Testing the Markov hypothesis in fluid flows

Stochastic Markov processes are used very frequently to model, for example, processes in turbulence and subsurface flow and transport. Based on the weak Chapman-Kolmogorov equation and the strong Markov condition, we present methods to test the Markov hypothesis that is at the heart of these models....

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Veröffentlicht in:Physical review. E 2016-05, Vol.93 (5), p.053103-053103, Article 053103
Hauptverfasser: Meyer, Daniel W, Saggini, Frédéric
Format: Artikel
Sprache:eng
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Zusammenfassung:Stochastic Markov processes are used very frequently to model, for example, processes in turbulence and subsurface flow and transport. Based on the weak Chapman-Kolmogorov equation and the strong Markov condition, we present methods to test the Markov hypothesis that is at the heart of these models. We demonstrate the capabilities of our methodology by testing the Markov hypothesis for fluid and inertial particles in turbulence, and fluid particles in the heterogeneous subsurface. In the context of subsurface macrodispersion, we find that depending on the heterogeneity level, Markov models work well above a certain scale of interest for media with different log-conductivity correlation structures. Moreover, we find surprising similarities in the velocity dynamics of the different media considered.
ISSN:2470-0045
2470-0053
DOI:10.1103/PhysRevE.93.053103