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Assessment of Stone Columns as a Mitigation Technique of Liquefaction-Induced Effects during Italian Earthquakes (May 2012)

机译:评估石柱作为意大利地震中液化诱发效应的缓解技术(2012年5月)

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摘要

Soil liquefaction has been observed worldwide during recent major earthquakes with induced effects responsible for much of the damage, disruption of function, and considerable replacement expenses for structures. The phenomenon has not been documented in recent time with such damage in Italian context before the recent Emilia-Romagna Earthquake (May 2012). The main lateral spreading and vertical deformations affected the stability of many buildings and impacted social life inducing valuable lessons on liquefaction risk assessment and remediation. This paper aims first of all to reproduce soil response to liquefaction-induced lateral effects and thus to evaluate stone column mitigation technique effectiveness by gradually increasing the extension of remediation, in order to achieve a satisfactory lower level of permanent deformations. The study is based on the use of a FE computational interface able to analyse the earthquake-induced three-dimensional pore pressure generation adopting one of the most credited nonlinear theories in order to assess realistically the displacements connected to lateral spreading.
机译:在最近的大地震中,全球范围内都观察到土壤液化,其诱发效应是造成大部分破坏,功能破坏和结构更换费用的主要原因。在最近的艾米利亚—罗马涅大地震(2012年5月)之前,这种现象在意大利尚未受到如此严重的破坏,这在最近的文献中没有记载。主要的横向扩展和垂直变形影响了许多建筑物的稳定性,并影响了社会生活,从而为液化风险评估和修复提供了宝贵的经验教训。本文的目的是首先再现土壤对液化引起的侧向作用的响应,从而通过逐渐增加修复的范围来评估石柱减缓技术的有效性,以达到令人满意的较低的永久变形水平。这项研究基于有限元计算界面的使用,该界面能够采用最著名的非线性理论之一来分析地震引起的三维孔隙压力的产生,以便实际评估与横向扩展有关的位移。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 216278
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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  • 入库时间 2022-08-21 11:19:47

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