--> Abstract: The Role of Fault Linkage in Controlling the Architecture of Syn-rift Sequences, Late Jurassic, Northern North Sea, by N. H. Dawers, J. R. Underhill, A. M. Berge, and K-O. Heger; #90928 (1999).
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DAWERS, NANCYE H.1, JOHN R. UNDERHILL1, ANKER M. BERGE2, and KJELL-OVE HeGER2
1The University of Edinburgh, Edinburgh, Scotland, UK
2Norsk Hydro Research Centre, Bergen, Norway; Cai Puigdefabregas, Centre for Advanced Studies, Blanes, Girona, Spain. (nhdawers{@}glg.ed.ac.uk)

Abstract: The Role of Previous HitFaultNext Hit Linkage in Controlling the Architecture of Syn-rift Sequences, Late Jurassic, Northern North Sea

The structural evolution of segmented normal faults plays an important role in controlling the Previous HitstratigraphicNext Hit development of rift basins. This study investigates the role of Previous HitfaultNext Hit growth and linkage in controlling the nature of synrift sequences on the hangingwall of the Statfjord East Previous HitfaultNext Hit, which represents a typical Late Jurassic structure of the prolific Brent Province of the northern North Sea. Well data from Norwegian Blocks 34/7 and 33/9 and detailed 3-D seismic Previous HitinterpretationNext Hit art used to examine structural and Previous HitstratigraphicNext Hit patterns, both along and across Previous HitfaultNext Hit strike.

The Previous HitfaultNext Hit system consists of several en echelon segments, which define a series of sub-basins in the hangingwall. Distribution and facies architecture of syn-rift sequences, thickness variations, and the character of internal reflectors are spatially related to the sub-basin geometry. Variations in displacement along the Previous HitfaultNext Hit segments exhibit characteristics that are typical of mechanically interacting en echelon faults, including local displacement minima and anomalous displacement gradients in regions of segment overlap. Structural and Previous HitstratigraphicNext Hit evidence indicate that the Statfjord East Previous HitfaultNext Hit evolved by the formation and eventual linkage of segments, which are progressively younger towards the north.

Previous HitFaultNext Hit evolution is observed to control: 1) shifts in local depocentres that are attributed to the local enhancement of displacement rates resulting from segment interaction; 2) the shoreline migration following segment linkage; and 3) Previous HitfaultNext Hit scarp degradation, which was most extensive adjacent to the most active section of the Previous HitfaultNext Hit. Our results imply that knowledge of Previous HitfaultTop geometry and interaction may allow more accurate detection of subtle, syn-rift reservoirs.

AAPG Search and Discovery Article #90928©1999 AAPG Annual Convention, San Antonio, Texas