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Miocene orographic uplift forces rapid hydrological change in the southern central Andes

机译:中新世地形隆升迫使安第斯山脉中南部的水文迅速变化

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摘要

Rainfall in the central Andes associated with the South American Monsoon and the South American Low-Level Jet results from orographic effects on atmospheric circulation exerted by the Andean Plateau and the Eastern Cordillera. However, despite its importance for South American climate, no reliable records exist that allow decoding the evolution of thresholds and interactions between Andean topography and atmospheric circulation, especially regarding the onset of humid conditions in the inherently dry southern central Andes. Here, we employ multi-proxy isotope data of lipid biomarkers, pedogenic carbonates and volcanic glass from the Eastern Cordillera of NW Argentina and present the first long-term evapotranspiration record. We find that regional eco-hydrology and vegetation changes are associated with initiation of moisture transport via the South American Low-Level Jet at 7.6 Ma, and subsequent lateral growth of the orogen at 6.5 Ma. Our results highlight that topographically induced changes in atmospheric circulation patterns, not global climate change, were responsible for late Miocene environmental change in this part of the southern hemisphere. This suggests that mountain building over time fundamentally controlled habitat evolution along the central Andes.
机译:安第斯山脉中部与南美季风和南美低空急流有关的降雨是由安第斯高原和东部山脉对大气环流的地形影响所致。但是,尽管它对南美气候很重要,但尚无可靠的记录可以解码安第斯地形和大气环流之间的阈值变化和相互作用,特别是在固有干燥的南部安第斯中部出现潮湿条件时。在这里,我们采用了来自阿根廷西北部东部山脉的脂质生物标志物,成岩碳酸盐和火山玻璃的多代理同位素数据,并提出了第一个长期蒸散记录。我们发现区域生态水文和植被变化与通过南美低空急流在7.6 Ma处开始的水汽输送以及随后在6.5 Ma造山带的横向生长有关。我们的结果表明,地形诱发的大气环流变化,而不是全球气候变化,是造成南半球这一地区中新世晚期环境变化的原因。这表明随着时间的推移,山区建筑从根本上控制了安第斯山脉中部的栖息地演变。

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