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Computation of seismograms and atmospheric oscillations by normal-mode summation for a spherical earth model with realistic atmosphere

机译:通过真实模式下的球形地球模型的正模求和计算地震图和大气振荡

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摘要

We describe a theory to compute seismograms and atmospheric disturbances such as ionospheric oscillations or pressure variations in a realistic spherical earth model with atmosphere. This theory is valid for a source located either in the solid earth or in the atmosphere. Solid earth and atmospheric normal modes are computed for a radiation boundary condition that models the dissipation of acoustic signals in the high atmosphere of the Earth. We show that the coupling between ground and atmosphere occurs at a set of frequencies related to fundamentals and harmonics of atmospheric modes. Spheroidal modes near these frequencies have up to 0.04 per cent of their energy in the atmosphere, and thus may be strongly excited by atmospheric sources. This theory can be used for more accurate modelling of the seismic data from meteoritic events or volcanic eruptions as well as for the analysis of barograms or ionograms recorded after large earthquakes.
机译:我们描述了一种在实际的大气球形地球模型中计算地震图和大气干扰(例如电离层振荡或压力变化)的理论。该理论对于位于固体地球或大气中的源是有效的。针对辐射边界条件计算固体地球和大气正常模式,该辐射边界条件模拟了地球高大气层中声信号的耗散。我们表明,地面与大气之间的耦合发生在与大气模式的基波和谐波相关的一组频率上。在这些频率附近的球状模在大气中的能量高达其0.04%,因此可能被大气源强烈激发。该理论可用于更准确地建模来自气象事件或火山喷发的地震数据,以及用于分析大地震后记录的条形图或电离图。

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