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Ground Movements due to Shallow Tunnels in Soft Ground. Ⅰ: Analytical Solutions

机译:由于软土地层中的浅埋隧道而引起的地面运动。 Ⅰ:分析溶液

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摘要

This paper presents simplified closed-form analytical solutions that can be used to interpret and predict ground movements caused by shallow tunneling in soft ground conditions. These solutions offer a more comprehensive framework for understanding the distribution of ground movements than widely used empirical functions. Analytical solutions for the displacement field within the ground mass are obtained for two basic modes of deformation corresponding to uniform convergence and ovalization at the wall of a circular tunnel cavity, based on the assumption of linear, elastic soil behavior. Deformation fields based on the superposition of fundamental, singularity solutions are shown to differ only slightly from analyses that consider the physical dimensions of the tunnel cavity, except in the case of very shallow tunnels. This work demonstrates a simplified method to account for soil plasticity in the analyses and illustrate closed-form solutions for a three-dimensional (3D) tunnel heading. A companion paper describes applications of these analyses to interpret field measurements of ground response to tunneling.
机译:本文提出了简化的闭合形式分析解决方案,可用于解释和预测在软土地基条件下浅埋隧道引起的地面运动。与广泛使用的经验函数相比,这些解决方案为理解地面运动的分布提供了更全面的框架。基于线性弹性土壤特性的假设,针对两种基本变形模式,获得了对应于圆形隧道洞壁均匀收敛和椭圆化的两种基本变形模式,得出了地面质量内部位移场的解析解。结果表明,基于基本奇异解的叠加的变形场与考虑隧道空腔物理尺寸的分析仅略有不同,但非常浅的隧道除外。这项工作演示了一种在分析中考虑土壤可塑性的简化方法,并说明了三维(3D)隧道掘进的封闭形式解决方案。随附的论文描述了这些分析在解释地面对隧道响应的现场测量中的应用。

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