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Solvable continuous-time random walk model of the motion of tracer particles through porous media

机译:通过多孔介质可解决示踪粒子运动的连续时间随机步道模型

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摘要

We consider the continuous-time random walk (CTRW) model of tracer motion in porous medium flows based on the experimentally determined distributions of pore velocity and pore size reported by Holzner et al. [M. Holzner et al., Phys. Rev. E 92, 013015 (2015)]. The particle's passing through one channel is modeled as one step of the walk. The step (channel) length is random and the walker's velocity at consecutive steps of the walk is conserved with finite probability, mimicking that at the turning point there could be no abrupt change of velocity. We provide the Laplace transform of the characteristic function of the walker's position and reductions for different cases of independence of the CTRW's step duration τ , length l, and velocity v. We solve our model with independent l and v. The model incorporates different forms of the tail of the probability density of small velocities that vary with the model parameter α. Depending on that parameter, all types of anomalous diffusion can hold, from super- to subdiffusion. In a finite interval of α, ballistic behavior with logarithmic corrections holds, which was observed in a previously introduced CTRW model with independent l and τ . Universality of tracer diffusion in the porous medium is considered.
机译:我们考虑基于Holzner等人报道的实验确定的孔径和孔径分布的多孔介质流动中示踪运动中的连续时间随机步行(CTRW)模型。 [M. Holzner等人。,phy。 Rev. E 92,013015(2015)]。通过一个通道的粒子被建模为步行的一步。步骤(通道)长度是随机的,并且步行连续步骤的速度是有限的概率,模仿在转折点上可能没有速度的速度变化。我们提供了LAWPAlt变换了步行者的位置和减少了CtrW的步进持续时间τ,长度L和速度v的不同情况下的不同情况。我们用独立的L和v解决我们的模型。该模型包含不同的形式用模型参数α变化的小型速度概率密度的尾部。根据该参数,所有类型的异常扩散都可以从超级到低端阻挡。以具有对数校正的α的有限间隔,在先前引入的CTRW模型中观察到具有独立L和τ的基础校正的弹道行为。考虑了多孔介质中示踪剂扩散的普遍性。

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