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Residual analysis of teleseismic P-wave energy magnitude estimates: inter- and intrastation variability

机译:远震p波能量大小估计的残差分析:站内和站内变化

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摘要

Computing the magnitude of an earthquake requires correcting for the propagation effects from the source to the receivers. This is often accomplished by performing numerical simulations using a suitable Earth model. In this work, the energy magnitude Me is considered and its determination is performed using theoretical spectral amplitude decay functions over teleseismic distances based on the global Earth model AK135Q. Since the high frequency part (above the corner frequency) of the source spectrum has to be considered in computing Me, the influence of propagation and site effects may not be negligible and they could bias the single station Me estimations. Therefore, in this study we assess the inter- and intrastation distributions of errors by considering the Me residuals computed for a large data set of earthquakes recorded at teleseismic distances by seismic stations deployed worldwide. To separate the inter- and intrastation contribution of errors, we apply a maximum likelihood approach to the Me residuals. We show that the interstation errors (describing a sort of site effect for a station) are within ±0.2 magnitude units for most stations and their spatial distribution reflects the expected lateral variation affecting the velocity and attenuation of the Earth's structure in the uppermost layers, not accounted for by the 1-D AK135Q model. The variance of the intrastation error distribution (describing the record-to-record component of variability) is larger than the interstation one (0.240 against 0.159), and the spatial distribution of the errors is not random but shows specific patterns depending on the source-to-station paths. The set of coefficients empirically determined may be used in the future to account for the heterogeneities of the real Earth not considered in the theoretical calculations of the spectral amplitude decay functions used to correct the recorded data for propagation effects.
机译:计算地震的强度需要校正从震源到接收器的传播效应。这通常是通过使用合适的地球模型执行数值模拟来完成的。在这项工作中,考虑了能量大小Me,并使用基于整体地球模型AK135Q的理论地震幅度在远震距离上的衰减函数进行了确定。由于在计算Me时必须考虑源频谱的高频部分(高于拐角频率),因此传播和站点效应的影响可能不可忽略,并且它们可能会使单站Me估计产生偏差。因此,在这项研究中,我们通过考虑为世界范围内部署的地震台站在远震距离处记录的大型地震数据集计算的Me残差,来评估站内和站内误差的分布。为了区分站间误差和站内误差,我们对Me残差应用了最大似然法。我们表明,大多数站点的站点间误差(描述站点的某种站点效应)均在±0.2数量级单位内,并且它们的空间分布反映了预期的横向变化,该变化会影响最上层的地球结构的速度和衰减,而不是由一维AK135Q模型解决。站内误差分布的方差(描述了记录之间的差异性)大于站间误差(0.240对0.159),误差的空间分布不是随机的,而是根据源而显示特定的模式-到站路径。根据经验确定的这组系数可以在将来用于解决现实地球的异质性问题,该异质性在用于校正记录数据的传播效应的频谱幅度衰减函数的理论计算中没有考虑。

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