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首页> 外文期刊>Biogeosciences Discussions >Aligning and synchronization of MIS5 proxy records from Lake Ohrid (FYROM) with independently dated Mediterranean archives: implications for DEEP core chronology
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Aligning and synchronization of MIS5 proxy records from Lake Ohrid (FYROM) with independently dated Mediterranean archives: implications for DEEP core chronology

机译:与奥赫里德湖(Fyrom)的MIS5代理记录与独立日期的地中海档案对齐和同步:对深核性年表的影响

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摘要

The DEEP site sediment sequence obtained during the ICDP SCOPSCO project at Lake Ohrid was dated using tephrostratigraphic information, cyclostratigraphy, and orbital tuning through the marine isotope stages (MIS) 15-1. Although this approach is suitable for the generation of a general chronological framework of the long succession, it is insufficient to resolve more detailed palaeoclimatological questions, such as leads and lags of climate events between marine and terrestrial records or between different regions. Here, we demonstrate how the use of different tie points can affect cyclostratigraphy and orbital tuning for the period between ca. 140 and 70?ka and how the results can be correlated with directly/indirectly radiometrically dated Mediterranean marine and continental proxy records. The alternative age model presented here shows consistent differences with that initially proposed by Francke et al.?(2015) for the same interval, in particular at the level of the MIS6-5e transition. According to this new age model, different proxies from the DEEP site sediment record support an increase of temperatures between glacial to interglacial conditions, which is almost synchronous with a rapid increase in sea surface temperature observed in the western Mediterranean. The results show how a detailed study of independent chronological tie points is important to align different records and to highlight asynchronisms of climate events. Moreover, Francke et al.?(2016) have incorporated the new chronology proposed for tephra OH-DP-0499 in the final DEEP age model. This has reduced substantially the chronological discrepancies between the DEEP site age model and the model proposed here for the last glacial-interglacial transition.
机译:使用Tephrostraphic信息,Cyperatraphy和Orbital调整通过海洋同位素阶段(MIS)15-1,在奥赫里德湖的ICDP Scopsco项目期间获得的深层站点沉积物序列。虽然这种方法适用于一代长期连续的一般时间按时间框架,但不足以解决更详细的古西皮学问题,例如海洋和地面记录之间或不同地区之间的气候事件的领导和滞后。在这里,我们展示了如何在CA之间的时段之间使用不同的扎带可以影响环状图尾和轨道调谐。 140和70?KA以及结果如何与直接/间接辐射定影的地中海海洋和大陆代理记录相关联。这里呈现的替代时代模型显示了与Francke等人,最初提出的差异相同的间隔,特别是在MIS6-5E过渡的水平上。根据这个新的时代模型,来自深处沉积物的不同代理支持冰川到中间夹裂条件之间的温度升高,这几乎同时在西部地中海观察到的海表面温度快速增加。结果表明,对独立的时间顺序点点的详细研究是如何对齐不同的记录和突出气候事件的异步的重要性。此外,Francke等人。(2016年)在最终深夜模型中纳入了为Tephra OH-DP-0499提出的新年表。这使得深度地点模型与此处提出的模型的基本上是基本差异,用于最后的冰川间冰幕转变。
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