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Combination of Active and Passive Seismic Analyses for Embankment Characterization

机译:堤防特征的主动和被动地震分析的组合

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Rayleigh wave dispersion is intensively used to determine near surface of shear wave velocity (Vs). The method has been known as non-invasive techniques which is costly effective and efficient to characterize subsurface. Acquisition of the Rayleigh wave can be approached in two ways, i.e. passive and active. Passive seismic is accurate to estimate dispersion curve in low frequency, although it is not accurate for high frequency. While active seismic is vice versa of passive seismic. The high frequency of Rayleigh wave dispersion reflects to near surface and vice versa. Therefore, we used the combination of both passive and active seismic methods to overcome the limitations of each method. The shear wave velocity (Vs) which is resulted by inversion of the combining data gives accurate model if compared to log and standard penetration test (N-SPT) data. Further, the approach has been used to characterize LUSI (Lumpur Sidoarjo) embankments. The result shows that embankment material (0-12 m) has higher Vs than that lower embankment material.
机译:瑞利波分散体密集用于确定剪切波速度的近表面(VS)。该方法已被称为非侵入性技术,其昂贵且有效地表征地下。可以以两种方式接近瑞利波的采集,即被动和活跃。无源地震性是准确的,以估计低频的分散曲线,尽管它对高频不准确。虽然活跃的地震反之亦然是被动地震的。瑞利波色散的高频反射到近表面,反之亦然。因此,我们使用了无源和主动地震方法的组合来克服每种方法的局限性。通过组合数据的反转导致的剪切波速度(VS)如果与日志和标准穿透测试(N-SPT)数据相比,则提供准确的模型。此外,该方法已被用于表征Lusi(Lumpur Sidoarjo)堤防。结果表明,堤防材料(0-12米)比下部堤防材料更高。

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