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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Earthquakes along the East African Rift System: A multiscale, system-wide perspective
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Earthquakes along the East African Rift System: A multiscale, system-wide perspective

机译:东非裂谷系统地震:多尺度,全系统视角

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摘要

On the basis of a comprehensive data set of precisely determined depths of 121 large to moderate-sized earthquakes along and near the entire East African Rift System (EARS), there are three distinct patterns in focal depths which seem to correlate with progressive stages in the development of the largest active rift in the world. First, away from both ends of the western, younger branch of the EARS, very large (M_w > 7) earthquakes occurred in the top 15 km of the crust where surficial expressions of rifting are yet to appear. Curiously, there are unusually deep aftershocks reaching down to 35 ± 3 km. Second, under well-developed but amagmatic rift segments, focal depths show a bimodal distribution, with peaks centered near depths of about 15 ± 5 km and 35 ± 5 km. This pattern is present both under the main axis of the EARS, where rift zone have lengths approaching 1000 km, and beneath rift units 10 times shorter in length. Underside reflections off the Moho indicate that at least part of the second peak in seismicity is due to mantle earthquakes down to 44 ± 4 km, attesting to high differential stress in the mantle lithosphere which is capable of accumulating seismogenic, elastic strain (the "jelly sandwich" rheology). Third, beneath magmatic segments of well-developed rifts, seismicity is largely confined to the upper 15 km of the crust as observed previously, akin to the pattern along mid-ocean ridges where plastic flow due to high temperature inhibits accumulation of shear stress deep in the lithosphere.
机译:根据精确确定的沿整个东非裂谷系统(EARS)及其附近的121次大至中型地震深度的综合数据集,震源深度中存在三种不同的模式,这些模式似乎与地震的进展阶段有关。世界上最大的活跃裂谷的发展。首先,远离EARS西部较年轻分支的两端,在地壳的顶部15 km发生了很大的地震(M_w> 7),那里尚未出现明显的裂谷现象。奇怪的是,有深达35±3 km的余震。其次,在发育良好但岩浆裂谷段下,震源深度显示出双峰分布,峰值集中在约15±5 km和35±5 km的深度附近。这种模式既出现在EARS的主轴线以下(裂谷带的长度接近1000 km),又出现在裂谷单元的下方,长度短了10倍。莫霍面的底部反射表明,地震活动第二高峰的至少一部分是由于地幔地震低至44±4 km,证明了地幔岩石圈中的高差应力能够累积发震的弹性应变(“胶质三明治”)。第三,在发育良好的裂谷的岩浆部分之下,地震活动如先前所观察到的那样主要局限于地壳的上部15 km,类似于沿洋中脊的模式,高温导致的塑性流动抑制了深部剪切应力的积累。岩石圈。

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