相关的地壳和地幔熔化记录了原西藏高原的生长过程

IF 16.3 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES National Science Review Pub Date : 2024-07-25 DOI:10.1093/nsr/nwae257
Wei Li, Rizheng He, Xiaohui Yuan, Felix Schneider, Frederik Tilmann, Zhen Guo, Yongshun John Chen
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引用次数: 0

摘要

关于造成青藏高原北部呼-锡盆地快速隆起和活跃岩浆活动,从而使原高原向外扩展的机制,尤其是深部动力学与地表隆起之间的关系,存在着激烈的争论。由于交通不便,直到最近,地震台网仍未发现呼-锡盆地。在此,我们基于线性横穿呼-锡盆地的地震阵列,通过环境噪声层析成像,提出了青藏高原下地壳和最上层地幔结构的三维 S 波速度(VS)模型。该模型显示了青藏高原北部广泛的部分熔融地壳,但在南部只有孤立的小块地壳,表现为中层地壳的低VS异常。广泛的低 VS 异常与最上层地幔低 VS 强异常以及呼-锡盆地年轻岩浆岩裸露的空间相关性表明,高原是通过岩石圈地幔剥离及其驱动的岩浆活动而生长的。
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Correlated crustal and mantle melting documents proto-tibetan Plateau growth
The mechanism that causes the rapid uplift and active magmatism of the Hoh-Xil Basin in the northern Tibetan Plateau and hence the outward growth of the proto-plateau is highly debated, more specifically, over the relationship between deep dynamics and surface uplift. Due to inaccessibility the Hoh-Xil Basin remained uncovered by seismic networks until recently. Here, based on seismic arrays linearly across the Hoh-Xil Basin, we present a three-dimensional S-wave velocity (VS) model of the crust and uppermost mantle structure beneath the Tibetan Plateau from ambient noise tomography. This model exhibits widespread partially molten crust in the northern Tibetan Plateau but only isolated pockets in the south manifested as low-VS anomalies in the middle crust. The spatial correlation of the widespread low-VS anomalies with strong uppermost mantle low-VS anomalies and young exposed magmatic rocks in the Hoh-Xil Basin suggests that the plateau grew through lithospheric mantle removal and its driven magmatism.
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来源期刊
National Science Review
National Science Review MULTIDISCIPLINARY SCIENCES-
CiteScore
24.10
自引率
1.90%
发文量
249
审稿时长
13 weeks
期刊介绍: National Science Review (NSR; ISSN abbreviation: Natl. Sci. Rev.) is an English-language peer-reviewed multidisciplinary open-access scientific journal published by Oxford University Press under the auspices of the Chinese Academy of Sciences.According to Journal Citation Reports, its 2021 impact factor was 23.178. National Science Review publishes both review articles and perspectives as well as original research in the form of brief communications and research articles.
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