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首页> 外文期刊>International journal of geomechanics >Probabilistic Stability Analysis of Subway Tunnels Combining Multiple Failure Mechanisms and Response Surface Method
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Probabilistic Stability Analysis of Subway Tunnels Combining Multiple Failure Mechanisms and Response Surface Method

机译:多重破坏机理与响应面法相结合的地铁隧道概率稳定性分析

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摘要

A probabilistic approach is proposed for face stability analysis of subway tunnels, which begins with establishment of multiple failure mechanisms, including active failure and passive failure. In terms of the complex conditions during subway construction, the buried depth, surcharge load imposed on the ground, and pore water pressure are introduced to account for the extrinsic factors that probably affect the face stability. The probabilistic analysis is performed by consolidating the multiple failure mechanisms into response surface method (RSM). The cohesion and internal friction angle of soils are considered as random variables, and the remaining parameters are considered as nonrandom variables due to their low variability or determinacy for specific projects. The influence of nonrandom variables and random variables on failure probability is investigated in detail. Finally, a reliability-based design chart is provided to evaluate the target supporting pressure against tunnel face according to different coefficients of variation of random variables. In short, by taking into account of all the possible face failures in one performance function, the proposed approach has the virtue of catching the global behaviors of face failure when multiple failure mechanisms occur at tunnel face. (C) 2018 American Society of Civil Engineers.
机译:提出了一种概率方法用于地铁隧道的面稳定性分析,该方法首先建立包括主动故障和被动故障在内的多种故障机制。考虑到地铁施工过程中的复杂条件,引入了埋深,施加在地面上的附加载荷以及孔隙水压力,以考虑可能影响工作面稳定性的外部因素。通过将多个故障机制整合到响应面方法(RSM)中来执行概率分析。土的内聚力和内摩擦角被认为是随机变量,而其余参数由于对特定项目的可变性或确定性低而被视为非随机变量。详细研究了非随机变量和随机变量对失效概率的影响。最后,提供了基于可靠性的设计图,以根据随机变量的不同变化系数评估针对隧道工作面的目标支撑压力。简而言之,通过在一个性能函数中考虑所有可能的工作面破坏,所提出的方法的优点在于,当在隧道工作面上出现多种破坏机制时,可以捕获工作面破坏的整体行为。 (C)2018美国土木工程师学会。

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