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The AAPG/Datapages Combined Publications Database

West Texas Geological Society

Abstract


Re-Invigorating the Permian Basin, 2013
Page 43

Abstract: The Vertical Previous HitMigrationNext Hit Model and Its Significance in Geochemical Exploration

Gary K. Rice1

Abstract

Vertical Previous HitmigrationNext Hit is the foundation of petroleum geochemical exploration. Early vertical Previous HitmigrationNext Hit models included a molecular process called diffusion. Diffusion remained the accepted mechanism during the early years of geochemical exploration even though the diffusion model could not explain many observations, including vertical Previous HitmigrationNext Hit.

About 20 years ago Gerry Arp (formerly ARCO) quantified a buoyancy driven Previous HitmigrationNext Hit mechanism. Below the water table gases migrate vertically as a gas phase with buoyancy providing a mechanism for predominately vertical Previous HitmigrationNext Hit. The buoyancy model explained the gradients and data contrasts observed in many surface geochemical features. The model even predicted vertical Previous HitmigrationNext Hit Previous HitvelocitiesNext Hit that later were verified by field measurements. The buoyancy model explained most of what we observed from vertical Previous HitmigrationNext Hit measurements.

Petroleum liquids migrate similarly, but slower and through larger fractures and faults. Geo-chemical gas data map reservoirs and geo-chemical liquid data map the surface expression of faults and fractures. Different surface expressions of these two migrating phases form the basis of modern geochemical exploration.

The buoyancy model also made possible improvements in vertical Previous HitmigrationNext Hit detection and interpretation. Oil discoveries in the Midland and Maverick Basins illustrate the significance of this vertical Previous HitmigrationTop model in geochemical exploration.


 

Acknowledgments and Associated Footnotes

1 Gary K. Rice: GeoFrontiers Corporation

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