How do the feedbacks between tectonics, sediment transport and climate work to shape the topographic evolution of the Earth? This question has been widely addressed via numerical models constrained with thermochronological and geomorphological data at scales ranging from local to orogenic. Here we present a novel numerical model that aims at reproducing the interaction between these processes at the continental scale. For this purpose, we combine in a single computer program: 1) a thin-sheet viscous model of continental deformation; 2) a stream-power surface-transport approach; 3) flexural isostasy allowing for the formation of large sedimentary foreland basins; and 4) an orographic precipitation model that reproduces basic climatic effects such as continentality and rain shadow. We quantify the feedbacks between these processes in a synthetic scenario inspired by the India-Asia collision and the growth of the Tibetan Plateau. We identify a feedback between erosion and crustal thickening leading locally to a <50% increase in deformation rates in places where orographic precipitation is concentrated. This climatically-enhanced deformation takes place preferentially at the upwind flank of the growing plateau, specially at the corners of the indenter (syntaxes). We hypothesize that this may provide clues for better understanding the mechanisms underlying the intriguing tectonic aneurisms documented in the Himalayas. At the continental scale, however, the overall distribution of topographic basins and ranges seems insensitive to climatic factors, despite these do have important, sometimes counter-intuitive effects on the amount of sediments trapped within the continent. The dry climatic conditions that naturally develop in the interior of the continent, for example, trigger large intra-continental sediment trapping at basins similar to the Tarim Basin because they determine its endorheic/exorheic drainage. These complex climatic-drainage-tectonic interactions make the development of steady-state topography at the continental scale unlikely.
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Departamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad UniversitariaDepartamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
Zeida A.
Guardia C.M.
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Departamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad UniversitariaDepartamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
Guardia C.M.
Lichtig P.
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Departamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad UniversitariaDepartamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
Lichtig P.
Perissinotti L.L.
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Institute for Biocomplexity and Informatics, Department of Biological Sciences, University of Calgary, Calgary, AB, T2N 2N4Departamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
Perissinotti L.L.
Defelipe L.A.
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Departamento de Química Biológica and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad UniversitariaDepartamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
Defelipe L.A.
Turjanski A.
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Departamento de Química Biológica and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad UniversitariaDepartamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
Turjanski A.
Radi R.
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Departamento de Bioquímica and Center for Free Radical and Biomedical Research, Universidad de la República, Montevideo, Av. Gral Flores 2125Departamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
Radi R.
Trujillo M.
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Departamento de Bioquímica and Center for Free Radical and Biomedical Research, Universidad de la República, Montevideo, Av. Gral Flores 2125Departamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
Trujillo M.
Estrin D.A.
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Departamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad UniversitariaDepartamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Universidad de Buenos Aires, C1428EHA Buenos Aires, Ciudad Universitaria
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Univ Sci & Technol China, Sch Earth & Space Sci, CAS Key Lab Crust Mantle Mat & Environm, Hefei 230026, Peoples R ChinaUniv Sci & Technol China, Sch Earth & Space Sci, CAS Key Lab Crust Mantle Mat & Environm, Hefei 230026, Peoples R China
Sheng, Y. -M.
Zheng, Y-F.
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Univ Sci & Technol China, Sch Earth & Space Sci, CAS Key Lab Crust Mantle Mat & Environm, Hefei 230026, Peoples R ChinaUniv Sci & Technol China, Sch Earth & Space Sci, CAS Key Lab Crust Mantle Mat & Environm, Hefei 230026, Peoples R China
Zheng, Y-F.
Li, S-N.
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Univ Sci & Technol China, Sch Earth & Space Sci, CAS Key Lab Crust Mantle Mat & Environm, Hefei 230026, Peoples R ChinaUniv Sci & Technol China, Sch Earth & Space Sci, CAS Key Lab Crust Mantle Mat & Environm, Hefei 230026, Peoples R China
Li, S-N.
Hu, Z.
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China Univ Geosci, Fac Earth Sci, State Key Lab Geol Proc & Mineral Resources, Wuhan 430074, Peoples R ChinaUniv Sci & Technol China, Sch Earth & Space Sci, CAS Key Lab Crust Mantle Mat & Environm, Hefei 230026, Peoples R China