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High-resolution Mechanics of a Microearthquake Sequence

机译:微地震序列的高分辨率力学

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Unique data from microseismic (MS) and acoustic emission (AE) systems monitoring a common rock volume have been analyzed from the Underground Research LaBoratory in Canada. The two 16 sensor systems were installed to investigate stress-induced microcracking around clay and concrete bulkheads as part of the Tunnel Sealing Experiment. Single and double MS events are found to be spatially associated with clusters of between 19-86 higher frequency AE events. Each AE cluster is elongated with the longest axis between 15 and 50 cm. The AE events occurring before the associated MS event are termed foreshocks, and for two of the three analyzed AE clusters an acceleration in the AE frequency and cumulative magnitude occurs upto the time of the MS event, however with one AE cluster very few foreshocks are recorded, possibly indicating a more homogeneous failure plane. Time independent moment tensors were determined with the MS events showing significant deviatoric sources. The majority of the AE events have deviatoric mechanisms with a few crack opening and crack closure type events also determined. This study highlights the benefits of using small-scale seismic systems to investigate the temporal fracture mechanics of microcrack formation, and allows comparisons with larger more damaging seismicity.
机译:来自加拿大Underground Research LaBoratory的分析来自微震(MS)和声发射(AE)系统的独特数据,这些数据监测了常见的岩石体积。安装了两个16个传感器系统,以研究隧道密封实验中粘土和混凝土舱壁周围应力引起的微裂纹。发现单个和双重MS事件在空间上与19-86个较高频率AE事件之间的簇相关。每个AE簇被拉长,最长轴在15到50 cm之间。在关联的MS事件之前发生的AE事件称为前震,对于三个已分析的AE集群中的两个,直到MS事件发生之前,AE频率和累积幅度都发生了加速,但是,对于一个AE集群,记录的前震很少,可能表明故障平面更加均匀。确定了与时间无关的矩张量,其中MS事件显示出明显的偏斜源。大部分AE事件具有偏斜机理,同时也确定了一些裂纹打开和裂纹闭合类型的事件。这项研究突出了使用小型地震系统研究微裂纹形成的时间断裂力学的好处,并允许与更大破坏性的地震活动进行比较。

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