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首页> 外文期刊>Bulletin of the Seismological Society of America >LOW-FREQUENCY LG FROM NTS AND KAZAKH NUCLEAR EXPLOSIONS - OBSERVATIONS AND INTERPRETATION
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LOW-FREQUENCY LG FROM NTS AND KAZAKH NUCLEAR EXPLOSIONS - OBSERVATIONS AND INTERPRETATION

机译:NTS和哈萨克斯坦核爆炸的低频LG-观测和解释

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摘要

The generation of Lg from underground nuclear explosions is still not fully understood. Near-source scattering of explosion-generated Rg into S appears to be responsible for the low-frequency Lg from nuclear explosions at both Nevada test site (NTS) and Kazakh lest site (KTS) (Gupta et al., 1991a, 1992). This mechanism has recently been supported by the analysis of regional data from several Yucca Flats, NTS explosions by Patron and Taylor (1995), who further indicate that the prominent low-frequency spectral null in Lg is due to Rg from a compensated linear vector dipole (CLVD) source. In this study, the dependence of spectral nulls on shot depths and other source parameters is first investigated by analyzing Lg from a large number of Yucca Flats (NTS) explosions, with known ground truth, recorded at several broadband stations. Analysis of low-frequency Lg from nuclear explosions at KTS also indicates spectral nulls that are in most cases distinct and identifiable, although generally not as strong as for the NTS shots. Methods of analysis include narrow bandpass filtering, spectral ratios, network averaging, and comparison with synthetic seismograms. Most Lg spectra indicate prominent nulls showing strong dependence on shot depth, and the network-averaged spectral nulls are in remarkably good agreement with those expected from Rg due to a CLVD source at about one-third the shot depth. By providing an improved understanding of Lg from explosions and its usefulness for obtaining source information, these results make an important contribution to regional discrimination and seismic-monitoring capabilities. [References: 26]
机译:地下核爆炸产生的Lg仍不完全清楚。爆炸产生的Rg进入S的近源散射似乎是内华达试验场(NTS)和哈萨克斯坦激发场(KTS)核爆炸产生的低频Lg的原因(Gupta et al。,1991a,1992)。最近,由Patron和Taylor(1995)对来自Yucca Flats,NTS爆炸的几次区域数据进行的分析支持了这一机制,他们进一步指出,Lg中突出的低频频谱无效是由于补偿线性矢量偶极子的Rg引起的(CLVD)源。在这项研究中,首先通过分析在多个宽带站记录的已知地面真相的大量丝兰平原(NTS)爆炸中的Lg,首先研究了光谱零点对炮深和其他源参数的依赖性。对KTS核爆炸产生的低频Lg的分析还表明,尽管通常不如NTS发射那样强,但在大多数情况下频谱零点是清晰可辨的。分析方法包括窄带通滤波,频谱比,网络平均以及与合成地震图的比较。大多数Lg光谱显示出显着的零点,表明它们对炮弹深度有很强的依赖性,并且由于CLVD源大约为炮弹深度的三分之一,网络平均光谱零点与Rg预期的零点非常一致。通过提供对爆炸产生的Lg的更好理解及其对获取源信息的实用性,这些结果为区域识别和地震监测能力做出了重要贡献。 [参考:26]

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