Pliocene–Pleistocene landscape evolution and watershed reorganization east of the central Andes in Argentine Patagonia

Author:

Griffing Corinne Y.1,Clague John J.2,Barendregt Rene W.3,Menounos Brian4,Hemming Sidney R.5,Rabassa Jorge6,Ercolano Bettina7,Martinez Oscar8

Affiliation:

1. Department of Earth Sciences, Simon Fraser University, 8888 University Drive, Burnaby, BC V5A 1S6, Canada, and Department of Earth and Environmental Sciences, Douglas College, 700 Royal Avenue, New Westminster, BC V3M 5Z5, Canada

2. Department of Earth Sciences, Simon Fraser University, 8888 University Drive, Burnaby, BC V5A 1S6, Canada

3. Department of Geography, University of Lethbridge, 4401 University Drive, Lethbridge, AB T1K 3M4, Canada

4. Geography Program and Natural Resources and Environmental Studies Institute, University of Northern British Columbia, 3333 University Way, Prince George, BC V2N 4Z9, Canada

5. Earth and Environmental Sciences and Lamont-Doherty Earth Observatory, Columbia University, 413 Comer, 61 Route 9W–P.O. Box 1000, Palisades, New York 10964-8000, USA

6. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET)–Centro Austral de Investigaciones Científicas (CADIC), Bernardo Houssay #200, 9410 Ushuaia, Tierra del Fuego, Argentina

7. Instituto Ciencias del Ambiente Sustentabilidad y Recursos Naturales, Universidad Nacional de Tierra del Fuego, Avenida Gobernador Gregores y Piloto “Lero” Rivera, 9400, Río Gallegos, Argentina

8. Facultad de Ciencias Naturales, Universidad Nacional de la Patagonia–San Juan Bosco, Sarmiento 849, Esquel, Chubut, Argentina

Abstract

ABSTRACT Uplift of the central Andes during the Miocene was followed by large-scale reorganization of Atlantic-draining rivers in Argentine Patagonia. Here, we document the abandonment of one large river in the late Pliocene and the establishment of the modern drainage in the Early Pleistocene. A chronology for these events is provided by 40Ar/39Ar ages on basalt flows. Remnants of the Pliocene paleovalley system are well preserved in the Lago Cardiel–Gobernador Gregores area, where they are eroded into flat-lying basalt flows dated from ca. 13.9 Ma to 8.6 Ma. Younger basalts that erupted onto the abandoned floor of the paleovalley are as young as 3.7 Ma. Abandonment of the Pliocene paleovalley and establishment of the modern Río Chico and Río Shehuen catchments happened near the close of the Pliocene when Andean glaciers incised the east-sloping pediment on which the late Miocene drainage was established. Lago Cardiel sits within a large endorheic basin that is inset into the late Pliocene paleovalley. The basin began to develop just before 4 Ma, after the paleovalley was abandoned. It became larger and deeper during the Pleistocene due to mass movements along its margins, deflation of the basin floor during times when Lago Cardiel was dry or nearly dry, and possibly lowering along bounding faults. The Pliocene–Pleistocene landscape and drainage changes that we have documented are not unique to the Lago Cardiel–Gobernador Gregores area; similar changes are apparent elsewhere in Patagonia east of the crest of the Andes.

Publisher

Geological Society of America

Reference35 articles.

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