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首页> 外文期刊>Surveys in Geophysics: An International Review Journal of Geophysics and Planetary Sciences >Estimating Near-Surface Shear-Wave-Velocity Structures Via Multichannel Analysis of Rayleigh and Love Waves: An Experiment at the Boise Hydrogeophysical Research Site
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Estimating Near-Surface Shear-Wave-Velocity Structures Via Multichannel Analysis of Rayleigh and Love Waves: An Experiment at the Boise Hydrogeophysical Research Site

机译:通过瑞利和爱情波的多通道分析估算近表面剪切波速度结构:博伊西水文学科研究现场的实验

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摘要

Surface-wave analysis has been widely used for near-surface geophysical and geotechnical studies by using the dispersive characteristic of surface waves (Rayleigh or Love waves) to determine subsurface model parameters. Unlike Rayleigh waves, the dispersive nature of Love waves is independent of P-wave velocity in 1D models, which makes Love-wave dispersion curve interpretation simpler than Rayleigh waves. This reduces the degree of nonuniqueness leading to more stable inversion of Love-wave dispersion curves. To estimate the near-surface shear-wave velocities (Vs) using multichannel analysis of Rayleigh (MASW) and Love waves (MALW) for hydrologic characterization, we conducted an experiment at the Boise Hydrogeophysical Research Site (BHRS, an experimental well field located near Boise, Idaho, USA). We constructed the pseudo-3D velocity structures at the BHRS using both the MASW and MALW methods and compared the results to borehole measurements. We used the 3D Vs distribution to identify and resolve the extent of a relatively low-velocity anomaly caused by a sand channel. The Vs structure and anomaly boundaries were delineated at the meter scale and confirmed by the ground-penetrating radar surveys. The differences in shear-wave velocity determined by MASW, MALW and borehole measurements were discussed and interpreted to reflect the near-surface anisotropy associated with the hydrologic characteristics at the BHRS. Our results demonstrated that the combination of MALW and MASW can be a powerful tool for near-surface characterization.
机译:表面波分析已广泛用于近表面地球物理和岩土技术研究通过使用表面波(瑞利或爱情波)的分散特性来确定地下模型参数。与瑞利波不同,爱浪波的分散性与1D模型中的P波速度无关,这使得爱波色散曲线解释比瑞利波更简单。这降低了不承受的惰性程度,导致爱波色散曲线更稳定的反转。为了估算使用瑞利(MasW)和爱波(MALW)进行水文表征的多通道分析的近表面剪切波速度(VS),我们在Boise水文探测网站(BHRS,位于附近的实验井场)进行了实验博伊西,爱达荷州,美国)。我们使用Masw和Malw方法在BHRS上构建了伪-3D速度结构,并将结果与​​钻孔测量进行了比较。我们使用3D VS分布来识别并解决由沙通道引起的相对低速异常的程度。 VS结构和异常界限以仪表规模描绘并由地面穿透雷达调查证实。讨论并解释了由MasW,麦芽和钻孔测量测定的剪切波速度的差异,以反映与BHRS的水文特性相关的近表面各向异性。我们的结果表明,Malw和Masw的组合可以是近曲面表征的强大工具。

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