Lightweight subgrade structure, design and construction methods above operating tunnels
A lightweight, tunnel-based technology, applied in infrastructure engineering, roads, roads, etc., can solve problems such as structural deformation and cracking of underlying operating tunnels, affecting the normal use of tunnels, threatening traffic operation safety, etc., to reduce ecological environment damage, Guaranteed normal use function and remarkable environmental benefits
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Embodiment 1
[0055] refer to figure 1 , the light subgrade structure above the operating tunnel of the present invention, the composite lightweight piles 1 are arranged in rows along the longitudinal interval of the line in the rock foundation D above the tunnel 10 in the operating state; the light body 2 is arranged on the composite lightweight piles 1 On the top; the U-shaped light tank 3 is set on the top of the light body 2; the soil filler 4 is filled in the U-shaped light tank 3; the drain 5 is set on both sides of the light body 2.
[0056] In the above scenario:
[0057] refer to figure 2 , 3 , the composite lightweight pile 1 includes a pile-forming lightweight body 6 and a composite reinforced cage 7 embedded in it, the composite reinforced cage 7 is composed of vertical geogrids 71 arranged at circumferential intervals and annular geogrids arranged at vertical intervals Grids 72 are formed. Vertical geogrids 71 and ring-shaped geogrids 72 are converging and connected as...
Embodiment 2
[0083] Such as Figure 1-6 As shown, this embodiment specifically demonstrates the design method for the subgrade structure in construction, and the specific design process:
[0084] A newly built high-speed railway has a design speed of 300km / h (ballastless track) and a line spacing of 4.8m. In order to meet the design requirements for introducing a large hub, it is necessary to build a subgrade project above the operating subway tunnel 10 (the top surface of the tunnel is about 20m from the surface) (height h =3.5m, width B =14.6m), the overlying stratum of tunnel 10 is silty clay. The design intends to adopt the light subgrade structure above the operating tunnel 10 of the present invention. In the design process, the slope ratio of the light subgrade m Take 0.2, soil filler 4 thickness h n2 Take 0.5m, U-shaped lightweight tank 3 (the thickness of the bottom plate is taken as 1.5m) and the thickness of the cantilever at both ends b Take 1.0m, lay 6RTS Ⅰ type slab balla...
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