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首页> 外文期刊>Geophysical Research Letters >COMPLEX SCATTERING WITHIN D'' OBSERVED ON THE VERY DENSE LOS ANGELES REGION SEISMIC EXPERIMENT PASSIVE ARRAY
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COMPLEX SCATTERING WITHIN D'' OBSERVED ON THE VERY DENSE LOS ANGELES REGION SEISMIC EXPERIMENT PASSIVE ARRAY

机译:在非常密集的洛杉矶地区地震实验被动阵列上观察到的D''内的复杂散射

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摘要

Several seismic phases that scattered within a few hundred kilometers of the base of the mantle are observed in a very dense seismic section. The Los Angeles Region Seismic Experiment passive phase array was composed of 88 seismometers placed along a 175 km profile. Records from two deep earthquakes in Tonga and one earthquake near Honshu, Japan show a secondary arrival between clear P and PcP arrivals. Modeling with layered structures shows that the Tonga and Honshu seismic sections are consistent with an increase in seismic velocity 140 and 240 km above the core-mantle boundary, respectively, and a similar to 10-km thick low-velocity zone at the base of the mantle beneath a region in the mid Pacific. Several of these arrivals are not coherent enough to appear in higher resolution stacks from the much larger Southern California Seismic Network. This experiment illustrates that fine-scale passive array data can reveal small-scale deep Earth structure invisible to larger-scale seismic networks. [References: 14]
机译:在一个非常稠密的地震剖面中观察到了几个散布在地幔底部几百公里内的地震相。洛杉矶地区地震实验被动相控阵由沿175公里剖面放置的88台地震仪组成。日本汤加两次地震和本州附近一次地震的记录显示,次要到达是在P和PcP到达之间。用分层结构建模表明,汤加和本州地震剖面分别与岩心-地幔边界上方140 km和240 km的地震速度的增加一致,并且与该区域底部的10 km厚的低速带相似。在太平洋中部某个区域的地幔。这些到达中的几个不够连贯,无法在更大的南加州地震台网中以更高的分辨率出现。该实验表明,精细的无源阵列数据可以揭示大规模地震网络看不到的小规模深层地球结构。 [参考:14]

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