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首页> 外文期刊>Journal of Applied Physics >Impact of microstructure on the effective diffusivity in random packings of hard spheres
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Impact of microstructure on the effective diffusivity in random packings of hard spheres

机译:微观结构对硬球无规则堆积中有效扩散率的影响

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摘要

We present results of computer simulations of the effective diffusion coefficient in bulk random packings of hard monosized spheres with solid volume fraction between 0.54 (random-loose packing) and 0.634 (maximally random jammed). Six types of sphere packings were generated with different protocols and parameters resulting in a systematically varied degree of microstructural heterogeneity. The packing morphology is qualitatively characterized by statistical analyses of Voronoi cells obtained from spatial tessellation of the packing space. Diffusive transport of point-like tracers in the pore space of the packings was simulated with a random-walking particle-tracking technique. Our results indicate that the effective transport characteristics of the random sphere packings are not fully defined from the solid volume fraction but also depend on the packing microstructure. For the first time, we compared (i) the values of the effective diffusion coefficient Deff simulated in packings with different morphologies, and (ii) the corresponding values of Deff obtained from an approximate analytical formula involving the three-point microstructural parameter ζ2. This analysis reveals that this approximation involving ζ2 clearly reflects key morphological specificity of individual sphere packings and provides a sufficiently accurate estimate of the effective diffusion coefficient.
机译:我们目前的计算机模拟结果是,硬质单尺寸球体的体积无规堆积中的有效扩散系数具有固体体积分数在0.54(无规松散堆积)和0.634(最大无规阻塞)之间。生成了六种类型的球状填料,它们具有不同的方案和参数,导致系统地改变了微观结构的异质性。通过从包装空间的空间细分获得的Voronoi细胞的统计分析定性地表征包装形态。点状示踪剂在填料的孔隙空间中的扩散传输是采用随机游动粒子跟踪技术进行模拟的。我们的结果表明,无规球填料的有效传输特性不能从固体体积分数中完全定义,还取决于填料的微观结构。首次,我们比较了(i)在不同形态的填料中模拟的有效扩散系数D eff 的值,以及(ii)D eff 的相应值从包含三点微结构参数ζ 2 的近似解析公式获得。该分析表明,涉及ζ 2 的近似值清楚地反映了单个球状填充物的关键形态学特异性,并提供了有效扩散系数的足够准确的估计。

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