Prolonged seismically induced erosion and the mass balance of a large earthquake
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| Title: | Prolonged seismically induced erosion and the mass balance of a large earthquake |
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| Authors: | Hovius, Niels1 nhovius@esc.cam.ac.uk, Meunier, Patrick2 meunier@geologie.ens.fr, Lin, Ching-Weei3 chingwee@mail.ncku.edu.tw, Chen, Hongey4 hchen@ntu.edu.tw, Chen, Yue-Gau4 ygchen@ntu.edu.tw, Dadson, Simon5 sjdad@ceh.ac.uk, Horng, Ming-Jame6 mjhorng@wra.gov.tw, Lines, Max1 |
| Source: | Earth & Planetary Science Letters. Apr2011, Vol. 304 Issue 3/4, p347-355. 9p. |
| Subjects: | Earthquakes, Seismology, Erosion, Mass budget (Geophysics), Landslides, Sediment transport, Orogeny, Chi-chi Earthquake, Taiwan, 1999 |
| Geographic Terms: | Taiwan |
| Abstract: | Abstract: Large earthquakes deform the Earth''s surface and drive topographic growth in the frontal zones of mountain belts. They also induce widespread mass wasting, reducing relief. The sum of these two opposing effects is unknown. Using a time series of landslide maps and suspended sediment transport data, we show that the MW7.6 Chi-Chi earthquake in Taiwan was followed by a period of enhanced mass wasting and fluvial sediment evacuation, peaking at more than five times the background rate and returning progressively to pre-earthquake levels in about six years. Therefore it is now possible to calculate the mass balance and topographic effect of the earthquake. The Choshui River has removed sediment representing more than 30% of the added rock mass from the epicentral area. This has resulted in a reduction of surface uplift by up to 0.25m, or 35% of local elevation change, and a reduction of the area where the Chi-Chi earthquake has built topography. For other large earthquakes, erosion may evolve in similar, predictable ways, reducing the efficiency of mountain building in fold-and-thrust belts and the topographic expression of seismogenic faults, prolonging the risk of triggered processes, and impeding economic regeneration of epicentral areas. [Copyright &y& Elsevier] |
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| Database: | Engineering Source |
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