预测温度对非饱和多孔介质行为影响的微观力学模型

Bao Viet Tran, Xavier Chateau
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引用次数: 0

摘要

采用均质化方法研究了温度对非饱和多孔介质含水量-毛管压力关系和孔隙力学行为的影响。在微观力学模型的框架内考虑了两种不同的现象:表面张力的温度变化和固相的热膨胀,这些模型是为了突出固相的变形能力对宏观行为的影响而提出的。结果表明,考虑孔隙空间变形与毛细效应之间的耦合,可以从根本上修正温度对毛细曲线影响的预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micromechanical model to predict the effect of temperature on the behavior of unsaturated porous media
The homogenization method is used to investigate temperature effects on the water content-capillary pressure relationship and on the poro-mechanical behavior of unsaturated porous media. Two different phenomena have been considered: the temperature variations of surface tensions and the thermal dilatation of the solid phase in the framework of micromechanical models that are proposed in order to highlight the influence of the deformability of the solid phase on the macroscopic behavior. The result show that taking into account the coupling between the deformation of the porous space and the capillary effects can radically modify the prediction of the temperature influence on the capillary curve.
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