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Inversion of Source Parameters for Moderate Earthquakes Using Short-Period Teleseismic P Waves

机译:利用短时远震P波反演中等地震震源参数

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摘要

In this paper, we introduce a new method for estimating the source parameters of moderate earthquakes (M_w ~5.0) by modeling short-period teleseismic waveforms. This method uses a grid-search algorithm to minimize misfits between observed data and synthetic seismograms in depth, magnitude, and mechanism domain in a relative high-frequency range of 0.8-2.0 Hz, similar to the traditional cut-and-paste method used in regional modeling (ZHU and HELMBERGER, Bull Sesimol Soc Am 86:1634-1641, 1996). In this frequency range, a significant challenge is determining the initial P-wave polarity because of a low signal-to-noise ratio (SNR). Therefore we first determine source properties for a master earthquake with a relative strong SNR. Both the travel time and amplitude corrections are developed relative to the reference 1D model along each path used in inverting the master event. We then applied these corrections to other earthquakes clustered in the same area to constrain the initial P polarities. Thus the focal mechanisms can be determined reasonably well. We inverted focal mechanisms for a small set of events beneath Qeshm Island in southern Iran and demonstrate the importance of radiation pattern at short periods.
机译:本文介绍了一种通过对短周期远震波形建模来估算中度地震震源参数的新方法(M_w〜5.0)。此方法使用网格搜索算法,以在0.8-2.0 Hz的相对高频范围内,在深度,幅度和机制域上最小化观测数据与合成地震图之间的失配,这与传统的剪切粘贴方法相似。区域建模(ZHU and HELMBERGER,Bull Sesimol Soc Am 86:1634-1641,1996)。在此频率范围内,由于信噪比(SNR)低,确定初始P波极性是一项重大挑战。因此,我们首先确定具有相对强SNR的主震的震源特性。相对于参考1D模型,沿着用于反转主事件的每个路径,都开发了行进时间和幅度校正。然后,我们将这些校正应用于聚集在同一区域的其他地震,以约束初始P极性。因此,可以合理地确定焦点机制。我们反转了伊朗南部格什姆岛下方一小撮事件的聚焦机制,并证明了短期辐射模式的重要性。

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