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Undrained basal stability of braced circular excavations in non-homogeneous clays with linear increase of strength with depth

机译:强度随深度线性增加的非均质黏土中圆形支撑基坑的不排水基础稳定性

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摘要

Braced circular excavations are commonly used as one of effective retaining structures in practice. Despite a number of studies in the past on the stability of this problem, its stability solution under the framework of lower bound limit analysis is very rare in the literature. The present study focuses on the stability analysis of braced circular excavations in non-homogeneous clays using the lower bound finite element limit analysis under ax-isymmetric conditions. The stability number of the problem is comprehensively investigated, and is affected by depth-radius aspect ratios of excavation, depth ratios of rigid base, and strength gradient factors. The influence of these dimensionless parameters on the predicted failure mechanisms are discussed and compared. The presented new lower bound solutions of braced circular excavations in non-homogeneous clays are useful for an accurate, convenient and reliable stability assessment of the problem in practice.
机译:在实践中,支撑圆形开挖通常用作有效的挡土结构之一。尽管过去对这个问题的稳定性进行了大量研究,但在下限分析框架下的稳定性解决方案在文献中却很少。本研究的重点是在轴不对称条件下使用下限有限元极限分析对非均质黏土中的圆形支撑开挖进行稳定性分析。对该问题的稳定性数进行了综合研究,并受开挖深度半径纵横比,刚性基础的深度比以及强度梯度因子的影响。讨论并比较了这些无量纲参数对预测故障机理的影响。提出的非均质黏土中圆形支撑开挖的下界解对于实际中问题的精确,方便和可靠的评估是有用的。

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