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EVIDENCE FOR ABRUPT CLIMATIC CHANGES ONNORTHWESTERN MARGIN OF EAST ASIAN MONSOON REGION DURING LAST DEGLACIATION
作者姓名:QIANGMing-rui  LISent
作者单位:[1]ChinaCenterofDesertResearch,BeijingNormalUniversity/KeyLaboratoryofEnvironmentalChangesandNaturalDisaster,theMinistryofEducationofChina,BeijingNormalUniversity,Beijing100875,P.R.China [2]DepartmentofTourism,ResourcesandEnvironment,FoshanUniversity,Foshan528000,P.R.China)
摘    要:Based on investigations of the Zhongwei Nanshan aeolian section situated in the southeastern margin of Tengger Dcsert, carbon-14 and TL (thermoluminescence) dating results and paleoclimatic proxies such as magnetic susceptibility and grain size, we inferred that the northwestern margin of East Asian monsoon region experienced abrupt climatic changes during the last deglaciation. Six oscillation events were identified: Oldest Dryas, Belling, Older Dryas, AllerФd, lntra-AllerФd Cold Period (1ACP) and Younger Dryas (YD). The summer monsoon was weaker during Oldest Dryas and Younger Dryas when the winter monsoon was stronger. However, during the B/A (BФlling/AllerФd) period, the summer monsoon strengthened, reflected by magnetic susceptibility, when the winter monsoon also became strong, which is different from the paleoclimatic pattern established in the East Asian monsoon region. Furthermore,the summer monsoon was nearly in phase with the climate changes inferred from the oxygen isotopic records of Greenland ice cores. It could be speculated that the variations of the sea ice cover in the high latitudes of the North Hemisphere affected the high pressure of Asian continent and the changes of the winter monsoon inland. On the other hand,the sea ice cover variations might have indirectly caused the occurrence of ENSO events that has tightly been related to the summer monsoon in northwest margin of East Asian monsoon region.

关 键 词:气候变化  东亚季风  气候事件  冰川消失
收稿时间:11 September 2003

Evidence for aburpt climatic changes on northwestern margin of east Asian monsoon region during last deglaciation
QIANGMing-rui LISent.EVIDENCE FOR ABRUPT CLIMATIC CHANGES ONNORTHWESTERN MARGIN OF EAST ASIAN MONSOON REGION DURING LAST DEGLACIATION[J].Chinese Geographical Science,2004,14(2):117-121.
Authors:Qiang Ming-rui  Li Sen  Gao Shang-yu
Institution:(1) China Center of Desert Research, Beijing Normal University/Key Laboratory of Environmental Changes, China;(2) Natural Disaster, the Ministry of Education of China, Beijing Normal University, 100875 Beijing, P. R. China;(3) Department of Tourism, Resources and Environment, Foshan University, 528000 Foshan, P. R. China
Abstract:Based on investigations of the Zhongwei Nanshan aeolian section situated in the southeastern margin of Tengger Desert, carbon-14 and TL (thermoluminescence) dating results and paleoclimatic proxies such as magnetic susceptibility and grain size, we inferred that the northwestern margin of East Asian monsoon region experienced abrupt climatic changes during the last deglaciation. Six oscillation events were identified: Oldest Dryas, Bølling, Older Dryas, Allerød, Intra-Allerød Cold Period (IACP) and Younger Dryas (YD). The summer monsoon was weaker during Oldest Dryas and Younger Dryas when the winter monsoon was stronger. However, during the B/A (Bølling/Allerød) period, the summer monsoon strengthened, reflected by magnetic susceptibility, when the winter monsoon also became strong, which is different from the paleoclimatic pattern established in the East Asian monsoon region. Furthermore, the summer monsoon was nearly in phase with the climate changes inferred from the oxygen isotopic records of Greenland ice cores. It could be speculated that the variations of the sea ice cover in the high latitudes of the North Hemisphere affected the high pressure of Asian continent and the changes of the winter monsoon inland. On the other hand, the sea ice cover variations might have indirectly caused the occurrence of ENSO events that has tightly been related to the summer monsoon in northwest margin of East Asian monsoon region.
Keywords:last deglaciation  East Asian monsoon  abrupt climatic changes
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