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Global cooling and enhanced Eocene Asian mid-latitude interior aridity

机译:全球变冷和始新世亚洲中纬内部干旱增强

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摘要

Tibetan Plateau uplift has been suggested as the main driving force for mid-latitude Asian inland aridity (AIA) and for deposition of thick aeolian sequences in northern China since the Miocene. However, the relationship between earlier AIA and Tibetan Plateau mountain building is uncertain because of a lack of corresponding thick aeolian sequences with accurate age constraints. We here present results for a continuous aeolian sequence that spans the interval from >51 to 39 Ma from the eastern Xorkol Basin, Altun Shan, northeastern Tibetan Plateau. The basal age of the studied sequence postdates initial uplift of the Tibetan Plateau by several million years. Our results indicate that the local palaeoclimate was teleconnected strongly to the overall global cooling pattern, so that local enhanced aridification recorded by the studied aeolian sequence is dominantly a response to global climatic forcing rather than plateau uplift.
机译:自中新世以来,青藏高原的隆升被认为是亚洲中纬亚洲内陆干旱(AIA)和中国北部厚的风积序列沉积的主要驱动力。然而,由于缺乏相应的具有精确年龄限制的厚风积序列,早期的友邦保险与青藏高原山区建筑之间的关系尚不确定。我们在此为青藏高原东北部阿尔通山东部Xorkol盆地从> 51至39 Ma的连续风成陆序列的结果。研究序列的基础年龄比青藏高原的初始隆起晚了几百万年。我们的结果表明,局部古气候与整个全球冷却模式强烈地遥相关,因此,由研究的风积序列记录的局部增强干旱主要是对全球气候强迫而不是高原隆升的响应。

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