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首页> 外文期刊>Canadian Geotechnical Journal >A numerical solution of cavity expansion problem in sand based directly on experimental stress-strain curves
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A numerical solution of cavity expansion problem in sand based directly on experimental stress-strain curves

机译:直接基于实验应力-应变曲线的砂洞扩展问题数值解

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摘要

A numerical solution of a spherical and cylindrical cavity expansion problem in sand is presented herein. The underlying theory is unbiased in that it is based directly on experimentally determined stress-strain curves. The solution makes it possible to follow the continuous variation of strains, stresses, and volume changes produced by cavity expansion. It essentially uses the "strain path" approach to determine the state of stress around the cavity, taking into account large strains and the effect of spherical stress variation on the mobilized shear resistance and the associated volume strains. A limited comparison with experimental data shows a reasonable agreement between theory and measurements. [References: 36]
机译:本文提出了球形和圆柱形空腔在沙子中膨胀问题的数值解。基本理论是无偏见的,因为它直接基于实验确定的应力-应变曲线。该解决方案可以跟踪由腔膨胀产生的应变,应力和体积变化的连续变化。它主要使用“应变路径”方法来确定空腔周围的应力状态,同时考虑到较大的应变以及球形应力变化对动员抗剪强度和相关体积应变的影响。与实验数据的有限比较表明,理论与测量之间存在合理的一致性。 [参考:36]

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