首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >The 12 June 2017 Mw 6.3 Lesvos Island (Aegean Sea) earthquake: Slip model and directivity estimated with finite-fault inversion
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The 12 June 2017 Mw 6.3 Lesvos Island (Aegean Sea) earthquake: Slip model and directivity estimated with finite-fault inversion

机译:2017年6月12日MW 6.3 Lesvos岛(爱琴海)地震:防滑模型和方向性估计有限故障反演

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12 June 2017 (UTC 12:28:38.26) a magnitude Mw 6.3 earthquake occurred offshore Lesvos Island in SE Aegean Sea, which was widely felt, caused 1 fatality, and partially ruined the village of Vrisa on the southeastern coast of the island. I invert broad band and strong motion waveforms from regional stations to obtain the source model and the distribution of slip onto the fault plane. The hypocentre is located at a depth of 7 km in the upper crust. The mainshock ruptured a WNW-ESE striking, SW dipping, normal fault, projecting offshore and bounding the Lesvos Basin. The strongest and most aftershocks clustered away from the hypocentre, at the eastern edge of the activated area. This cluster indicates the activation of a different fault segment, exhibiting sinistral strike-slip motions, along a plane striking WNW-ESE. The slip of the mainshock is confined in a single large asperity, WNW from the hypocentre, with dimensions 20 km x 10 km along fault strike and dip, respectively. The average slip of the asperity is similar to 50 cm and the peak slip is similar to 1 m. The rupture propagated unilaterally towards WNW to the coastline of Lesvos island at a relatively high speed (similar to 3.1 km/s). The imaged slip model and forward modelling was used to calculate peak ground velocities (PGVs) in the near-field. The damage pattern produced by this earthquake, especially in the village of Vrisa is compatible with the combined effect of rupture directivity, proximity to the slip patch and the fault edge, spectral content of motions, and local site conditions.
机译:2017年6月12日(UTC 12:28:38.26)大量MW 6.3地震发生了伊索沃斯海岛的近海地震,这被广泛养成,引起了1个致命,部分地破坏了岛屿东南海岸的Vrisa村。我从区域站颠倒了宽带和强运动波形,以获得源模型和滑动的分布到故障平面上。次级面积位于上层地壳的深度为7公里。 Mainshock破坏了WNW-ESE引人注目的SW浸渍,正常断层,突出的海上和LESVOS盆地。最强大,大多数余震聚集在激活区域的东边缘。该群集表示激活不同的故障段,沿着平面击中Wnw-ESE的平面展示Sinistral Strive滑动运动。主震的滑动被限制在一个大小的粗糙度,从低次电锁足中WNW,尺寸沿20公里×10km沿故障击球和倾角。粗糙度的平均滑动类似于50cm,峰值滑动类似于1米。该破裂以相对高的速度(类似于3.1公里/秒),这破裂朝向Lesvos岛的海岸线传播到Lesvos岛的海岸线。成像的滑动模型和前向建模用于计算近场中的峰地速度(PGV)。这种地震产生的损伤模式,特别是在VRISA村,伴随着破裂方向性,靠近滑块和故障边缘,运动的光谱含量和局部地点条件的综合效果。

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