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Detection of Regional Phases of Seismic Body Waves Using an Array of Three-Component Sensors

机译:使用三分量传感器阵列检测地震体波区域相位

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A small-aperture seismic array consisting of seven three-component seismometers carried out continuous measurements of regional seismicity in a selected area of the Nizhni Novgorod nuclear power plant during four months of 2013. Automatic signal detection using beamforming was applied separately for each motion component. Two horizontal components were transformed into radial and transverse components for the given values of the velocity and azimuth of the plane wave front. We have investigated the dependence of the coherence of microseismic noise on frequency, azimuth, and slowness, as well as determining the level of cross-correlation between signals on separate channels in order to estimate expected improvement in the signal-to-noise ratio, which is crucial for signal detection. Most signals detected by the seismic array from regional sources are associated with quarry blasts. Using repetitive explosions at seven quarries, we have quantitatively estimated and compared the increase in detection efficiency of regional seismic phases using a three-component small aperture seismic array and a subarray of vertical sensors. Horizontal sensors showed a higher efficiency in the detection of transverse waves, while the subarray of vertical sensors missed S-waves from certain events. For one of the nearby quarries, the vertical subarray missed up to 25% of events (5 of 20). The results of the investigation point to the need for the use of three-component seismic arrays for the study of regional seismicity.
机译:由七个三分量地震仪组成的小孔径地震阵列在2013年的四个月内对下诺夫哥罗德核电厂的选定区域进行了区域地震活动的连续测量。对每个运动分量分别应用了使用波束成形的自动信号检测。对于平面波前的速度和方位角的给定值,将两个水平分量转换为径向分量和横向分量。我们已经研究了微震噪声相干性对频率,方位角和慢度的依赖性,并确定了不同通道上信号之间的互相关水平,以便估计信噪比的预期改善,对于信号检测至关重要。地震阵列从区域来源检测到的大多数信号与采石场爆炸有关。使用在七个采石场的重复爆炸,我们定量估计并比较了使用三分量小孔径地震阵列和垂直传感器子阵列的区域地震相探测效率的提高。水平传感器在检测横波方面显示出更高的效率,而垂直传感器的子阵列错过了某些事件中的S波。对于附近的一个采石场,垂直子阵列最多遗漏了25%的事件(20个事件中的5个)。调查结果表明需要使用三分量地震阵列来研究区域地震活动。

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