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A comparative micromechanical analysis of the effective properties of a geomaterial: Effect of mineralogical compositions

机译:土工材料有效特性的比较微力学分析:矿物成分的影响

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In order to provide a physical interpretation of the variation of the mechanical properties of Callovo-Oxfordian argillite with mineral composition, we implement three linear homogenization schemes. The argillite is modeled as a three phase material composed of a clay matrix and inclusions of quartz and calcite. It is shown that, unlike the dilute scheme and the self-consistent scheme, the Mori-Tanaka model describes the in situ experimental data well. The determined properties are finally used in a finite element computation. The aim is to evaluate the effect of mineral composition on the elastic response of the excavation of a vertical shaft in the context of the underground laboratory of Meuse/Haute Marne.
机译:为了从物理角度解释Callovo-Oxfordian硅藻土的力学性能随矿物成分的变化,我们实施了三种线性均化方案。将该软陶土建模为由粘土基质以及石英和方解石夹杂物组成的三相材料。结果表明,与稀疏方案和自洽方案不同,Mori-Tanaka模型很好地描述了原位实验数据。最终将确定的属性用于有限元计算。目的是在Meuse / Haute Marne地下实验室的背景下评估矿物成分对竖井开挖弹性响应的影响。

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