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A Benchmark Slope For System Reliability Analysis

机译:系统可靠性分析的基准斜率

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In a probabilistic slope stability analysis, the failure probability associated with the most critical slip surface (the one with the minimum reliability index) is known to be smaller than that obtained for the system as a whole where all potential slip surfaces are considered. System slope reliability has been studied in recent years by several probabilistic methods, including the Random Finite Element Method (RFEM), Limit Equilibrium Methods (LEM) combined with First Order Reliability Methods (FORM), and Response Surface Methods (RSM). The only one of these methods that can properly account for spatial variability however is the RFEM. In this paper, we set up a benchmark slope for system reliability analysis and compare the probability of failure obtained both with and without inclusion of spatial variability. The paper will give recommendations for the types of slope reliability problems that benefit from proper consideration of spatial variability.
机译:在概率边坡稳定性分析中,已知与最关键的滑动面(具有最小可靠性指标的滑动面)相关的失效概率小于考虑到所有潜在滑动面的系统整体获得的失效概率。近年来,已经通过几种概率方法研究了系统斜率可靠性,包括随机有限元方法(RFEM),极限平衡方法(LEM)与一阶可靠性方法(FORM)和响应面方法(RSM)。但是,RFEM是这些方法中能够正确考虑空间变化性的唯一方法。在本文中,我们为系统可靠性分析设置了基准斜率,并比较了在包含和不包含空间可变性的情况下获得的故障概率。本文将对适当考虑空间变异性的边坡可靠性问题的类型提出建议。

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