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Discriminating a Nuclear Blast from A Natural Seismic Event Using A Full Moment-Tensor Inversion Method

机译:使用全时刻 - 张量反转法从天然地震事件中区分核爆炸

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Identification of seismic signals if they are generated by tectonic or volcanic origin or underground nuclear tests is of primary importance for impacts on environmental issues. The recent blast on September 3, 2017 has been in question due to its potential destruction on the global environment. Here, we applied a method of full moment-tensor inversions to analyse broadband waveforms generated by such an explosion. The signals were recorded by a network of 4 regional seismic stations (MAJO, INCN, MDJ, BJT), situated between 360 and 1,100 km away from the explosion epicenter. The results showed that a variance reduction of 72.6%, providing high confidence for all values obtained from the method used: a seismic moment of M_o = 6.25 · 10~(24) dyne cm, corresponding to a moment magnitude of M_w = 5.8, with a dominant volumetric component (ISO) of 50% relatively compared to a 6.8% double-couple (DC) part and a 43.2% compensated linear vector dipole (CLVD) part, and a centroid-depth of 1.0 km. The relative dominance of the ISO seismic component over the other two components, along with the shallow source extracted from the cross-correlation and source mechanism analysis, suggests that the September 3, 2017 explosion was induced by a suspected nuclear test.
机译:识别地震信号,如果它们由构造或火山原产地或地下核试验产生的核对,对环境问题的影响很重要。最近2017年9月3日的爆炸已经有义于其对全球环境的潜在破坏。在这里,我们应用了一种完整的时刻 - 张量逆转的方法,以分析由这种爆炸产生的宽带波形。信号由4个区域地震站(MAJO,INCN,MDJ,BJT)的网络记录,距离爆炸震中的360至1,100千米。结果表明,差异降低72.6%,对所用方法获得的所有值提供高置信度:M_O = 6.25·10〜(24)达因厘米的地震时刻,对应于M_W = 5.8的片刻幅度,与6.8%双夫妇(DC)部分和43.2%补偿的线性载体偶极子(CLVD)部分相比,50%的显性体积组分(ISO)相比,50%和43.2%的细胞部分,并以1.0 km的质心。 ISO地震成分在其他两个组分上的相对优势,以及从互相关和源机制分析中提取的浅源,表明2017年9月3日爆炸被疑似核试验诱导。

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