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Abrupt climate change in southeast tropical Africa influenced by Indian monsoon variability and ITCZ migration

机译:印度季风变化和ITCZ迁移影响非洲东南热带非洲的突然气候变化

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摘要

The timing and magnitude of abrupt climate change in tropical Africa during the last glacial termination remains poorly understood. High-resolution paleolimnological data from Lake Tanganyika, Southeast Africa show that wind-driven seasonal mixing in the lake was reduced during the Younger Dryas, Inter-Allerod Cool Period, Older Dryas, and Heinrich Event 1, suggesting a weakened southwest Indian monsoon and a more southerly position of the Inter-Tropical Convergence Zone over Africa during these intervals. These events in Lake Tanganyika, coeval with millennial and centennial-scale climate shifts in the high latitudes, suggest that changes in ITCZ location and Indian monsoon strength are important components of abrupt global climate change and that their effects are felt south of the equator in Africa. However, we observe additional events in Lake Tanganyika of equal magnitude that are not correlated with high-latitude changes, indicating the potential for abrupt climate change to originate from within tropical systems.
机译:上一次冰川终结期间热带非洲突然发生气候变化的时间和程度仍然知之甚少。来自南非坦any尼喀湖的高分辨率古湖泊学数据表明,在年轻的树蛙,跨Allerod凉爽期,较早的树蛙和Heinrich事件1期间,湖中风驱动的季节性混合减少,表明西南印度季风减弱和在这些时间间隔内,非洲热带融合区域在非洲的更南端的位置。坦any尼喀湖上的这些事件,与高纬度地区的千年和百年尺度气候变化同时发生,表明ITCZ位置和印度季风强度的变化是全球突然气候变化的重要组成部分,其影响在非洲赤道以南。但是,我们观察到坦any尼喀湖中发生的其他事件,这些事件与高纬度变化无关,这表明突然的气候变化可能源自热带系统。

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