Campus landscape comprehensive pipe gallery
By designing landscape components and hydroponic plants at the pipe corridor maintenance entrance, the problem of inconvenience in the existing pipe corridor maintenance is solved, and the combination of convenient maintenance and beautiful campus landscape is achieved, and the structural stability and ecological environment are improved.
Patent Information
- Application Number
- CN202422144758.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-02
AI Technical Summary
When the existing pipeline structure needs to be inspected, the pipeline structure needs to be excavated and the roof panel is removed, which is inconvenient to operate.
The maintenance port assembly with landscape function is designed, including a water collection box and a partition. It is connected to the roof of the pipe gallery through connecting bolts and combined with hydroponic plant design to achieve the sealing and aesthetic function of the maintenance port, and multiple pipe galleries are connected through plug grooves and convex parts.
It has achieved convenient maintenance of pipeline corridors and improved aesthetics of campus landscapes, while improving structural stability and ecological environment.
Smart Images

Figure CN223074789U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of landscape utility tunnels, and particularly to a comprehensive campus landscape utility tunnel. Background Art
[0002] The underground utility tunnel system not only solves the problem of urban traffic congestion, but also greatly facilitates the maintenance and repair of municipal facilities such as electricity, communication, gas, water supply and drainage. In addition, the system also has a certain role in earthquake prevention and disaster reduction.
[0003] The utility tunnel, also known as the municipal utility trench, consists of an underground main building and above-ground auxiliary facilities. The main structure of the utility tunnel is a concrete shell built underground, which is used to accommodate two or more urban engineering pipelines. It can also be said that within a certain underground space range, urban water supply, drainage, gas, heating, electricity, communication and other pipelines are concentratedly arranged to form intensive and standardized management.
[0004] In the existing utility tunnel structure, the utility tunnel is buried underground. When it is necessary to repair the pipelines and cables in the utility tunnel, the entire utility tunnel needs to be dug out and the top plate of the utility tunnel needs to be removed, which is not convenient for operation. Summary of the Utility Model
[0005] In order to improve the above problems, this application provides a comprehensive campus landscape utility tunnel.
[0006] The comprehensive campus landscape utility tunnel provided by this application adopts the following technical solutions:
[0007] A comprehensive campus landscape utility tunnel includes a tunnel main body and a tunnel top plate arranged on the top wall of the tunnel main body. The tunnel main body and the tunnel top plate enclose a tunnel cavity. An inspection opening is provided on the tunnel top plate, and a landscape component for blocking the inspection opening is arranged on the inspection opening.
[0008] Further, the landscape component includes a water collecting box arranged in the inspection opening and a partition member arranged in the water collecting box. A convex plate is arranged on the top surface of the water collecting box, and the convex plate overlaps with the tunnel top plate.
[0009] Further, a plurality of connecting bolts and connecting nuts are arranged on the tunnel top plate. Through holes for the connecting bolts to pass through are provided on the convex plate. The connecting nut is threadedly connected with the connecting bolt, and the convex plate is arranged between the connecting nut and the tunnel top plate.
[0010] Further, the separator includes a plurality of transverse plates and a plurality of longitudinal plates. The plurality of transverse plates and the plurality of longitudinal plates are vertically arranged. Slots for inserting the transverse plates are formed in the longitudinal plates. The top walls of the plurality of transverse plates are flush with the top walls of the plurality of longitudinal plates. The bottom surfaces of the plurality of longitudinal plates abut against the bottom of the water collecting box. The top surfaces of the plurality of longitudinal plates are flush with the top wall of the water collecting box. A receiving space for accommodating hydroponic plants is formed by enclosing the plurality of transverse plates, the plurality of longitudinal plates and the inner wall of the water collecting box.
[0011] Further, a plurality of channels for communicating the plurality of receiving spaces are formed in the longitudinal plates.
[0012] Further, an installation opening is further formed in the top plate of the pipe gallery. A lapping portion is formed by enclosing the pipe gallery main body and the installation opening. A plurality of cover plates are arranged on the installation opening. The plurality of cover plates are lapped on the lapping portion.
[0013] Further, grooves for planting plants are arranged on the plurality of cover plates.
[0014] Further, a plugging groove is arranged at one end of the pipe gallery main body, and a convex portion is arranged at the other end of the pipe gallery main body. The plugging groove is in plugging fit with the convex portion.
[0015] In summary, the present application includes at least one of the following beneficial technical effects:
[0016] 1. By designing the inspection opening as a component with a landscape function, not only the plugging of the pipe gallery is realized, but also it serves as a part of the campus landscape, improving the overall aesthetics of the campus;
[0017] 2. The design of the water collecting box and the hydroponic plants enables the pipe gallery to promote the improvement of the campus ecological environment while undertaking the function of pipeline laying;
[0018] 3. Through the fixing method of the connecting bolts and the connecting nuts, the stable connection between the landscape component and the top plate of the pipe gallery is ensured, improving the structural stability of the entire pipe gallery system. Description of the Drawings
[0019] Figure 1 It is a schematic diagram of the overall structure of a comprehensive pipe gallery for campus landscape in an embodiment of the present application.
[0020] Figure 2 It is a schematic diagram of the overall structure for embodying the lapping portion in the present application.
[0021] Description of reference numerals: 1, main body of pipe gallery; 2, top plate of pipe gallery; 3, connecting piece; 4, landscape component; 41, water collection box; 42, partition; 421, horizontal plate; 422, vertical plate; 5, lapping part; 6, installation opening; 7, channel; 8, slot; 9, installation bolt; 10, inspection opening; 11, convex plate; 12, connecting bolt; 13, connecting nut; 15, accommodating space; 16, pipe gallery cavity; 17, cover plate; 18, groove; 19, insertion slot; 20, convex part. Detailed implementation manners
[0022] The following further elaborates on this application in conjunction with the Figure 1-2 accompanying drawings.
[0023] An embodiment of this application discloses a comprehensive pipe gallery for campus landscape.
[0024] Referring to Figure 1 and Figure 2 , a comprehensive pipe gallery for campus landscape includes a main body 1 of the pipe gallery and a top plate 2 of the pipe gallery arranged on the top wall of the main body 1 of the pipe gallery. The main body 1 of the pipe gallery and the top plate 2 of the pipe gallery enclose to form a pipe gallery cavity 16. In this embodiment, the main body 1 of the pipe gallery and the top plate 2 of the pipe gallery are fixedly connected by "L"-shaped connecting pieces 3 and installation bolts 9 arranged at the four corners. Two inspection openings 10 are provided on the top plate 2 of the pipe gallery, and the two inspection openings 10 are respectively arranged at the left and right ends of the top plate 2 of the pipe gallery. Landscape components 4 for plugging the inspection openings 10 are arranged on both of the two inspection openings 10.
[0025] The landscape component 4 includes a water collection box 41 arranged in the inspection opening 10 and a partition 42 arranged in the water collection box 41. A convex plate 11 is arranged on the top surface of the water collection box 41, and the convex plate 11 lapps with the top plate 2 of the pipe gallery; a number of connecting bolts 12 and connecting nuts 13 are arranged on the top plate 2 of the pipe gallery. Through holes for the connecting bolts 12 to pass through are provided on the convex plate 11, and the connecting nut 13 is threadedly connected with the connecting bolt 12. The convex plate 11 is arranged between the connecting nut 13 and the top plate 2 of the pipe gallery; the partition 42 includes a number of horizontal plates 421 and a number of vertical plates 422. The number of horizontal plates 421 and the number of vertical plates 422 are vertically arranged. Slots 8 for the horizontal plates 421 to be inserted are provided on the vertical plates 422. The top walls of the number of horizontal plates 421 and the top walls of the number of vertical plates 422 are flush. The bottom surfaces of the number of vertical plates 422 are abutted against the bottom of the water collection box 41. The top surfaces of the number of vertical plates 422 are flush with the top wall of the water collection box 41. A accommodating space 15 for accommodating hydroponic plants is enclosed by the number of horizontal plates 421, the number of vertical plates 422 and the inner wall of the water collection box 41; a number of channels 7 for communicating the accommodating space 15 are provided on the vertical plates 422, and the channels 7 enable the water in the water collection box 41 to flow.
[0026] By designing the inspection opening 10 as a component with landscape function, not only the sealing of the pipe gallery is achieved, but also as part of the campus landscape, the overall aesthetic of the campus is improved; the design of the water collection box 41 and the hydroponic plants enables the pipe gallery to promote the improvement of the campus ecological environment while undertaking the function of pipeline laying. The fixing method through the connecting bolts 12 and the connecting nuts 13 is conducive to realizing the stable connection between the landscape component 4 and the pipe gallery roof 2, and improving the structural stability of the entire pipe gallery system. When it is necessary to repair the pipelines inside the pipe gallery, after removing the connecting nut 13 and then removing the water collection box 41, the inspection opening 10 can be exposed, and the inspection opening 10 is used to repair the inside of the pipe gallery cavity 16, which is simple and convenient; by using the transverse plate 421 and the longitudinal plate 422 flush with the top wall of the water collection box 41, the risk of stepping into the air when personnel step into the water collection box 41 is avoided as much as possible.
[0027] Refer to Figure 1 and Figure 2 , an installation opening 6 is also provided on the pipe gallery roof 2. The pipe gallery main body 1 and the installation opening 6 enclose a lapping part 5. A plurality of cover plates 17 are provided on the installation opening 6, and the plurality of cover plates 17 lap on the lapping part 5; a groove 18 for planting plants is provided on each of the plurality of cover plates 17.
[0028] Planting plants using the groove 18 makes the cover plate 17 blend in with the surrounding environment after installation, having aesthetic property.
[0029] Refer to Figure 2 , one end of the pipe gallery main body 1 is provided with a plug-in groove 19, and the other end of the pipe gallery main body 1 is provided with a convex part 20. The plug-in groove 19 and the convex part 20 are in plug-in fit.
[0030] The design of the plug-in groove 19 and the convex part 20 enables multiple pipe galleries to be conveniently connected together to meet the pipeline laying requirements in different areas of the campus.
[0031] The implementation principle of a campus landscape integrated pipe gallery in an embodiment of the present application is: when it is necessary to repair the pipelines inside the pipe gallery, after removing the connecting nut 13 and then removing the water collection box 41, the inspection opening 10 can be exposed, and the inspection opening 10 is used to repair the inside of the pipe gallery cavity 16, which is simple and convenient.
[0032] The above are all the preferred embodiments of the present application. The protection scope of the present application is not limited by this. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. An integrated utility tunnel for campus landscape, characterized in that: It includes a pipe gallery main body (1) and a pipe gallery roof slab (2) arranged on the top wall of the pipe gallery main body (1). The pipe gallery main body (1) and the pipe gallery roof slab (2) enclose a pipe gallery cavity (16). An inspection opening (10) is formed on the pipe gallery roof slab (2), and a landscape component (4) for blocking the inspection opening (10) is arranged on the inspection opening (10).
2. The comprehensive utility tunnel for campus landscape according to claim 1, characterized in that: The landscape component (4) includes a water collection box (41) arranged in the inspection opening (10) and a partition member (42) arranged in the water collection box (41). A convex plate (11) is arranged on the top surface of the water collection box (41), and the convex plate (11) overlaps with the pipe gallery roof slab (2).
3. The comprehensive utility tunnel for campus landscape according to claim 2, characterized in that: A number of connecting bolts (12) and connecting nuts (13) are arranged on the pipe gallery roof slab (2). Through holes for the connecting bolts (12) to pass through are formed on the convex plate (11). The connecting nut (13) is in threaded connection with the connecting bolt (12), and the convex plate (11) is arranged between the connecting nut (13) and the pipe gallery roof slab (2).
4. The integrated utility tunnel for campus landscape according to claim 2, wherein: The partition member (42) includes a number of transverse plates (421) and a number of longitudinal plates (422). The number of transverse plates (421) and the number of longitudinal plates (422) are vertically arranged. Slots (8) for the transverse plates (421) to be inserted are formed on the longitudinal plates (422). The top walls of the number of transverse plates (421) are flush with the top walls of the number of longitudinal plates (422). The bottom surfaces of the number of longitudinal plates (422) are in contact with the bottom of the water collection box (41). The top surfaces of the number of longitudinal plates (422) are flush with the top wall of the water collection box (41). The number of transverse plates (421), the number of longitudinal plates (422) and the inner wall of the water collection box (41) enclose an accommodation space (15) for accommodating hydroponic plants.
5. The comprehensive utility tunnel for campus landscape according to claim 4, wherein: A number of channels (7) for communicating the number of accommodation spaces (15) are formed on the longitudinal plates (422).
6. The integrated utility tunnel for campus landscape according to claim 1, characterized in that: An installation opening (6) is also formed on the pipe gallery roof slab (2). The pipe gallery main body (1) and the installation opening (6) enclose a lapping part (5). A number of cover plates (17) are arranged on the installation opening (6), and the number of cover plates (17) overlap on the lapping part (5).
7. The comprehensive utility tunnel for campus landscape according to claim 6, characterized in that: A groove (18) for planting plants is arranged on each of the number of cover plates (17).
8. The integrated utility tunnel for campus landscape according to claim 1, characterized in that: One end of the pipe gallery main body (1) is provided with a plug-in slot (19), and the other end of the pipe gallery main body (1) is provided with a convex part (20). The plug-in slot (19) is in plug-in fit with the convex part (20).