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Drained instability of sand in plane strain

机译:砂土在平面应变中的排水失稳

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Flowslide or failure of loose granular soil slopes is often explained using liquefaction or instability data obtained from undrained triaxial tests. However, under static loading conditions, the assumption of an undrained condition is not realistic for sand, particularly clean sand. Case studies have indicated that instability of granular soil can occur under essentially drained conditions (e.g., the Wachusett Dam failure in 1907). Laboratory studies on Changi sand by Chu et al. in 2003 have shown that sand can become unstable under completely drained conditions. However, these studies were carried out under axisymmetric conditions and thus, cannot be applied directly to the analysis of slope failures. In this paper, experimental data obtained from plane-strain tests are presented to study the instability behaviour of loose and dense sand under plane-strain conditions. Based on these test data, the conditions for the occurrence of drained instability in plane strain are established. Using the modified state parameter, the conditions for instability under both axisymmetric and plane-strain conditions can be unified. A framework for interpreting the instability conditions of sandy slopes developed under axisymmetric conditions also extends into plane-strain conditions.
机译:通常使用不排水的三轴试验获得的液化或不稳定性数据来解释松散的颗粒状土壤边坡的滑坡或破坏。但是,在静态载荷条件下,对于沙子,特别是干净的沙子,不排水条件的假设是不现实的。案例研究表明,在基本上排水的条件下(例如1907年的瓦丘塞特大坝倒塌),可能会发生粒状土壤的不稳定性。 Chu等人在樟宜沙的实验室研究。 2003年的研究表明,在完全排水的情况下,沙子会变得不稳定。但是,这些研究是在轴对称条件下进行的,因此不能直接用于边坡破坏的分析。本文提出了从平面应变试验获得的实验数据,以研究在平面应变条件下松散致密的砂土的不稳定性行为。根据这些测试数据,确定了平面应变中排水失稳的发生条件。使用修改后的状态参数,可以统一轴对称和平面应变条件下的不稳定性条件。解释在轴对称条件下发展的砂质边坡失稳条件的框架也延伸到平面应变条件下。

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