碰撞
历时的
新生代
高原(数学)
旋转(数学)
古近纪
地质学
构造学
顺时针方向的
前线(军事)
古生物学
碰撞带
大陆碰撞
岩石圈
几何学
计算机科学
海洋学
数学
白垩纪
数学分析
构造盆地
计算机安全
作者
Xiaoyue Wu,Jiashun Hu,Ling Chen,Liang Liu,Lijun Liu
标识
DOI:10.1038/s41467-023-42920-0
摘要
Abstract The Cenozoic India-Eurasia collision has had profound impacts on shaping the Tibetan plateau, but its early history remains controversial due to uneven availability of constraints. Recent plate reconstructions reveal two prominent counterclockwise rotation (azimuthal change) rate peaks of the Indian plate at 52-44 and 33-20 Ma, respectively, which could bear key information about this collision history. Using fully dynamic three-dimensional numerical modeling, we show that the first rotation rate peak reflected the initial diachronous collision from the western-central to eastern Indian front, and the second peak reflected the full collision leading to strong coupling between India and Eurasia. Further comparison with observation suggests that the initial and complete India-Eurasia collision likely occurred at 55 ± 5 and 40 ± 5 Ma, respectively, an inference consistent with key geological observations. We suggest that this collision history is instructive for studying the tectonic history of the Tibetan plateau and its surrounding areas.
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