Download Characterization of an Upper Permian Tight Gas Reservoir: A by Philipp Antrett PDF

By Philipp Antrett

"The thesis of Philipp Antrett is concentrated on reservoir homes, petrography, lithofacies and sedimentology, center research and nanoporosity reviews. it will likely be of significant curiosity for colleagues interested in the exploration and creation of tight fuel reservoirs in Northern Europe and elsewhere."
- François Roure, August 2012

This thesis describes a multidisciplinary, multiscale method of the research of tight fuel reservoirs. It concentrated before everything at the facies structure of a Permian tight gasoline box within the Southern Permian Basin (SPB), East Frisia, northern Germany. to enhance box improvement, 3D seismic information, wireline and middle facts have been in comparison to a reservoir analogue within the Panamint Valley, California, usa. as well as the big scale procedure, a piece move that investigates microporosity via combining Scanning Electron Microscopy-Broad Ion Beam (SEM-BIB) and optical microscopy was once built. For a greater realizing of the depositional atmosphere and reservoir rock distribution within the SPB, a sedimentary facies research of 4 cores from the tight fuel box in East Frisia used to be in comparison to a moment research quarter in northern crucial Germany. This learn demonstrates that tight fuel exploration and construction calls for multidisciplinary, multiscale methods past ordinary seismic interpretation paintings flows to raised comprehend the temporal and spatial evolution of those advanced reservoirs.

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Extra info for Characterization of an Upper Permian Tight Gas Reservoir: A Multidisciplinary, Multiscale Analysis from the Rotliegend, Northern Germany

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Brown AR (2001) Data polarity for the interpreter. Lead Edge 20:549 4. Buxton Latimer R, Davison R, Van Riel P (2000) An interpreter’s guide to understanding and working with seismic-derived acoustic impedance data. Lead Edge 19(3):242–256 5. Cartwright J, James D, Bolton A (2003) The genesis of polygonal fault systems: a review. In: Van Rensbergen P, Hillis RR, Maltman AJ, Morley CK (eds) Subsurface sediment mobilization. Geological Society, vol 216. Special Publications, London, pp 223–243 6.

In: Dynamics of complex intracontinental basins; the central European basin system. Springer, Berlin, Federal Republic of Germany, pp 249–276 50. Ziegler PA (1982) Geological atlas of Western and central Europe. Shell Internat. 1 Introduction The identification of compartmentalised reservoirs and the understanding of potential controls on their formation plays an important role in developing hydrocarbon fields. However, it is not always possible to predict reservoir compartmentalisation based solely on seismic data.

Furthermore, the largescale polygons, which show angles of 80–120°, comprise a pattern of subordinate smaller ones. The minimum and maximum curvature attribute enables an even more detailed distinction of the polygonal network into these smaller units. The polygons of smallest diameter are located just south of the salt dome, increasing in size towards the south (Fig. 6). On time slices, the features show a huge contrast in amplitudes compared to the surrounding strata. In the majority of cases, the superordinate polygons are linked to faults with offsets between 35 and 900 m in inlines and crosslines.

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