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首页> 外文期刊>Geophysical Research Letters >Fault zone properties affecting the rupture evolution of the 2009 (M w 6.1) L'Aquila earthquake (central Italy): Insights from seismic tomography
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Fault zone properties affecting the rupture evolution of the 2009 (M w 6.1) L'Aquila earthquake (central Italy): Insights from seismic tomography

机译:断层带性质影响2009年拉奎拉地震(M 6.1)(意大利中部)的破裂演化:地震层析成像的见解

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We have inverted P- and S-wave travel times from seismograms recorded by a dense local network to infer the velocity structure in the crustal volume where the April 6th 2009 main shock nucleated. The goal is to image local variations of P-wave velocity and Poisson ratio along the main shock fault zone for interpreting the complexity of the rupture history. The initial stages of the mainshock rupture are characterized by an emergent phase (EP) followed by an impulsive phase (IP) 0.87 s later. The EP phase is located in a very high V _P and relatively low Poisson ratio region. The IP phase marks the beginning of the large moment release and is located outside the low volume. The comparison between the spatial variations of V_P and Poisson ratio within the main shock nucleation volume inferred in this study with the rupture history imaged by inverting geophysical data allows us to interpret the delayed along-strike propagation in terms of heterogeneity of lithology and material properties.
机译:我们从密集的本地网络记录的地震图中反转了P波和S波的传播时间,以推断2009年4月6日主震成核的地壳体积的速度结构。目的是对沿主震断裂带的纵波速度和泊松比的局部变化进行成像,以解释破裂历史的复杂性。主震破裂的初始阶段的特征是出现阶段(EP),随后是冲动阶段(IP)0.87 s。 EP相位于非常高的V_P和相对较低的泊松比区域。 IP阶段标志着大力矩释放的开始,并且位于小音量之外。本研究推断的主震成核体积内的V_P和泊松比的空间变化与通过反演地球物理数据成像的破裂历史之间的比较使我们能够从岩性和材料属性的异质性方面解释延缓的沿走向传播。

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