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Microseismic monitoring and analysis of induced seismicity source mechanisms in a retreating room and pillar coal mine in the Eastern United States

机译:美国东部某撤退室和立柱煤矿的微地震监测和诱发地震源机制分析

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A microseismic monitoring system was installed in an underground room and pillar coal mine in the Eastern United States to analyze the occurrence and characteristics of induced seismicity during the retreat of two panels in the mine. This study is the first microseismic monitoring effort at an underground coal mine in nearly 30years. During the retreat of the first panel, an array of eight uniaxial geophones, installed 10 ft. into the roof, recorded events and their magnitudes. The second panel was monitored using an array of twelve uniaxial geophones and two triaxial geophones, also installed 10 ft. into the roof. Comparing the results of these studies, it has been found that the magnitude of seismic events is minimally affected by immediate roof geology or depth of cover. However, it was observed in both studies that the rate at which seismic events occurred did vary with changing roof geology and depth of cover. Using the seismic data from the second panel retreat, focal mechanism solutions were generated for 50 hand-picked events in order to determine if the failure was in compression, tension, or shear. Results of the focal mechanism solutions show that stress relief resulting in dilational events occurs at significant depths, 150–200m in this case, beneath the active mining face.
机译:在美国东部的地下室和立柱煤矿中安装了微地震监测系统,以分析矿井中两个面板退缩期间诱发地震的发生和特征。这项研究是近30年来地下煤矿首次进行微地震监测。在第一个面板撤退期间,在屋顶上10英尺处安装了八个八轴单轴地震检波器,记录事件及其大小。第二个面板使用十二个单轴地震检波器和两个三轴地震检波器的阵列进行监控,两个检波器也安装在屋顶10英尺处。比较这些研究的结果,发现地震事件的程度受立即屋顶地质或覆盖深度的影响最小。但是,在两项研究中都观察到,地震事件发生的速率确实随着屋顶地质和覆盖深度的变化而变化。使用来自第二次小组撤退的地震数据,针对50个手工采摘事件生成了震源机制解,以确定破坏是由于压缩,拉伸还是剪切。震源机制解的结果表明,导致膨胀事件的应力释放发生在活跃开采面下方的重要深度(在这种情况下为150–200m)中。

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