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Reliability Analysis of Railway Tunnel Construction Process within Soft and Weak Rock Mass Using the Unified Elasto-plastic Strength Criterion

机译:基于统一弹塑性强度准则的软弱岩体铁路隧道施工过程可靠性分析

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摘要

Variability in the physical properties of rock mass is a major source of uncertainty encountered in railway tunnel stability analysis. The conventional safety factor method on stability assessment of railway tunnel within soft and weak rock mass can not represent the variability of rock mass. A formulation to compute the reliability of soft and weak rock mass, in which physical non-linearity is taken into account, is proposed. To consider the intermediate principal stress effect on the rock mass strength, the unified elasto-plastic strength criterion is proposed in the nonlinear finite element analysis. The unified rock mass elasto-plastic material model is implemented in ABAQUS user interface. The reliability analysis is performed in two steps. Firstly, the failure response is obtained by fitting the limit state function of the rock mass using the quadratic polynomial based on the nonlinear finite element analysis of the rock mass. Secondly, the JC method is proposed to obtain the design point and the reliability index of rock mass. As a case for study, the reliability analysis of Jinhuashan railway tunnel within soft and weak rock mass is studied using the proposed method. The two dimensional analysis is performed to consider the excavation stage effect and the unloading effect on the rock mass. Computation result shows that the rock mass is in stability.
机译:岩体物理特性的可变性是铁路隧道稳定性分析中遇到的不确定性的主要来源。在软弱岩体中进行铁路隧道稳定性评估的常规安全系数法不能代表岩体的变异性。提出了计算软弱岩体可靠度的公式,其中考虑了物理非线性。为了考虑中间主应力对岩体强度的影响,在非线性有限元分析中提出了统一的弹塑性强度准则。统一的岩体弹塑性材料模型在ABAQUS用户界面中实现。可靠性分析分两个步骤进行。首先,基于岩体的非线性有限元分析,使用二次多项式拟合岩体的极限状态函数,从而获得破坏响应。其次,提出了JC方法来获得岩体的设计要点和可靠性指标。以金华山铁路隧道软弱围岩内的可靠度分析为研究对象。进行二维分析以考虑开挖阶段效应和卸荷效应对岩体的影响。计算结果表明岩体处于稳定状态。

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