首页> 外文会议>OCEANS 2016 MTS/IEEE Monterey >On the role of frequency dispersion on the trans-pacific tsunamis: Study of the 2010 and 2015 Chilean tsunamis
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On the role of frequency dispersion on the trans-pacific tsunamis: Study of the 2010 and 2015 Chilean tsunamis

机译:关于频率色散在跨太平洋海啸中的作用:2010年和2015年智利海啸的研究

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The trans-pacific propagation of the 2010 and 2015 Chilean tsunamis have been simulated by resolving both the Saint-Venant and the Boussinesq equations, these latter equations taking into account the frequency dispersion of waves. Numerical results show that the frequency dispersion simulation must be considered to reproduce the wave heights and arrival times recorded by several DART buoys in the Pacific Ocean. Several grid resolutions have been tested using either the Saint-Venant or the Boussinesq model (10', 5' and 2'). Only the Saint-Venant simulation at a 5' resolution and the Boussinesq simulation at a 2' resolution allow to reproduce the amplitudes and arrival times of the first waves. Numerical results indicate that frequency dispersion has a significant impact on the computed waveforms and suggest that the Saint-Venant code generates numerical dispersion similar to the physical frequency dispersion. It has been confirmed by one dimensional sensitivity tests. By comparing both events (2010 and 2015), we show that the frequency dispersion is stronger for the second event and it has been confirmed by the analysis of the Absolute Pressure Gages KSR1 and MRT1 spectrograms at some 17000 km from the source. Indeed, the main wave energy is contained in the first waves for the 2010 events and in the following waves for the 2015 event. Nevertheless, for the 2010 event, we also detect some late arrival waves at the APG KSR1, three hours after the first arrival time, with energy only two times lower than the first wave one.
机译:通过解析Saint-Venant方程和Boussinesq方程,模拟了2010年和2015年智利海啸的跨太平洋传播,这些方程考虑了波的频率色散。数值结果表明,必须考虑频散仿真,以再现太平洋中多个DART浮标记录的波高和到达时间。已使用Saint-Venant或Boussinesq模型(10',5'和2')测试了几种网格分辨率。只有以5'分辨率进行的Saint-Venant模拟和以2'分辨率进行的Boussinesq模拟才能再现第一波的振幅和到达时间。数值结果表明,频率色散对计算波形有显着影响,并表明Saint-Venant代码产生的数值色散与物理频率色散相似。一维敏感性测试已经证实了这一点。通过比较这两个事件(2010年和2015年),我们发现第二个事件的频率色散更强,并且已通过分析距震源约17000 km处的绝对压力计KSR1和MRT1频谱图得到了证实。确实,主波能量包含在2010年赛事的前几波中,以及2015年赛事的后几波中。尽管如此,对于2010年的赛事,我们还在APG KSR1探测到一些较晚的到达波,距第一次到达时间晚了三个小时,而能量仅比第一波低了两倍。

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