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Three-dimensional liquefaction potential analysis using geostatistical interpolation

机译:基于地统计插值法的三维液化势分析

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We applied three-dimensional geostatistical interpolation to evaluate the extent of liquefiable materials at two sites that liquefied during the 1994 Northridge Earthquake. The sites were the Balboa Blvd site and the Wynne Ave. site located in the alluvial San Fernando Valley. The estimated peak ground accelerations at the sites are 0.84 g (Balboa Blvd) and 0.51 g (Wynne Ave.). These sites were chosen because surface effects due to liquefaction were not predicted using available techniques based on thickness and depth of liquefiable layers (Ishihara [Ishihara K. Stability of natural deposits during earthquakes. Proceedings of the 11th international conference on soil mechanics and foundation engineering, vol. 1. Rotterdam, The Netherlands: A.A. Balkema; 1985. p. 321-76.]) and the Liquefaction Potential Index (Iwasaki et al. [Iwasaki T, Tatsuoka F, Tokida K, Yasuda S. A practical method for assessing soil liquefaction potential based on case studies at various sites in Japan. In: Proceedings of the second international conference on microzonation, San Francisco; 1978. p. 885-96.]). During the earthquake, both sites experienced surface effects including ground cracking and extension as a result of liquefaction. Foundations and buried utilities were damaged at both sites. The sites were investigated after the event by researchers with the United States Geologic Survey using standard penetration tests (SPT) and cone penetration tests. In this paper, liquefaction potential was estimated for each soil sample using results from SPTs according to the updated Seed and Idriss simplified procedure. The probability of liquefaction was estimated by applying an indicator transform to the results of the liquefaction potential calculation. We compared our results to detailed geologic mapping of the sites performed by other researchers. Using geostatistical interpolation to estimate the probability of liquefaction is a useful supplement to geologic evaluation of liquefaction potential. The geostatistical analysis provides an estimate of the continuous volume of liquefiable soil along with an assessment of confidence in an interpolation. The probability of liquefaction volumes compare well with those predicted using geologic interpretations.
机译:我们应用了三维地统计插值法来评估在1994年Northridge地震期间液化的两个地点的可液化物质的程度。这些地点是位于冲积圣费尔南多谷的Balboa Blvd地点和Wynne Ave.地点。该地点的地面加速度峰值估计为0.84 g(Balboa Blvd)和0.51 g(Wynne Ave.)。选择这些站点是因为无法使用基于可液化层的厚度和深度的可用技术来预测由于液化引起的表面效应(Ishihara [Ishihara K.地震期间自然沉积物的稳定性。第11届国际土壤力学和基础工程国际会议论文集,第1卷,荷兰鹿特丹:AA Balkema; 1985年,第321-76页]和液化潜能指数(Iwasaki等人[Iwasaki T,Tatsuoka F,Tokida K,Yasuda S.)根据日本不同地区的案例研究得出的土壤液化潜力,载于:第二届国际微区化会议论文集,旧金山; 1978年,第885-96页]。在地震期间,由于液化,两个站点都经历了表面效应,包括地面开裂和扩展。基金会和掩埋的公用事业在两个地点均遭到破坏。事件发生后,研究人员与美国地质调查局一起使用标准渗透率测试(SPT)和锥形渗透率测试对这些地点进行了调查。在本文中,根据更新的“种子和伊德里斯简化程序”,使用SPT的结果估算了每个土壤样品的液化潜力。液化的可能性是通过对液化潜力计算结果应用指标变换来估算的。我们将结果与其他研究人员对站点进行的详细地质制图进行了比较。使用地统计插值估计液化的可能性是对液化潜力进行地质评估的有用补充。地统计分析提供了对可液化土壤连续体积的估算,以及对插值的置信度评估。液化体积的概率与使用地质解释预测的相比较很好。

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