Artificial waterfall landscaping device and operation method thereof

Through the design of linear film coiling and clamping mechanism, the problem of poor height and visual effect of artificial waterfall equipment in the existing technology in urban commercial space is solved, and the landscaping effect with adjustable height, low noise and clear projection is achieved, which improves the applicability and environmental protection of the equipment.

CN116273652BActive Publication Date: 2025-08-19YICHENG ART-DESIGN (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202310107404.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-10
Publication Date
2025-08-19
Estimated Expiration
2043-02-10

AI Technical Summary

Technical Problem

The existing artificial waterfall equipment cannot effectively control the height and range of water flow in urban commercial spaces, and it is noisy and has poor visual effects, which cannot meet the landscaping needs of modern cities.

Method used

The linear film is used to wind up through the winding mechanism, combined with the water outlet mechanism and the clamping mechanism, and the water flow is used to drive the linear film to extend and fix the length. Through the cooperation of the clamping mechanism and the winding mechanism, the stable extension and winding of the linear film is achieved, reducing the cutting of the water flow and air, and improving the landscaping height and visual effect.

Benefits of technology

It has achieved the improvement of landscaping height and visual effect in urban commercial space, reduced water flow atomization and noise, enhanced projection clarity, flexible equipment use, and reduced water resource waste.

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Abstract

The present invention discloses an artificial waterfall landscaping device and its operating method. The artificial waterfall landscaping device comprises: a plurality of linear membranes, which are reeled up by a reeling mechanism; a water outlet mechanism equipped with a plurality of DC nozzles corresponding to the linear membranes; the linear membranes are passed through the corresponding DC nozzles from top to bottom, so that the water ejected from the DC nozzles can drive the linear membranes to extend downward; and a clamping mechanism for fixing the extended length of the linear membranes. The present invention helps to improve the height and effect of the landscaping and is convenient and flexible to use.
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Description

Technical Field

[0001] The present invention relates to the field of landscaping equipment, and in particular to artificial waterfall landscaping equipment and an operating method thereof. Background Art

[0002] Artificial waterfalls are close to natural waterfalls. They use large-flow water pumps to transport water to a high position, and then it cascades down naturally without height restrictions. However, since the water falls freely, it cuts with the air during the fall, causing the water to atomize and drift with the wind. It also makes a huge amount of noise. The larger the amount of water, the worse the situation. It is only suitable for creation in wild natural environments and is not suitable for the needs of modern urban and commercial landscaping.

[0003] A water curtain is a device that releases water through densely arranged nozzles. Compared to a waterfall, the amount of water is smaller, and the approximate position of the fall is easy to control. However, it is subject to height restrictions, generally exceeding 10 meters. During the fall, it cuts with the air, causing the water to atomize and drift away with the wind. A large area is required under the water curtain as a water collection pool or return water range, and the noise is huge. It cannot meet the landscaping requirements of controlling the spread of water and noise in the commercial space where the water curtain is located. In addition, due to the small amount of water, the water curtain formed is thin and transparent. As a projection carrier, the projection light penetration rate is too high, and the imaging effect is poor.

[0004] The line curtain (line fountain) is based on the water curtain and uses transparent wires fixed at the top and bottom to guide the water. The extremely small flow of water droplets adheres to the transparent wires and flows downward, solving the problems of scattered water atomization and noise. However, the visual effect presents the effect of water flowing downward on dense transparent wires, which cannot form the spectacular effect of a waterfall. Moreover, the transparent wires are fixed at the top and bottom, and the wires cannot be removed when the water curtain is not opened, causing landscape obstacles in general commercial spaces, and there are problems such as the space or passage being unable to meet traffic requirements. Summary of the Invention

[0005] The purpose of the present invention is to provide an artificial waterfall landscaping device which can improve the landscaping height and visual effect and an operating method of the device.

[0006] The technical solution adopted by the present invention to solve the above problems is:

[0007] An artificial waterfall landscaping device, comprising:

[0008] Several linear films are wound up by a winding mechanism;

[0009] The water outlet mechanism is provided with a plurality of DC nozzles corresponding to the linear membranes one by one. The linear membranes are passed through the corresponding DC nozzles from top to bottom, so that the water flow ejected from the DC nozzles can drive the linear membranes to extend downward.

[0010] The clamping mechanism is used to fix the extended length of the linear film.

[0011] As a further improvement of the above technical solution, the water outlet mechanism also includes a water trough, which contains water. A wind speed sensor for measuring wind speed is installed on the water trough. The DC nozzles are equidistant and staggered on the bottom surface of the water trough. A water pump is installed on the water trough to output the water in the water trough from the DC nozzles.

[0012] As a further improvement of the above technical solution, the clamping mechanism includes a clamping bracket, a guide roller and a pressure roller. The guide roller is used to change the linear film from horizontal conveyance to vertical conveyance. The guide roller is rotatably arranged on the clamping bracket, and the pressure roller is slidably arranged on the clamping bracket. The clamping bracket is equipped with an electric push rod for driving the pressure roller to move relative to the guide roller. The guide roller is located on the moving track of the pressure roller.

[0013] As a further improvement of the above technical solution, the winding mechanism includes a winding bracket and a reel. The reel is rotatably arranged on the winding bracket. A driving motor for driving the reel to rotate is installed on the winding bracket, and the linear film is wound on the reel.

[0014] As a further improvement of the above technical solution, the width of the linear film is 4 mm, and the thickness of the linear film is 0.25 mm.

[0015] The present invention also provides an operating method of any of the artificial waterfall landscaping devices described in the above technical solutions, comprising:

[0016] Step S1: The clamping mechanism releases the clamping state of the linear film, so that the linear film is in a movable state relative to the clamping mechanism;

[0017] Step S2: The water outlet mechanism outputs water from the DC nozzle, causing the output water to be adsorbed on the linear membrane and flow downward along the linear membrane, thereby driving the linear membrane on the winding mechanism to extend downward until the length of the linear membrane extending downward meets the diversion height requirement;

[0018] Step S3: The clamping mechanism changes the linear film from a movable state to a clamping state, so that the length of the linear film extending downward is fixed.

[0019] As a further improvement of the above technical solution, in step S2, while the water flow drives the linear membrane to extend downward, the winding mechanism slowly outputs the linear membrane, and when the length of the linear membrane extending downward meets the diversion height requirement, the winding mechanism stops outputting the linear membrane.

[0020] Compared with the prior art, the present invention has the following advantages and effects:

[0021] (1) The present invention allows water to flow along the linear membrane and drive the linear membrane to extend downward, thereby avoiding the situation where the linear membranes on the winding mechanism cannot be stacked and entangled due to the linear membranes being too light to extend vertically downward under the action of gravity when the linear membranes are output, thereby ensuring the smoothness of the linear membranes being lowered, and being able to roll up a long length of linear membrane within the load-bearing range of the winding mechanism, which is conducive to significantly increasing the maximum height of the landscaping, improving the visual effect and the scope of application of the equipment, and because the linear membrane can be used as a projection carrier, it is conducive to reducing the penetration rate of the projection and improving the clarity of the image.

[0022] (2) The present invention ensures the stability of the extended length of the linear film by the clamping effect of the clamping mechanism on the linear film, thereby ensuring the stability of the landscaping quality and the imaging effect. Combined with the winding effect of the winding mechanism on the linear film, the equipment can adjust the extended length of the linear film according to different use sites, thereby improving the flexibility of the equipment. When the equipment is not in use, the linear film can be rolled up, thereby avoiding the linear film in the curtain state from occupying space and obstructing the line of sight.

[0023] (3) The present invention uses the linear membrane to guide the water flow, so that the water flow output by the water outlet mechanism can be adsorbed on the front and back surfaces of the linear membrane to form a wrapping effect on the linear membrane, and in the process of sliding downward, they fuse and adhere to each other to form a whole and slide downward, thereby slowing down the falling speed, reducing the atomization caused by the cutting between the water flow and the air, and reducing the splashing range of the water flow when it falls to the ground, thereby improving the visual effect of the landscaping and the integrity of the water flow recovery after falling to the ground. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a structural schematic diagram of the front side of the artificial waterfall landscaping equipment of the present invention.

[0025] Figure 2 It is a structural schematic diagram of the side of the artificial waterfall landscaping equipment of the present invention.

[0026] Figure 3 yes Figure 1 The structural schematic enlarged diagram of the water outlet mechanism is shown in FIG.

[0027] Figure 4 yes Figure 1 The structural schematic enlarged diagram of the clamping mechanism shown in .

[0028] Figure 5 yes Figure 2 The structural diagram of the front side of the winding mechanism is shown in FIG.

[0029] Among them, there are linear film 1, winding mechanism 2, water outlet mechanism 3, DC nozzle 31, water tank 32, wind speed sensor 33, water pump 34, clamping mechanism 4, clamping bracket 41, guide roller 42, pressure roller 43, electric push rod 44, winding bracket 51, reel 52, drive motor 53, and floor 6. DETAILED DESCRIPTION

[0030] The present invention will be further described in detail below with reference to the accompanying drawings and through examples. The following examples are intended to explain the present invention but the present invention is not limited to the following examples.

[0031] See also Figure 1 、 Figure 2 The present embodiment provides an artificial waterfall landscaping device, comprising a plurality of linear membranes 1, a winding mechanism 2, a water outlet mechanism 3 and a clamping mechanism 4. The linear membrane 1 is wound by the winding mechanism 2. The water outlet mechanism 3 is provided with a plurality of DC nozzles 31 corresponding to the linear membrane 1 one by one. The linear membrane 1 is passed through the corresponding DC nozzles 31 from top to bottom, so that the water flow ejected from the DC nozzles 31 can drive the linear membrane 1 to extend downward. The clamping mechanism 4 is used to fix the length of the extended linear membrane 1.

[0032] In this embodiment, the linear film 1 is a PET linear film, the width of the linear film 1 is 4 mm, and the thickness of the linear film 1 is 0.25 mm.

[0033] When the present invention is used, the clamping state of the linear membrane 1 is released by the clamping mechanism 4, so that the linear membrane 1 is in an active state relative to the clamping mechanism 4, and then the water outlet mechanism 3 outputs water from the DC nozzle 31, so that the output water flow is adsorbed on the linear membrane 1 and flows downward along the linear membrane 1, thereby driving the linear membrane 1 on the winding mechanism 2 to extend downward until the length of the linear membrane 1 extending downward meets the diversion height requirement, and then the linear membrane 1 is changed from the active state to the clamping state through the clamping mechanism 4, so that the length of the linear membrane 1 extending downward is fixed.

[0034] In order to ensure the smoothness of the linear membrane 1 extending downward, the winding mechanism 2 slowly outputs the linear membrane 1 while the water flow drives the linear membrane 1 to extend downward, and when the length of the linear membrane 1 extending downward meets the diversion height requirement, the winding mechanism 2 stops outputting the linear membrane 1.

[0035] See also Figure 3The water outlet mechanism 3 also includes a water tank 32, which contains water. A wind speed sensor 33 for measuring wind speed is installed on the water tank 32. The DC nozzles 31 are equidistant and staggered on the bottom surface of the water tank 32. In the projection direction, the horizontal distance between adjacent linear films 1 can be shortened while reducing the water flow on adjacent linear films 1. The linear films 1 are displaced due to adhesion, which affects the imaging effect. The water tank 32 is installed with a water pump 34 for outputting the water in the water tank 32 from the DC nozzles 31.

[0036] To ensure the continuous use of the equipment, the water tank 32 is connected to a water supply device for transporting the water output from the water tank 32 to the water tank 32, thereby realizing the reuse of water, thereby reducing the amount of water required for the use of the equipment and reducing the waste of water resources.

[0037] See also Figure 4 The clamping mechanism 4 includes a clamping bracket 41, a guide roller 42, and a pressure roller 43. The guide roller 42 is used to change the linear film 1 from horizontal conveyance to vertical conveyance. The guide roller 42 is rotatably mounted on the clamping bracket 41, and the pressure roller 43 is slidably mounted on the clamping bracket 41. The clamping bracket 41 is mounted with an electric push rod 44 for driving the pressure roller 43 to move relative to the guide roller 42. The guide roller 42 is located on the movement path of the pressure roller 43. The electric push rod 44 drives the pressure roller 43, so that the distance between the pressure roller 43 and the guide roller 42 can be adjusted, thereby achieving the purpose of switching the linear film 1 between the pressure roller 43 and the guide roller 42 between the movable state and the clamping state. This ensures the stability of the extended length of the linear film 1, and guarantees the quality of the landscaping and the stability of the imaging effect.

[0038] In order to ensure the stability of the linear movement of the pressure roller 43 relative to the guide roller 42, two electric push rods 44 can be set on the clamping bracket 41, and the two ends of the guide roller 42 are respectively fixed on the pushing ends of the two electric push rods 44, so that the two ends of the guide roller 42 are driven to move synchronously in the same direction through the synchronous operation of the two electric push rods 44, thereby ensuring the clamping effect of the pressure roller 43 and the guide roller 42 on the linear film 1.

[0039] See also Figure 5 The winding mechanism 2 includes a winding support 51 and a reel 52. The reel 52 is rotatably mounted on the winding support 51. A drive motor 53 is mounted on the winding support 51 to drive the reel 52. The linear film 1 is wound around the reel 52. The drive motor 53 drives the reel 52, allowing the reel 52 to rotate and rewind the linear film 1 that has been extended by the water flow. This allows the linear film 1 to be freely retracted and extended on the device, reducing the space occupied by the linear film 1 in the curtain state when the device is not in use and reducing the visual obstruction.

[0040] The above contents described in this specification are merely examples of the present invention. Those skilled in the art may make various modifications, additions, or substitutions to the described embodiments, without departing from the contents of this specification or exceeding the scope defined by the claims, and such modifications, additions, or substitutions may be made to the described embodiments. Such modifications, additions, or substitutions may be made by persons skilled in the art. Such modifications, additions, or substitutions may be made to the described embodiments without departing from the contents of this specification or exceeding the scope defined by the claims, and such modifications shall fall within the scope of protection of the present invention.

Claims

1. An artificial waterfall landscaping device, characterized in that: include: Several linear films are wound up by a winding mechanism; The water outlet mechanism is provided with a plurality of DC nozzles corresponding to the linear membranes one by one. The linear membranes are passed through the corresponding DC nozzles from top to bottom, so that the water flow ejected from the DC nozzles can drive the linear membranes to extend downward. A clamping mechanism for fixing the extended length of the linear film; The clamping mechanism includes a clamping bracket, a guide roller and a pressure roller. The guide roller is used to change the linear film from horizontal conveyance to vertical conveyance. The guide roller is rotatably arranged on the clamping bracket, and the pressure roller is slidably arranged on the clamping bracket. The clamping bracket is equipped with an electric push rod for driving the pressure roller to move relative to the guide roller. The guide roller is located on the moving track of the pressure roller. The winding mechanism includes a winding support and a reel. The reel is rotatably arranged on the winding support. A driving motor for driving the reel to rotate is installed on the winding support. The linear film is wound on the reel.

2. The artificial waterfall landscaping device according to claim 1, characterized in that: The water outlet mechanism also includes a water trough containing water, a wind speed sensor for measuring wind speed is installed on the water trough, the DC nozzles are equidistantly and staggeredly arranged on the bottom surface of the water trough, and a water pump is installed on the water trough for outputting the water in the water trough from the DC nozzles.

3. The artificial waterfall landscaping device according to claim 1, characterized in that: The width of the linear film is 4 mm, and the thickness of the linear film is 0.25 mm.

4. An operating method of the artificial waterfall landscaping device according to any one of claims 1 to 3, characterized in that: include: Step S1: The clamping mechanism releases the clamping state of the linear film, so that the linear film is in a movable state relative to the clamping mechanism; In step S2, the water outlet mechanism outputs water from the direct current nozzle, so that the output water is adsorbed on the linear membrane and flows downward along the linear membrane, thereby driving the linear membrane on the winding mechanism to extend downward until the length of the linear membrane extending downward meets the diversion height requirement; In step S3, the clamping mechanism changes the linear film from a movable state to a clamping state, so that the length of the linear film extending downward is fixed.

5. The operating method according to claim 4, characterized in that: In step S2, while the water flow drives the linear film to extend downward, the winding mechanism slowly outputs the linear film, and when the length of the linear film extending downward meets the diversion height requirement, the winding mechanism stops outputting the linear film.

Citation Information

Patent Citations

  • Artificial waterfall landscaping equipment

    CN219309157U