使用连续运行的GNSS站进行S波探测:两个Mw 7.1级地震事件的案例研究

Vassiliki Krey, Iordanis Galanis, V. Zacharis, M. Tsakiri
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引用次数: 0

摘要

本文提出了一种分析地震震中周边连续运行GNSS台站位置时间序列的方法,目的是探测二次地震波。具体地说,利用联安援助团在南加州和阿拉斯加地区运营的14个全球导航卫星系统站的5个Ηz定位数据,分别观测了两个矩级为7.1的不同地震事件。所描述的方法分为三个步骤:旋转位置分量,使用卡尔曼滤波器对时间序列进行噪声滤波,并使用移动平均线来统计显示s波引起的最大位移发生的时间点。该方法在统计上证明了地质灾害在连续运行的观测站的位置时间序列中产生的运动的存在,此外,它还表明了事件的确切时间。该方法可用于地震影响地区连续GNSS台站的位移测试,也可用于地震波传播速度和方向的推断。
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S‐Wave detection using continuously operated GNSS stations: A case study of two Mw 7.1 earthquake events
This study presents a method developed to analyze the position timeseries of continuously operated GNSS stations located in the area around the epicenter of an earthquake, aiming at the detection of secondary seismic waves. Specifically, 5 Ηz positioning data from 14 GNSS stations operated by UNAVCO were used, located in the areas of Southern California and Alaska, for two distinct earthquake events of a 7.1 moment magnitude each. The method described follows three steps: rotation of the position components, noise filtering of timeseries using Kalman’s filter and the use of a moving average to statistically indicate the point of time in which the maximum displacement induced by the S-wave takes place. This method statistically proves the existence of a motion generated from a geohazard in a position timeseries of continuously operated station(s) of interest and, in addition, it indicates the exact time of the incident. The method can be employed in testing for displacement of continuous GNSS stations in areas affected by an earthquake, as well as for generating conclusions on the velocity and direction of seismic waves’ propagation.
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