We demonstrate that accurate predictions of petrophysical properties can be made directly from digitized tomographic images. Computations of both transport (formation factor and permeability) and elastic properties from micro-tomographic images of a suite of Fontainebleau sandstone are shown to be in excellent agreement with experimental measurements over a wide range of porosities (5%_<25%). Four small (5 mm i.d.) plugs from a producing gas field have also been analysed. Unlike Fontainebleau, these four cores exhibit a broad range of pore and grain sizes, porosity and mineralogy. Computations of permeability and capillary pressure are made directly on the digitized tomographic images and compared to laboratory core measurements. The results are in excellent agreement. The very small sample size required for imaging may allow representative petrophysical data to be obtained from sidewall cores and drill cuttings.
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Virtual Core Laboratory: Properties of Reservoir Rock Derived From X-ray CT Images.
Christoph H. Arns;
Christoph H. Arns
Australian National University
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Arthur Sakellariou;
Arthur Sakellariou
Australian National University
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Tim J. Senden;
Tim J. Senden
Australian National University
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Adrian P. Sheppard;
Adrian P. Sheppard
Australian National University
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Robert M. Sok;
Robert M. Sok
Australian National University
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Mark A. Knackstedt;
Mark A. Knackstedt
Australian National University
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W. Val Pinczewski;
W. Val Pinczewski
University of New South Wales
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Graham F. Bunn
Graham F. Bunn
BHP Billiton Petroleum
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Paper presented at the 2003 SEG Annual Meeting, Dallas, Texas, October 2003.
Paper Number:
SEG-2003-1477
Published:
October 26 2003
Citation
Arns, Christoph H., Sakellariou, Arthur, Senden, Tim J., Sheppard, Adrian P., Sok, Robert M., Knackstedt, Mark A., Pinczewski, W. Val, and Graham F. Bunn. "Virtual Core Laboratory: Properties of Reservoir Rock Derived From X-ray CT Images.." Paper presented at the 2003 SEG Annual Meeting, Dallas, Texas, October 2003.
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