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Lithospheric flexure and rheology determined by climate cycle markers in the Corinth Rift

机译:科林斯裂谷的气候周期标志确定岩石圈的挠曲性和流变性

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摘要

Geomorphic strain markers accumulating the effects of many earthquake cycles help to constrain the mechanical behaviour of continental rift systems as well as the related seismic hazards. In the Corinth Rift (Greece), the unique record of onshore and offshore markers of Pleistocene ~100-ka climate cycles provides an outstanding possibility to constrain rift mechanics over a range of timescales. Here we use high-resolution topography to analyse the 3D geometry of a sequence of Pleistocene emerged marine terraces associated with flexural rift-flank uplift. We integrate this onshore dataset with offshore seismic data to provide a synoptic view of the flexural deformation across the rift. This allows us to derive an average slip rate of 4.5–9.0 mm·yr−1 on the master fault over the past ~610 ka and an uplift/subsidence ratio of 1:1.1–2.4. We reproduce the observed flexure patterns, using 3 and 5-layered lithospheric scale finite element models. Modelling results imply that the observed elastic flexure is produced by coseismic slip along 40–60° planar normal faults in the elastic upper crust, followed by postseismic viscous relaxation occurring within the basal lower crust or upper mantle. We suggest that such a mechanism may typify rapid localised extension of continental lithosphere.
机译:累积了许多地震周期影响的地貌应变标记有助于限制大陆裂谷系统的力学行为以及相关的地震危害。在科林斯裂谷(希腊),更新世〜100-ka气候周期的陆上和近海标志物的独特记录提供了一种在各种时间范围内限制裂谷力学的极好的可能性。在这里,我们使用高分辨率地形来分析一系列与弯曲裂谷隆起有关的更新世新兴海洋阶地的3D几何形状。我们将此陆上数据集与海上地震数据整合在一起,以提供裂谷弯曲变形的概要视图。这使我们可以得出过去610 ka的主断层平均滑移率为4.5–9.0 mm·yr −1 ,抬升/沉降比为1:1.1–2.4。我们使用3层和5层岩石圈尺度有限元模型重现了观察到的挠曲模式。建模结果表明,观察到的弹性挠曲是由沿弹性上地壳中40-60°平面法向断层的同震滑动产生的,然后是在基底下地壳或上地幔内部发生的地震后粘性松弛。我们建议这种机制可能代表大陆岩石圈的快速局部扩展。

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