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Mechanism of the 2011 Tohoku-oki earthquake (Mw 9.0) and tsunami: Insight from seismic tomography

机译:2011年东北冲地震(Mw 9.0)和海啸的机理:地震层析成像的启示

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摘要

To clarify the generating mechanism of the 2011 Tohoku-oki earthquake (Mw 9.0) and the induced tsunami, we determined high-resolution tomographic images of the Northeast Japan forearc. Significant lateral variations of seismic velocity are visible in the megathrust zone, and most large interplate thrust earthquakes are found to occur in high-velocity (high-V) areas. These high-V zones may represent high-strength asperities at the plate interface where the subducting Pacific plate and the overriding Okhotsk plate are coupled strongly. A shallow high-V zone with large coseismic slip near the Japan Trench may account for the mainshock asperity of the 2011 Tohoku-oki earthquake. Because it is an isolated asperity surrounded by low-velocity patches, most stress on it was released in a short time and the plate interface became decoupled after the Mw 9.0 earthquake. Thus the overriding Okhotsk plate there was shot out toward the Japan Trench and caused the huge tsunami.
机译:为了弄清2011年东北冲地震(Mw 9.0)和诱发海啸的产生机理,我们确定了日本东北前臂的高分辨率断层图像。在巨型推力区中可以看到地震速度的明显横向变化,并且发现大多数板间推力地震发生在高速(高V)区域。这些高V区可能代表板界面处的高强度凹凸,俯冲的太平洋板块与上覆的鄂霍次克板块牢固地耦合在一起。日本海沟附近的浅高V带同震滑动较大,可能是2011年东北冲地震的主要震源。由于它是一个由低速斑块包围的孤立的粗糙物,因此在9.0兆瓦地震后,大部分应力都在短时间内被释放,板界面解耦。因此,那里最重要的鄂霍次克板块被射向了日本海沟,并引发了巨大的海啸。

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