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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Constraining the strength of megathrusts from fault geometries and application to the Alpine collision zone
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Constraining the strength of megathrusts from fault geometries and application to the Alpine collision zone

机译:限制巨大的巨大力量与故障几何形状的力量和应用于高山碰撞区

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Using Coulomb wedge solutions, we show that the effective strength of megathrusts (mu(b)') can be determined from the geometry of out-of-sequence thrusts cutting through an accretionary or orogenic wedge. The method is first tested on central Chilean margin for which it yields a frictional strength of mu(b)' = 0.053 (+0.043/-0.024). The inferred value agrees well with previous strength estimates and with the tectonic response of the central Chilean wedge to 2010 M-w 8.8 Maule earthquake. We then use the approach to constrain the strength of the collision megathrust of the central European Alps similar to 30-20 million years ago. We find that the collision megathrust had a strength of mu(b)' = 0.065 (+0.035/0.026), which is similarly low than the strength of subduction megathrusts. The result is integrated into a static force balance model to examine potential implications of a weak megathrust for the Alpine orogeny. The model results suggest that the Alpine megathrust supported a mean maximum elevation of similar to 2,000 m and that growth of the wedge up to this elevation supported a switch from contractional to extensional tectonics in the interior of the Alps around 20 Ma. Finally, using the example of the Himalayas, we show how the strength of megathrusts may be also derived from the geometry of crustal ramps, which provides a valuable alternative if details on out-of-sequence thrusts are missing. (C) 2017 Elsevier B.V. All rights reserved.
机译:使用Coulomb楔形溶液,我们表明Megathrusts(MU(B)')的有效强度可以从序列异或造成逆转楔的序列外的几何形状确定。该方法首先在中央智利边缘测试,其产生摩尔(B)'= 0.053(+ 0.043 / -0.024)的摩擦强度。推断价值与以前的强度估计和中央智利楔对2010 M-W 8.8 Maule地震的构造反应吻合良好。然后,我们使用这种方法限制中欧阿尔卑斯山脉的碰撞巨大的力量,类似于30-200万年前。我们发现碰撞Megathrust具有Mu(b)'= 0.065(+ 0.035 / 0.026)的强度,这与俯冲巨头的强度同样低。结果集成到静态力平衡模型中,以检查弱巨大的巨大洋葱畸形的潜在影响。模型结果表明,高山巨头支持的平均最大高度与2,000米相似,楔形到该高度的增长支持从阿尔卑斯山内部的宽容到20 mA的延伸构造的开关。最后,利用喜马拉雅山的示例,我们展示了巨大的强度也可以从地壳坡道的几何形状得出,如果缺少序列外推的细节,则提供有价值的替代方案。 (c)2017年Elsevier B.V.保留所有权利。

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