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Combining active and passive multi-channel analysis of surface waves to improve reliability of V-S,V- 30 estimation using standard equipment

机译:结合使用表面波的主动和被动多通道分析,以提高使用标准设备进行的V-S,V-30估算的可靠性

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摘要

Surface wave methods are commonly used for seismic soil classification, however, their indirect nature implies a degree of uncertainty that needs to be described and constrained. To evaluate dispersive characteristics, we use active and passive sources, linear and circular arrays, and frequency-wave number analysis, spatial autocorrelation method and Roadside MASW analyses. We test the reliability of this approach in three different soil conditions of the Santiago basin (Chilean capital) using standard equipment. This methodology is compared with reliable results from high-energy active source and borehole information. To obtain a confident shear wave depth-profile with standard equipment, it is necessary to combine the dispersion curves obtained with low-energy active source, passive linear and circular arrays. Results obtained only through a passive linear test may not guarantee a reliable 30m of exploration, especially when no high-traffic roads are present nearby. According to results obtained in the Santiago basin, we propose a methodology based on a combination of active and passive results.
机译:地表波方法通常用于地震土壤分类,但是其间接性质意味着一定程度的不确定性,需要加以描述和约束。为了评估色散特性,我们使用主动和被动源,线性和圆形阵列以及频率-波数分析,空间自相关方法和路边MASW分析。我们使用标准设备在圣地亚哥盆地(智利首都)的三种不同土壤条件下测试该方法的可靠性。将该方法与来自高能活动源和井眼信息的可靠结果进行了比较。为了使用标准设备获得可靠的剪切波深度剖面,必须将获得的色散曲线与低能量有源光源,无源线性和圆形阵列相结合。仅通过被动线性测试获得的结果可能无法保证可靠的30m勘探,尤其是当附近没有高流量道路时。根据在圣地亚哥盆地获得的结果,我们提出了一种基于主动和被动结果相结合的方法。

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