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On the Leading Negative Phase of Major 2010-2014 Tsunamis

机译:关于2010-2014年海啸重大事件的领先负阶段

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Time series observations from instruments sited in the deep ocean and along coastal margins of the Pacific during major tsunami events in the years since 2010 were systematically processed. Examination of these records during four events, 2010 Chile (Maule), 2011 East Japan (Tohoku), 2012 Haida Gwaii and 2014 Chile (Iquique), show the prevalence of a small negative phase leading the first major positive tsunami wave, a phase that is not typically reproduced by current modelling approaches. We present leading negative phase signatures in examples from the more than 40 deep-ocean bottom pressure and approximately 200 tide gauge records investigated for this study. High sampling rate time series (15-s) were given greater weight in our investigation than the more readily available 1-min series. Careful investigation of tsunami arrival at each deep-ocean site highlights the role filtering techniques may play in misleading researchers or masking specific tsunami features such as the leading negative phase that is the basis of this study. The main focus of this investigation is to characterise the scale and repeatability of the phenomenon in support of recent similar findings rather than to provide a definitive explanation as to the cause. In general, our findings are in good agreement with and support the theoretical results of Watada et al. (J Geophys Res Solid Earth 119:4287-4310, 2014).
机译:自2010年以来的重大海啸事件中,对来自深海和太平洋沿岸边缘的仪器进行的时间序列观测得到了系统地处理。在2010年智利(Maule),2011年东日本(东北),2012年Haida Gwaii和2014年智利(Iquique)四个事件中对这些记录的检查表明,存在一个小的负相的发生率,该负相导致了第一次重大正海啸波。当前的建模方法通常不会复制它。在本研究中,我们从40多个深海底部压力和大约200个潮位计记录中的示例中,介绍了领先的负相位特征。在我们的研究中,高采样率时间序列(15-s)比更容易获得的1分钟序列具有更大的权重。仔细调查海啸到达每个深海站点的过程,可以凸显出过滤技术可能在误导研究人员或掩盖特定海啸特征(例如超前负相)中扮演的角色,这是本研究的基础。这项研究的主要重点是表征现象的规模和可重复性,以支持最近的类似发现,而不是对原因进行明确的解释。总的来说,我们的发现与Watada等人的理论结果非常吻合并得到了支持。 (J Geophys Res Solid Earth 119:4287-4310,2014)。

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