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首页> 外文期刊>Bulletin of the Seismological Society of America >Earthquake Magnitude and Lg Q Variations between the Grenville and Northern Appalachian Geologic Provinces of Eastern Canada
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Earthquake Magnitude and Lg Q Variations between the Grenville and Northern Appalachian Geologic Provinces of Eastern Canada

机译:加拿大东部的格伦维尔和阿巴拉契亚北部地质省的地震级和LG Q变化

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摘要

This article assesses the ability of regionally specific, frequency-dependent crustal attenuation (1/Q) to reduce mean magnitude discrepancies between seismic stations in the northern Appalachian and Grenville provinces (NAP and GP) of Canada. Lg Q(f) is an important parameter in ground-motion models used in probabilistic seismic hazard analysis. Discrepancies in regional magnitude estimates have long been noted to exist between stations in the two provinces for common event origins. Such discrepancies could arise from systematic site condition variations between the geologic provinces or from varying crustal attenuative properties. To evaluate the effect of frequency-dependent anelastic attenuation, Lg Q(f) on estimated magnitudes, we analyze Lg amplitudes from > 6000 waveforms recorded by Grenville and northern Appalachian receivers from 420 natural earthquakes of M-N magnitude 3-5.6. Waveform analysis is strictly limited to analystreviewed, vertical-component waveforms in which Lg is clearly identified, ensuring that the datasets exhibit dominant, high-frequency energy in the Lg velocity window. Lg Q(f) is found to be higher in the GP than in the northern Appalachians. In the Grenville, Q(f) = 761( +/- 145)(f0.25( +/- 0.014)), and in the northern Appalachians, attenuation is higher: Q(f) = 506( +/- 172)(f0.33( +/- 0.310)). Earthquake magnitude determined using the peak amplitude of the Lg phase (m(bLg)) for eastern Canada is corrected to incorporate the frequency-dependent, regionally specific Lg Q(f) determined in this study. Using the new Lg Q(f) values diminishes and nearly resolves magnitude discrepancies between the provinces. Correcting regional magnitude discrepancies between provinces is critical for reliable regional seismic hazard estimates because magnitude error in a particular region could lead to increased uncertainty in seismic hazard models.
机译:本文评估了区域特定,频率依赖的地壳衰减(1 / Q),以减少加拿大北阿巴拉契亚州和格林维尔省(NAP和GP)的地震站之间的平均数量差异。 LG Q(F)是用于概率地震危害分析的地面运动模型中的重要参数。在普通事件起源的两省的电台之间,区域幅度估计中的差异已经存在差异。从地质省份或不同的地壳衰减性质之间的系统部位条件变化可能出现这种差异。为了评估频率依赖性Anelastic衰减的影响,LG Q(F)对估计大小的影响,从Grenville和Northals Appalachian接收器记录的LG幅度从M-N幅度3-5.6的420个自然地震中分析了来自Grenville和Northals Appalachian接收器的6000波形。波形分析严格限于分析,其中清楚地识别出LG的垂直分量波形,确保数据集在LG速度窗口中表现出显性,高频能量。在GP中发现LG Q(F)比北阿巴拉契亚人更高。在Grenville,Q(F)= 761(+/- 145)(F0.25(+/- 0.014))和在北阿巴拉契亚人,衰减更高:Q(f)= 506(+/- 172) (F0.33(+/- 0.310))。使用用于加拿大东部的LG相位(M(BLG))的峰值幅度确定的地震幅度被校正以结合本研究中确定的频率依赖性区域特异性LG Q(F)。使用新的LG Q(F)值会降低,几乎解决了各省之间的幅度差异。纠正省份之间的区域数量差异对于可靠的区域地震危害估计是至关重要的,因为特定区域中的幅度误差可能导致地震危险模型中的不确定性增加。

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