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Seismic detection of strong ground motions by MW5.6 North Korean nuclear explosion

机译:MW5.6朝鲜核爆炸对强地面运动的地震检测

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摘要

The North Korean nuclear explosion test site in Punggye-ri is located in a seismically quiescent region on a stable Precambrian basement. The 3 September 2017 MW5.6 North Korean underground nuclear explosion (UNE) test produced unprecedented strong ground motions. The peak ground accelerations might reach tens to hundreds m/s2 on the surface of the UNE test site, decaying exponentially with distance. Ten shallow events with magnitudes greater than or equal to ML2.5 and source depths less than 3 km followed the 2017 UNE for 5 months in an area with a radius of 15 km from the UNE where strong ground shaking was experienced. The largest event with MW3.7 occurred 20 days after the 2017 UNE test at shallow depths less than 3 km. Its moment tensor solution indicates a combined source behavior with comparable strengths of double-couple and compensated linear vector dipole (CLVD) components, suggesting an unusual event different from typical natural earthquakes in the Korean Peninsula. The clustered shallow seismic events appeared to have occurred in damaged media that were effectively perturbed by the strong ground motions of the UNE.
机译:位于丰溪里的朝鲜核爆炸试验场位于稳定的前寒武纪地下室的地震静止区。 2017年9月3日,MW5.6朝鲜地下核爆炸(UNE)试验产生了前所未有的强烈地面震动。在UNE测试站点的表面上,地面加速度峰值可能达到数十至数百m / s 2 ,并随距离呈指数衰减。 2017年UNE在距UNE半径15 km的区域经历了五个月的强烈地面震动之后,发生了十个大小大于或等于ML2.5,震源深度小于3 km的浅层事件。 MW3.7的最大事件发生在2017年UNE测试后20天,深度小于3公里。它的矩张量解表明了组合震源的行为,具有双耦合和补偿线性矢量偶极子(CLVD)分量的相当强度,这暗示了与朝鲜半岛典型自然地震不同的不寻常事件。聚集的浅层地震事件似乎发生在损坏的介质中,这些介质受到了UNE强烈的地面运动的有效干扰。

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