离散化
增量动力分析
加速度
参数统计
运动学
峰值地面加速度
理论(学习稳定性)
地震荷载
极限分析
上下界
不稳定性
边坡稳定性分析
消散
地震分析
边坡稳定性
岩土工程
数学
地质学
结构工程
工程类
机械
地震动
数学分析
计算机科学
物理
机器学习
统计
热力学
经典力学
作者
Changbing Qin,Siau Chen Chian
出处
期刊:Geotechnique
[Thomas Telford Ltd.]
日期:2017-09-05
卷期号:68 (6): 492-503
被引量:149
标识
DOI:10.1680/jgeot.16.p.200
摘要
Slopes are more vulnerable to instability when subjected to earthquake ground shaking. In order to account for the dynamic forces induced by ground shaking, a novel procedure is introduced in this paper to estimate slope stability under the ultimate limit state with a combination of pseudo-dynamic approach and discretisation technique. A pseudo-dynamic approach is adopted which allows the introduction of an arbitrary time history of seismic accelerations. In order to consider non-uniformity of soil properties of the slope, the discretisation technique is proposed with the aim of generating a potential failure mechanism with discretised points by forward difference ‘point-to-point’ method. Infinitesimal trapezoidal elements composed of successive discretised points and sloping surface are selected for kinematic analysis. In this way, the problem is decomposed into separate components, which aids computational effort. The upper-bound solutions of limiting surcharge loading and yield seismic acceleration are thereafter obtained with the equilibrium of total external work rate and internal energy dissipation rate through the summation from all infinitesimal elements. The methodology is validated through comparison with its degraded approach and conventional upper-bound analysis. Further parametric study is also carried out to highlight the influence of the various soil and loading parameters on the critical seismic acceleration.
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