首页> 外文期刊>Scientific reports. >Prediction of ground motion and dynamic stress change in Baekdusan (Changbaishan) volcano caused by a North Korean nuclear explosion
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Prediction of ground motion and dynamic stress change in Baekdusan (Changbaishan) volcano caused by a North Korean nuclear explosion

机译:朝鲜核爆炸造成的BAEKDUSAN(长白山)火山地面运动和动态应力变化的预测

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Strong ground motions induce large dynamic stress changes that may disturb the magma chamber of a volcano, thus accelerating the volcanic activity. An underground nuclear explosion test near an active volcano constitutes a direct treat to the volcano. This study examined the dynamic stress changes of the magma chamber of Baekdusan (Changbaishan) that can be induced by hypothetical North Korean nuclear explosions. Seismic waveforms for hypothetical underground nuclear explosions at North Korean test site were calculated by using an empirical Green's function approach based on a source-spectral model of a nuclear explosion; such a technique is efficient for regions containing poorly constrained velocity structures. The peak ground motions around the volcano were estimated from empirical strong-motion attenuation curves. A hypothetical M7.0 North Korean underground nuclear explosion may produce peak ground accelerations of 0.1684 m/s(2) in the horizontal direction and 0.0917 m/s(2) in the vertical direction around the volcano, inducing peak dynamic stress change of 67 kPa on the volcano surface and ~120 kPa in the spherical magma chamber. North Korean underground nuclear explosions with magnitudes of 5.0-7.6 may induce overpressure in the magma chamber of several tens to hundreds of kilopascals.
机译:强大的地面运动诱导可能扰乱火山岩浆室的大动态应力变化,从而加速了火山活性。 Active Volcano附近的地下核爆炸测试构成了直接对火山的直接治疗。本研究检测了BAEKDUSAN(长白山)岩浆室的动态应力变化,可以由假设的朝鲜核爆炸诱导。通过使用基于核爆炸的源光谱模型的经验绿色的功能方法计算朝鲜测试网站假设地下核爆炸的地震波形;这种技术对于包含受限制速度较差的速度结构的区域是有效的。从经验强大的运动衰减曲线估计火山周围的峰接地运动。一个假设的M7.0朝鲜地下核爆炸可能在水平方向上产生0.1684 m / s(2)的峰接地加速度,在火山周围的垂直方向上产生0.0917 m / s(2),诱导峰值动态应力变化67在火山表面上的KPA和球形岩浆室中的〜120 kPa。朝鲜地下核爆炸,大幅度为5.0-7.6,可能会导致几十个千米丘脑中的岩浆室内的过度压力。

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