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Reliability-based design for geotechnical engineering: An inverse FORM approach for practice

机译:基于可靠性的岩土工程设计:实践中的反向形式方法

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摘要

In order to advance the reliability analysis of practical engineering problems, a simplified iterative algorithm for forward and/or inverse first-order reliability method (FORM) is presented in this paper. The approach extends the well-known HLRF algorithms that are conventionally formulated in the uncorrelated standard normal space (u-space) into the correlated nonnormal space (x-space). Because the simplified algorithms are self-contained in x-space, the tedious mathematical transformations of random variables between statistical spaces as well as the inversion of Jacobian matrix for gradient vectors are not required, which are desirable for practitioners to implement FORM within standalone numerical codes. The convergence of the simplified iterative algorithms can be improved by properly adjusting the step length during the iterative computations. Verifications of the proposed algorithm are illustrated through a highly nonlinear problem for both forward and/or inverse reliability analysis. Based on the proposed inverse FORM algorithm, the geotechnical reliability-based designs (RBD) of a strip footing and an earth slope are performed and some insights gained.
机译:为了推进实际工程问题的可靠性分析,本文提出了一种用于前进和/或逆一级可靠性方法(形式)的简化迭代算法。该方法扩展了众所周知的HLRF算法,该识别的HLRF算法通常将在不相关的标准常规空间(U空间)中分配到相关的非正规空间(X空间)中。由于简化的算法是在X空间中的自包含的,所以不需要统计空间之间随机变量的繁琐数学变换以及梯度向量的曲线矩阵的反转,因此对于从业者在独立数值代码中实现形式的工作人员是期望的。通过在迭代计算期间适当地调整步长来提高简化迭代算法的收敛。通过高度非线性问题来示出所提出的算法的验证,用于前向和/或逆可靠性分析。基于所提出的逆形算法,进行了条带基础和地球坡度的基于地理性可靠性的设计(RBD),并获得了一些洞察力。

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