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Effects of Grain Size on Deformation in Porous Media

机译:粒度对多孔介质变形变形的影响

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The solid system in deformable porous media undergoes deformation with the flow of fluid. In this paper, in order to study the micro-mechanism of the deformation, the solid system in the porous media is represented by a pack of spherical particles and simulated by discrete element method. The fluid system in the porous media is also simulated by computational fluid dynamics. To consider the fluid-particle interactions in the porous media, the above techniques are coupled and applied for simulating the solid deformation and fluid flow. Different models consisting of different particle sizes are studied in dry (without the presence of fluid) and wet states (with the flow of fluid). The results show that with the decrease in the particle size, the solid deformation declines, which imitates the actual deformation in the porous media. More importantly, the comparison between the dry and wet models indicates that the effect of the fluid on the particle system is diminishing with the smaller packed particles. The solid deformation tendency is quantified by the reduction in the values of some micro-mechanical properties, such as permeability (absolute and relative), porosity and pore-size distribution.
机译:可变形多孔介质中的固体系统经历了流体流动的变形。在本文中,为了研究变形的微机理,多孔介质中的固体系统由一包球形颗粒表示并通过离散元件法模拟。通过计算流体动力学也模拟多孔介质中的流体系统。为了考虑多孔介质中的流体颗粒相互作用,上述技术耦合并施加以模拟固体变形和流体流动。在干燥(不存在流体)和湿状态(流体流动)中研究了由不同粒径组成的不同模型。结果表明,随着粒径的降低,固体变形下降,其模仿多孔介质中的实际变形。更重要的是,干燥和湿模型之间的比较表明,流体对颗粒系统的效果在较小的填充颗粒上逐渐降低。通过减少一些微机械性能的值,例如渗透性(绝对和相对),孔隙率和孔径分布来量化固体变形趋势。

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