Landscape wind and rain corridor for urban slow traffic
By designing a landscape wind and rain corridor with inclined support columns and embedded LED lamps, the problem of single functions of traditional facilities is solved, a safe, beautiful and comfortable slow-moving traffic environment is achieved, and the functionality and landscape effect of urban public spaces are enhanced.
Patent Information
- Application Number
- CN202422469975.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-12
AI Technical Summary
Traditional urban slow-moving transportation facilities have single functions and lack effective protective measures and lighting systems with composite functions, especially in different weather conditions, which cannot meet diversified needs.
A landscape wind and rain corridor including inclined support columns and embedded LED lamps is designed. LED lamps are installed below the support beam structure and on the sides of the support column. Transparent hollow polycarbonate plates are installed above the support beam. Planting pools are installed on the support columns away from the flow direction. The purlins and polycarbonate plates are fixed by connecting parts.
Provide directional guidance to improve safety and aesthetics, and also have rainproof, sunshade and greening functions to enhance comfort and visual effects, and reduce traffic obstacles.
Smart Images

Figure CN223190128U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of landscape facilities, in particular to a landscape wind and rain corridor for urban slow traffic. Background Art
[0002] With the acceleration of urbanization and the continuous growth of urban populations, the design and functional requirements of urban public spaces are becoming increasingly stringent. Urban slow-moving transportation systems, as a green mode of transportation, have gradually become an important part of urban planning, covering non-motorized transportation modes such as pedestrian paths and bicycle lanes. However, traditional urban slow-moving transportation facilities are mostly single-function and unable to meet increasingly diverse needs, especially when dealing with different weather conditions, and often lack effective protective measures. In addition, existing pergola lighting systems are relatively simple and cannot effectively provide functional and decorative lighting effects. Especially at night, lighting is not fully utilized to enhance the visual effect and safety of the pergola. Utility Model Content
[0003] The main purpose of the utility model is to provide a landscape wind and rain corridor for urban slow traffic, aiming to provide direction guidance to facilitate the flow of people.
[0004] To achieve the above-mentioned purpose, the utility model proposes a landscape wind and rain corridor for urban slow traffic, including a support beam structure, a plurality of support columns are connected on both sides of the support beam structure, and a passage for pedestrians to pass through is formed between the support columns on both sides. The multiple support columns are all inclined toward the specified direction of pedestrian flow, and LED lamps are embedded under the support beam structure and on the sides of the support columns.
[0005] In a possible implementation, purlins are installed above the support beam structure, and transparent hollow polycarbonate panels are installed above the purlins to form a rainproof structure.
[0006] In a possible implementation, aluminum trim plates are fixed at both ends of the support beam structure, and a translucent polycarbonate sunshade grille is fixedly installed in the middle of the aluminum trim plates.
[0007] In a possible implementation, a planting pool is provided on the side of the support column facing away from the direction of pedestrian flow.
[0008] In a possible embodiment, a connecting piece is provided between the purlin and the polycarbonate plate, and the connecting piece includes a leveling piece, one end of the leveling piece is screwed to the purlin, and the other end is screwed to a steel buckle, and the steel buckle is arranged to pass through the polycarbonate plate, and the other end of the steel buckle is sleeved with a U-shaped tube to fix the polycarbonate plate to form a rainproof structure.
[0009] This innovative solution not only reduces obstruction to pedestrian traffic by adopting an inclined support column design, but also provides clear directional guidance for the corridor. Embedded LED lighting enhances safety without affecting the overall aesthetics. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.
[0011] Figure 1 This is an exploded view of an embodiment of a landscape weatherproof corridor for urban slow traffic according to the utility model;
[0012] Figure 2 This is a top view of an embodiment of a landscape weatherproof corridor for urban slow traffic according to the utility model;
[0013] Figure 3 for Figure 2 Cross-sectional view at AA;
[0014] Figure 4 for Figure 2 Cross-sectional view at Bb;
[0015] Figure 5 This is a structural diagram of an embodiment of a connecting piece of the present utility model.
[0016] Description of Figure Numbers:
[0017] 10. Support beam structure; 101. Purlin; 102. Polycarbonate board; 103. Aluminum plate for edge trim; 104. Polycarbonate sunshade grille; 20. Support column; 201. Planting pool; 30. LED lamp; 40. Connector; 41. Leveling piece; 42. Steel buckle; 43. U-shaped tube.
[0018] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION
[0019] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.
[0020] In order to solve the problems in the background technology, Figures 1 to 5As shown, the utility model proposes a landscape wind and rain corridor for urban slow traffic, including a support beam structure 10, with multiple support columns 20 connected to both sides of the support beam structure 10, and a passage for pedestrians to pass through is formed between the support columns 20 on both sides. The multiple support columns 20 are all inclined toward the specified direction of pedestrian flow, and LED lamps 30 are embedded under the support beam structure 10 and on the sides of the support columns 20.
[0021] Combined with reference Figures 1 to 4 As shown, the support beam structure 10 of the urban slow traffic landscape wind and rain corridor is made of high-strength steel, and a plurality of support columns 20 are connected on both sides by hinged or welded means. Each support column 20 is inclined about 10 degrees toward the designated direction of pedestrian traffic to provide pedestrians with a larger passage space, and at the same time has a guiding function, which can help people pass through the corridor area quickly. In order to ensure the safety of night traffic, LED lamps 30 are embedded under the support beam and on the sides of the support columns 20. The LED lamps 30 can provide uniform and soft lighting, which not only has functional lighting, but also can create beautiful visual effects at night. The inclined support column 20 design not only reduces the obstruction of the column to pedestrian traffic, but also provides obvious directional guidance for the corridor. The embedded LED lamps 30 not only improve safety, but also do not affect the overall aesthetics.
[0022] In a possible implementation, a purlin 101 is installed above the support beam structure 10 , and a transparent hollow polycarbonate plate 102 is installed above the purlin 101 to form a rainproof structure.
[0023] Combined with reference Figures 1 to 4 As shown, steel square purlins 101 are mounted above the support beam structure 10 using self-tapping, self-rotating nails. A transparent hollow polycarbonate sheet 102 is fixed to the purlin 101. The polycarbonate sheet 102 utilizes a honeycomb structure, which enhances strength and reduces weight. The sheet also has excellent light transmittance, providing natural daylight during the day while also offering rain protection. This structure provides a good shelter for pedestrians in slow-moving traffic. Hollow polycarbonate sheet 102 offers the advantages of high strength, light transmittance, and rain protection. It not only effectively prevents rainwater seepage but also reduces reliance on artificial lighting by utilizing natural light, improving energy efficiency and comfort.
[0024] In a possible implementation, edge-trimmed aluminum plates 103 are fixed to both ends of the support beam structure 10 , and a translucent polycarbonate sunshade grille 104 is fixedly installed in the middle of the edge-trimmed aluminum plate 103 .
[0025] Combined with reference Figures 1 to 4As shown, aluminum panels 103 with trimmings are fixed to both ends of the support beams, and a translucent polycarbonate sunshade grille 104 is installed in the middle of the aluminum panels. The grille is installed at a 45-degree angle, which can provide good sunshade effects when the sun is strong and prevent direct sunlight from shining on pedestrians. The translucent structure of the grille allows some light to pass through, which can avoid completely blocking natural light while creating a soft light and shadow effect. While providing sunshade function, the polycarbonate sunshade grille 104 can maintain ventilation and lighting under the pergola, creating a comfortable walking environment. At the same time, the translucent material increases the aesthetics and design sense, which fits the overall style of the urban landscape.
[0026] In a possible implementation, a planting pool 201 is provided on the side of the support column 20 facing away from the direction of pedestrian flow.
[0027] Combined with reference Figures 1 to 4 As shown, a steel planting pool 201 is provided on the side of the support column 20 facing away from the direction of pedestrian flow. The planting pool 201 is filled with low-maintenance green plants suitable for urban environments, such as succulents or drought-resistant evergreen plants. These plants can not only add green landscape to the pergola, but also improve the local air quality. The design of the planting pool 201 adopts a modular structure, which is easy to clean and replace. The planting pool 201 not only increases the ecological benefits of the pergola, but also helps regulate the local temperature and improve the air quality through the transpiration of plants. At the same time, the decorative effect of green plants also enhances the overall visual beauty of the pergola, which is suitable for the landscape needs of urban public spaces.
[0028] In one possible embodiment, a connecting member 40 is provided between the purlin 101 and the polycarbonate plate 102. The connecting member 40 includes a leveling member 41. One end of the leveling member 41 is screwed to the purlin 101, and the other end is screwed to a steel buckle 42. The steel buckle 42 is arranged to pass through the polycarbonate plate 102. The other end of the steel buckle 42 is sleeved with a U-shaped tube 43 to fix the polycarbonate plate 102 to form a rainproof structure.
[0029] Combined with reference Figure 5 As shown, in order to ensure the stability of the rainproof function, the purlin 101 and the polycarbonate plate 102 are connected by leveling pieces 41, steel buckles 42 and aluminum alloy U-shaped tubes 43. One end of the leveling piece 41 is fixed to the purlin 101 by screws, and the other end is connected to the steel buckle 42. The steel buckle 42 passes through the polycarbonate plate 102 and is then connected to the aluminum alloy U-shaped tube 43, thereby firmly fixing the ceiling structure. This connection method not only ensures the fixation of the polycarbonate plate 102, but also avoids the water seepage problem that may occur in traditional connection methods. This connection structure design makes the ceiling structure more solid, able to withstand wind and rain, and extends its service life. At the same time, it ensures the rainproof effect of the roof, avoids common problems such as water leakage at the joints, and reduces maintenance costs.
[0030] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of this application, it should be understood that if the terms "upper", "lower", "left", "right", etc. indicate an orientation or position relationship, they are based on the orientation or position relationship shown in the drawings. This is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as a limitation on this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.
[0031] The above are only preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present application should be included in the scope of protection of the present application.
Claims
1. A landscape wind and rain corridor for urban slow traffic, characterized in that: It includes a support beam structure, with multiple support columns connected on both sides of the support beam structure, forming a passage for pedestrians to pass through between the support columns on both sides, and the multiple support columns are all inclined toward the designated direction of pedestrian flow, and LED lamps are embedded under the support beam structure and on the sides of the support columns.
2. The landscape wind and rain corridor for urban slow traffic according to claim 1 is characterized in that: Purlins are installed above the support beam structure, and transparent hollow polycarbonate panels are installed above the purlins to form a rainproof structure.
3. The landscape wind and rain corridor for urban slow traffic according to claim 2 is characterized in that: Aluminum plates with trimming edges are fixed at both ends of the support beam structure, and a translucent polycarbonate sunshade grille is fixed in the middle of the aluminum plates with trimming edges.
4. The landscape wind and rain corridor for urban slow traffic according to any one of claims 1 to 3, characterized in that: A planting pool is provided on the side of the support column away from the direction of pedestrian flow.
5. The landscape wind and rain corridor for urban slow traffic according to claim 2 is characterized in that: A connecting piece is provided between the purlin and the polycarbonate board, and the connecting piece includes a leveling piece. One end of the leveling piece is screwed to the purlin, and the other end is screwed to a steel buckle. The steel buckle is arranged through the polycarbonate board, and the other end of the steel buckle is sleeved with a U-shaped tube to fix the polycarbonate board to form a rainproof structure.