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Source characterization of Nevada Test Site explosions and western US earthquakes using Lg waves: Implications for regional source discrimination

机译:内华达州试验场爆炸和美国西部地震的震源特征(使用Lg波):对区域震源判别的影响

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An investigation is made of the Lg waves from 15 nuclear tests at the Nevada Test Site (NTS) and 25 shallow western United States earthquakes to obtain a scheme for discriminating between possible source mechanisms. The data were recorded at four broadband stations, operated by Lawrence Livermore National Laboratory (LLNL), which encircle the NTS. The Lg wave spectra are modeled through a genetic algorithm search to find optimal values for (1) the seismic moment (M-O), (2) the corner frequency of the amplitude spectrum (f(C)), (3) the 1-Hz attenuation quality factors (Q(O)) for all of the paths, and (4) the frequency dependence (eta) of attenuation along the paths. Because the inversion solves for the path attenuation characteristics, little a priori information is needed for the analysis. The resulting M-O and f(C) values are used in conjunction with the rn, values as seismic discriminants. The populations of earthquakes and explosions have nearly identical relationships between their moments and corner frequenciles. For earthquakes, the relationship is log M-O = 16.07 - 2.93 logf(C). For the set of NTS explosions (using an earthquake source model), the relationship is log M-O = 15.87 - 2.76 logf(C). A source discriminant is found, however, through a comparison of the moments and m(b) values. This gives a line, log M-O = 10.20 + 1.16m(b), which cleanly separates the earthquake and explosion populations, with earthquakes falling above and explosions below the line. Reliability tests examine the inverse trade-off between moments and Q(O) values. Noise in the Lg spectra has a limited effect on the scaling relations. [References: 64]
机译:对内华达试验场(NTS)进行的15次核试验和美国西部25次浅地震的Lg波进行了调查,以获得一种区分可能的震源机制的方案。数据记录在劳伦斯·利弗莫尔国家实验室(LLNL)包围NTS的四个宽带站上。通过遗传算法搜索对Lg波谱建模,以找到以下最佳值:(1)地震矩(MO),(2)振幅谱的拐角频率(f(C)),(3)1-Hz所有路径的衰减质量因子(Q(O)),以及(4)沿路径衰减的频率相关性(eta)。因为反演解决了路径衰减特性,所以分析所需的先验信息很少。所得的M-O和f(C)值与rn,值一起用作地震判别式。地震和爆炸的时刻与弯矩频率之间的关系几乎相同。对于地震,该关系为log M-O = 16.07-2.93 logf(C)。对于一组NTS爆炸(使用地震源模型),关系为log M-O = 15.87-2.76 logf(C)。但是,通过比较矩和m(b)值可以找到源判别式。这给出了一条线,对数M-O = 10.20 + 1.16m(b),该线将地震和爆炸人口完全分隔开了,地震位于该线的上方而爆炸位于该线的下方。可靠性测试检查了力矩与Q(O)值之间的逆权衡。 Lg光谱中的噪声对比例关系的影响有限。 [参考:64]

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