首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Constraints on fault and crustal strength of the Main Ethiopian Rift from formal inversion of earthquake focal mechanism data
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Constraints on fault and crustal strength of the Main Ethiopian Rift from formal inversion of earthquake focal mechanism data

机译:地震局灶性机制数据正式反演的主要埃塞俄比亚裂谷的故障和地壳强度约束

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摘要

We evaluate the frictional strength of seismogenic faults in the Main Ethiopian Rift (MER) by inverting the available, well-constrained earthquake focal mechanisms. The regional stress field is given by - 119.6 degrees/77.2 degrees, 6.2 degrees/7.6 degrees, and 97.5 degrees/10.2 degrees for trend/plunge of sigma(1), sigma(2) and sigma(3), respectively agrees well with previous fault kinematic and focal mechanism inversions. We determine the coefficient of friction, mu, for 44 seismogenic faults by assuming the pore pressure to be at hydrostatic conditions. Slip on 36 seismogenic faults occurs with is mu = 0.4. Slip on the remaining eight faults is possible with low mu. In general, the coefficient of friction in the MER is compatible with a value of mu of 0.59 +/- 0.16 (2 sigma standard deviation). The shear stresses range from 16 to 129 MPa, is similar to crustal shear stress observed in extensional tectonic regimes and global compilations of shear stresses from major fault zones. The maximum shear stress is observed in the ductile crust, below the seismologically determined brittle-ductile transition (BDT) zone. Below the BDT, the crust is assumed to be weak due to thermal modification and/or high pore fluid pressure. Our results indicate linearly increasing mu and shear stress with depth. We argue that in the MER upper crust is strong and deforms according to Coulomb frictional-failure criterion.
机译:通过反转可用的良好的地震焦点机制,我们评估了主要的埃塞俄比亚裂口(MER)中发震断层的摩擦力量。区域应力场由 - 119.6度/ 77.2度,6.2度/ 7.6度,97.5度/ 10.6度,潮流/暴跌(1),Sigma(2)和Sigma(3)分别同意以前的故障运动和焦点机制反转。我们通过假设孔隙压力在静水压条件下,确定摩擦系数mu,44个发酵断层。在36次上肌原断层上滑动是mu& = 0.4。低亩,可以在剩下的八个断层上滑动。通常,MER中的摩擦系数与MU的摩擦系数兼容0.59 +/- 0.16(2秒标准偏差)。剪切应力范围为16至129MPa,类似于在延伸构造方案中观察到的地壳剪切应力和来自主要断层区域的全局剪切应力的汇编。在延性地壳中观察到最大剪切应力,低于地震测定的脆性韧性转变(BDT)区。在BDT下方,由于热改性和/或高孔隙流体压力,假设地壳被假定弱。我们的结果表明用深度线性增加亩和剪切应力。我们认为,在MEL上层地壳是强烈的,并根据库仑摩擦破坏标准变形。

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