with for guiding water flow to diversion component (13), and the surface of diversion component (13) is equipped with diversion groove (18) for guiding water flow.
2. The split water curtain mounting structure according to claim 1, wherein The diversion component (13) is a circular truncated cone, and the top surface diameter of the diversion component (13) is smaller than the bottom surface diameter of the diversion component (13).
3. The split water curtain mounting structure of claim 2, wherein, The diversion groove (18) is a spiral groove.
4. The split water curtain mounting structure of claim 1, wherein, The support (20) has an opening downward accommodating cavity (19), the lower end of the support (20) is fixed in the lower reservoir (12), and the upper end of the support (20) penetrates into the accommodating cavity (19) and supports the diversion component (13).
5. The split water curtain mounting structure of claim 4, wherein, The support (20) is an elastic member.
6. The split water curtain mounting structure of claim 5, wherein, The bottom plate (15) is provided with a through hole (21) and a water outlet (22) penetrating in the vertical direction, the water outlet (22) and the through hole (21) penetrate, and the upper surface of the bottom plate (15) is provided with a limiting groove (23) penetrating the through hole (21).
7. The split water curtain mounting structure of claim 6, wherein, The joint piece (14) includes a connecting column (24) and a horizontal limiting block (25), the horizontal limiting block (25) is fixed on the peripheral surface of the connecting column (24), the connecting column (24) penetrates the through hole (21), and the lower end of the connecting column (24) is fixed on the top of the diversion component (13), the horizontal limiting block (25) moves to the upper surface of the bottom plate (15) through the water outlet (22), and the horizontal limiting block (25) is rotated based on the axis of the connecting column (24) and then falls into the limiting groove (23).
8. The split water curtain mounting structure of claim 7, wherein, The horizontal limiting block (25) is provided with a clamping block (26), and the side wall of the limiting groove (23) is provided with a clamping groove (27) clamping the clamping block (26).
9. The split water curtain mounting structure of claim 8, wherein, The number of the water outlets (22) is the same as the number of the limiting grooves (23), and the water outlets (22) and the limiting grooves (23) are uniformly distributed in a circular array based on the axis of the connecting column (24).
10. The split water curtain mounting structure of claim 9, wherein, The water outlets (22) and the limiting grooves (23) are arranged in cross.