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Liquefaction potential of soils: A fully probabilistic approach.

机译:土壤的液化潜力:一种完全概率的方法。

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摘要

This research is aimed at improving existing methods for evaluating liquefaction potential of soils using probabilistic approach. The research deals with several closely related studies. First, a Cone Penetration Test (CPT)-based model for calculating liquefaction resistance is developed using artificial neural network approach, taking advantage of a recently updated seismic loading model and a comprehensive data set of CPT-based liquefaction/no-liquefaction case histories. Second, the liquefaction resistance model developed is incorporated into the formulation of liquefaction potential index, and the various issues related to the liquefaction potential index are examined using probability concept. Third, general applicability of the commonly used index properties-based criteria for liquefaction susceptibility is investigated. Fourth, a methodology for mapping liquefaction-induced ground failure is developed. As an example application, liquefaction-induced ground failure potential for Charleston quadrangle, South Carolina is mapped using seismic parameters specified for the area for a hazard level corresponding to 475-year return period. Finally, a new framework that integrates the conditional probability of liquefaction with the variation of earthquake sources and the underlying model uncertainty, as reflected in the U.S. Geological Survey Seismic Hazard Maps, for a fully probabilistic analysis of soil liquefaction in a given time exposure is developed and demonstrated with an example.
机译:这项研究旨在改进使用概率方法评估土壤液化潜力的现有方法。该研究涉及几个密切相关的研究。首先,利用人工神经网络方法,利用最近更新的地震荷载模型和基于CPT的液化/无液化案例历史的全面数据集,开发了基于锥孔渗透测试(CPT)的模型来计算液化阻力。其次,将开发的抗液化性模型纳入液化潜力指数的制定中,并使用概率概念研究与液化潜力指数相关的各种问题。第三,研究了常用的基于指数特性的液化敏感性标准。第四,开发了一种映射液化引起的地面破坏的方法。作为示例应用程序,使用为该区域指定的地震参数(对应于475年回归期的危险等级),为南卡罗来纳州查尔斯顿四边形的液化引起的地面破坏潜力进行了映射。最后,开发了一个新的框架,该框架将液化的条件概率与地震源的变化和潜在的模型不确定性相结合(如美国地质调查局地震危险性图所反映的那样),用于在给定的暴露时间内对土壤液化进行完全概率分析。并举例说明。

著录项

  • 作者

    Li, Kun.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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