Flow channelling in a single fracture induced by shear displacement
Abstract
The effect on the transport properties of fractures of a relative shear displacement of rough walls with complementary self-affine surfaces has been studied experimentally and numerically. The shear displacement induces an anisotropy of the aperture field with a correlation length scaling as and significantly larger in the direction perpendicular to . This reflects the appearance of long range channels perpendicular to resulting in a higher effective permeability for flow in the direction perpendicular to the shear. Miscible displacements fronts in such fractures are observed experimentally to display a self affine geometry of characteristic exponent directly related to that of the rough wall surfaces. A simple model based on the channelization of the aperture field allows to reproduces the front geometry when the mean flow is parallel to the channels created by the shear displacement.
Keywords
Cite
@article{arxiv.physics/0603058,
title = {Flow channelling in a single fracture induced by shear displacement},
author = {Harold Auradou and German Drazer and Alexandro Boschan and Jean-Pierre Hulin and Joel Koplik},
journal= {arXiv preprint arXiv:physics/0603058},
year = {2007}
}