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Dynamics of Mid-Palaeocene North Atlantic rifting linked with European intra-plate deformations

机译:中古新世北大西洋裂谷的动力学与欧洲板内变形的联系

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摘要

The process of continental break-up provides a large-scale experiment that can be used to test causal relations between plate tectonics and the dynamics of the Earth's deep mantle. Detailed diagnostic information on the timing and dynamics of such events, which are not resolved by plate kinematic reconstructions, can be obtained from the response of the interior of adjacent continental plates to stress changes generated by plate boundary processes. Here we demonstrate a causal relationship between North Atlantic continental rifting at ~62 Myr ago and an abrupt change of the intra-plate deformation style in the adjacent European continent. The rifting involved a left-lateral displacement between the North American-Greenland plate and Eurasia, which initiated the observed pause in the relative convergence of Europe and Africa. The associated stress change in the European continent was significant and explains the sudden termination of a ~20-Myr-long contractional intra-plate deformation within Europe, during the late Cretaceous period to the earliest Palaeocene epoch, which was replaced by low-amplitude intra-plate stress-relaxation features. The pre-rupture tectonic stress was large enough to have been responsible for precipitating continental break-up, so there is no need to invoke a thermal mantle plume as a driving mechanism. The model explains the simultaneous timing of several diverse geological events, and shows how the intra-continental stra-tigraphic record can reveal the timing and dynamics of stress changes, which cannot be resolved by reconstructions based only on plate kinematics.
机译:大陆分裂的过程提供了一个大规模的实验,可以用来检验板块构造与地球深层地幔动力学之间的因果关系。可以通过邻近大陆板块内部对板块边界过程产生的应力变化的响应来获得有关此类事件的时间和动力学的详细诊断信息,而板块运动学重建并不能解决这些问题。在这里,我们证明了约62 Myr以前的北大西洋大陆裂谷与邻近欧洲大陆板内形变样式的突然变化之间的因果关系。裂谷涉及北美格陵兰板块与欧亚大陆之间的左移,这引发了欧洲和非洲相对趋同中观察到的停顿。欧洲大陆相关的应力变化非常显着,解释了在白垩纪晚期至最早的古新世时期,欧洲内部〜20-Myr长的板内收缩突然终止,被低振幅的内应力所取代。板应力松弛特性。破裂前的构造应力足够大,足以引起大陆的破裂,因此不需要调用热幔柱羽作为驱动机制。该模型解释了几种不同地质事件的同时发生时间,并显示了陆内地层记录如何揭示应力变化的时间和动力学,而仅靠板块运动学无法通过重建来解决。

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