Giant landslides, topography, and erosion

被引:280
作者
Korup, Oliver [1 ]
Clague, John J.
Hermanns, Reginald L.
Hewitt, Kenneth
Strom, Alexander L.
Weidinger, Johannes T.
机构
[1] WSL SLF, Swiss Fed Res Inst, CH-7260 Davos, Switzerland
[2] Simon Fraser Univ, Dept Earth Sci, Vancouver, BC, Canada
[3] Geol Survey Canada, Vancouver, BC V6B 1R8, Canada
[4] Wilfrid Laurier Univ, Cold Reg Res Ctr, Waterloo, ON N2L 3C5, Canada
[5] Russian Acad Sci, Inst Geospheres Dynam, Moscow, Russia
[6] Salzburg Univ, Dept Geol Sci, A-5020 Salzburg, Austria
关键词
landslide; mean local relief; mountain topography; erosion;
D O I
10.1016/j.epsl.2007.07.025
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Distributions of slope angles in tectonically active mountain belts point to the development of threshold conditions, where hillslopes attain a critical inclination or height at which they fail readily because of limitations in material strength. It has been proposed that hillslopes adjust to rapid uplift and bedrock incision through an increase in the rate of relief-limiting landsliding rather than gradual slope steepening. Here we test this concept by investigating the relationship between mean local relief H, which we take to be a proxy of long-term erosion rates E, and the occurrence of over 300 of the largest (V > 10(8) m(3)) terrestrial landslides on Earth. We find that nearly two-thirds of these giant landslides have occurred in the steepest 5% of the Earth's land surface, where relief is close to its proposed upper strength limit. They are primarily located in deeply incised valleys, along fault-bounded fringes of active mountain belts, and in volcanic arcs. This distribution coincides with areas of high long-term erosion rates (similar to 4 mm yr(-1)), confirming that giant landslides contribute to rapid denudation of mountains. Most of the eroded volume is concentrated in the smallest, but steepest parts of mountain belts and volcanic arcs. First-order estimates of minimum erosion rates accomplished by the largest landslides are >= 0.01 mm yr(-1) these rates are between 1% and 10% of the Late Pleistocene to Holocene mean erosion rates in a given area. Importantly, the landslide erosion rates show a nonlinear increase with mean local relief, suggesting that the contribution of giant landslides in total and per event increases significantly with increasing overall erosion rates. However, giant landslides also occur in areas of lower-than-average relief ((H) over bar similar to 300-700 m), irrespective of whether threshold hillslopes have developed or not. Factors contributing to these failures include soft rocks, extensive low-angle discontinuities, high rates of fluvial bedrock incision, and tectonically driven deformation and slope loading. (c) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:578 / 589
页数:12
相关论文
共 45 条
[1]  
[Anonymous], 1984, GEOLOGICAL SURVEY CA
[2]   Glacial valley cross-profile development: The influence of in situ rock stress and rock mass strength, with examples from the Southern Alps, New Zealand [J].
Augustinus, PC .
GEOMORPHOLOGY, 1995, 14 (02) :87-97
[3]   'Forebergs', flower structures, and the development of large intracontinental strike-slip faults: the Gurvan Bogd fault system in Mongolia [J].
Bayasgalan, A ;
Jackson, J ;
Ritz, JF ;
Carretier, S .
JOURNAL OF STRUCTURAL GEOLOGY, 1999, 21 (10) :1285-1302
[4]  
Beetham RD, 2002, 1 EUR C LANDSL, P97
[5]   Late Quaternary intensified monsoon phases control landscape evolution in the northwest Himalaya [J].
Bookhagen, B ;
Thiede, RC ;
Strecker, MR .
GEOLOGY, 2005, 33 (02) :149-152
[6]   Bedrock incision, rock uplift and threshold hillslopes in the northwestern Himalayas [J].
Burbank, DW ;
Leland, J ;
Fielding, E ;
Anderson, RS ;
Brozovic, N ;
Reid, MR ;
Duncan, C .
NATURE, 1996, 379 (6565) :505-510
[7]   Rates of erosion and their implications for exhumation [J].
Burbank, DW .
MINERALOGICAL MAGAZINE, 2002, 66 (01) :25-52
[8]   Debris avalanches and debris flows transformed from collapses in the Trans-Mexican Volcanic Belt, Mexico -: behavior, and implications for hazard assessment [J].
Capra, L ;
Macías, JL ;
Scott, KM ;
Abrams, M ;
Garduño-Monroy, VH .
JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH, 2002, 113 (1-2) :81-110
[9]   Geological causes and geomorphological precursors of the Tsaoling landslide triggered by the 1999 Chi-Chi earthquake, Taiwan [J].
Chigira, M ;
Wang, WN ;
Furuya, T ;
Kamai, T .
ENGINEERING GEOLOGY, 2003, 68 (3-4) :259-273
[10]   The giant Ruatoria debris avalanche on the northern Hikurangi margin, New Zealand: Result of oblique seamount subduction [J].
Collot, JY ;
Lewis, K ;
Lamarche, G ;
Lallemand, S .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2001, 106 (B9) :19271-19297