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Probabilistic assessment of tunnel convergence considering spatial variability in rock mass properties using interpolated autocorrelation and response surface method

机译:隧道收敛概率评估考虑岩体易变性的空间变异性,使用内插自相关和响应表面法

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This study aims at the probabilistic assessment of tunnel convergence considering the spatial variability in rock mass properties. The method of interpolated autocorrelation combined with finite difference analysis is adopted to model the spatial variability of rock mass properties. An iterative procedure using the first-order reliability method (FORM) and response surface method (RSM) is employed to compute the reliability index and its corresponding design point. The results indicate that the spatial variability considerably affects the computed reliability index. The probability of failure could be noticeably overestimated in the case where the spatial variability is neglected. The vertical scale of fluctuation has a much higher effect on the probabilistic result with respect to the tunnel convergence than the horizontal scale of fluctuation. And the influence of different spacing of control points on the computational accuracy is investigated. Graphical abstract Display Omitted Highlights ? Spatial variability is considered in the probabilistic assessment of tunnel convergence. ? Interpolated autocorrelation method is employed to model the 2-D random field. ? Spatial variability greatly affect the probabilistic result of tunnel convergence. ? Scale of fluctuation in vertical has a much higher effect than that in horizontal.
机译:本研究旨在考虑岩石质量特性的空间变异性隧道收敛的概率评估。采用具有有限差分分析的内插自相关方法来模拟岩体质量特性的空间变异性。使用使用一阶可靠性方法(形式)和响应表面方法(RSM)的迭代过程来计算可靠性指数及其对应的设计点。结果表明空间可变性显着影响计算的可靠性指数。在忽略空间变异性的情况下,故障的概率可以明显高估。波动的垂直规模对隧道收敛的概率结果大得多,而不是波动的水平比例。并研究了不同间隔对计算精度的不同间隔的影响。图形抽象显示省略了亮点?在隧道收敛的概率评估中考虑了空间变异性。 ?使用内插自相关方法来模拟2-D随机字段。 ?空间可变性极大地影响了隧道收敛的概率结果。 ?垂直波动的比例具有比水平更高的效果。

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