This study describes an extensive sediment–wave field in the Magdalena Turbidite System, Caribbean Sea, Colombia, which occupies an area of at least 15000 km2 on the continental slope (3330–>3800 m). The waves display wavelengths up to 1.9 km, wave heights up to 18 m, and crestlines that are aligned roughly parallel to the regional bathymetric contours. Preferential deposition on the upslope wave flank has led to upslope migration, in the manner of antidunes. The Magdalena sediment waves are interpreted as forming beneath unconfined turbidity currents, which may result from the downslope evolution of slumps and mass flows. The unconfined turbidity currents are derived from several point sources along the continental slope and spread lateral...
V Congreso Geológico de España, 10-14 julio 2000, Alicante.-- 4 pages, 2 figures[EN] Three channel-l...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
This study describes an extensive sediment–wave field in the Magdalena Turbidite System, Caribbean S...
17 pages, 7 figuresThis study describes an extensive sediment–wave field in the Magdalena Turbidite ...
XIV Congreso Nacional de Sedimentología - IV Coloquio del Cretácico de España, 10-16 septiembre 200...
17 pages, 12 figuresThe Orinoco sediment–wave field covers an area of at least 29 000 km2 on the sou...
A detailed analysis of the modern morphology, acoustic facies and architecture of the eastern Magdal...
An integrated geophysical and sedimentological investigation of the Selvage sediment-wave field has ...
Two sediment wave fields have been identified on the flanks of the western Canary Islands of La Palm...
This is UMR/EPOC 5805-CNRS Contribution No. 1421.-- 26 pages, 15 figures, 2 tablesNew core data from...
13 pages, 9 figures, 1 tableThe quantitative analysis of the most recently active channel located on...
2006. Estrada F., Alonso B., Ercilla G. The Plio-Quaternary Magdalena Turbidite System. SEPM/Geologi...
VII Congreso Geológico de España, 14-18 Julio 2008, Las Palmas de Gran Canaria.-- 4 pages, 4 figures...
International audienceThe Var Turbidite System (NW Mediterranean Sea) is fed during the present-day ...
V Congreso Geológico de España, 10-14 julio 2000, Alicante.-- 4 pages, 2 figures[EN] Three channel-l...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
This study describes an extensive sediment–wave field in the Magdalena Turbidite System, Caribbean S...
17 pages, 7 figuresThis study describes an extensive sediment–wave field in the Magdalena Turbidite ...
XIV Congreso Nacional de Sedimentología - IV Coloquio del Cretácico de España, 10-16 septiembre 200...
17 pages, 12 figuresThe Orinoco sediment–wave field covers an area of at least 29 000 km2 on the sou...
A detailed analysis of the modern morphology, acoustic facies and architecture of the eastern Magdal...
An integrated geophysical and sedimentological investigation of the Selvage sediment-wave field has ...
Two sediment wave fields have been identified on the flanks of the western Canary Islands of La Palm...
This is UMR/EPOC 5805-CNRS Contribution No. 1421.-- 26 pages, 15 figures, 2 tablesNew core data from...
13 pages, 9 figures, 1 tableThe quantitative analysis of the most recently active channel located on...
2006. Estrada F., Alonso B., Ercilla G. The Plio-Quaternary Magdalena Turbidite System. SEPM/Geologi...
VII Congreso Geológico de España, 14-18 Julio 2008, Las Palmas de Gran Canaria.-- 4 pages, 4 figures...
International audienceThe Var Turbidite System (NW Mediterranean Sea) is fed during the present-day ...
V Congreso Geológico de España, 10-14 julio 2000, Alicante.-- 4 pages, 2 figures[EN] Three channel-l...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...
The principle transport agent in deep ocean environments are turbidity currents, avalanches of sedim...