首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Magnitudes and moment-duration scaling of low-frequency earthquakes beneath southern Vancouver Island
【24h】

Magnitudes and moment-duration scaling of low-frequency earthquakes beneath southern Vancouver Island

机译:温哥华岛南部低频地震的震级和矩时标

获取原文
获取原文并翻译 | 示例
           

摘要

We employ 130 low-frequency earthquake (LFE) templates representing tremor sources on the plate boundary below southern Vancouver Island to examine LFE magnitudes. Each template is assembled from hundreds to thousands of individual LFEs, representing over 269,000 independent detections from major episodic-tremor-and-slip (ETS) events between 2003 and 2013. Template displacement waveforms for direct P and S waves at near epicentral distances are remarkably simple at many stations, approaching the zero-phase, single pulse expected for a point dislocation source in a homogeneous medium. High spatiotemporal precision of template match-filtered detections facilitates precise alignment of individual LFE detections and analysis of waveforms. Upon correction for 1-D geometrical spreading, attenuation, free surface magnification and radiation pattern, we solve a large, sparse linear system for 3-D path corrections and LFE magnitudes for all detections corresponding to a single-ETS template. The spatiotemporal distribution of magnitudes indicates that typically half the total moment release occurs within the first 12-24h of LFE activity during an ETS episode when tidal sensitivity is low. The remainder is released in bursts over several days, particularly as spatially extensive rapid tremor reversals (RTRs), during which tidal sensitivity is high. RTRs are characterized by large-magnitude LFEs and are most strongly expressed in the updip portions of the ETS transition zone and less organized at downdip levels. LFE magnitude-frequency relations are better described by power law than exponential distributions although they exhibit very high b values approximate to 5. We examine LFE moment-duration scaling by generating templates using detections for limiting magnitude ranges (M-W<1.5, M(W)2.0). LFE duration displays a weaker dependence upon moment than expected for self-similarity, suggesting that LFE asperities are limited in fault dimension and that moment variation is dominated by slip. This behavior implies that LFEs exhibit a scaling distinct from both large-scale slow earthquakes and regular seismicity.
机译:我们使用130个低频地震(LFE)模板表示南温哥华岛以下板块边界上的震源,以检查LFE的大小。每个模板由成百上千个单独的LFE组装而成,代表2003年至2013年间重大重大震颤和滑移(ETS)事件的超过269,000次独立检测。在近震中心距离处直接P波和S波的模板位移波形非常明显在许多站点都非常简单,接近均质介质中点位错源所期望的零相位单脉冲。模板匹配过滤的检测具有很高的时空精度,有助于单个LFE检测的精确对齐和波形分析。在对一维几何扩展,衰减,自由表面放大率和辐射方向图进行校正后,我们为3D路径校正和与单个ETS模板对应的所有检测的LFE量值解决了一个大型的稀疏线性系统。幅度的时空分布表明,总潮气释放的一半通常发生在潮汐敏感度较低的ETS事件发生期间的LFE活动的前12-24小时内。其余部分在几天内爆发,特别是在空间上快速震颤逆转(RTR)期间,潮汐敏感性很高。 RTR具有大幅度LFE的特征,并且在ETS过渡区的上倾部分表现得最为强烈,而在下倾水平则组织性较差。 LFE幅值-频率关系通过幂定律比指数分布更好地描述,尽管它们显示出非常高的b值(近似于5)。 2.0)。 LFE持续时间显示出对矩的依赖性比对自相似性的期望弱,这表明LFE凹凸在断层尺寸上受到限制,并且矩变化主要由滑动引起。此行为表明,LFE的标度不同于大规模慢地震和常规地震活动。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号