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Harmonic excitation of mantle Rayleigh waves by the 1991 eruption of Mount Pinatubo, Philippines

机译:1991年菲律宾Mount of Mount Mount of Mount Mount of Mount Mount Mination Mounted Mount Mount Mounta

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摘要

An unusually long (at least two hours) seismic wave train having periods of about 230 sec was recorded at many worldwide seismic stations during the major eruption of Mount Pinatubo in the Philippines on June 15, 1991. This wave train exhibits two sharp spectral peaks at 228 and 270 sec. The group velocity, phase velocity, and the particle motion of this wave train indicate that it is a Rayleigh wave. The most probable excitation mechanism is acoustic coupling of atmospheric oscillations that were set off by continuous thermal energy flux from the volcano. The two spectral peaks correspond to the characteristic periods of acoustic and gravity modes of the Earth's atmosphere. The magnitude of the vertical single force equivalent to the acoustic coupling is 1.6×10^(17) dynes over a frequency band of 0.003 to 0.01 Hz. The results suggest the possibility of using acoustically coupled Rayleigh waves for detection, characterization and quantification of volcanic eruptions. Acoustic coupling of the atmosphere and the solid Earth provides a unique seismic source with long duration.
机译:1991年6月15日,菲律宾皮纳图博火山大喷发期间,在世界范围内的许多地震台站上,都记录到一个异常长(至少两个小时)的地震波列,周期约为230秒。该波列在2000年出现两个尖锐的光谱峰。 228和270秒。该波列的群速度,相速度和质点运动表明它是瑞利波。最可能的激发机制是大气振荡的声耦合,这种耦合是由火山不断产生的热能通量引起的。这两个光谱峰对应于地球大气的声学和重力模式的特征周期。在0.003至0.01 Hz的频带上,等效于声耦合的垂直单力的大小为1.6×10 ^(17)达因。结果表明,可能使用声学耦合的瑞利波来检测,表征和定量火山喷发。大气层与固体地球之间的声耦合提供了一个独特的,持续时间长的地震源。

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    Hiroo Kanamori; Jim Mori;

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  • 年度 1992
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