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Source Comparisons between Nuclear and Chemical Explosions Detonated at Rainier Mesa, Nevada Test Site

机译:内华达州雷尼尔梅萨试验场引爆的核爆炸和化学爆炸的来源比较

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A series of nuclear [MINERAL QUARRY (MQ), HUNTERS TROPHY (HT)] and chemical [NON-PROLIFERATION EXPERIMENT (NPE) and NPE CAL] explosions were detonated in the same geological material at Rainier Mesa, Nevada Test Site. These sources were extensively instrumented with the same near-source, free-surface instrumentation array. The data from these explosions allow the establishment of empirical source scaling relations as well as investigation of possible chemical and nuclear source differences. Even in the near-source region at common receivers, the data display propagation path effects resulting from slight differences in source locations. These effects are effectively taken into account by smoothing the source comparisons across the different stations in the receiver array. As many as 30 individual waveforms from each source are used in this smoothing process. Comparison of HT and NPE at near-source distances indicates that within the band-width of the data (0.36 to 100 Hz), there is no apparent spectral difference between the nuclear and single-fired chemical source. The smoothed spectral ratio between the NPE and NPE CAL is consistent with the long-period source spectral difference (10~4), corner frequencies (2 to 3 Hz/NPE and 40 to 60 Hz/NPE CAL), and high-frequency decay (f~(-2)) similar to the Mueller-Murphy source model for wet tuff after modifying the cavity radius to scale as the cube root of yield. Comparison of the two nuclear sources, HT and MQ, indicates that at long periods, the HT/MQ ratio is 0.4 to 0.6 with the spectra from the two explosions merging above 5 Hz, which is consistent with the 0.3 magnitude difference observed for the two sources. In all the source comparisons, the spectral ratios of the transverse components of motion are indistinguishable from those produced by either the vertical or radial components. This fact argues that the transverse component of motion from an explosion is generated at very close-in distances, in this case on the order of 1 to 2 km. These observations are in agreement with some type of linear scattering mechanism.
机译:在内华达州雷尼尔梅萨的同一地质材料中,发生了一系列核爆[矿物采石场(MQ),亨特斯奖杯(HT)]和化学[非增殖实验(NPE)和NPE CAL]爆炸。这些放射源使用相同的近放射源,自由表面仪器阵列进行了广泛的检测。这些爆炸的数据可以建立经验源比例关系,并研究可能的化学和核源差异。即使在普通接收器的近源区域中,由于源位置的细微差异也会导致数据显示传播路径效应。通过平滑接收器阵列中不同站之间的源比较,有效地考虑了这些影响。在此平滑过程中,每个源使用多达30个单独的波形。在近源距离处进行的HT和NPE的比较表明,在数据带宽(0.36至100 Hz)内,核化学源和单发化学源之间没有明显的光谱差异。 NPE和NPE CAL之间的平滑频谱比与长周期源频谱差(10〜4),转折频率(2至3 Hz / NPE和40至60 Hz / NPE CAL)和高频衰减一致(f〜(-2))类似于湿凝灰岩的Mueller-Murphy源模型,它修改了腔半径以缩放为屈服的立方根。两种核源HT和MQ的比较表明,长期来看,HT / MQ比为0.4到0.6,两次爆炸的光谱合并在5 Hz以上,这与两次观察到的0.3级差相一致。资料来源。在所有源比较中,横向运动分量的频谱比与垂直分量或径向分量所产生的频谱比是无法区分的。这一事实认为,爆炸产生的横向运动分量是在非常近的距离(在这种情况下约为1至2 km)内产生的。这些观察结果与某种类型的线性散射机制一致。

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