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The AAPG/Datapages Combined Publications Database

Kansas Geological Society

Abstract


Transactions of the 1999 AAPG Midcontinent Section Meeting (Geoscience for the 21st Century), 1999
Pages 105-105

ABSTRACT: State-of-the-Art of 3-D Previous HitSeismicNext Hit Technology—Integrated Multicomponent Characterization of Carbonate and Clastic Reservoirs

J. Edward Blott1, John F. Arestad2, Thomas L. Davis3

Three-dimensional multicomponent (3-D, 3-C) reflection seismology is the technology of the future for Previous HitreservoirNext Hit characterization. Applications of this emerging technology provide quantitative solutions for porosity and permeability determinations within both clastic and carbonate reservoirs that are unattainable from compressional-wave Previous HitseismicNext Hit data alone. A 3-D, 3-C Previous HitseismicNext Hit survey over a clastic valley-fill Previous HitreservoirNext Hit in the Pennsylvanian Morrow Formation at Sorrento field, southeastern Colorado, U.S.A., demonstrates the application of this technology to identify and characterize a sandstone Previous HitreservoirNext Hit. At Joffre field, Alberta, Canada, multicomponent 3-D Previous HitseismicNext Hit data characterize carbonate intervals in the Devonian Nisku and Leduc Formations. Those two recent studies mark a major turning point in the use of Previous HitseismicNext Hit technology for Previous HitreservoirNext Hit characterization. Today, time-lapse Previous HitmonitoringNext Hit of petroleum reservoirs, using new 3-D multicomponent technology, emerges as the next Previous HitseismicTop frontier.

Acknowledgments and Associated Footnotes

1 ExplorTech Lic., Littleton, Colorado

2 ExplorTech Lic., Littleton, Colorado

3 Colorado School of Mines, Golden, Colorado

Copyright © 2006 by the Kansas Geological Society