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  4. Early Holocene catastrophic mass-wasting event and fan-delta development on the Hua-tung coast, eastern Taiwan
 
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Early Holocene catastrophic mass-wasting event and fan-delta development on the Hua-tung coast, eastern Taiwan

Resource
Geomorphology, 134(3-4), 378-393
Journal
Geomorphology
Pages
378-393
Date Issued
2011
Date
2011
Author(s)
Hsieh, Meng-Long
Liew, Ping-Mei
Chen, Hua-Wen
DOI
10.1016/j.geomorph.2011.07.012
URI
http://ntur.lib.ntu.edu.tw//handle/246246/240445
Abstract
Landslides and debris flows rarely occurred during historical times in the tectonically active Coastal Range of eastern Taiwan. This topographic stability, however, contrasts greatly with the widespread existence of terraced alluvial fans and fan-deltas on the Hua-tung coast which fringes the range. This study focuses on the two largest fan-terrace systems on the Hua-tung coast, both of which consist of alluvial fans (plane-view areas up to 8km2) larger than their contributing catchments. Stratigraphic data show that both systems were in sandy, wave-dominated settings during de-glacial times. The systems were then disturbed by a catastrophic landslide/debris-flow event (or events), which brought enormous amounts of gravel (Facies Gm) into the systems, deforming previously-deposited marine sands (Facies Sm) and shallowing the seafloor. The combined Gm/Sm complex yields multiple radiocarbon dates ranging from 11.3 to 8.3kacal BP, with a cluster around 8.6kacal BP. This mass-wasting event has been unique since the emergence of its contributing catchment 0.2-0.3Ma ago. The low frequency of such an event could reflect the great resistance of rock mass in the source areas to weathering and erosion. The common blockage of valley floors by giant-boulder piles, which limits channel incision and sediment transport, could also increase the apparent stability of the mountain. The trigger of landslides in the Coastal Range has been linked to large earthquakes. Additionally, we propose that the great magnitude and duration of the observed early Holocene event were caused by the contemporaneous prolonged rainfall (and/or high frequency of typhoons) associated with the East Asian summer monsoon maximum. © 2011 Elsevier B.V.
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