D. Lydzba, J. F. Shao
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引用次数: 71
Abstract
Using an asymptotic homogenization method, the effect of the porous medium microstructure on the values of poroelastic coefficients is studied in this paper. First, the Biot’s poroelasticity theory and general relations linking the macroscopic poroelastic coefficients with the averaged micromechanical solutions are recalled. Considering a variational formulation of appropriate boundary values problems stated for the representative volume element, microstructural parameters affecting the values of poroelastic coefficients are identified. In order to clarify specific roles of some relevant microstructure parameters, numerical investigations for some simplified pores geometries are presented. The numerical results obtained clearly show a strong dependence of the poroelastic coefficients on the internal geometry of pores as well as on the global porosity of the medium. In the last part, based on the micromechanics analysis, the definition of initial plastic yield condition for saturated porous media is introduced and a new interpretation of the effective stress concept in inelastic domain is proposed. Copyright © 2000 John Wiley & Sons, Ltd.
孔隙弹性材料系数作为微观结构响应的研究
本文采用渐进均匀化方法,研究了多孔介质微观结构对孔隙弹性系数的影响。首先,回顾了Biot的孔弹性理论以及将宏观孔弹性系数与平均微观力学解联系起来的一般关系。考虑到代表性体积单元的适当边值问题的变分公式,确定了影响孔隙弹性系数值的微观结构参数。为了阐明一些相关微观结构参数的具体作用,对一些简化的孔隙几何形状进行了数值研究。所获得的数值结果清楚地表明,孔隙弹性系数强烈依赖于孔隙的内部几何形状以及介质的整体孔隙率。最后,在微观力学分析的基础上,给出了饱和多孔介质初始塑性屈服条件的定义,并对非弹性域中的有效应力概念提出了新的解释。版权所有©2000 John Wiley&;有限公司。
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