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Reliability analysis on permanent displacement of earth slopes using the simplified bishop method

机译:用简化的Bishop方法对土坡永久位移的可靠性分析

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Assessing the seismic stability of earth slopes has long been a challenging task in geotechnical engineering mainly because of two reasons: (1) the mechanism of slope movement triggered by an earthquake is not fully understood, and (2) the criteria of seismic performance or failure state are hard to specify. As an attempt to address these concerns, this paper examines the seismic slope failure mechanism of rotational sliding mass. Permanent displacement is analyzed based on Newmark's sliding block theory, with extension to compute the rotational displacement in the presence of horizontal ground acceleration history. A simplified relationship between the rotational and horizontal motions of a circular failure mass is also obtained. By comparing case studies, the possible reasons whether and how the seismic slip surface differs from the static one are explained. In addition, we discuss the allowable displacement when a quantitative judgment of the slope performance is required. In this regard, the underlying uncertainties of the soil properties are introduced to probabilistically relate this threshold value to the reliability index, a substitute for the probability of failure or risk acceptance level. The results from the parametric studies indicate the reliability-based design of the allowable displacement is a promising approach for seismic slope analysis.
机译:长期以来,评估土坡的地震稳定性一直是岩土工程中一项具有挑战性的任务,主要是因为两个原因:(1)地震引发的坡度运动机理尚未完全了解,(2)地震性能或破坏的标准状态很难指定。为了解决这些问题,本文研究了旋转滑动质量的地震边坡破坏机理。基于Newmark的滑块理论对永久位移进行了分析,并扩展为在存在水平地面加速度历史的情况下计算旋转位移。还获得了圆形破坏质量的旋转运动与水平运动之间的简化关系。通过比较案例研究,解释了地震滑动面与静态滑动面不同的可能原因。另外,当需要对斜坡性能进行定量判断时,我们讨论了允许位移。在这方面,引入了土壤特性的潜在不确定性,以概率性地将该阈值与可靠性指标相关联,该可靠性指标替代了故障概率或风险接受水平。参数研究的结果表明,基于可靠度的允许位移设计是地震边坡分析的有前途的方法。

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