首页> 外文期刊>Geophysical Research Letters >Estimate of tsunami source using optimized unit sources and including dispersion effects during tsunami propagation: The 2012 Haida Gwaii earthquake
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Estimate of tsunami source using optimized unit sources and including dispersion effects during tsunami propagation: The 2012 Haida Gwaii earthquake

机译:使用优化的单位震源估算海啸震源,并包括海啸传播期间的分散效应:2012年海达瓜地震

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摘要

We apply a genetic algorithm to find the optimized unit sources using dispersive tsunami synthetics to estimate the tsunami source of the 2012 Haida Gwaii earthquake. The optimal number and distribution of unit sources gives the sea surface elevation similar to that from our previous slip distribution on a fault using tsunami data, but different from that using seismic data. The difference is possibly due to submarine mass failure in the source region. Dispersion effects during tsunami propagation reduce the maximum amplitudes by up to 20% of conventional linear longwave propagation model. Dispersion effects also increase tsunami travel time by approximately 1 min per 1300 km on average. The dispersion effects on amplitudes depend on the azimuth from the tsunami source reflecting the directivity of tsunami source, while the effects on travel times depend only on the distance from the source.
机译:我们应用遗传算法使用分散的海啸合成材料找到优化的单位源,以估算2012年海达瓜地震的海啸源。最佳的单位源数量和分布可以使海平面标高类似于我们先前使用海啸数据对断层的滑动分布所获得的标高,但与使用地震数据所获得的标高不同。造成这种差异的原因可能是源区的海底质量破坏。海啸传播过程中的色散效应使最大振幅降低了传统线性长波传播模型的20%。分散效应还平均使每1300公里的海啸旅行时间增加约1分钟。对振幅的色散影响取决于海啸源的方位角,反映了海啸源的方向性,而对传播时间的影响仅取决于距震源的距离。

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