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Monitoring Seismo-volcanic and Infrasonic Signals at Volcanoes: Mt. Etna Case Study

机译:监测火山的地震火山和次声信号:埃特纳案例研究

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摘要

Volcanoes generate a broad range of seismo-volcanic and infrasonic signals, whose features and variations are often closely related to volcanic activity. The study of these signals is hence very useful in the monitoring and investigation of volcano dynamics. The analysis of seismo-volcanic and infrasonic signals requires specifically developed techniques due to their unique characteristics, which are generally quite distinct compared with tectonic and volcano-tectonic earthquakes. In this work, we describe analysis methods used to detect and locate seismo-volcanic and infrasonic signals at Mt. Etna. Volcanic tremor sources are located using a method based on spatial seismic amplitude distribution, assuming propagation in a homogeneous medium. The tremor source is found by calculating the goodness of the linear regression fit (R ~2) of the log-linearized equation of the seismic amplitude decay with distance. The location method for long-period events is based on the joint computation of semblance and R ~2 values, and the location method of very long-period events is based on the application of radial semblance. Infrasonic events and tremor are located by semblance-brightness- and semblance-based methods, respectively. The techniques described here can also be applied to other volcanoes and do not require particular network geometries (such as arrays) but rather simple sparse networks. Using the source locations of all the considered signals, we were able to reconstruct the shallow plumbing system (above sea level) during 2011.
机译:火山产生各种地震-火山和次声信号,其特征和变化通常与火山活动密切相关。因此,这些信号的研究对于火山动力学的监测和研究非常有用。地震-火山和次声信号的分析由于其独特的特性而需要专门开发的技术,与构造地震和火山-构造地震相比,这些技术通常截然不同。在这项工作中,我们描述了用于检测和定位山中地震火山和次声信号的分析方法。埃特纳火山。假设在均质介质中传播,则使用基于空间地震振幅分布的方法来定位火山震源。通过计算地震振幅衰减随距离的对数线性化方程的线性回归拟合(R〜2)的优劣来找到震源。长周期事件的定位方法是基于相似度和R〜2值的联合计算,而超长事件的定位方法是基于径向相似度的应用。次声事件和震颤分别通过相貌亮度和基于相貌的方法进行定位。这里描述的技术也可以应用于其他火山,不需要特定的网络几何形状(例如阵列),而是需要简单的稀疏网络。使用所有考虑到的信号的源位置,我们能够在2011年期间重建浅层管道系统(海平面以上)。

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