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Application of Analytical Modeling to the Far-field Investigation of Tsunami and Oceanic Rayleigh Waves from the 1998 Papua New Guinea Earthquake

机译:分析模型在1998年巴布亚新几内亚地震海啸和海洋瑞利波远场调查中的应用

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摘要

We analyze far-field Rayleigh and tsunami waves generated by the 1998 Papua New Guinea (PNG) earthquake. Using the normal mode theory and Thomson-Haskell matrix formalism we calculate synthetic mareograms of oceanic surface waves excited by finite-dimensional line source and propagated in a flat, multilayered oceanic structure. Assuming that the source of destructive sea waves was the main shock of the PNG event and based on the expression for seismic wave displacement in the far-field zone, we compute the energy of the seismic and tsunami waves and the E z /E ts ratio. The results of our modeling are generally consistent with those obtained empirically for events with magnitude 7. Also, treating the results of a submarine slide as a single solitary wave and using the theoretical arguments of Striem and Miloh (1976) we estimate the energy of the tsunami induced by a landslide. The difference between the energy of the seismic tsunami and of the aseismic one is about one order of magnitude.
机译:我们分析了1998年巴布亚新几内亚(PNG)地震产生的远场瑞利波和海啸波。使用标准模式理论和Thomson-Haskell矩阵形式主义,我们计算了由有限维线源激发并在平坦的多层海洋结构中传播的海洋表面波的合成航迹图。假设破坏性海浪的源头是PNG事件的主要冲击,并基于远场带地震波位移的表达式,我们计算了地震波和海啸波的能量以及E z / E ts 比。我们建模的结果通常与通过经验获得的强度为7级的事件的结果一致。而且,将海底滑坡的结果视为单个孤立波,并使用Striem和Miloh(1976)的理论论据,我们估计了海底滑坡的能量。滑坡引发的海啸。地震海啸和地震海啸的能量之差约为一个数量级。

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