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Impact of Topography and Land-Sea Distribution on East Asian Paleoenvironmental Patterns
作者姓名:张仲石  王会军  郭正堂  姜大膀
作者单位:Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, Nansen-Zhu International Research Center, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029,Nansen-Zhu International Research Center, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029,State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences, Xi’an 710075, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029,Nansen-Zhu International Research Center, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029
基金项目:the National Natural Science Foundation of China,中国科学院资助项目
摘    要:Much geological research has illustrated the transition of paleoenvironmental patterns during the Cenozoic from a planetary-wind-dominant type to a monsoon-dominant type, indicating the initiation of the East Asian monsoon and inland-type aridity. However, there is a dispute about the causes and mechanisms of the transition, especially about the impact of the Himalayan/Tibetan Plateau uplift and the Paratethys Sea retreat. Thirty numerical sensitivity experiments under different land-sea distributions and Himalayan/Tibetan Plateau topography conditions are performed here to simulate the evolution of climate belts with emphasis on changes in the rain band, and these are compared with the changes in the paleoenvironmental patterns during the Cenozoic recovered by geological records. The consistency between simulations and the geological evidence indicates that both the Tibetan Plateau uplift and the Paratethys Sea retreat play important roles in the formation of the monsoon-dominant environmental pattern. Furthermore, the simulations show the monsoon-dominant environmental pattern comes into being when the Himalayan/Tibetan Plateau reaches 1000–2000 m high and the Paratethys Sea retreats to the Turan Plate.

关 键 词:喜马拉雅山  青藏高原  陆地  分布方式  地形学
收稿时间:2005-05-12
修稿时间:2005-06-24

Impact of topography and land-sea distribution on East Asian paleoenvironmental patterns
Zhongshi Zhang,Huijun Wang,Zhengtang Guo,Dabang Jiang.Impact of Topography and Land-Sea Distribution on East Asian Paleoenvironmental Patterns[J].Advances in Atmospheric Sciences,2006,23(2):258-266.
Authors:Zhongshi Zhang  Huijun Wang  Zhengtang Guo  Dabang Jiang
Institution:(1) Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, 100029, China;(2) Nansen-Zhu International Research Center, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, 100029, China;(3) State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences, Xi’an, 710075, China
Abstract:Much geological research has illustrated the transition of paleoenvironmental patterns during the Cenozoic from a planetary-wind-dominant type to a monsoon-dominant type, indicating the initiation of the East Asian monsoon and inland-type aridity. However, there is a dispute about the causes and mechanisms of the transition, especially about the impact of the Himalayan/Tibetan Plateau uplift and the Paratethys Sea retreat. Thirty numerical sensitivity experiments under different land-sea distributions and Himalayan/Tibetan Plateau topography conditions are performed here to simulate the evolution of climate belts with emphasis on changes in the rain band, and these are compared with the changes in the paleoenvironmental patterns during the Cenozoic recovered by geological records. The consistency between simulations and the geological evidence indicates that both the Tibetan Plateau uplift and the Paratethys Sea retreat play important roles in the formation of the monsoon-dominant environmental pattern. Furthermore, the simulations show the monsoon-dominant environmental pattern comes into being when the Himalayan/Tibetan Plateau reaches 1000-2000 m high and the Paratethys Sea retreats to the Turan Plate.
Keywords:Paratethys Sea retreat  Himalayan/Tibetan Plateau uplift  paleoenvironmental pattern  precipitation field  Turan Plate
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