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Decoupled reliability-based geotechnical design of deep excavations of soil with spatial variability

机译:基于分离的可靠性的土地挖掘岩土设计,具有空间变异性的土壤挖掘

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This paper presents a general decoupled method for reliability-based geotechnical design that takes into account the spatial variability of soil properties. In this method, reliability analyses that require a lot of computational resources are decoupled from the optimization procedure by approximating the failure probability function globally. Failure samples are iteratively generated over the entire design space so that their global distribution information can be extracted to construct the failure probability function. The method is computationally efficient, is flexible to implement, and is well suited for geotechnical problems that may involve sophisticated models. A design example of two-dimensional deep excavation against basal heave is discussed for Singapore marine clay where the density and normalized undrained shear strength of soil mass are modeled as random fields. Results demonstrate that the proposed method works well in practice and is advantageous over the coupled or locally decoupled reliability-based geotechnical design methods.
机译:本文介绍了一种基于可靠性的岩土设计的一般解耦方法,考虑了土壤性质的空间变异性。在该方法中,通过在全局近似故障概率函数来,需要大量计算资源的可靠性分析通过优化过程解耦。在整个设计空间上迭代地产生失败样本,从而可以提取它们的全局分布信息来构造故障概率函数。该方法是计算上的效率,灵活地实现,并且非常适合可涉及复杂模型的岩土问题。新加坡海洋粘土讨论了对基底挖掘的二维深度挖掘的设计实例,其中土壤质量的密度和归一化的不排水剪切强度被建模为随机场。结果表明,所提出的方法在实践中运行良好,并且有利的基于耦合或局部解耦可靠性的岩土设计方法。

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