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首页> 外文期刊>Oceanographic Literature Review >Centennial- to millennial-scale Asian summer monsoon changes during the MIS 5/4 transition revealed by high-resolution stalagmite records from southwestern China
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Centennial- to millennial-scale Asian summer monsoon changes during the MIS 5/4 transition revealed by high-resolution stalagmite records from southwestern China

机译:截至千禧年 - 规模的亚洲夏季季风在MIS 5/4转型期间改变了来自中国西南部的高分辨率石笋记录

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During the Marine Isotope Stage (MIS) 5/4 transition, the global climate changed from an interglacial to a glacial state, and hence it was characterized by high-amplitude climate changes. High-resolution stalagmite records can potentially improve our understanding of climate change during this transition. Here we use a high-precision ~(230)Th-dated, 50-yr-resolution stalagmite δ~(18)O record from Yangkou Cave, in Chongqing, southwestern China, to reveal centennial- to millennial-scale changes in Asian summer monsoon (ASM) intensity during the interval of 98.8-59.3 kyr B.P. (thousands of years before 1950 CE). The record reveals five Chinese Interstadial events, namely CIS 18-22, and pronounced centennial-scale oscillations are evident and verified within these millennial-scale events. There are four centennial-scale events of monsoon strengthening in both CIS 21 and CIS 22, corresponding to Greenland Interstadial events GI 21 and GI 22. By contrast, CIS 18, CIS 19 and CIS 20 differ in both structure and onset time relative to the corresponding GI events during MIS 4. During MIS 5, reduced ice sheet and sea-ice cover and strong Atlantic Meridional Overturning Circulation (AMOC) forced the Intertropical Convergence Zone (ITCZ) towards its northern limit, which enhanced the teleconnection between the ASM and climate change in northern high latitudes. During MIS 5, the millennial-scale events (CIS 21 and 22) show a rapid atmospheric teleconnection between the ASM and the climate of northern high latitudes, but this coupling did not exist during MIS 4. The weakening of Northern Hemisphere summer insolation, the expansion of ice sheets and sea ice, combined with the increased influence of Antarctica, may have led to the decoupling of the Asian summer monsoon and climate change in high northern latitudes.
机译:在海洋同位素阶段(MIS)5/4过渡期间,全球气候从一个冰川状态发生变化,因此它的特点是高幅度气候变化。高分辨率石笋记录可能会在此转型期间潜在地改善对气候变化的理解。在这里,我们使用高精度〜(230)Th-Dated,50年的分辨率石笋δ〜(18)o在中国西南部的重庆洞穴中记录,在亚洲夏季揭示百年至千禧一代的变化季风(ASM)强度在98.8-59.3 Kyr BP的间隔内(1950年前数千年)。该记录揭示了五个中国鸿沟事件,即CIS 18-22,明显的百年级振荡是明显的,并在这些千禧一代的事件中核实。 CIS 21和CIS 22中有四个百年纪念事件,对应于格陵兰壁垒事件GI 21和GI 22。相反,CIS 18,CIS 19和CIS 20在结构中不同于相对于的结构和起始时间MIS 4期间的相应GI事件4.在MIS 5期间,减少冰盖和海冰盖和强大的大西洋经络翻转循环(AMOC)迫使闭合性收敛区(ITCZ)朝其北方极限增强了亚马逊和气候之间的遥控器北方高纬度的变化。在MIS 5期间,千年级事件(CIS 21和22)显示了北方高纬度的ASM和气候之间的快速大气连接,但在MES 4期间这种偶联不存在。北半球夏季缺失的弱化冰盖和海冰的扩张与南极洲的增加的影响增加,可能导致亚洲夏季季风和气候变化在高北纬境内的解耦。

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    《Oceanographic Literature Review》 |2021年第5期|1021-1021|共1页
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