首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >The Influence of Convex Particles' Irregular Shape and Varying Size on Porosity, Permeability, and Elastic Bulk Modulus of Granular Porous Media: Insights From Numerical Simulations
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The Influence of Convex Particles' Irregular Shape and Varying Size on Porosity, Permeability, and Elastic Bulk Modulus of Granular Porous Media: Insights From Numerical Simulations

机译:凸粒子不规则形状和不同尺寸对粒状多孔介质孔隙,渗透性和弹性体积模量的影响:数值模拟的见解

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The shapes of particles play a crucial role in the transport and mechanical behavior of granular media. How densely particles of a specific shape can be arranged in a given volume has an enormous practical significance for many scientific and industrial fields. We developed a numerical workflow to investigate the effects of irregularly shaped frictionless, convex particles combined with the polydispersity of particle sizes on the porosity, permeability, and elastic bulk modulus of granular porous media. The workflow is based on the computationally generated three-dimensional granular assemblies of both regular and irregularly shaped particles and pore-scale simulation of physics to estimate the absolute permeability and elastic bulk modulus of the generated digital granular porous media. Our numerical results show that the porosity decreases by 14-25%, absolute permeability decreases by 45-76%, and elastic bulk modulus increases by 20-66% as we deviate from the regular-shaped particle with the specified particle size distribution. How rapidly and to what degree these properties of granular assemblies of irregularly shaped particles change depends on particle size distribution. However, once the maximal densest packings of irregularly shaped particles with the prescribed aspect ratio are generated, any further change in the shape of particles has either a minimal impact or an opposite effects are observed. Overall, our numerical observations suggest that the irregular shape of particles has the greatest effect on permeability and the least effect on porosity in both monodisperse and polydisperse granular media.
机译:颗粒的形状在粒状介质的运输和力学行为中起着至关重要的作用。特定形状的颗粒是如何布置在给定的体积中的颗粒对许多科学和工业领域具有巨大的实际意义。我们开发了一种数值工作流程,以研究不规则形状的无摩擦,凸颗粒与颗粒状多孔介质的孔隙率,渗透率和弹性体积模量结合的多分散性的影响。工作流程基于经常和不规则形状的颗粒和物理孔径模拟的计算产生的三维颗粒组件,以估计产生的数字粒状多孔介质的绝对渗透性和弹性体积模量。我们的数值结果表明,孔隙率降低14-25%,绝对渗透率降低45-76%,弹性体积模量增加20-66%,因为我们偏离具有规定的粒度分布的常规颗粒。这些不规则形状颗粒的颗粒组件的颗粒组件变化的程度如何迅速和到多大程度上取决于粒度分布。然而,一旦产生具有规定纵横比的不规则形状颗粒的最大密度填充,就颗粒形状的任何进一步变化都具有最小的影响或观察到相反的效果。总体而言,我们的数值观察表明,不规则的颗粒形状对渗透性和对单分散性和多分体粒子培养基中的孔隙率的影响最大。

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