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Pseudo-static simplified analytical solution for seismic response of deep tunnels with arbitrary cross-section shapes

机译:任意横截面形状深隧道抗震响应的伪静态简化分析解决方案

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Tunnels located in seismic active areas must support not only static loads exerted by the ground under gravity but also seismic loads from earthquake events. Current analytical solutions for seismic analysis of tunnel structures are limited to circular or rectangular tunnels but not available for tunnels with other complex cross-section shapes, such as straight-wall-arch-shaped or semi-rectangular-shaped tunnels. This paper presents a unified simplified analytical solution for deep tunnels with arbitrary cross-section shapes subjected to seismic loading. Since the cross-section dimension of tunnels is normally much smaller than the wavelength of ground peak velocities, the structure can be designed using the pseudo-static approach. The ground and the tunnel liner are assumed to be elastic, homogeneous, and isotropic in plane strain condition. Two different contact conditions, no-slip and full-slip conditions, are considered at the liner-ground interface. The complex variable theory combined with the conformal mapping technique are employed to obtain closed-form solutions for tunnel deformation and stresses. The proposed solution is verified by providing comparisons between its results and those from the finite element program ABAQUS. Furthermore, parametric analyses are carried out to investigate the influence of soil-structure relative stiffness ratio, cross-section shape, height-span ratio and thickness of middle wall on tunnel responses.
机译:位于地震活动区域的隧道不仅必须支持地面施加的静载荷,而且来自地震事件的地震载荷。隧道结构的地震分析的电流分析解仅限于圆形或矩形隧道,但不适用于与其他复杂的横截面形状的隧道,例如直壁拱形或半矩形隧道。本文介绍了具有抗震载荷的任意横截面形状的深隧道统一简化的分析解决方案。由于隧道的横截面尺寸通常比地峰值速度的波长小得多,因此可以使用伪静态方法来设计结构。假设地面和隧道衬里在平面应变条件下是弹性,均匀的和各向同性的。在衬里接口处考虑两个不同的接触条件,无滑移和全滑动条件。复杂的可变理论与保形映射技术相结合,用于获得隧道变形和应力的闭合溶液。通过在ABAQUS的结果和来自有限元计划之间的结果和那些之间进行比较来验证所提出的解决方案。此外,进行参数分析,以研究土壤结构相对刚度比,横截面形状,高度跨度比和中间壁厚度对隧道反应的影响。

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