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Reliability Analysis of Strain-Softening Slopes Using the First Order Reliability Method (FORM)

机译:使用一阶可靠度方法(FORM)进行应变软化边坡的可靠度分析

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The paper pertains to the slope reliability analysis under a probabilistic framework in strain-softening cohesive soils, using the first order reliability method (FORM). The performance function is based on the Bishop simplified method modified to take strain-softening into account in terms of the residual factor R(f) over a potential slip surface, estimated based on a progressive failure model proposed in the literature. The reliability analysis is performed on the surface of minimum factor of safety determined by using the sequential quadratic programming (SQP). The random shear strength parameters are assumed to follow normal distribution while the residual factor has been considered both as a deterministic parameter and a beta-distributed random variable. The results obtained for an illustrative example shows substantial reduction (21%) in the value of reliability index when R(f) is considered as a random variable with an assumed COV of 0.3. Results of FORM-based sensitivity analyses also reveal that R(f) has the most dominating influence on reliability and thus justifies its inclusion as one of the random variables. A parametric study, varying the assumed correlation coefficient between the random shear strength parameters from 0 to 1, shows that there is a maximum reduction of 16% in reliability index.
机译:本文涉及在一阶概率框架下的应变软化粘性土的边坡可靠度分析,采用一阶可靠度方法(FORM)。性能函数基于Bishop简化方法,该方法经过修改,可以根据潜在滑移表面上的残余因子R(f)考虑到应变软化,这是根据文献中提出的渐进式破坏模型进行估算的。通过使用顺序二次规划(SQP)在确定的最小安全系数的表面上执行可靠性分析。假定随机抗剪强度参数服从正态分布,而残差因子既被视为确定性参数,又被视为β分布随机变量。对于一个说明性示例获得的结果表明,当将R(f)视为假设COV为0.3的随机变量时,可靠性指标的值大幅下降(21%)。基于FORM的敏感性分析的结果还表明,R(f)对可靠性具有最主要的影响,因此有理由将其作为随机变量之一包含在内。一项参数研究将随机抗剪强度参数之间的假定相关系数从0更改为1,结果表明,可靠性指标最大降低了16%。

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