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Kinematic Stability of Tunnel Face in Non-Uniform Soils

机译:非均匀土壤中隧道工作面的运动稳定性

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In the paper, the kinematic analysis is carried out to evaluate the face stability of shallow tunnel in the framework of plasticity theory. In view of the non-uniformity of soil strength parameters, a discretization technique is introduced to generate possible failure mechanisms which respect the associative flow rule and requirement of the non-uniformity of soil strength parameters. As an earthquake situation is considered, a pseudo-dynamic method is adopted to portray the distribution of seismic acceleration. Some comparisons are made to the conventional analysis, including discretization-based pseudo-static analysis and log-spiral-based pseudo-static analysis, to prove the validity of the programming code and accuracy of the proposed method. The soil strength parameters are considered varying in the vertical direction. The effect of distribution of strength parameters is discussed, and distribution form is initially assumed to be linear profile and, then, to be other nonlinear functional profile, including power profile, constant profile and quadratic profile. The results derived from further parametric study show that although the influence of horizontal seismic coefficient is more significant than the vertical one, the vertical effect cannot be ignored in most circumstances, and some factors affect the stability cyclically. In addition, in the linear profile of soil strength parameters, the influence of gradient on supporting pressure is rather small comparing to the average. The influence of non-uniformity of soil strength parameters and seismic parameters on the shape and collapsed area of the failure mechanism is successively studied in this paper. All the optimized solutions are presented in the figures and tables for practical application.
机译:本文在可塑性理论的框架下,进行了运动学分析,评价了浅埋隧道的工作面稳定性。鉴于土壤强度参数的不均匀性,引入了一种离散化技术来生成可能的破坏机制,该机制应遵循相关的流动规则和对土壤强度参数不均匀性的要求。考虑到地震情况,采用拟动力方法刻画地震加速度的分布。与常规分析进行了一些比较,包括基于离散化的伪静态分析和基于对数螺旋的伪静态分析,以证明编程代码的有效性和所提方法的准确性。土壤强度参数被认为在垂直方向上变化。讨论了强度参数分布的影响,最初假定分布形式为线性分布,然后为其他非线性功能分布,包括功率分布,恒定分布和二次分布。从进一步的参数研究得出的结果表明,尽管水平地震系数的影响比垂直地震系数的影响更大,但在大多数情况下垂直效应是不容忽视的,并且某些因素会周期性地影响稳定性。另外,在土壤强度参数的线性分布中,与平均值相比,梯度对支撑压力的影响很小。依次研究了土体强度参数和地震参数的不均匀性对破坏机理的形状和坍塌面积的影响。所有优化的解决方案均在图表中提供,以供实际应用。

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