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Fault Segmentation as Constraint to the Occurrence of the Main Shocks of the 2016 Central Italy Seismic Sequence

机译:断层分割对2016年意大利中部地震序列主震的影响

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We perform the finite-extent fault inversion of the three main events of the 2016 Central Italy seismic sequence using near-source strong motion records. We demonstrate that both earthquake nucleation and rupture propagation were controlled by segmentation of the (N)NW-(S)SE trending Quaternary normal faults. The first shock of the sequence (24 August, M-w 6.0) ruptured at the relay zone between the Laga Mts (LF) and the Cordone del Vettore (CVF) normal faults. The second shock (26 October, M-w 5.9) nucleated at a minor relay zone within the Mt. Vettore-Mt. Bove fault (VBF), while the third and largest one (30 October, M-w 6.5) initiated at the relay zone between the VBF and CVF, triggering the multiple rupture of the VBF, CVF, and probably LF. We show that this latter relay zone corresponds to the deeper, high-angle, fault zone of the Sibillini Mts cross structure, a thrust-ramp inherited from the Miocene-Pliocene contractional phase of the Apennines. This structure acted as a barrier to rupture propagation of the first two events thus defining an area of large stress concentration until it acted as the initiator of the rupture originating the largest M-w 6.5 event that crossed the barrier itself. We suggest that the young CVF have started to cut through the barrier acting as a soft-linkage between the two long-lived LF and VBF. The evidence that coseismic cumulative slip shows a maximum at the CVF, provided by both slip inversion and original surface rupture data, suggests that the CVF is growing faster than the adjacent faults.
机译:我们使用近源强运动记录对2016年意大利中部地震序列的三个主要事件进行了有限范围的断层反演。我们证明,(N)NW-(S)SE趋势第四纪正断层的分段控制了地震成核和破裂传播。序列的第一场地震(8月24日,M-w 6.0)在拉加山(LF)和维多尔山脉(CVF)正常断层之间的中继带破裂。第二次震荡(10月26日,M-w 5.9)在Mt内的一个小型中继带成核。韦托雷山。 Bove断层(VBF),而第三次也是最大的断层(10月30日,M-w 6.5)在VBF和CVF之间的中继带启动,触发了VBF,CVF以及可能的LF多次破裂。我们表明,后者的中继带对应于Sibillini Mts交叉结构的较深,高角度的断层带,这是从亚平宁山脉的中新世-上新世收缩相继承的推力斜坡。该结构充当前两个事件的破裂传播的屏障,因此定义了一个较大的应力集中区域,直到它充当破裂的发起者,引发了穿过屏障本身的最大M-w 6.5事件。我们建议年轻的CVF已经开始突破作为两个长期LF和VBF之间的软链接的障碍。由滑移反演和原始表面破裂数据提供的同震累积滑动在CVF处显示最大值的证据表明,CVF的生长速度快于邻近断层。

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