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A study on the uncertainties of the centroid depth of the 2013 Lushan earthquake from teleseimic body wave data

机译:基于远震体波数据的2013年庐山地震质心深度的不确定性研究

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Abstract Centroid depth of earthquakes is essential for seismic hazard mitigation. But, various studies provided different solutions for the centroid depth of the damaging 2013 Lushan earthquake, thus hindering further studies of the earthquake processes. To resolve its centroid depth and assess the uncertainties, we apply the teleseismic cut and paste method to invert for centroid depth with teleseismic body waves in the epicentral distance of 30°–90°. We performed the inversion for P waves only as well the case of both P and SH waves and found that both cases lead to depth solutions with difference less than 0.5?km. We also investigated the effects on depth inversion from azimuth gap of seismic stations, source duration, and corner frequency of filter. These various tests show that even azimuthal distribution of seismic stations is helpful for accurate depth inversion. It is also found that estimate of centroid depth is sensitive to source duration. Moreover, the depth is biased to larger values when corner frequency of low-pass filter is very low. The uncertainty in the velocity model can also generate some error in the depth estimation (~1.0?km).With all the above factors considered, the centroid depth of Lushan earthquake is proposed to be around 12?km, with uncertainty about 2?km.
机译:摘要地震的质心深度对于减轻地震灾害至关重要。但是,各种研究为2013年破坏性庐山地震的质心深度提供了不同的解决方案,从而阻碍了对地震过程的进一步研究。为了解决其质心深度并评估不确定性,我们采用远震剪切粘贴法在震中距30°–90°范围内用远震体波反演质心深度。我们仅对P波和SH波都进行了P波反演,发现这两种情况均导致深度解的差异小于0.5?km。我们还研究了地震台站方位间隙对深度反演的影响,震源持续时间和滤波器的转折频率。这些各种测试表明,即使地震台站的方位角分布也有助于准确的深度反演。还发现质心深度的估计对源持续时间敏感。此外,当低通滤波器的转折频率非常低时,深度会偏大。速度模型中的不确定性也会在深度估计中产生一些误差(〜1.0?km)。考虑到以上所有因素,建议庐山地震的质心深度约为12?km,不确定性约为2?km。 。

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