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arXiv · cond-mat/9606130

Temporal Scaling of Interfaces Propagating in Porous Media

Abstract

To better understand the temporal behavior of a roughening meniscus driven by capillary forces during the imbibition of a viscous fluid in porous media, we measure the height-height autocorrelation function $C(t)$ using a constant driving force. We find $C(t)\sim t^β$, with $β= 0.56\pm 0.03$, and provide the first experimental evidence for driving force independent temporal scaling behavior of a propagating wetting front in the presence of quenched noise. We interpret the value of $β$ in terms of the possibility that the dynamics may be governed by nonvanishing non-linearity due to anisotropic depinning.

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BibTeXRIS

Viktor K. Horváth, H. Eugene Stanley. 1996-06-18. Temporal Scaling of Interfaces Propagating in Porous Media. https://doi.org/10.1103/physreve.52.5166

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