Atmospheric Pressure Waves Generated from Large Earthquakes, Tsunamis and Large Volcanic Eruptions

T. Mikumo
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引用次数: 2

Abstract

This report reviews various studies on atmospheric pressure waves that have been generated from large earthquakes, tsunamis, and large-scale volcanic eruptions. These waves described here include low-frequency acoustic and gravity waves (0.0008∼0.0166 Hz or its period 1∼20 min) and high to medium frequency (› 0.0166 Hz or its period ‹ 1 min) infrasonic air-waves. The low-frequency acoustic-gravity waves came from coseismic vertical ground deformation associated with two megathrust earthquakes, and sometimes from other large earthquakes and volcanic eruptions, which propagated to more than several thousand kilometers through the lower to part of the upper atmosphere. The waves that reached the upper atmosphere could cause traveling ionospheric disturbances and perturbations of total electron content. The higher frequency infrasounds also have often been observed after large earthquakes and volcanic eruptions, which traveled as air-waves propagating directly from the source, and also as air-waves coupled with traveling seismic Rayleigh waves. Small atmospheric perturbations have also been detected during propagation of tsunami waves caused secondarily by large submarine earthquakes. Theoretical waveform modeling has been made in some of the above cases, incorporating a realistic atmospheric temperature structure. It is expected that more detailed information about the source process of large earthquakes and volcanic eruptions could be extracted through the analysis of the waveforms recorded at a number of stations, including their maximum amplitudes, wave frequencies, duration times, directions of wave approach, and phase and group velocities.
大地震、海啸和大火山爆发产生的大气压力波
本报告回顾了关于由大地震、海啸和大规模火山爆发产生的大气压力波的各种研究。这里描述的这些波包括低频声波和重力波(0.0008 ~ 0.0166 Hz或其周期为1 ~ 20分钟)和高频至中频(0.0166 Hz或其周期为1分钟)次声波。低频声重力波来自与两次特大逆冲地震相关的同震垂直地面变形,有时也来自其他大地震和火山爆发,它们通过上层大气的下层和部分传播到几千公里以上。到达上层大气的波会引起电离层的扰动和总电子含量的扰动。在大地震和火山爆发后也经常观察到频率更高的次声,这些次声以直接从震源传播的空气波的形式传播,也以空气波与传播的地震瑞利波相结合的形式传播。在海底大地震次生引起的海啸波传播过程中,也发现了微小的大气扰动。在上述一些情况下,已经进行了理论波形建模,并结合了真实的大气温度结构。预期可以通过分析若干台站记录的波形,包括它们的最大振幅、波的频率、持续时间、波的接近方向以及相速度和群速度,来提取关于大地震和火山爆发的震源过程的更详细的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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