首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Acoustic resonant oscillations between the atmosphere and the solid earth during the 1991 Mt. Pinatubo eruption
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Acoustic resonant oscillations between the atmosphere and the solid earth during the 1991 Mt. Pinatubo eruption

机译:在1991年山期间大气和固体地球之间的声共振振荡。皮纳图博火山爆发

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摘要

Long-period harmonic Rayleigh waves were observed on seismometers during the 1991 Mt. Pinatubo eruption in the Philippines. The amplitude spectrum of the Rayleigh waves shows two distinct peaks at periods of about 230 and 270 s. In the Earth's atmosphere, long-wavelength standing acoustic waves are bounded in a low-sound-velocity channel between the thermosphere and the ground. The Rayleigh waves and the fundamental and first overtone of atmospheric acoustic waves trapped in the low-sound-velocity channels have approximately the same horizontal wavelength and frequency at periods of 230 and 270 s, respectively, i.e., the atmosphere and the solid earth satisfy the condition for acoustic resonant oscillations. The standing atmospheric long-wavelength acoustic waves set off by the eruption selectively excited seismic spheroidal modes near the resonant period through acoustic resonant coupling and resulted in harmonic Rayleigh waves. In contrast, gravity waves and Lamb waves (atmospheric boundary waves) do not couple to the ground efficiently and are not easily observed as ground disturbance on seismograms during volcanic eruptions.
机译:在1991年的Mt地震仪上观测到了长周期谐波瑞利波。菲律宾的皮纳图博火山爆发。瑞利波的振幅谱在大约230和270 s的周期内显示出两个不同的峰值。在地球的大气层中,长波长的声波被束缚在热圈与地面之间的低声速通道中。在低声速通道中捕获的瑞利波和大气声波的基波和第一泛音分别在230和270 s的周期内具有大约相同的水平波长和频率,即大气和固体地球满足共振的条件。喷发引起的大气常驻长波声波通过声共振耦合选择性地激发了共振周期附近的共振球体,并产生了谐波瑞利波。相反,重力波和兰姆波(大气边界波)不能有效地耦合到地面,并且在火山喷发过程中不容易在地震图上被视为地面干扰。

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