DEEP-WATER CHANNEL RUN-OUT LENGTH: INSIGHTS FROM SEAFLOOR GEOMORPHOLOGY

被引:34
作者
Covault, Jacob A. [1 ]
Shelef, Eitan [2 ]
Traer, Miles [2 ]
Hubbard, Stephen M. [3 ]
Romans, Brian W. [4 ]
Fildani, Andrea [5 ]
机构
[1] Chevron Energy Technol Co, Clast Stratig R&D, Houston, TX 77002 USA
[2] Stanford Univ, Dept Geol & Environm Sci, Stanford, CA 94305 USA
[3] Univ Calgary, Dept Geosci, Calgary, AB T2N 1N4, Canada
[4] Virginia Tech Geosci, Blacksburg, VA 24061 USA
[5] Chevron Energy Technol Co, Clast Stratig R&D, San Ramon, CA 94583 USA
关键词
LATE QUATERNARY EVOLUTION; ANCIENT SUBMARINE FANS; SANTA-MONICA BASIN; TURBIDITY CURRENTS; MAGALLANES BASIN; FORE-ARC; DISTRIBUTARY CHANNELS; CALIFORNIA BORDERLAND; SEISMIC STRATIGRAPHY; INTRASLOPE BASINS;
D O I
10.2110/jsr.2012.2
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The seafloor provides high-resolution, but relatively static, perspectives of submarine sediment-routing systems, which can be employed in the development of predictive models of deep-water stratigraphic sequences. We compare 31 seafloor canyon-and-channel systems from predominantly siliciclastic continental margins and discuss their morphologic variability. The longest canyon-and-channel systems of this study generally correspond with relatively mature, passive continental margins associated with some of the largest deep-sea fans in the world with long-term, voluminous, mud-rich sediment supply. Shorter, lower-relief canyon-and-channel systems generally correspond with immature margins associated with relatively meager, sand-rich or mixed-caliber sediment supply. Seafloor continental-margin relief nonlinearly corresponds with canyon-and-channel-system length, with very high-relief margins exhibiting longer canyon-and-channel systems than predicted by a linear relationship. Nonlinearity in our observations can be accounted for by the increased occurrence and magnitude of submarine mass wasting in higher-relief and correspondingly longer canyon-and-channel systems, limitations of relief imposed by the maximum depths of ocean basins, and sediment-gravity-flow dynamics. These interpretations of controls on canyon-and-channel geomorphology represent extrinsic characteristics of land-to-deep-sea sediment supply and basin or continental-margin framework and intrinsic sediment-gravity-flow dynamics. We demonstrate that insights into seafloor channel processes, morphologic products, and scaling relationships can be broadly applied to predicting ancient subsurface and outcropping deep-water stratigraphic sequences. Our comparative analysis suggests that knowledge of the thickness of an ancient basin-margin stratigraphic sequence can be employed in order to generally predict the basinward extent of a paleo-canyon-and-channel system and underlying depositional fan. The application also potentially works in reverse: intimate knowledge of the deep-water component of a continental margin or basin margin can facilitate understanding of up-depositional-dip stratigraphic architectures where data might be lacking.
引用
收藏
页码:21 / 36
页数:16
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