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Role of multiple inherited basement structures on orogen geometry and evolution: Insights from analogue modelling

机译:多重继承地下室结构对奥根根几何和演化的作用:模拟建模见解

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The role of inherited weaknesses in metamorphic basements with respect to the geometry and tectonic evolution of subsequent orogens formation forms a cornerstone of structural reconstructions, especially in non-inverted orogens with old Variscan basements. In this study, we analyse the geometry, kinematics, and tectonic evolution of the complex western termination of the Alpine Pyrenean-Cantabrian orogen using an integrated approach based on analogue modelling, constrained by structural mapping and geochronology, to provide new insights into the role of pre-existing structures and the shift in the orientation of the stress field. Our results demonstrate that pre-existing structures are necessary to explain the complex western termination, which does not follow the same tectonic architecture as the rest of the orogen. The reason for this is the different orientation of the preexisting Variscan structures in this area, which do not follow the general E-W trend. These western structures (including NNE-SSW and NW-SE strike-slip fault systems and a greater number of E-W thrusts) accommodate the shortening, but have a less favourable orientation. The reactivation of the NNE-SSW strike-slip faults and the southern E-W thrusts in the recent stages indicates a late intraplate tectonic regime, mainly following the shift of the Shmax (from N-S to NNW-SSE) which occurred when the convergence between the Iberian, Eurasian, and African plates changed.
机译:遗传弱缺陷在变质地基相对于随后的OROGens形成的几何和构造演进中的作用形成了结构重建的基石,特别是在具有旧瓦里昔据地基的非倒置葡萄球中。在这项研究中,我们使用基于模拟建模的综合方法分析了复杂的西方终止的复杂西式终止的几何形状,运动学和构造演变,由结构映射和地形学限制,提供了新的洞察预先存在的结构和应力场方向的变化。我们的结果表明,预先存在的结构是必要的来解释复杂的西部终止,这不遵循与orgen的其余部分相同的构造架构。这是这个区域中预先存在的瓦里希斯结构的不同方向,这不遵循一般的E-W趋势。这些西方结构(包括NNE-SSW和NW-SE防滑故障系统和更多的E-W推力)适应缩短,但具有较差的取向。 NNE-SSW防滑断层和最近阶段的南部EW推力的重新激活表明了晚期血压构造方案,主要在伊比利亚人之间的收敛时发生了Shmax(来自NS到NNW-SSE)的偏移,欧亚和非洲板块改变了。

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