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The AAPG/Datapages Combined Publications Database

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Abstract


 
Chapter from: M 61: Basin Compartments and Seals 
Edited by 
Peter J. Ortoleva

Authors:
Jean K. Whelan, Lorraine Buxton, and Lawrence M. Cathles III

Methodology and Concepts




Published 1994 as part of Memoir 61
Copyright © 1994 The American Association of Petroleum Geologists.  All Rights Reserved.

Chapter 7

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Previous HitPressureNext Hit Seals--Interactions with Organic Matter, Experimental Observations, and Relation to a "Hydrocarbon Plugging" Hypothesis for Previous HitPressureNext Hit Previous HitSealNext Hit Formation

Jean K. Whelan
Lorraine Buxton Eglinton
Woods Hole Oceanographic Institution
Woods Hole, Massachusetts, U.S.A.
Lawrence M. Cathles III
Cornell University
Ithaca, New York, U.S.A.



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ABSTRACT


Organic geochemical characteristics diagnostic of Previous HitpressureNext Hit seals have been determined for two wells in the Moore-Sams field of the Tuscaloosa trend, Louisiana Gulf Coast (Mix and Bizette wells) and one well penetrating a much weaker Previous HitpressureNext Hit transition zone of the Anadarko basin, Oklahoma (Weaver well). Preliminary data suggest these characteristics of organic matter in zones of Previous HitpressureNext Hit seals: a rapid increase in vitrinite reflectance near the Previous HittopNext Hit of the Previous HitpressureNext Hit Previous HitsealNext Hit; fractionation of bitumens through the Previous HitpressureNext Hit Previous HitsealNext Hit with a gradual change from lighter to heavier n-alkanes with increasing depth in the Previous HitpressureNext Hit Previous HitsealNext Hit; a buildup of hydrocarbons just beneath the Previous HitpressureNext Hit Previous HitsealNext Hit; and an enhancement of asphalt (or asphaltene) throughout the general zone of the Previous HitpressureNext Hit Previous HitsealNext Hit. For all three wells, very tight associations of carbonate cements, fine pyrite, asphaltenes, and micrinite (generally considered to be a residual product of hydrocarbon generation) were observed in the general zone of Previous HitpressureNext Hit seals, suggesting that interactions of organic and inorganic materials may be required for Previous HitpressureNext Hit Previous HitsealNext Hit formation and maintenance, even in fairly organic lean wells such as Weaver. A sharp jump in thermal maturity, as measured by vitrinite reflectance, occurs at the Previous HittopNext Hit of the Mix Previous HitpressureNext Hit transition zone. Maturity levels below the Previous HitsealNext Hit reach gas thermal window levels, suggesting that gas formation within and below the (Previous HitsealNext Hit) zone is contributing both to overpressuring and sealing of Previous HitpressureNext Hit seals investigated here. It is proposed that all these observations can be accommodated if the Previous HitpressureNext Hit drop across the Previous HitsealNext Hit Previous HitpressureTop transition zone causes separation of oil and gas and deposition of asphalt from the upward-streaming 

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