Recent advances on the tectonic and magmatic evolution of the Greater Tibetan Plateau: A special issue in honor of Prof. Guitang Pan

Recent advances on the tectonic and magmatic evolution of the Greater Tibetan Plateau: A special issue in honor of Prof. Guitang Pan
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大青藏高原构造与岩浆演化最新进展——潘桂堂教授特刊

DOI:
10.1016/j.lithos.2015.12.005
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发表时间:
2016-02
期刊:
影响因子:
3.5
通讯作者:
Niu Yaoling
Niu Yaoling
中科院分区:
地球科学2区
文献类型:
--
作者:
Zhu Di-Cheng;Chung Sun-Lin;Niu Yaoling

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大青藏高原(Greater Tibetan Plateau),又称青藏高原(Qinghai-Tibet Plateau)或青藏高原(Qingzang Plateau),是由早古生代西北向新生代西南的多个大陆碰撞事件所形成的构造拼合体。Dewey等人,1988年,Pan等人,2012年,Yin和Harrison,2000年)。这些碰撞事件形成的造山带记录了特提斯洋盆开合的漫长而复杂的历史,以及相关的构造和岩浆反应(参见图1)。Chung等人,2005,Pan等人,2012,Song等人,2014,Yin和Harrison,2000,Zhu等人,2013,Zhu等人,2015)。虽然与这些事件有关的许多方面最近已经被潘等人优雅地合成。(2012)和Zhu et al.(2013)利用2000年以来获得的数据和观测结果,许多科学问题,如洋盆的持续时间、不同岩石圈的碰撞和增生过程、地壳生长的过程以及经济成矿的机制,仍然没有得到充分的研究,需要利用更多的数据进行进一步的调查。在过去5年中,科学界多个学科通过野外和实验室的努力获得了丰富的新数据,为大青藏高原的构造和岩浆演化提供了最新的见解。在这期特刊中,我们将介绍其中的一些新发现和新认识,以纪念潘贵堂教授50年来对青藏高原地质的不懈研究和他的仪器科学贡献。
The Greater Tibetan Plateau, also known in China as the Qinghai–Tibet Plateau or the Qingzang Plateau, is a tectonic amalgamation of numbers of continental collision events from the northwest in the early Paleozoic to the southwest in the Cenozoic (cf. Dewey et al., 1988, Pan et al., 2012, Yin and Harrison, 2000). These collision events resulted in orogenic belts that record the prolonged albeit complex histories of opening and closing of Tethyan ocean basins and associated tectonic and magmatic responses (cf. Chung et al., 2005, Pan et al., 2012, Song et al., 2014, Yin and Harrison, 2000, Zhu et al., 2013, Zhu et al., 2015). Although many aspects related to these events have been recently synthesized with elegance by Pan et al.(2012) and Zhu et al.(2013) using data and observations made available since 2000, many scientific questions, such as the duration of oceanic basins, the collisional and accretionary processes of different terranes, the processes responsible for crustal growth, and the mechanisms for economic mineralization, remain underdeveloped and require further investigations with additional data.In the last 5 years, there have been abundant new data obtained from field and laboratory efforts by multiple disciplines of the scientific community, offering state-of-the-art insights into the tectonic and magmatic evolution of the Greater Tibetan Plateau. In this special issue, some of these new findings and understandings are presented, dedicated to Prof. Guitang Pan for celebrating his 50 years' endless research on the geology of the Greater Tibetan Plateau and his instrumental scientific contributions.
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