首页> 外文期刊>Bulletin of the Seismological Society of America >Blind Shear-Wave Velocity Comparison of ReMi and MASW Results with Boreholes to 200 m in Santa Clara Valley: Implications for Earthquake Ground-Motion Assessment
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Blind Shear-Wave Velocity Comparison of ReMi and MASW Results with Boreholes to 200 m in Santa Clara Valley: Implications for Earthquake Ground-Motion Assessment

机译:ReMi和MASW结果的盲剪切波速度比较,圣塔克拉拉河谷有200 m的钻孔:对地震地震动评估的意义

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摘要

Multichannel analysis of surface waves (MASW) and refraction microtremor (REMI) are two of the most recently developed surface acquisition techniques for determining shallow shear-wave velocity. We conducted a blind comparison of MASW and REMI results with four boreholes logged to at least 260 m for shear velocity in Santa Clara Valley, California, to determine how closely these surface methods match the downhole measurements. Average shear-wave velocity estimates to depths of 30, 50, and 100 m demonstrate that the surface methods as implemented in this study can generally match borehole results to within 15% to these depths. At two of the boreholes, the average to 100 m depth was within 3%. Spectral amplifications predicted from the respective borehole velocity profiles similarly compare to within 15% or better from 1 to 10 Hz with both the MASW and REMI surface-method velocity profiles. Overall, neither surface method was consistently better at matching the borehole velocity profiles or amplifications. Our results suggest MASW and REMI surface acquisition methods can both be appropriate choices for estimating shear-wave velocity and can be complementary to each other in urban settings for hazards assessment.
机译:表面波的多通道分析(MASW)和折射微震(sEMI)(REMI)是用于确定浅剪切波速度的两种最新开发的表面采集技术。我们对加利福尼亚州圣克拉拉山谷的四个剪切速度至少为260 m的井眼进行了 的MASW和REMI结果的盲目比较, 以确定这些表面方法与 井下测量值的匹配程度。平均剪切波速度估计值 到30、50和100 m的深度表明,本研究中实施的表面 方法通常可以匹配钻孔 达到这些深度的15%以内。在两个钻孔中, 到100 m深度的平均值在3%以内。使用MASW和REMI 表面,从相应的钻孔速度剖面预测的光谱放大 类似地将 从1到10 Hz比较在15%或更好的范围内-方法速度曲线。总体而言,两种表面方法 在匹配井眼速度剖面 或放大率方面都没有始终如一的更好。我们的结果表明,MASW和REMI地表采集方法 既可以作为估计剪切波速度的合适选择,也可以在城市环境中相互补充。 sup>危害评估。

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