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Time-Frequency Characteristics of Tsunami Magnetic Signals from Four Pacific Ocean Events

机译:来自四次太平洋事件的海啸磁信号的时频特性

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The recent deployment of highly sensitive seafloor magnetometers coinciding with the deep solar minimum has provided excellent opportunities for observing tsunami electromagnetic signals. These fluctuating signals (periods ranging from 10-20 min) are generally found to be within 1 nT and coincide with the arrival of the tsunami waves. Previous studies focused on tsunami electromagnetic characteristics, as well as modeling the signal for individual events. This study instead aims to provide the time-frequency characteristics for a range of tsunami signals and a method to separate the data's noise using additional data from a remote observatory. We focus on four Pacific Ocean events of varying tsunami signal amplitude: (1) the 2011 Tohoku, Japan event (M9.0), (2) the 2010 Chile event (M8.8), (3) the 2009 Samoa event (M8.0) and, (4) the 2007 Kuril Islands event (M8.1). We find possible tsunami signals in high-pass filtered data and successfully isolate the signals from noise using a cross-wavelet analysis. The cross-wavelet analysis reveals that the longer period signals precede the stronger, shorter period signals. Our results are very encouraging for using tsunami magnetic signals in warning systems.
机译:高灵敏度海底磁力计的最新部署与日照最低值相吻合,为观测海啸电磁信号提供了绝佳的机会。通常发现这些波动信号(周期在10到20分钟之间)在1 nT以内,并且与海啸的到来一致。先前的研究集中于海啸电磁特性,以及对单个事件的信号建模。相反,本研究的目的是为一定范围的海啸信号提供时频特性,以及一种使用来自远程天文台的附加数据来分离数据噪声的方法。我们关注于四个海啸信号振幅变化的太平洋事件:(1)2011年日本东北地区事件(M9.0),(2)2010年智利事件(M8.8),(3)2009年萨摩亚事件(M8) .0)和(4)2007年千岛群岛事件(M8.1)。我们在高通滤波后的数据中发现了可能发生的海啸信号,并使用交叉小波分析成功地将信号与噪声隔离。交叉小波分析表明,较长周期的信号先于较强,较短周期的信号。对于在预警系统中使用海啸磁信号,我们的结果令人鼓舞。

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