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Nuclear magnetic resonance measurement of hydrodynamic dispersion in porous media: preasymptotic dynamics, structure and nonequilibrium statistical mechanics

Published online by Cambridge University Press:  23 October 2012

S.L. Codd
Affiliation:
Department of Mechanical and Industrial Engineering, Montana State University, MT 59717 Bozeman, USA Center for Biofilm Engineering, Montana State University, MT 59717 Bozeman, USA
J.D. Seymour*
Affiliation:
Center for Biofilm Engineering, Montana State University, MT 59717 Bozeman, USA Department of Chemical and Biological Engineering, Montana State University, MT 59717 Bozeman, USA
*
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Abstract

Measurement of displacement time and length scale dependent dynamics by pulsed gradient spin echo nuclear magnetic resonance in porous media directly provides the preasymptotic hydrodynamic dispersion coefficient. This allows for comparison with nonequilibrium statistical mechanics models of hydrodynamics dispersion in porous media. Preasymptotic dispersion data and models provide characterization of porous media structure length scales relevant to transport and are related to the permeability and sample heterogeneity.

Type
Research Article
Copyright
© EDP Sciences, 2012

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