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A multi-block sliding approach to calculate the permanent seismic displacement of slopes

机译:一种多块滑动方法来计算斜坡的永久地震位移

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The Newmark sliding block method is widely used to assess the seismic performance of earth slopes by calculating the permanent displacement of the simplified sliding mass. The conventional Newmark method models the potential landslide mass as a single rigid block sliding on a well-defined slip surface. In this study, a multi-block approach to calculate the sliding displacement of slopes is presented. The dynamic equation of a series of rigid blocks in different sliding conditions is established and the complex interactions within the slip episodes of rigid block assemblies are explicitly resolved. The results show that the original Newmark single block method may produce unconservative estimates of permanent displacement of the shallow sliding mass when the deep-seated sliding subsequently occurs during the earthquake. The predicted displacement of the upper sliding mass, which is simplified as a summation of the Newmark displacement of each single sliding mass, may either overestimate or underestimate the computed displacement including the coupling of sliding of multiple soil masses. The developed approach extends the well-accepted Newmark sliding block method, and can serve as an alternative to predict the seismic slope displacement in which multiple failure surfaces are expected during earthquakes.
机译:纽马克滑块方法广泛用于通过计算简化滑动质量的永久位移来评估地球斜率的地震性能。传统的纽马克方法模拟潜在的滑坡质量作为在明确的滑动表面上滑动的单个刚性块。在该研究中,提出了一种计算斜面滑动位移的多块方法。建立了一系列刚性块的动态方程,并且明确地解析了刚性块组件的滑动剧集内的复杂相互作用。结果表明,当在地震期间发生后,原始纽马克单块方法可以产生浅滑动质量永久性位移的unsealvative估计。上滑动质量的预测位移,其被简化为每个单个滑动质量的新拍拍置换的求和,可以高估或低估包括多种土块滑动的耦合的计算位移。开发的方法延伸了良好的纽马克滑动块方法,并且可以作为预测地震期间预期多次故障表面的地震斜率位移的替代方案。

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