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Dispersion measurements using time-of-flight remote detection MRI
Authors:Granwehr Josef  Harel Elad  Hilty Christian  Garcia Sandra  Chavez Lana  Pines Alex  Sen Pabitra N  Song Yi-Qiao
Institution:Materials Sciences Division, Lawrence Berkeley National Laboratory and University of California at Berkeley, Berkeley, CA 94720, USA. josef.granwehr@nottingham.ac.uk
Abstract:Remote detection nuclear magnetic resonance and magnetic resonance imaging can be used to study fluid flow and dispersion in a porous medium from a purely Eulerian point of view (i.e., in a laboratory frame of reference). Information about fluid displacement is obtained on a macroscopic scale in a long-time regime, while local velocity distributions are averaged out. It is shown how these experiments can be described using the common flow propagator formalism and how experimental data can be analyzed to obtain effective porosity, flow velocity inside the porous medium, fluid dispersion and flow tracing of fluid.
Keywords:Magnetic resonance  Imaging  Remote detection  Dispersion  Flow  Time of flight
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