The influence of erosion thresholds and runoff variability on the relationships among topography, climate, and erosion rate

被引:249
作者
DiBiase, Roman A. [1 ]
Whipple, Kelin X. [1 ]
机构
[1] Arizona State Univ, Sch Earth & Space Explorat, Tempe, AZ 85287 USA
基金
美国国家科学基金会;
关键词
DEPENDENT RIVER INCISION; BED-LOAD TRANSPORT; ROCK-UPLIFT RATES; STEADY-STATE; FLUVIAL INCISION; BEDROCK INCISION; SEDIMENT; MODEL; LANDSCAPE; FREQUENCY;
D O I
10.1029/2011JF002095
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Bedrock river incision occurs only during floods large enough to mobilize sediment and overcome substrate detachment thresholds. New data relating channel steepness and erosion rate provide the opportunity to evaluate the role of thresholds and discharge variability in landscape evolution. We augment an extensive erosion rate data set in the San Gabriel Mountains, California, with analysis of streamflow records and observations of channel width and sediment cover to evaluate the importance of climate and erosion thresholds on incision rates. We find the relationship between channel steepness and erosion rate in the San Gabriel Mountains can be explained using a simple stochastic-threshold incision model where the distribution of large floods follows an inverse power law, suggesting that details of incision mechanics, sediment effects, width adjustment, and debris flows do not significantly influence the steady state relationship between steepness and erosion rate. Using parameters tuned to this case, we vary climate parameters to explore a range of behavior for the steepness-erosion relationship. Erosion is enhanced by both increases in mean runoff and discharge variability. We explore the implications of an empirical relationship between mean runoff and variability to test whether dry, variable climates can erode more efficiently than wet, stable climates. For channels with high thresholds or low steepness, modeled erosion rate peaks at a mean runoff of 200-400 mm/yr. For much of the parameter space tested, erosion rates are predicted to be insensitive to increases in runoff above similar to 500 mm/yr, with important implications for the hypothesized influence of climate on tectonics.
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页数:17
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共 96 条
  • [1] [Anonymous], 1958, EOS T AM GEOPHYS UN, DOI DOI 10.1029/TR039I006P01076
  • [2] Transformation of tectonic and climatic signals from source to sedimentary archive
    Armitage, John J.
    Duller, Robert A.
    Whittaker, Alex C.
    Allen, Philip A.
    [J]. NATURE GEOSCIENCE, 2011, 4 (04) : 231 - 235
  • [3] Testing fluvial erosion models using the transient response of bedrock rivers to tectonic forcing in the Apennines, Italy
    Attal, M.
    Cowie, P. A.
    Whittaker, A. C.
    Hobley, D.
    Tucker, G. E.
    Roberts, G. P.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-EARTH SURFACE, 2011, 116
  • [4] Modeling fluvial incision and transient landscape evolution: Influence of dynamic channel adjustment
    Attal, M.
    Tucker, G. E.
    Whittaker, A. C.
    Cowie, P. A.
    Roberts, G. P.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-EARTH SURFACE, 2008, 113 (F3)
  • [5] BED LOAD TRANSPORT BY NATURAL RIVERS
    BAGNOLD, RA
    [J]. WATER RESOURCES RESEARCH, 1977, 13 (02) : 303 - 312
  • [6] A systematic analysis of eight decades of incipient motion studies, with special reference to gravel-bedded rivers
    Buffington, JM
    Montgomery, DR
    [J]. WATER RESOURCES RESEARCH, 1997, 33 (08) : 1993 - 2029
  • [7] Experimental study of bedrock channel alluviation under varied sediment supply and hydraulic conditions
    Chatanantavet, Phairot
    Parker, Gary
    [J]. WATER RESOURCES RESEARCH, 2008, 44 (12)
  • [8] New constraints on sediment-flux-dependent river incision: Implications for extracting tectonic signals from river profiles
    Cowie, Patience A.
    Whittaker, Alexander C.
    Attal, Mikael
    Roberts, Gerald
    Tucker, Greg E.
    Ganas, Athanassios
    [J]. GEOLOGY, 2008, 36 (07) : 535 - 538
  • [9] A stochastic "precipiton" model for simulating erosion/sedimentation dynamics
    Crave, A
    Davy, P
    [J]. COMPUTERS & GEOSCIENCES, 2001, 27 (07) : 815 - 827
  • [10] Formation of fluvial hanging valleys: Theory and simulation
    Crosby, Benjamin T.
    Whipple, Kelin X.
    Gasparini, Nicole M.
    Wobus, Cameron W.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-EARTH SURFACE, 2007, 112 (F3)