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首页> 外文期刊>Earthquake spectra >An H/V geostatistical approach for building pseudo-3D Vs models to account for spatial variability in ground response analyses Part Ⅱ: Application to 1D analyses at two downhole array sites
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An H/V geostatistical approach for building pseudo-3D Vs models to account for spatial variability in ground response analyses Part Ⅱ: Application to 1D analyses at two downhole array sites

机译:用于构建伪-3D的地质统计方法,以解释地面响应分析中的空间变异性分部Ⅱ:在两个井下阵列站点的1D分析应用

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摘要

Common procedures used to account for spatial variability of shear wave velocity (Vs) in one-dimensional (1D) ground response analyses (GRAs), such as stochastic randomization of Vs or increasing small-strain damping, have been shown to improve seismic site response predictions relative to 1D GRAs where no attempts are made to account for spatial variability. However, even after attempting to account for spatial variability using common procedures, 1D GRAs often still yield results that are different than ground motions recorded at many downhole array sites. When 1D predictions differ from observations, the site is typically considered to be too spatially variable to effectively use 1D GRAs. While there is no doubt that some sites are indeed too variable for 1D GRAs, it is also possible that simple 1D analyses could still be effectively used at many sites if spatial variability is accounted for through a more rational, site-specific approach. In this study, an H/V geostatistical approach for building pseudo-3D Vs models is implemented to account for spatial variability in 1D GRAs. The geostatistical approach is used to generate a uniform grid of Vs profiles that have been scaled to match fundamental site frequency estimates from horizontal-to-vertical spectral ratio (H/V) noise measurements. In this article, 1D GRAs are performed for each grid point and the results are statistically combined to reflect the average site response and its variability. This 1D application is demonstrated at the Treasure Island and Delaney Park Downhole Array sites, where it is shown to produce superior fits to the small-strain recorded site response relative to existing approaches used to account for spatial variability in 1D GRAs. Using the proposed approach, we also investigate the lateral area that is likely influencing site response at each site and show that it could extend to significant distances (as much as 1 km) from the boreholes.
机译:用于考虑一维(1D)地面响应分析(GRAS)中剪切波速度(VS)的空间可变性的常见程序,例如随机随机化的VS或增加小应变阻尼,以改善地震位点反应相对于1D GRAS的预测,没有尝试考虑空间变异性。然而,即使在尝试使用普通程序考虑空间变异性之后,也仍然仍然产生与在许多井下阵列站点上记录的地面运动不同的结果。当1D预测与观察结果不同时,网站通常被认为是过于空间的变量,以有效地使用1D GRAS。虽然毫无疑问,某些网站对于1D GRAS确实太可变量,但如果通过更合理的,特定的网站特定方法占空间可变性,也可以在许多站点有效地使用简单的1D分析。在本研究中,实施了构建伪-3D的H / V地质统计方法,以考虑1D GRAS中的空间变异性。地质统计方法用于生成已经缩放的VS简档的统一网格,以匹配来自水平到垂直光谱比(H / V)噪声测量的基本站点频率估计。在本文中,对每个网格点进行1D GRAS,结果在统计上组合以反映平均站点响应及其可变性。该1D应用在金银岛和Delaney Park井下阵列网站上进行了演示,在那里它显示出相对于用于考虑1D GRAS中空间变异性的现有方法的小型应变录制的现场反应产生优越的拟合。使用所提出的方法,我们还研究了可能影响每个站点的现场反应的侧向区域,并表明它可以从钻孔延伸到大量距离(多达1公里)。

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