首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Determination of Near Surface Shear-Wave Velocities in the Central Los Angeles Basin With Dense Arrays
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Determination of Near Surface Shear-Wave Velocities in the Central Los Angeles Basin With Dense Arrays

机译:用密集阵列测定洛杉矶盆地中央近表面剪切波速度

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In this study, we investigate the shallow shear wave velocity structure of the Los Angeles Basin in southern California, using ambient noise correlations between 5 dense arrays and 21 broadband stations from the Southern California Seismic Network (SCSN). We observe clear fundamental mode and first overtone Rayleigh waves in the frequency band 0.25-2.0 Hz, and obtain group velocity maps through tomography. We further derive a 3D shear wave velocity model, covering a large portion of the central LA Basin for the depths shallower than 3 km. We found that the small scale shallow velocity structure heterogeneities are better resolved compared with the SCEC Community velocity models. Our model captures the presence of the Newport-Inglewood fault by a NW-SE trending high velocity belt. Our model provides more accurate constraints on local ground motion predictions with detailed mapping of structural heterogeneities.
机译:在这项研究中,我们利用南加州地震台网(SCSN)的5个密集阵列和21个宽带台站之间的环境噪声相关性,研究了南加州洛杉矶盆地的浅层剪切波速结构。我们在0.25-2.0hz频段观测到清晰的基波和第一泛音瑞利波,并通过层析成像获得群速度图。我们进一步推导了一个三维剪切波速模型,该模型覆盖了深度小于3 km的洛杉矶盆地中部的大部分区域。我们发现,与SCEC群落速度模型相比,小尺度浅层速度结构的不均匀性得到了更好的解决。我们的模型通过一条NW-SE向的高速带捕获了纽波特-英格尔伍德断层的存在。我们的模型为局部地震动预测提供了更精确的约束,并对结构不均匀性进行了详细的映射。

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