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3-D finite-difference simulation of seismic fault zone waves—Application to the fault zone structure of the Mozumi-Sukenobu fault, central Japan—

机译:地震断裂带波的3D有限差分模拟—在日本中部Mozumi-Sukenobu断裂带的断裂带结构中的应用—

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Fault zone waves have the potential to be a powerful tool to reveal the fine structure of a fault zone down to the seismogenic depth. Seismic fault zone waves include head waves, trapped waves and direct body waves propagating in the fault zone. 3-D numerical simulation is necessary to interpret the waveforms in the presence of low-velocity zones with relatively complex fault structure. We computed finite difference (FD) synthetic seismograms to fit the seismograms of explosions, which contain frequencies up to 25 Hz, recorded by a linear seismometer array across the Mozumi-Sukenobu fault, central Japan. We find fault zone head waves, direct P waves propagating within the low-velocity zone and wave trains following the direct P waves associated with the fault for both observed and synthetic waveforms. Thus, modelling of fault zone waves is expected to determine details of complex fault zone structure.
机译:断层带波有可能成为揭示断层带精细结构直至震源深度的有力工具。地震断层带波包括在断层带传播的头波,陷波和直接体波。在具有相对复杂的断层结构的低速区域中,要解释波形,必须进行3-D数值模拟。我们计算了有限差分(FD)合成地震图,以适应爆炸的地震图,该爆炸图包含高达25 Hz的频率,由日本中部Mozumi-Sukenobu断层上的线性地震仪阵列记录。我们发现了断层带波,在低速带内传播的直接P波以及跟随与断层相关的直接P波的波列,用于观测波形和合成波形。因此,对断裂带波的建模有望确定复杂的断裂带结构的细节。

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