Eroding dynamic topography

被引:51
作者
Braun, J. [1 ]
Robert, X. [1 ]
Simon-Labric, T. [1 ]
机构
[1] ISTerre Univ Grenoble 1, CNRS IRD, F-38041 Grenoble, France
关键词
Dynamic Topography; Fluvial erosion; Thermochronology; Colorado Plateau; Andes; Stream Power Law; COLORADO PLATEAU; FLUVIAL INCISION; SEA-LEVEL; MANTLE; UPLIFT; RIVER; DRIVEN; MODEL; AUSTRALIA; EVOLUTION;
D O I
10.1002/grl.50310
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Geological observations of mantle flow-driven dynamic topography are numerous, especially in the stratigraphy of sedimentary basins; on the contrary, when it leads to subaerial exposure of rocks, dynamic topography must be substantially eroded to leave a noticeable trace in the geological record. Here, we demonstrate that despite its low amplitude and long wavelength and thus very low slopes, dynamic topography is efficiently eroded by fluvial erosion, providing that drainage is strongly perturbed by the mantle flow driven surface uplift. Using simple scaling arguments, as well as a very efficient surface processes model, we show that dynamic topography erodes in direct proportion to its wavelength. We demonstrate that the recent deep erosion experienced in the Colorado Plateau and in central Patagonia is likely to be related to the passage of a wave of dynamic topography generated by mantle upwelling.
引用
收藏
页码:1494 / 1499
页数:6
相关论文
共 48 条
[1]   A very efficient O(n), implicit and parallel method to solve the stream power equation governing fluvial incision and landscape evolution [J].
Braun, Jean ;
Willett, Sean D. .
GEOMORPHOLOGY, 2013, 180 :170-179
[2]   The many surface expressions of mantle dynamics [J].
Braun, Jean .
NATURE GEOSCIENCE, 2010, 3 (12) :825-833
[3]   Neogene kinematic history of Nazca-Antarctic-Phoenix slab windows beneath Patagonia and the Antarctic Peninsula [J].
Breitsprecher, Katrin ;
Thorkelson, Derek J. .
TECTONOPHYSICS, 2009, 464 (1-4) :10-20
[4]   Influence of dynamic topography on sea level and its rate of change [J].
Conrad, Clinton P. ;
Husson, Laurent .
LITHOSPHERE, 2009, 1 (02) :110-120
[5]   Seismic tomography, surface uplift, and the breakup of Gondwanaland: Integrating mantle convection backwards in time [J].
Conrad, CP ;
Gurnis, M .
GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, 2003, 4
[6]   Chronology of Miocene-Pliocene deposits at Split Mountain Gorge, Southern California: A record of regional tectonics and Colorado River evolution [J].
Dorsey, Rebecca J. ;
Fluette, Amy ;
McDougall, Kristin ;
Housen, Bernard A. ;
Janecke, Susanne U. ;
Axen, Gary J. ;
Shirvell, Catherine R. .
GEOLOGY, 2007, 35 (01) :57-60
[7]   Unroofing, incision, and uplift history of the southwestern Colorado Plateau from apatite (U-Th)/He thermochronometry [J].
Flowers, R. M. ;
Wernicke, B. P. ;
Farley, K. A. .
GEOLOGICAL SOCIETY OF AMERICA BULLETIN, 2008, 120 (5-6) :571-587
[8]   (U-Th)/He thermochronometry constraints on unroofing of the eastern Kaapvaal craton and significance for uplift of the southern African Plateau [J].
Flowers, Rebecca M. ;
Schoene, Blair .
GEOLOGY, 2010, 38 (09) :827-830
[9]   Descent of the ancient Farallon slab drives localized mantle flow below the New Madrid seismic zone [J].
Forte, A. M. ;
Mitrovica, J. X. ;
Moucha, R. ;
Simmons, N. A. ;
Grand, S. P. .
GEOPHYSICAL RESEARCH LETTERS, 2007, 34 (04)
[10]   Dynamic topography control on Patagonian relief evolution as inferred from low temperature thermochronology [J].
Guillaume, Benjamin ;
Gautheron, Cecile ;
Simon-Labric, Thibaud ;
Martinod, Joseph ;
Roddaz, Martin ;
Douville, Eric .
EARTH AND PLANETARY SCIENCE LETTERS, 2013, 364 :157-167