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Dating and genesis of the upper Weihe River terraces in Longxi basin,China
作者姓名:Pan Baotian  Liu Xiaofeng  Gao Hongshan  Wang Yong  Li Jijun
作者单位:Key Laboratory of Western China’s Environmental System,Ministry of Education,Lanzhou University,Lanzhou 730000,China
基金项目:国家自然科学基金;国家重点基础研究发展计划(973计划)
摘    要:Seven terraces along the Weihe River in Longxi basin have been investigated. These terraces all consist of archetypal duality in structure, namely the floodplain deposits and the layer of gravels overlaid by varying thickness of the loess. By resorting to various dating approaches such as palaeomagnetic, optically stimulated luminescenece (OSL), 14C and loess-paleosol sequence, we provide preliminary timing of these seven terraces along upper Weihe River. Analysis on sedimentation characteristics and dating of these terraces showed that seven terraces may be jointly generated by tectonic uplifts and climatic changes. Tectonic uplifts may accommodate initial river incision, and climatic change may be responsible for processes of subsequent channel widening and aggradation. Aggradation normally occurs during glacial periods, in contrast to down-cuttings during transitions from glacial to interglacial period. Moreover, on the basis of the timings and heights of these terraces, we infer that the long-term rate of river incision was determined to be 0.2 m/kyr during the last 870 kyr, which differs from other river incision rates. This discrepancy may reflect spatio-temporal differentiation of tectonic activities in the Qinling orogenic belt during the Pleistocene.


Dating and genesis of the upper Weihe River terraces in Longxi basin, China
Pan Baotian,Liu Xiaofeng,Gao Hongshan,Wang Yong,Li Jijun.Dating and genesis of the upper Weihe River terraces in Longxi basin,China[J].Progress in Natural Science,2007,17(11):1334-1340.
Authors:Pan Baotian  Liu Xiaofeng  Gao Hongshan  Wang Yong  Li Jijun
Abstract:Seven terraces along the Weihe River in Longxi basin have been investigated. These terraces all consist of archetypal duality in structure, namely the floodplain deposits and the layer of gravels overlaid by varying thickness of the loess. By resorting to various dating approaches such as palaeomagnetic, optically stimulated luminescenece (OSL), 14C and loess-paleosol sequence, we provide preliminary timing of these seven terraces along upper Weihe River. Analysis on sedimentation characteristics and dating of these terraces showed that seven terraces may be jointly generated by tectonic uplifts and climatic changes. Tectonic uplifts may accommodate initial river incision, and climatic change may be responsible for processes of subsequent channel widening and aggradation. Aggradation normally occurs during glacial periods, in contrast to down-cuttings during transitions from glacial to interglacial period. Moreover, on the basis of the timings and heights of these terraces, we infer that the long-term rate of river incision was determined to be 0.2 m/kyr during the last 870 kyr, which differs from other river incision rates. This discrepancy may reflect spatio-temporal differentiation of tectonic activities in the Qinling orogenic belt during the Pleistocene.
Keywords:loess stratigraphy  river terraces  climate change  Upper Weihe River  
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