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The Influence of 3-D Structure on the Propagation of Seismic Waves Away from Earthquakes

机译:3-D结构对地震波传播的影响

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— The seismic records from significant earthquakes are profoundly affected by 3-D variations in crustal structure both in the source zone itself and in propagation to some distance. Even in structurally complex zones such as Japan and Mexico relatively coherent arrivals are found associated with different classes of propagation paths. The presence of strong lateral variations can disrupt the arrivals, and impose significant variations in propagation characteristics for different directions from the source as illustrated by observations for the 1995 Kobe and 2000 Tottori-ken Seibu earthquakes in western Japan. Such effects can be modelled in 3 dimensions using a hybrid scheme with a pseudospectral representation for horizontal coordinates and finite differences in depth. This arrangement improves parallel implementation by minimising communication costs. For a realistic 3-D model for the structure in western Japan the 3-D simulations to frequencies close to 1 Hz provide a good representation of the observations from subduction zones events such as the 1946 Nankai earthquake and the 2000 Tottori-ken Seibu earthquake. The model can therefore be used to investigate the pattern of ground motion expected for future events e.g., in current seismic gaps.
机译:—震源区本身以及传播到一定距离的地壳结构的3D变化都会深刻影响重大地震的地震记录。即使在结构复杂的区域(如日本和墨西哥),也发现相对一致的到达与不同类别的传播路径相关。强烈的横向变化的存在会扰乱波及,并导致震源不同方向的传播特性发生明显变化,正如日本西部1995年神户地震和2000年鸟取县西武地震的观察所表明的那样。可以使用混合方案在3个维度上对这种效果进行建模,该方案具有针对水平坐标和深度有限差异的伪光谱表示。这种安排通过最小化通信成本来改善并行实现。对于日本西部结构的逼真的3-D模型,频率接近1 Hz的3-D模拟很好地表示了从1946年南海地震和2000年鸟取县西武地震等俯冲带事件中获得的观测结果。因此,该模型可用于调查未来事件(例如当前地震缝隙)中预期发生的地面运动模式。

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