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Strength Reduction Method for Slope Stability Analysis Based on a Dual Factoring Strategy

机译:基于双重分解策略的边坡稳定性分析强度折减法

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A shear strength reduction method based on a dual factoring strategy was considered in which cohesion and the coefficient of internal friction were each reduced by a different factor. By using a strength reduction path introduced in the present study, series of numerical tests were conducted to bring the slope into different states of critical equilibrium through which definitions of the factor of safety and the strength reduction path adopted in some preceding studies were evaluated. This strategy was found to be more conservative than the traditional shear strength reduction method. Generally, the factor of safety defined in the limit equilibrium method should be adopted, and the most probable strength reduction path under the principle of the shortest path could be an effective approach to obtain the minimum value of the factor of safety directly. To implement this strategy, a mathematical model based on limit analysis solutions is proposed to describe the shear strength components of a slope under different critical equilibrium states, and a general computational procedure is outlined. (c) 2018 American Society of Civil Engineers.
机译:考虑了基于双重分解策略的剪切强度降低方法,其中内聚力和内摩擦系数分别降低了一个不同的因子。通过使用本研究中介绍的强度折减路径,进行了一系列数值测试,以使边坡进入临界平衡的不同状态,从而评估了先前研究中所采用的安全系数和强度折减路径的定义。发现该策略比传统的剪切强度降低方法更为保守。通常,应采用极限平衡法中定义的安全系数,在最短路径原理下最可能的强度降低路径可能是直接获取安全系数最小值的有效方法。为实现这一策略,提出了一种基于极限分析解的数学模型来描述边坡在不同临界平衡状态下的抗剪强度分量,并概述了一般的计算过程。 (c)2018年美国土木工程师学会。

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