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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Seismic Deformation Analysis of Embankment Dams Using Simplified Total-Stress Approach
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Seismic Deformation Analysis of Embankment Dams Using Simplified Total-Stress Approach

机译:简化的全应力法分析堤坝的地震变形

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摘要

In earthquake-prone areas, risk analyses of seismic potential failure modes for embankment dams are often required. In order to evaluate these potential failure modes, seismically induced deformations are needed. The use of numerical modeling to determine embankment dam deformations has gained wide attention in practice, especially when involving liquefiable soils. This study presents a validation assessment of a finite-difference computer program using embankment dam prototypes tested in dynamic centrifuges. Similar to the total-stress analysis methodology, undrained shear strengths were used to characterize seismic behaviors of the embankment soils. As a simplified approach, uncoupled modeling with a primitive constitutive model was adopted. Quasi-steady-state strengths were determined from the laboratory stress-strain curves for the dilative soils tested in the centrifuges. Calculated results were found to be comparable with the measured data from the centrifuge experiments, which provides some level of confidence in the predictive capability of the finite-difference computer program. In particular, a good correlation was observed between the vmax/amax ratio of the seismic input motions and the calculated settlements.
机译:在地震多发地区,经常需要对堤坝的地震潜在破坏模式进行风险分析。为了评估这些潜在的破坏模式,需要地震诱发的变形。在实践中,尤其是涉及可液化土壤时,使用数值模型确定路堤坝变形已引起广泛关注。这项研究提出了使用动态离心机中测试的堤坝原型对有限差分计算机程序进行的有效性评估。类似于总应力分析方法,不排水的抗剪强度用于表征路堤土壤的地震行为。作为一种简化的方法,采用了具有原始本构模型的非耦合建模。从离心机中测试的膨胀土壤的实验室应力-应变曲线确定了准稳态强度。发现计算结果与离心机实验测得的数据相当,这为有限差分计算机程序的预测能力提供了一定程度的可信度。特别是,在地震输入运动的vmax / amax比值与计算出的沉降之间观察到良好的相关性。

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