首页> 外文期刊>Pure and Applied Geophysics >Rupture Directivity During the September 7, 1999 (M w 5.9) Athens (Greece) Earthquake Inferred from Forward Modeling of Strong Ground Motion
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Rupture Directivity During the September 7, 1999 (M w 5.9) Athens (Greece) Earthquake Inferred from Forward Modeling of Strong Ground Motion

机译:从强地面运动的正演模型推断出的1999年9月7日(M w 5.9)雅典(希腊)地震的破裂方向

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The empirical Green's functions technique is applied to simulate strong ground motion records from the September 7, 1999, Athens earthquake. Information on the fault parameters from previous independent studies has been used and several scenarios were examined, in regard to the location of the starting point of the rupture, by comparing the synthetic records with the corresponding observed ones, through a residual function and a correlation function. The results show that the rupture started at the deepest, ∼4–5 km, part of the fault from its western edge. This hypocenter was then used, in combination with the initial fault model, to stochastically simulate the strong ground motion during the Athens main shock, in terms of peak-ground acceleration at hard rock. The results show that directivity might have significantly contributed to the destructiveness of this earthquake at specific parts of the Athens Metropolitan area.
机译:格林经验函数技术用于模拟1999年9月7日雅典地震以来的强地面运动记录。通过使用残差函数和相关函数,通过将合成记录与相应的观测记录进行比较,使用了先前独立研究提供的有关断层参数的信息,并研究了几种有关破裂起始点的方案。 。结果表明,破裂始于最深处,约4-5 km,是断层的最西端。然后,将这个震源与初始断层模型结合起来,根据硬岩的峰值地面加速度,随机模拟雅典主震期间的强烈地面运动。结果表明,方向性可能对雅典大都会地区特定地震的破坏性起了重要作用。

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