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Sand wave fields beneath the Loop Current, Gulf of Mexico: reworking of fan sands

Sand wave fields beneath the Loop Current, Gulf of Mexico: reworking of fan sands
Sand wave fields beneath the Loop Current, Gulf of Mexico: reworking of fan sands
Extensive fields of large barchan-like sand waves and longitudinal sand ribbons have been mapped by deep-towed SeaMARC IA sidescan sonar on part of the middle and lower Mississippi Fan that lies in about 3200 m of water. The area is beneath the strongly flowing Loop Current. The bedforms have not been adequately sampled but probably consist of winnowed siliciclastic-foraminiferal sands. The size (about 200 m from wingtip to wingtip) and shape of the large barchans is consistent with a previously observed peak current speed of 30 cm/s, measured 25 m above the seabed. The types of small-scale bedforms and the scoured surfaces of chemical crusts, seen on nearby bottom photographs, indicate that near-bed currents in excess of 30 cm/s may sometimes occur. At the time of the survey the sand transport direction was to the northwest, in the opposite direction to the Loop Current but consistent with there being a deep boundary current along the foot of the Florida Escarpment. Some reworking of the underlying sandy turbidites and debris flow deposits is apparent on the sidescan sonar records. Reworking by deep-sea currents, resulting in erosion and in deposits characterised by coarsening upwards structures and cross-bedding, is a process that has been proposed for sand found in cores in shallower parts of the Gulf of Mexico. This process is more widespread than hitherto supposed
Gulf of Mexico, Mississippi Fan, Loop Current, bottom currents, sand waves, geological hazards
0025-3227
297-307
Kenyon, N.H.
c9e9b414-ac6c-4264-8e63-7bf99196a869
Akhmetzhanov, A.M.
61940369-6905-4644-b220-a361f287b89c
Twichell, D.C.
c18fcdb0-9f49-4788-9c1d-2aefaea48ac6
Kenyon, N.H.
c9e9b414-ac6c-4264-8e63-7bf99196a869
Akhmetzhanov, A.M.
61940369-6905-4644-b220-a361f287b89c
Twichell, D.C.
c18fcdb0-9f49-4788-9c1d-2aefaea48ac6

Kenyon, N.H., Akhmetzhanov, A.M. and Twichell, D.C. (2002) Sand wave fields beneath the Loop Current, Gulf of Mexico: reworking of fan sands. Marine Geology, 192 (1-3), 297-307. (doi:10.1016/S0025-3227(02)00560-1).

Record type: Article

Abstract

Extensive fields of large barchan-like sand waves and longitudinal sand ribbons have been mapped by deep-towed SeaMARC IA sidescan sonar on part of the middle and lower Mississippi Fan that lies in about 3200 m of water. The area is beneath the strongly flowing Loop Current. The bedforms have not been adequately sampled but probably consist of winnowed siliciclastic-foraminiferal sands. The size (about 200 m from wingtip to wingtip) and shape of the large barchans is consistent with a previously observed peak current speed of 30 cm/s, measured 25 m above the seabed. The types of small-scale bedforms and the scoured surfaces of chemical crusts, seen on nearby bottom photographs, indicate that near-bed currents in excess of 30 cm/s may sometimes occur. At the time of the survey the sand transport direction was to the northwest, in the opposite direction to the Loop Current but consistent with there being a deep boundary current along the foot of the Florida Escarpment. Some reworking of the underlying sandy turbidites and debris flow deposits is apparent on the sidescan sonar records. Reworking by deep-sea currents, resulting in erosion and in deposits characterised by coarsening upwards structures and cross-bedding, is a process that has been proposed for sand found in cores in shallower parts of the Gulf of Mexico. This process is more widespread than hitherto supposed

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More information

Published date: 2002
Keywords: Gulf of Mexico, Mississippi Fan, Loop Current, bottom currents, sand waves, geological hazards

Identifiers

Local EPrints ID: 2255
URI: http://eprints.soton.ac.uk/id/eprint/2255
ISSN: 0025-3227
PURE UUID: 2f83b88f-078f-4957-9f25-f4c22b054728

Catalogue record

Date deposited: 24 May 2004
Last modified: 15 Mar 2024 04:45

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Contributors

Author: N.H. Kenyon
Author: A.M. Akhmetzhanov
Author: D.C. Twichell

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