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Modifying continuous-time random walks to model finite-size particle diffusion in granular porous media

机译:修改连续时间随机游动以模拟颗粒状多孔介质中有限尺寸的颗粒扩散

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The continuous-time random walk (CTRW) model is useful for alleviating the computational burden of simulating diffusion in actual media. In principle, isotropic CTRW only requires knowledge of the step-size, Pl, and waiting-time, Pt, distributions of the random walk in the medium and it then generates presumably equivalent walks in free space, which are much faster. Here we test the usefulness of CTRW to modelling diffusion of finite-size particles in porous medium generated by loose granular packs. This is done by first simulating the diffusion process in a model porous medium of mean coordination number, which corresponds to marginal rigidity (the loosest possible structure), computing the resulting distributions Pl and Pt as functions of the particle size, and then using these as input for a free space CTRW. The CTRW walks are then compared to the ones simulated in the actual media. In particular, we study the normal-to-anomalous transition of the diffusion as a function of increasing particle size. We find that, given the same Pl and Pt for the simulation and the CTRW, the latter predicts incorrectly the size at which the transition occurs. We show that the discrepancy is related to the dependence of the effective connectivity of the porous media on the diffusing particle size, which is not captured simply by these distributions. We propose a correcting modification to the CTRW model-adding anisotropy-and show that it yields good agreement with the simulated diffusion process. We also present a method to obtain Pl and Pt directly from the porous sample, without having to simulate an actual diffusion process. This extends the use of CTRW, with all its advantages, to modelling diffusion processes of finite-size particles in such confined geometries.
机译:连续时间随机游走(CTRW)模型对于减轻模拟实际介质中扩散的计算负担非常有用。原则上,各向同性CTRW只需要知道介质中随机游动的步长大小Pl和等待时间Pt,然后在自由空间中生成大概等效的游动,这要快得多。在这里,我们测试了CTRW对模拟由松散的颗粒状填充物产生的多孔介质中有限尺寸颗粒扩散的有效性。首先,通过模拟在平均配位数的模型多孔介质中的扩散过程,该介质对应于边际刚度(可能的最松散的结构),计算所得分布Pl和Pt作为粒径的函数,然后将其用作自由空间CTRW的输入。然后将CTRW行走与实际媒体中模拟的行走进行比较。特别是,我们研究了扩散从正常到异常转变与粒径增加的关系。我们发现,给定仿真和CTRW相同的Pl和Pt,后者会错误地预测发生过渡的大小。我们表明差异与多孔介质的有效连通性对扩散粒径的依赖性有关,而扩散粒径并不能简单地被捕获。我们提出了对CTRW模型的修正修正,即添加了各向异性,并表明它与模拟扩散过程具有很好的一致性。我们还提出了一种直接从多孔样品中获得Pl和Pt的方法,而无需模拟实际的扩散过程。这将CTRW的全部优点扩展到了在这种受限几何形状中对有限尺寸颗粒的扩散过程进行建模的过程。

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