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Centrifuge Tests for Artificially Cemented Clay Slopes

机译:用于人工粘土斜坡的离心机测试

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Static and/or cyclic softening and strain localization of sensitive clay are of great importance in the stability of coastal and submarine slopes or levee embankments. It is important to know the difference between static and dynamic failure mechanisms because the thickness of shear band affects how fast strain is localized. Total of 7 centrifuge tests were performed for the artificially cemented sensitive clay slopes. Four tests were high plastic San Francisco Bay Mud (SFBM) models with cement mix ratio of 3 to 5%. The others were low plastic Yolo Loam (YL) models with cement ratio of 0 to 2%. As a result, static failure tends to be distinct (thin localized shear band). From the observation of centrifuge tests, multiple slip surfaces may yield simultaneously during dynamic loading (hence more diffused shear band) whereas distinct slip surface may develop without limitation of time for static failure. Also, dynamic slip surface tends to reach deeper and less displacement than static slip surface. Kutter(1982)'s finding regarding static and dynamic deformation is also confirmed for weakly cemented sensitive clay (St up to 20). A brief description is provided regarding the degree of cementation, peak ground acceleration, and pore pressure ratio. Physical modeling using weakly cement treated clay slope is proved to be an effective tool to study sensitive slope stability.
机译:敏感粘土的静态和/或循环软化和应变局部化是在沿海和海底斜坡或大堤路堤的稳定具有重要意义。据了解静态和动态的失效机理之间的差别,因为剪切带的厚度影响应变速度有多快本地化是非常重要的。 7个离心试验全为人工胶结敏感粘土斜坡进行。四个测试是用3〜5%的水泥配比高的塑料旧金山湾泥(SFBM)模型。其他都是用0至2%的水泥比低的塑料YOLO壤土(YL)的模型。其结果是,静态失效倾向于是不同的(薄的局部剪切带)。从离心机测试观察,多个滑动表面可以动态加载(因此更扩散的剪切带),而不同的滑动面的过程中同时产生不为静态失效的时间限制可能发展。此外,动态滑动面往往不是静态的滑动面达到更深和更少的位移。 Kutter(1982年)的有关静态和动态变形的发现也证实了弱胶结敏感粘土(圣最多20个)。是关于胶结,峰值地面加速度,和孔隙压力比的程度设置的简要说明。使用弱水泥处理过的粘土坡物理建模证明是研究敏感边坡稳定性的有效工具。

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