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The robustness of seismic moment and magnitudes estimated using spectral analysis

机译:利用谱分析估计地震矩和震级的鲁棒性

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We present an assessment of how microseismic moment magnitude, M_w, estimates vary with the method and parameters used to calculate seismic moment. This is an important topic for operators and regulators who require good magnitude estimates when monitoring induced seismicity. It is therefore imperative that these parties know and understand what errors exist in given magnitude values, something that is poorly reported. This study concentrates on spectral analysis techniques and compares M_w computed in the time and frequency domains. Using recordings of M_w > -1.5 events at Cotton Valley, east Texas, the maximum discrepancy between M_w estimated using the different methods is 0.6 units, a significant variation. By adjusting parameters in the M_w calculation we find that the radiation pattern correction term can have the most significant effect on M_w, generally up to 0.8 units. Following this investigation we make a series of recommendations for estimating microseismic M_w using spectral methods. Noise should be estimated and removed from recordings and an attenuation correction should be applied. The spectral level can be measured by spectral fitting or taken from the low frequency level. Significant factors in obtaining reliable microseismic M_w estimates include using at least four receivers recording at ≥1000 Hz and making radiation pattern corrections based on focal mechanism solutions, not average values.
机译:我们对微地震矩大小M_w的估计值随用于计算地震矩的方法和参数的变化进行评估。对于在监控感应地震活动时需要进行良好震级估计的运营商和监管机构来说,这是一个重要的主题。因此,当事各方必须了解并理解在给定的幅度值中存在哪些误差,这是很少报告的。这项研究集中于频谱分析技术,并比较了在时域和频域中计算的M_w。使用德克萨斯州东部棉谷M_w> -1.5事件的记录,使用不同方法估算的M_w之间的最大差异为0.6个单位,这是一个很大的差异。通过调整M_w计算中的参数,我们发现辐射方向图校正项对M_w的影响最大,通常可达0.8个单位。经过这项调查,我们提出了一系列建议,以使用频谱方法估算微震M_w。应该估计噪声并将其从录音中去除,并应进行衰减校正。频谱水平可以通过频谱拟合来测量或从低频水平中获取。获得可靠的微地震M_w估计值的重要因素包括至少使用四个以≥1000 Hz记录的接收器,并根据聚焦机制解而不是平均值进行辐射方向图校正。

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