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A strain-based procedure to estimate strength softening in saturated clays during earthquakes

机译:基于应变的过程来估计地震过程中饱和粘土的强度软化

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Cyclic softening and strength loss of saturated clays during earthquakes is often an important consideration in engineering problems such as slope stability, dam/levee safety, and foundation bearing capacity. This study proposes a simplified procedure for evaluating cyclic softening (amount of strength loss) that may be expected in saturated clays during earthquakes and illustrates how to implement it in engineering analysis. The procedure has two main steps: (1) estimation of an equivalent cyclic shear strain amplitude and associated number of cycles induced in the soil mass by an earthquake; and (2) estimation of softening and strength loss in the soil mass. A key aspect of the proposed procedure is adoption of a strain-based approach to estimate cyclic softening as opposed to the widely used stress-based approach of liquefaction assessments. A threshold strain concept originating from the strain-based approach is first discussed and the development of a procedure is presented subsequently. The proposed procedure provides reasonable, first-order estimates of cyclic softening consistent with the other developed procedures. In addition, the capability of the procedure is demonstrated with two case histories identified as involving cyclic softening of clays. (C) 2014 Elsevier Ltd. All rights reserved.
机译:地震期间饱和粘土的循环软化和强度损失通常是工程问题中的重要考虑因素,例如边坡稳定性,大坝/堤坝安全性和地基承载力。这项研究提出了一种简化的程序,用于评估地震期间饱和黏土中可能发生的循环软化(强度损失量),并说明了如何在工程分析中实施该程序。该程序有两个主要步骤:(1)估算等效的循环剪切应变振幅和地震在土壤中引起的相关循环数; (2)估算土壤质量的软化和强度损失。与广泛使用的基于应力的液化评估方法相反,拟议程序的一个关键方面是采用基于应变的方法来评估循环软化。首先讨论了基于应变的方法的阈值应变概念,随后介绍了过程的发展。所提出的程序提供了与其他已开发程序一致的,合理的,一阶的循环软化估计。此外,该过程的能力还通过两个案例历史证明,这些案例涉及粘土的循环软化。 (C)2014 Elsevier Ltd.保留所有权利。

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