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Glacial-related morphology and sedimentary setting of a high-latitude lacustrine basin: The Lago Chepelmut (Tierra del Fuego, Argentina).

Authors :
Lozano, Jorge G.
Tassone, Alejandro
Bran, Donaldo M.
Lodolo, Emanuele
Menichetti, Marco
Cerredo, María E.
Esteban, Federico
Ormazabal, Juan P.
Ísola, José
Baradello, Luca
Vilas, Juan F.
Source :
Journal of South American Earth Sciences. Oct2018, Vol. 86, p259-270. 12p.
Publication Year :
2018

Abstract

Lago Chepelmut is a relatively small lake in size, of ellipsoidal shape, located in the outer fold-and-thrust belt of the Fuegian Andes (southernmost South America). High-resolution single-channel seismic profiles, integrated with geological information in the surrounding area, have allowed to reconstruct for the first time a bathymetric map of the lake and the architecture, distribution and thickness of the sedimentary cover. Two main seismic units were identified in the seismic records: (i) a Lower Unit of glacial nature, likely associated to the Last Glacial Maximum (LGM), and irregularly distributed through the basin, and (ii) an Upper Unit of lacustrine origin which drapes the entire basin. Submerged moraine deposits within the lake were also found from seismic data, and correlated with moraine arcs widespread distributed in the surroundings of the basin. These morphologies represent the recessional deposits left by the Ewan glacier lobe, one of the easternmost fronts of the Tierra del Fuego glaciers during the LGM. The lacustrine sedimentary record shows that the lake level was not constant through the recent history of the lake. Moreover, data analysis has shown that there is also an important structural component that has conditioned the evolution of the basin, in addition to that linked to glacial activity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08959811
Volume :
86
Database :
Academic Search Index
Journal :
Journal of South American Earth Sciences
Publication Type :
Academic Journal
Accession number :
131317440
Full Text :
https://doi.org/10.1016/j.jsames.2018.06.020