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Superficial simplicity of the 2010 El Mayorg-Cucapah earthquake of Baja California in Mexico

机译:墨西哥下加利福尼亚州2010年El Mayor-Cucapah地震的表面简单性

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The geometry of faults is usually thought to be more complicated at the surface than at depth and to control the initiation, propagation and arrest of seismic ruptures~(1-6). The fault system that runs from southern California into Mexico is a simple strike-slip boundary: the west side of California and Mexico moves northwards with respect to the east. However, the M_w 7.2 2010 El Mayorg-Cucapah earthquake on this fault system produced a pattern of seismic waves that indicates a far more complex source than slip on a planar strike-slip fault. Here we use geodetic, remote-sensing and seismological data to reconstruct the fault geometry and history of slip during this earthquake. We find that the earthquake produced a straight 120-km-long fault trace that cut through the Cucapah mountain range and across the Colorado River delta. However, at depth, the fault is made up of two different segments connected by a small extensional fault. Both segments strike N130 °E, but dip in opposite directions. The earthquake was initiated on the connecting extensional fault and 15s later ruptured the two main segments with dominantly strike-slip motion. We show that complexities in the fault geometry at depth explain well the complex pattern of radiated seismic waves. We conclude that the location and detailed characteristics of the earthquake could not have been anticipated on the basis of observations of surface geology alone.
机译:通常认为断层的几何形状在地表要比在深度复杂,并且要控制地震破裂的发生,传播和阻止(1-6)。从加利福尼亚南部延伸到墨西哥的断层系统是一个简单的走滑边界:加利福尼亚和墨西哥的西侧相对于东部向北移动。但是,在该断层系统上发生的2010年梅奥7.2级El Mayorg-Cucapah地震产生了一系列地震波,表明震源比平面走滑断层上的滑动要复杂得多。在这里,我们使用大地测量,遥感和地震数据重建地震期间的断层几何形状和滑动历史。我们发现,地震产生了一条直的120公里长的断层迹线,该断层迹线穿过了库卡帕山脉和科罗拉多河三角洲。但是,从深处看,断层是由一个小的伸展断层连接的两个不同部分组成。两段都达到N130°E,但方向相反。地震是在连接的伸展断层上引发的,然后15秒钟之后,两个主要部分以主要的走滑运动破裂了。我们表明,深部断层几何结构的复杂性很好地解释了辐射地震波的复杂模式。我们得出的结论是,仅凭地面地质观测资料就无法预测地震的位置和详细特征。

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