Britannia Field, UK North Sea: petrographic constraints on Lower Cretaceous provenance, facies and the origin of slurry-flow deposits
- 1 December 2000
- journal article
- Published by Geological Society of London in Petroleum Geoscience
- Vol. 6 (4) , 329-343
- https://doi.org/10.1144/petgeo.6.4.329
Abstract
Deep-water sandstones of the Early Cretaceous Britannia reservoir are rich in ‘muddy’ material, with the development of unusual ‘slurry-flow’ deposits ( sensu Lowe & Guy 2000 ), including banded facies. The banding comprises couplets of pale sandstone containing microporous detrital chlorite and other clays, retaining substantial porosity, and dark sandstone in which biotite (now altered to chlorite) has promoted quartz pressure solution that has largely destroyed porosity. The main source of the abundant chlorite and biotite is the Jurassic Forties Igneous Province, underlying and surrounding the Britannia Field. Altered alkali basalts and other lithologies here are known to be rich in both minerals. Grain-size distributions have been examined using image analysis. The banded facies are generally finer grained than the high-density turbidite and unbanded slurry-flow sandstones, and may be a distal equivalent. Dark bands in some cases contain no more fine clays than associated light bands, indicating that Lowe & Guy’s model for dark-band formation, invoking a cohesive sublayer, is incomplete. Gelation of chlorite-rich clays within each banded couplet is proposed as an alternative mechanism. These microporous pore-filling chlorites have restricted the precipitation of quartz overgrowths and other non-porous cements, although their presence inhibits permeability.This publication has 7 references indexed in Scilit:
- An Early Cretaceous lithostratigraphic and biostratigraphic framework for the Britannia Field reservoir (Late Barremian–Late Aptian), UK North SeaPetroleum Geoscience, 2000
- Slurry‐flow deposits in the Britannia Formation (Lower Cretaceous), North Sea: a new perspective on the turbidity current and debris flow problemSedimentology, 2000
- CretaceousPublished by Wiley ,1998
- Jurassic ages from intrusives and extrusives within the Forties igneous provinceScottish Journal of Geology, 1988
- Jurassic volcanic rocks of the northern North SeaJournal of the Geological Society, 1982
- Sediment Gravity Flows: II Depositional Models with Special Reference to the Deposits of High-Density Turbidity CurrentsJournal of Sedimentary Research, 1982
- Submarine fan facies of the Upper Cretaceous Great Valley sequence, northern and central CaliforniaSedimentary Geology, 1978