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Deglacial Tropical Atlantic subsurface warming links ocean circulation variability to the West African Monsoon

机译:冰川消融的热带大西洋地下变暖将海洋环流的变化与西非季风联系起来

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摘要

Multiple lines of evidence show that cold stadials in the North Atlantic were accompanied by both reductions in Atlantic Meridional Overturning Circulation (AMOC) and collapses of the West African Monsoon (WAM). Although records of terrestrial change identify abrupt WAM variability across the deglaciation, few studies show how ocean temperatures evolved across the deglaciation. To identify the mechanism linking AMOC to the WAM, we generated a new record of subsurface temperature variability over the last 21 kyr based on Mg/Ca ratios in a sub-thermocline dwelling planktonic foraminifera in an Eastern Equatorial Atlantic (EEA) sediment core from the Niger Delta. Our subsurface temperature record shows abrupt subsurface warming during both the Younger Dryas (YD) and Heinrich Event 1. We also conducted a new transient coupled ocean-atmosphere model simulation across the YD that better resolves the western boundary current dynamics and find a strong negative correlation between AMOC strength and EEA subsurface temperatures caused by changes in ocean circulation and rainfall responses that are consistent with the observed WAM change. Our combined proxy and modeling results provide the first evidence that an oceanic teleconnection between AMOC strength and subsurface temperature in the EEA impacted the intensity of the WAM on millennial time scales.
机译:多方面的证据表明,北大西洋的寒冷季节伴随着大西洋子午向翻转环流(AMOC)的减少和西非季风(WAM)的崩溃。尽管陆地变化的记录确定了整个冰消期间WAM的突然变化,但是很少有研究显示整个冰消期间海洋温度如何演变。为了确定将AMOC与WAM关联的机制,我们基于东赤道大西洋(EEA)沉积区中的一个处于热线下的浮游有孔虫亚纲中的Mg / Ca比值,生成了过去21年以来地下温度变化的新记录。尼日尔三角洲。我们的地下温度记录显示了Younger Dryas(YD)和Heinrich事件1期间地下的突然变暖。我们还对YD进行了新的瞬态耦合海洋-大气模型模拟,可以更好地解析西部边界流动力学并发现强烈的负相关性由海洋环流变化和降雨响应引起的AMOC强度与EEA地下温度之间的差异,与观测到的WAM变化一致。我们结合的代理和建模结果提供了第一个证据,表明在千禧年时间尺度上,AMOC强度与EEA中地下温度之间的海洋遥相关影响了WAM的强度。

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