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RELIABILITY-BASED SEISMIC DEFORMATION ANALYSIS OF REINFORCED SOIL SLOPES

机译:基于可靠度的加筋土坡地震变形分析

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References(31) Cited-By(4) The paper describes a precise technique to compute the limit state exceedance probability of typical earth slopes and geosynthetic-reinforced soil (GRS) slopes using a low-discrepancy sequence Monte Carlo (LDSMC) method and an importance sampling with low-discrepancy sequence Monte Carlo (ISLDSMC) method. The LDSMC and ISLDSMC methods can efficiently compute the accurate limit state exceedance probabilities of typical earth slopes and GRS slopes with a limited number of simulations. This study presents a practically useful nomogram of seismic deformation and limit state exceedance probability with variable slope heights, backfill soil properties, and geometries. A simple estimation of the limit state exceedance probability of the GRS slopes is given based on the results of the conventional deterministic analysis. The results of these analyses show that the LDSMC and ISLDSMC methods are practically useful, efficient, and accurate for the limit state exceedance probability calculation.
机译:参考文献(31)Cited-By(4)描述了一种精确的技术,该技术使用低偏差序列蒙特卡洛(LDSMC)方法和有限差分法计算典型土坡和土工合成材料加筋土(GRS)坡的极限状态超标概率。低差异序列蒙特卡洛(ISLDSMC)方法进行重要性抽样。 LDSMC和ISLDSMC方法可以通过有限数量的模拟有效地计算出典型土坡和GRS坡的准确极限状态超标概率。这项研究提出了一种实用的地震变化列线图,它具有可变的斜坡高度,回填土的性质和几何形状的极限变形概率和极限状态。基于常规确定性分析的结果,可以简单估算出GRS斜率的极限状态超出概率。这些分析的结果表明,LDSMC和ISLDSMC方法对于极限状态超过概率的计算实际上是有用,有效和准确的。

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