Origins of Anomalous Transport in Disordered Media: Structural and Dynamic Controls
Abstract
We quantitatively identify the origin of anomalous transport in a representative model of a heterogeneous system---tracer migration in the complex flow patterns of a lognormally distributed hydraulic conductivity () field. The transport, determined by a particle tracking technique, is characterized by breakthrough curves; the ensemble averaged curves document anomalous transport in this system, which is entirely accounted for by a truncated power-law distribution of local transition times within the framework of a continuous time random walk. Unique to this study is the linking of directly to the system heterogeneity. We assess the statistics of the dominant preferred pathways by forming a particle-visitation weighted histogram . Converting the ln() dependence of into time yields the equivalence of and , and shows the part of that forms the power-law of , which is the origin of anomalous transport. We also derive an expression defining the power law exponent in terms of the parameters. This equivalence is a remarkable result, particularly given the correlated -field, the complexity of the flow field and the statistics of the particle transitions.
Keywords
Cite
@article{arxiv.1305.2278,
title = {Origins of Anomalous Transport in Disordered Media: Structural and Dynamic Controls},
author = {Yaniv Edery and Harvey Scher and Alberto Guadagnini and Brian Berkowitz},
journal= {arXiv preprint arXiv:1305.2278},
year = {2013}
}