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Interpretation of body and Rayleigh waves from NTS to Tucson

机译:从NTS到图森的人体波和瑞利波的解释

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摘要

A linear array of eight Caltech portable broad-band seismograph trailers was set out from NTS to near Phoenix, Arizona, for the pre-announced underground nuclear test, OSCURO, on September 21, 1972. Travel-time and amplitude information were used to find an average crustal model by calculating synthetic seismograms using the Cagniard-de Hoop method. Rayleigh waves from other nuclear events at NTS, as recorded at the Tucson WWSSN station, were examined as a control for determining the structure of the top half of the crust. Group-velocity curves were found and synthetic Rayleigh waves calculated for Tucson and Kingman (LRSM). The formations and characteristics of P_n, a reflected P_n, and the P_g phases are examined. P_g is demonstrated to be composed of the primary P reflection from the mantle and contains multiple arrivals of P—SV conversions. Comparisons of synthetic and observed seismograms indicate a crustal thickness of 30 km with a Poisson's ratio of 0.23. The crust-mantle transition appears to be sharp, jumping from 6.1 to 7.9 km/sec. The amplitude behavior of P_n shows little evidence of any lid structure.
机译:线性排列的8台Caltech便携式宽带地震仪拖车从NTS出发,到亚利桑那州凤凰城附近,以进行1972年9月21日预先宣布的地下核试验OSCURO。使用了行进时间和振幅信息来查找通过使用Cagniard-de Hoop方法计算合成地震图来获得平均地壳模型。图森WWSSN台站记录到的来自NTS其他核事件的瑞利波被作为对照来确定地壳上半部分的结构。找到了群速度曲线,并为图森和金曼(LRSM)计算了合成瑞利波。检查P_n,反射P_n和P_g相的形成和特性。已证明P_g由来自地幔的主要P反射组成,并且包含P-SV转换的多次到达。合成地震图和观测地震图的比较表明,地壳厚度为30 km,泊松比为0.23。地幔幔过渡似乎很陡,从6.1 km / sec跃升到7.9 km / sec。 P_n的幅度行为几乎没有任何盖结构的迹象。

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