'Bulls-eye' pockmarks and polygonal faulting in the Lower Congo Basin: Relative timing and implications for fluid expulsion during shallow burial

被引:105
作者
Andresen, Katrine Juul [1 ]
Huuse, Mads [2 ]
机构
[1] Aarhus Univ, Dept Earth Sci, DK-8000 Aarhus C, Denmark
[2] Univ Manchester, Sch Earth Atmospher & Environm Sci, Manchester M13 9PL, Lancs, England
关键词
stacked paleopockmarks; biogenic methane; sediment dewatering; polygonal faulting; WEST-AFRICAN MARGIN; SEA-FLOOR POCKMARKS; NORTH-SEA; CONTINENTAL-MARGIN; SOUTHERN GABON; PASSIVE MARGIN; TURBIDITE SYSTEM; UPPER MIOCENE; KWANZA BASIN; SEISMIC DATA;
D O I
10.1016/j.margeo.2010.10.016
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
This study describes a new type of pockmark association from the Lower Congo Basin offshore West Africa, consisting of up to 8 stacked paleopockmarks separated by intervals of drape and onlap fill. The stacked paleopockmarks occur within the depocentres of polygonally-faulted Plio-Pleistocene sediments and are distributed evenly in the downslope parts of two salt mini-basins. The majority of the stacked pockmarks initiated synchronously in the late Pliocene (similar to 3 Ma) with a subordinate initiation phase in the mid Pliocene (similar to 4 Ma). The primary agents in pockmark formation are interpreted to be pore water expelled during early-stage compaction together with biogenic methane. Bottom simulating reflections (BSRs) associated with free gas overlain by gas hydrates are currently found in the area. It is speculated that biogenic methane accumulated within and below a clathrate cap, which was repeatedly breached, forming pockmarks at discrete horizons separated by intervals of draping sedimentation. The mid and late Pliocene pockmark initiations appear to coincide with sea-level falls following periods of relatively stable highstand conditions. Several subsequent pockmark horizons may similarly correlate with subsequent sea-level falls during the late Pliocene and early Pleistocene. The stacked paleopockmarks are completely surrounded by polygonal faults and consistently occur within polygonal fault cells that crosscut the succession containing the stacked pockmarks. Early-stage compaction and dewatering of the Pliocene sediments thus preceded polygonal faulting, providing a constraint on the conditions leading to polygonal faulting of the fine-grained host sediments. The relationship documented here is interpreted as due to the presence of a hydrate cap in the Plio-Pleistocene mini-basins which may have retarded the normal compaction processes and facilitated pockmark formation by allowing the build up of gas hydrate and free gas in the basin centres. The relative timing and spatial relationships implies that fluids expelled due to polygonal faulting were not implicated in pockmark formation in this area. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:111 / 127
页数:17
相关论文
共 78 条
[1]   Controls on turbidite sand deposition during gravity-driven extension of a passive margin: examples from Miocene sediments in Block 4, Angola [J].
Anderson, JE ;
Cartwright, J ;
Drysdall, SJ ;
Vivian, N .
MARINE AND PETROLEUM GEOLOGY, 2000, 17 (10) :1165-1203
[2]   Morphology and distribution of Oligocene and Miocene pockmarks in the Danish North Sea - implications for bottom current activity and fluid migration [J].
Andresen, K. J. ;
Huuse, M. ;
Clausen, O. R. .
BASIN RESEARCH, 2008, 20 (03) :445-466
[3]  
ANDRESEN KJ, AM ASS PETR IN PRESS
[4]   EFFECT OF CENOZOIC ICE-SHEET FLUCTUATIONS IN ANTARCTICA ON THE STRATIGRAPHIC SIGNATURE OF THE NEOGENE [J].
BARTEK, LR ;
VAIL, PR ;
ANDERSON, JB ;
EMMET, PA ;
WU, S .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1991, 96 (B4) :6753-6778
[5]   Seismic fades and specific character of the bottom simulating reflector on the western margin of Paramushir Island, Sea of Okhotsk [J].
Basov, EI ;
vanWeering, TCE ;
Gaedike, C ;
Baranov, BV ;
Lelikov, EP ;
Obzhirov, AI ;
Belykh, IN .
GEO-MARINE LETTERS, 1996, 16 (04) :297-304
[6]  
Berger WH., 2002, P OCEAN DRILL PROGRA, V175, P1, DOI DOI 10.2973/0DP.PR0C.SR.175.235.2002
[7]   Focused fluid flow in passive continental margins [J].
Berndt, C .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2005, 363 (1837) :2855-2871
[8]   Subcircular features and autotracking artefacts in 3D seismic interpretation: a case study from the central North sea [J].
Bizarro, P .
PETROLEUM GEOSCIENCE, 1998, 4 (02) :173-179
[9]   Elongate depressions on the southern slope of the Norwegian Trench (Skagerrak): morphology and evolution [J].
Boe, R ;
Rise, L ;
Ottesen, D .
MARINE GEOLOGY, 1998, 146 (1-4) :191-203
[10]  
BOLLI HM, 1978, INITIAL REPORTS DEEP, V40, P1068