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Plate-wide stress relaxation explains European Palaeocene basin inversions

机译:板块应力松弛解释了欧洲古新世盆地反转

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During Late Cretaceous and Cenozoic times, many Palaeozoic and Mesozoic rifts and basin structures in the interior of the European continent underwent several phases of inversion ( the process of shortening a previously extensional basin)(1). The main phases occurred during the Late Cretaceous and Middle Palaeocene, and have been previously explained by pulses of compression, mainly from the Alpine orogen(2-5). Here we show that the main phases differed both in structural style and cause. The Cretaceous phase was characterized by narrow uplift zones, reverse activation of faults, crustal shortening, and the formation of asymmetric marginal troughs. In contrast, the Middle Palaeocene phase was characterized by dome-like uplift of a wider area with only mild fault movements, and formation of more distal and shallow marginal troughs. A simple flexural model explains how domal, secondary inversion follows inevitably from primary, convergence-related inversion on relaxation of the in-plane tectonic stress. The onset of relaxation inversions was plate-wide and simultaneous, and may have been triggered by stress changes caused by elevation of the North Atlantic lithosphere by the Iceland plume(6) or the drop in the north - south convergence rate between Africa and Europe(7).
机译:在白垩纪晚期和新生代时期,欧洲大陆内部的许多古生代和中生代裂谷和盆地构造经历了几个反转阶段(缩短先前伸展的盆地的过程)(1)。主要阶段发生在白垩纪晚期和中新世中期,以前已通过压缩脉冲解释,主要来自高山造山带(2-5)。在这里,我们表明主要阶段在结构样式和原因上都不同。白垩纪相具有以下特征:隆起区狭窄,断层反向激活,地壳缩短和不对称边缘槽的形成。相比之下,古新世中期的特征是穹顶状隆起作用,仅发生轻微的断层运动,在较宽的区域隆起,并形成更多的远端和浅边缘边缘槽。一个简单的挠性模型解释了平面次构造应力松弛后,原次的,与收敛有关的反演不可避免地伴随着次要的,次要的反演。弛豫反转的发生是在整个板块范围内同时发生的,可能是由于冰岛羽流使北大西洋岩石圈升高而引起的应力变化(6)或非洲与欧洲之间的南北向收敛速度下降引起的。 7)。

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