Suppr超能文献

板块的突然加速塑造了裂谷型大陆边缘。

Abrupt plate accelerations shape rifted continental margins.

出版信息

Nature. 2016 Aug 11;536(7615):201-4. doi: 10.1038/nature18319. Epub 2016 Jul 18.

Abstract

Rifted margins are formed by persistent stretching of continental lithosphere until breakup is achieved. It is well known that strain-rate-dependent processes control rift evolution, yet quantified extension histories of Earth's major passive margins have become available only recently. Here we investigate rift kinematics globally by applying a new geotectonic analysis technique to revised global plate reconstructions. We find that rifted margins feature an initial, slow rift phase (less than ten millimetres per year, full rate) and that an abrupt increase of plate divergence introduces a fast rift phase. Plate acceleration takes place before continental rupture and considerable margin area is created during each phase. We reproduce the rapid transition from slow to fast extension using analytical and numerical modelling with constant force boundary conditions. The extension models suggest that the two-phase velocity behaviour is caused by a rift-intrinsic strength--velocity feedback, which can be robustly inferred for diverse lithosphere configurations and rheologies. Our results explain differences between proximal and distal margin areas and demonstrate that abrupt plate acceleration during continental rifting is controlled by the nonlinear decay of the resistive rift strength force. This mechanism provides an explanation for several previously unexplained rapid absolute plate motion changes, offering new insights into the balance of plate driving forces through time.

摘要

裂谷边缘是由大陆岩石圈的持续拉伸形成的,直到达到分裂的状态。众所周知,应变率相关的过程控制着裂谷的演化,但直到最近才获得了地球主要被动边缘的定量扩展历史。在这里,我们通过将一种新的大地构造分析技术应用于修订后的全球板块重建,来研究全球的裂谷运动学。我们发现裂谷边缘具有初始的缓慢裂谷阶段(小于 10 毫米/年,全速率),并且板块离散度的突然增加引入了快速裂谷阶段。板块加速发生在大陆破裂之前,并且在每个阶段都会产生相当大的边缘区域。我们使用具有恒定力边界条件的分析和数值模型再现了从缓慢到快速扩展的快速转变。扩展模型表明,两阶段速度行为是由裂谷内在强度-速度反馈引起的,对于不同的岩石圈配置和流变学,这种反馈可以得到稳健的推断。我们的结果解释了近端和远端边缘区域之间的差异,并表明大陆裂谷过程中板块的突然加速是由抵抗性裂谷强度力的非线性衰减控制的。这种机制为以前无法解释的几个快速绝对板块运动变化提供了解释,为随着时间的推移板块驱动力的平衡提供了新的见解。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验