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Permeability mapping in porous media by magnetization prepared centric-scan SPRITE

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journal contribution
posted on 2011-02-01, 00:00 authored by Konstantin Romanenko, B Balcom
The ability of porous media to transmit fluids is commonly referred to as permeability. The concept of permeability is central for hydrocarbon recovery from petroleum reservoirs and for studies of groundwater flow in aquifers. Spatially resolved measurements of permeability are of great significance for fluid dynamics studies. A convenient concept of local Darcy’s law is suggested for parallel flow systems. The product of porosity and mean velocity images in the plane across the average flow direction is directly proportional to permeability. Single Point Ramped Imaging with T 1 Enhancement (SPRITE) permits reliable quantification of local fluid content and flow in porous media. It is particularly advantageous for reservoir rocks characterized by fast magnetic relaxation of a saturating fluid. Velocity encoding using the Cotts pulsed field gradient scheme improves the accuracy of measured flow parameters. The method is illustrated through measurements of 2D permeability maps in a capillary bundle, glass bead packs and composite sandstone samples.

History

Journal

Experiments in fluids

Volume

50

Pagination

301 - 312

Location

Berlin, Germany

Open access

  • Yes

ISSN

1432-1114

Language

eng

Publication classification

C1.1 Refereed article in a scholarly journal

Copyright notice

2011, Wiley