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Evaluating empirical regression equations for Vs and estimating Vs30 in northeastern Taiwan

机译:评估台湾东北部Vs的经验回归方程并估计Vs30

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The shear wave velocity of shallow sediments is very important in seismic wave amplification and thus Vs30 is a well-known parameter for site classification. Based on the relationship between Vs and soil indexes, the empirical regression equations were evaluated using more than 600 data sets from the Ilan area and the Taipei Basin. Multivariable analysis, which can increase the accuracy of regression equations, was used in this study. Three extrapolations were compared, and then the most accurate bottom-constant extrapolation was adopted to estimate Vs30 at 16 boreholes, none of which reached a depth of 30 m. Ultimately Vs30 was derived for 110 free-field strong motion stations, and the stations in northeastern Taiwan were reclassified according to the Vs30-based NEHRP provisions. Regression equations of Vs and the extrapolation of Vs30 were also applied to boreholes with only N-values and corresponding depths of less than 30 m for assessing the Vs30 and NEHRP class.
机译:浅层沉积物的剪切波速度在地震波放大中非常重要,因此Vs30是场地分类的众所周知的参数。基于Vs与土壤指数之间的关系,使用宜兰地区和台北盆地的600多个数据集评估了经验回归方程。在这项研究中使用了多变量分析,可以提高回归方程的准确性。比较了三个外推法,然后采用最精确的底部常数外推法估算了16个钻孔中的Vs30,没有一个深度达到30 m。最终,Vs30是为110个自由场强运动台站派生的,台湾东北部的台站则根据基于Vs30的NEHRP规定进行了重新分类。 Vs的回归方程和Vs30的外推法也适用于只有N值且相应深度小于30 m的钻孔,以评估Vs30和NEHRP类。

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