Urban renewal building roof garbage vertical transportation structure
By designing a vertical waste transportation structure for the rooftops of urban renewal buildings, and utilizing fixed frame components and transport pipe components, the problem of waste transportation in confined spaces was solved, achieving convenient and stable waste transportation and centralized processing, while saving construction costs.
Patent Information
- Application Number
- CN202521946620.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-10
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-10
AI Technical Summary
In the renovation of old urban residential areas, how to conveniently and effectively transport rooftop waste in confined spaces, especially in existing buildings with limited construction space, is a key challenge.
Design a vertical waste transportation structure for rooftops of urban renewal buildings, including a fixed frame assembly and a transport pipe assembly. The fixed frame assembly and the transport pipe assembly are detachably connected. A stable structure is formed by the support columns, horizontal bars, clamps, connecting beams, embedded bars, and wall connecting bars of the fixed frame assembly. Combined with the transport main pipe, upper and lower pipe openings, and collection boxes, vertical transportation of waste is achieved.
It enables convenient transportation of waste in confined spaces, saves construction space and costs, ensures the installation of transport pipe components with firmness and stability, and prevents waste from splashing through the inlet and collection box, ensuring centralized treatment of waste.
Smart Images

Figure CN224679191U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of building renovation and maintenance technology, and specifically relates to a vertical transportation structure for rooftop waste in urban renewal buildings. Background Technology
[0002] In the renovation and upgrading of old urban residential areas, rooftop treatment is necessary, but the transportation of rooftop waste is a key aspect of the construction process. In general construction, rooftop waste is transported using cranes or elevators. However, old urban residential areas are existing buildings with limited construction space and cannot accommodate large cranes. Therefore, specific designs are needed to ensure convenient transportation of rooftop waste even in confined spaces. Utility Model Content
[0003] This utility model provides a vertical transportation structure for rooftop waste in urban renewal buildings, which solves the technical problems of transportation of rooftop waste in existing buildings, such as the need for suitable use in confined spaces, convenient installation, and effective fixed connection.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: A vertical transport structure for rooftop waste in urban renewal buildings includes an existing building, a fixed frame assembly installed on the outside of the existing building, a transport pipe assembly detachably connected inside the fixed frame assembly, an inlet located at the top of the transport pipe assembly, and a collection box located at the bottom of the transport pipe assembly. The fixed frame assembly includes a frame column, a frame horizontal bar connected horizontally and vertically to the frame column, a frame clamp bar connected vertically to the frame horizontal bar, a frame connecting beam bar connected to the top of the frame column, a frame embedded bar connected between the frame connecting beam bar and the existing building, and a frame connecting wall bar spaced at intervals along the height direction of the frame column and connected to the wall. The transport pipe assembly includes a transport main pipe, an upper pipe opening connected to the top of the transport main pipe, and a lower pipe opening at the bottom of the transport main pipe; The horizontal bars and clamps of the frame are arranged in a grid pattern, with the main transport pipe passing through the middle square.
[0005] Furthermore, the existing building is a modified building with limited space in front of it; the existing building includes beams spaced apart in the vertical direction and walls between adjacent beams.
[0006] Furthermore, the supporting columns are steel poles, which are installed along the entire length of the existing building from the roof to the ground; there are at least four supporting columns, which are distributed in a rectangular pattern; the supporting columns are detachably connected to the horizontal support bars. The support columns are also fixedly connected to the subsequently installed scaffolding via connecting rods.
[0007] Furthermore, the frame clamps are detachably connected to the frame horizontal bars, and the width between the two parallel frame clamps is adapted to the diameter of the transport main pipe; the width between the two parallel frame horizontal bars is adapted to the diameter of the transport main pipe.
[0008] Furthermore, the connecting beam rod is detachably connected to the embedded rod in the beam at the roof, and the embedded rod is fixedly connected by drilling and pouring concrete.
[0009] Furthermore, the wall-connecting rods are horizontal rods and are paired, parallel and perpendicular to the frame columns. The wall-connecting rods are connected to the wall through a through-hole or fixedly connected through a pre-embedded steel plate in the wall.
[0010] Furthermore, the transport main pipe is a double-walled corrugated pipe, and the transport main pipe is connected to the frame clamp rod or the frame horizontal rod through a double-walled corrugated pipe folding clamp. The transport main pipe is also fixedly connected to the frame clamp or the frame horizontal bar by binding ropes, which are spaced apart along the height of the transport main pipe.
[0011] Furthermore, both the upper and lower pipe openings are detachably connected to the main transport pipe. Both the upper and lower pipe openings are elbows, with the upper pipe opening facing the roof and the lower pipe opening being an upward-curving elbow.
[0012] Furthermore, the upper pipe opening is provided with inlet ports around its perimeter. The inlet ports are rectangular boxes with side openings, and the upper pipe opening extends out from the opposite side of the side opening.
[0013] Furthermore, a collection box is installed below the elbow of the lower pipe opening, with an opening on the top of the collection box; a bottom support plate is also installed between the collection box and the support column, and the bottom support plate is inclined downward and connected to the lower pipe opening.
[0014] The beneficial effects of this utility model are reflected in: 1) This utility model, through the setting of the transport pipe assembly, facilitates the transportation of roof waste from top to bottom, which can greatly save construction space and construction costs; 2) The present invention, through the setting of the fixing frame assembly, facilitates the effective fixing of the transport pipe assembly and can effectively fix it to the beam or wall, thus ensuring the installation firmness and stability of the transport pipe assembly. 3) The present invention, through the setting of the inlet and the collection box, can prevent garbage from splashing and protect the inlet; the collection box ensures the effective centralized treatment of garbage. The bottom support plate ensures that the garbage at the lower pipe opening still enters the collection box along an inclined path under the action of gravity.
[0015] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention; the main objectives and other advantages of this invention may be realized and obtained by means of the methods particularly pointed out in the description. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the installation of a vertical waste transportation structure on the roof of an urban renewal building. Figure 2 This is a schematic diagram of the connection structure between the mounting bracket assembly and the wall; Figure 3 This is a schematic diagram of the top mounting structure of the transport pipe assembly; Figure 4 This is a schematic diagram of the connection structure between the upper pipe port and the feed port; Figure 5 This is a schematic diagram of the bottom mounting structure of the transport pipe assembly.
[0017] Attached reference numerals: 1-Ground, 2-Existing building, 21-Wall, 22-Beam, 3-Fixed frame assembly, 31-Frame column, 32-Frame horizontal bar, 33-Frame clamp, 34-Frame connecting beam, 35-Frame embedded bar, 36-Frame wall connecting bar, 4-Transport pipe assembly, 41-Transport main pipe, 42-Upper pipe opening, 43-Lower pipe opening, 5-Inlet, 6-Collection box, 7-Bottom support plate. Detailed Implementation
[0018] Taking a renovation project of an old residential community in a certain town as an example, the site is small, making it impossible to set up cranes and other equipment on-site. During the roof renovation and demolition process, construction waste could not be cleaned up in a timely manner, and each building lacked an indoor elevator, making vertical transportation on-site difficult. Through methods such as... Figures 1 to 5 The vertical transport structure in the urban renewal building is used for transporting roof waste. The vertical transport structure for roof waste includes an existing building 2, a fixed frame assembly 3 located on the outside of the existing building 2, a transport pipe assembly 4 detachably connected inside the fixed frame assembly 3, an inlet 5 located at the top of the transport pipe assembly 4, and a collection box 6 located at the bottom of the transport pipe assembly 4. The existing building 2 includes beams 22 spaced apart in the vertical direction and walls 21 between adjacent beams 22.
[0019] In this embodiment, the fixing frame assembly 3 includes a frame column 31, a frame horizontal bar 32 connected horizontally and vertically to the frame column 31, a frame clamp bar 33 connected vertically to the frame horizontal bar 32, a frame connecting beam bar 34 connected to the top of the frame column 31, a frame embedded bar 35 connecting the frame connecting beam bar 34 and the existing building 2, and a frame connecting wall bar 36 spaced apart in the height direction of the frame column 31 and connected to the wall 21; the connection of each component of the fixing frame assembly 3 is detachable by fasteners.
[0020] In this embodiment, the support column 31 is a steel pole, and the support column 31 is installed along the entire length between the roof of the existing building 2 and the ground 1; there are at least four support columns 31, which are distributed in a rectangular pattern; the support column 31 is detachably connected to the horizontal support bar 32; the support column 31 is also fixedly connected to the scaffolding installed later through connecting rods.
[0021] In this embodiment, the frame clamping rod 33 is detachably connected to the frame horizontal rod 32, and the width between the two parallel frame clamping rods 33 is adapted to the diameter of the transport main pipe 41; the width between the two parallel frame horizontal rods 32 is adapted to the diameter of the transport main pipe 41. The frame connecting beam rod 34 is detachably connected to the frame embedded rod 35 in the beam 22 at the roof, and the frame embedded rod 35 is fixedly connected by drilling and pouring concrete. The frame connecting wall rod 36 is a horizontal rod and is paired parallel and perpendicular to the frame column 31. The frame connecting wall rod 36 is connected to the wall 21 through a through-hole or fixedly connected by a pre-embedded steel plate in the wall 21.
[0022] In this embodiment, the transport pipe assembly 4 includes a main transport pipe 41, an upper pipe opening 42 connected to the top of the main transport pipe 41, and a lower pipe opening 43 at the bottom of the main transport pipe 41; the horizontal support bar 32 and the clamping bar 33 are arranged in a grid shape, with the main transport pipe 41 passing through the middle U-shape. The main transport pipe 41 is a double-walled corrugated pipe of HDPE with a diameter of Φ400mm. The main transport pipe 41 is connected to the clamping bar 33 or the horizontal support bar 32 by a double-walled corrugated pipe folding clamp; the main transport pipe 41 is also fixedly connected to the clamping bar 33 or the horizontal support bar 32 by a binding rope, and the binding rope is spaced apart in the height direction of the main transport pipe 41.
[0023] In this embodiment, both the upper pipe opening 42 and the lower pipe opening 43 are detachably connected to the main transport pipe 41. Both the upper pipe opening 42 and the lower pipe opening 43 are elbows; the upper pipe opening 42 is an elbow facing the roof, and the lower pipe opening 43 is an upward-curving elbow. The elbows pass through pipe ends with a diameter of 400mm and a bend of 45°. Inlet ports 5 are provided around the upper pipe opening 42. The inlet ports 5 are rectangular boxes with side openings, and the upper pipe opening 42 extends from the opposite side of the side opening. The rectangular boxes are made of bamboo plywood or steel plate.
[0024] In this embodiment, a collection box 6 is installed below the elbow of the lower pipe opening 43, with an opening on top. A bottom support plate 7 is also installed between the collection box 6 and the support column 31, and the bottom support plate 7 is inclined downward and connected to the lower pipe opening 43. The collection box 6 has a box body of 1200mm×2200mm×1100mm, which is made of steel plate or hard plastic.
[0025] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any changes or substitutions that can be conceived by those skilled in the art within the technical scope disclosed in the present utility model should be included within the protection scope of the present utility model.
Claims
1. A vertical waste transportation structure for rooftops in urban renewal buildings, characterized in that, It includes an existing building (2), a fixed frame assembly (3) located on the outside of the existing building (2), a transport pipe assembly (4) detachably connected to the inside of the fixed frame assembly (3), an inlet (5) located on the top of the transport pipe assembly (4), and a collection box (6) located on the bottom of the transport pipe assembly (4). The fixed frame assembly (3) includes a frame column (31), a frame horizontal bar (32) connected horizontally and vertically to the frame column (31), a frame clamp bar (33) connected vertically to the frame horizontal bar (32), a frame connecting beam bar (34) connected to the top of the frame column (31), a frame embedded bar (35) connected between the frame connecting beam bar (34) and the existing building (2), and a frame connecting wall bar (36) spaced at intervals in the height direction of the frame column (31) and connected to the wall (21). The transport pipe assembly (4) includes a transport main pipe (41), an upper pipe port (42) connected to the top of the transport main pipe (41), and a lower pipe port (43) at the bottom of the transport main pipe (41). The horizontal bar (32) and clamp bar (33) of the frame are arranged in a grid shape, and the transport main pipe (41) is inserted through the square in the middle.
2. The vertical transportation structure for rooftop waste in urban renewal buildings as described in claim 1, characterized in that, The existing building (2) is a building to be renovated, with limited space in front of the building; the existing building (2) includes beams (22) spaced apart in the height direction and walls (21) between adjacent beams (22).
3. The vertical transportation structure for rooftop waste in urban renewal buildings as described in claim 1, characterized in that, The support column (31) is a steel rod, and the support column (31) is installed along the entire length between the roof and the ground (1) of the existing building (2); there are at least four support columns (31) and they are arranged in a rectangular point distribution; the support column (31) can be detachably connected to the horizontal support bar (32); The support column (31) is also fixedly connected to the scaffolding installed later by a connecting rod.
4. A vertical waste transportation structure for rooftops in urban renewal buildings as described in claim 1, characterized in that, The frame clamp (33) is detachably connected to the frame horizontal bar (32), and the width between the two parallel frame clamps (33) is adapted to the diameter of the transport main pipe (41); the width between the two parallel frame horizontal bars (32) is adapted to the diameter of the transport main pipe (41).
5. A vertical waste transportation structure for rooftops in urban renewal buildings as described in claim 1, characterized in that, The connecting beam rod (34) is detachably connected to the embedded rod (35) in the beam (22) at the roof, and the embedded rod (35) is fixedly connected by drilling and pouring concrete.
6. A vertical waste transportation structure for rooftops in urban renewal buildings as described in claim 1, characterized in that, The wall-connecting rods (36) are horizontal rods and are paired parallel to the uprights (31). The wall-connecting rods (36) are connected to the wall (21) through a through-hole or fixedly connected through a pre-embedded steel plate in the wall (21).
7. A vertical waste transportation structure for rooftops in urban renewal buildings as described in claim 1, characterized in that, The transport main pipe (41) is a double-wall corrugated pipe, and the transport main pipe (41) is connected to the frame clamp (33) or the frame horizontal bar (32) through the double-wall corrugated pipe folding clamp. The transport main pipe (41) is also fixedly connected to the frame clamp (33) or the frame horizontal bar (32) by binding ropes, which are spaced apart in the height direction of the transport main pipe (41).
8. A vertical waste transportation structure for rooftops in urban renewal buildings as described in claim 1, characterized in that, The upper pipe opening (42) and the lower pipe opening (43) are detachably connected to the main transport pipe (41). Both the upper pipe opening (42) and the lower pipe opening (43) are elbows. The upper pipe opening (42) is an elbow facing the roof, and the lower pipe opening (43) is an elbow that is concave upward.
9. A vertical waste transportation structure for rooftops in urban renewal buildings as described in claim 1, characterized in that, The upper pipe opening (42) is surrounded by a feed inlet (5). The feed inlet (5) is a rectangular box with a side opening and the upper pipe opening (42) extends out from the opposite side of the side opening.
10. A vertical waste transportation structure for rooftops in urban renewal buildings as described in claim 1, characterized in that, A collection box (6) is installed below the elbow of the lower pipe (43) at an angle, and the collection box (6) has an opening on top; A bottom support plate (7) is also provided between the collection box (6) and the support column (31), and the bottom support plate (7) is inclined downward and connected to the lower pipe opening (43).