Uplift-related hydrocarbon accumulations: the release of natural gas from groundwater

Author:

Cramer Bernhard1,Schlömer Stefan2,Poelchau Harald S.34

Affiliation:

1. Federal Institute for Geosciences and Natural Resources (BGR) Stilleweg 2, 30655 Hannover, Germany bernhard.cramer@bgr.de

2. EniTecnologie SpA Via F. Maritano 26, 20097 San Donato Milanese, Italy

3. Institute of Petroleum and Organic Geochemistry, Forschungszentrum Jülich GmbH D-52425 Jülich, Germany

4. Kansas Geological Survey, University of Kansas 1930 Constant Avenue, Lawrence, KS 66047, USA

Abstract

AbstractVertical tectonic movements often change the structural style and physicochemical habitat of sedimentary basins. Changes in pressure, temperature and salinity of the groundwater caused by tectonic uplift may result in the release of previously dissolved gas. This process of gas exsolution from groundwater is shown to be an important mechanism in the formation of gas accumulations in uplifted basins. Two principal types of gas release are discussed. A hydrodynamic type is active when groundwater flows into areas of lower pressure or mixes with water of different temperature or salinity. It is anticipated that this effect is more of local importance, but over long periods of groundwater flow large volumes of gas may be exsolved. The hydrostatic type of gas release can occur in any sequence of sedimentary rocks where uplift causes a drop in pressure and temperature. This phenomenon may act basin-wide. Mass balance calculations show that the largest gas accumulations on Earth, such as the Urengoy field in West Siberia, could have been formed by this process.

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

Reference35 articles.

1. Amirijafari B. Campbell J.M. (1972) Solubility of gaseous hydrocarbon mixtures in water. Society of Petroleum Engineers Journal, 21–27, (Feb.).

2. Perspective of the gas potential in great depth (in Russian);Barkan;Sovjetskaya Geologiya,1981

3. New data on the prospectivity of natural gas dissolved in brines at great depth (in Russian);Barkan;Sovetskaya Geologiya,1984

4. Extension of the specific interaction model to include gas solubilities in high temperature brines

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