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首页> 外文期刊>Quaternary Research: An Interdisciplinary Journal >Late Miocene–Quaternary rapid stepwise uplift of the NE Tibetan Plateau and its effects on climatic and environmental changes
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Late Miocene–Quaternary rapid stepwise uplift of the NE Tibetan Plateau and its effects on climatic and environmental changes

机译:青藏高原东北部中新世-第四纪快速逐步隆升及其对气候和环境变化的影响

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The way inwhich the NE Tibetan Plateau uplifted and its impact on climatic change are crucial to understanding the evolution of the Tibetan Plateau and the development of the present geomorphology and climate of Central and East Asia. This paper is not a comprehensive review of current thinking but instead synthesises our past decades of work together with a number of new findings. The dating of Late Cenozoic basin sediments and the tectonic geomorphology of the NE Tibetan Plateau demonstrates that the rapid persistent rise of this plateau began ~8 ± 1 Ma followed by stepwise accelerated rise at ~3.6 Ma, 2.6 Ma, 1.8–1.7 Ma, 1.2–0.6 Ma and 0.15 Ma. The Yellow River basin developed at ~1.7 Ma and evolved to its present pattern through stepwise backward-expansion toward its source area in response to the stepwise uplift of the plateau. High-resolution multi-climatic proxy records from the basins and terrace sediments indicate a persistent stepwise accelerated enhancement of the East Asian winter monsoon and drying of the Asian interior coupled with the episodic tectonic uplift since ~8 Ma and later also with the global cooling since ~3.2 Ma, suggesting a major role for tectonic forcing of the cooling.
机译:东北青藏高原的隆升方式及其对气候变化的影响对于了解青藏高原的演变以及中亚和东亚目前的地貌和气候的发展至关重要。本文不是对当前思想的全面回顾,而是将我们过去几十年的工作与许多新发现结合在一起。晚新生代盆地沉积物的年代和东北藏高原的构造地貌表明,该高原的快速持续上升始于〜8±1 Ma,随后逐步加速上升,分别为〜3.6 Ma,2.6 Ma,1.8–1.7 Ma,1.2 –0.6 Ma和0.15 Ma。黄河流域在〜1.7 Ma处发育,并响应高原的逐步隆升,通过向后向源区逐步向后扩展而演变成目前的格局。来自盆地和阶地沉积物的高分辨率多气候代用记录表明,东亚冬季风持续不断地逐步增强,亚洲内部干燥,伴随着〜8Ma以来的偶发性构造隆升,以及随后的全球降温。 〜3.2 Ma,表明冷却的构造强迫作用很大。

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