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Effects of reinforcement and soil viscosity on the behaviour of embankments over soft soil.

机译:加固和土壤黏度对软土路堤行为的影响。

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摘要

A verified elasto-viscoplastic finite element model is used to develop a better understanding of the performance of embankments with geosynthetic reinforcement constructed over rate-sensitive soil. The interaction between reinforcement and prefabricated vertical drains (PVDs) and their effects on time-dependent behaviour of embankments are examined. For rate-sensitive soils, the generation of creep-induced pore pressures following the end of construction is evident along the potential slip surface. As a result, the minimum factor of safety with respect to embankment stability occurs after the end of construction. The combined use of reinforcement and PVDs are shown to provide an effective means of minimizing creep-induced excess pore pressure, increasing overall stability, and decreasing deformation of the embankments.;The currently proposed design methods for embankments with creep-susceptible reinforcement over rate-sensitive soils appear to be overly conservative. This study proposes a refined approach for establishing the allowable long-term reinforcement strains that are expected to provide adequate performance while reducing the level of conservativeness of reinforced embankment design.;Finally, a previously developed elasto-viscoplastic constitutive model is modified to incorporate the effect of soil structure using a state-dependent fluidity parameter and damage law. The model was evaluated against data from a well-documented case study of a reinforced test embankment constructed on a sensitive Champlain clay deposit in Saint Alban, Quebec. The benefit of basal reinforcement and the effect of reinforcement viscosity are then discussed for these types of soil deposits.;The combined effects of the viscoelastic properties of geosynthetic reinforcement (polyester, polypropylene and polyethylene) and the rate-sensitive nature of foundation soils on the performance of embankments are examined. The effect of various factors, including reinforcement type (i.e., stiffness and viscosity), soil viscosity, construction rate and allowable long-term reinforcement strain, on the time-dependent behaviour of embankments are considered. The long-term performance of reinforced embankments is investigated for different maximum allowable long-term reinforcement strains. From a series of finite element analyses, the ideal allowable reinforcement strains to minimize embankment deformation while providing optimum long-term service height of the embankment, considering the effect of soil and reinforcement viscosity, are proposed for soils similar to those examined in this study.
机译:一个经过验证的弹黏塑性有限元模型被用来更好地理解在速率敏感的土壤上加建了土工合成材料的路堤的性能。研究了钢筋和预制垂直排水管(PVD)之间的相互作用及其对路堤随时间变化的行为的影响。对于速率敏感的土壤,在施工结束后沿潜在的滑动面会明显产生蠕变引起的孔隙压力。结果,关于路堤稳定性的最小安全系数发生在施工结束之后。研究表明,加筋和PVD的组合使用可提供一种有效的方法,以最小化蠕变引起的过大孔隙压力,增加整体稳定性并减小路堤的变形。敏感土壤似乎过于保守。这项研究提出了一种完善的方法来建立可允许的长期钢筋应变,这些应变应能在提供适当性能的同时降低钢筋路堤设计的保守性水平;最后,对先前开发的弹黏塑性本构模型进行修改以考虑其影响。使用状态相关的流动性参数和破坏定律来确定土壤结构。该模型是根据魁北克省Saint Alban敏感的Champlain粘土矿床上建造的加筋测试路堤的案例研究数据进行评估的。然后讨论了这些类型的土壤沉积物的基础增强的好处和增强粘度的影响。土工合成材料增强材料(聚酯,聚丙烯和聚乙烯)的粘弹性和基层土壤对速率的敏感性的综合影响检查路堤的性能。考虑各种因素,包括加筋类型(即刚度和粘度),土壤粘度,施工速率和允许的长期加筋应变,对路堤随时间的影响。针对不同的最大允许长期加筋应变,研究了加筋路堤的长期性能。通过一系列有限元分析,对于与本研究类似的土壤,提出了一种理想的允许加筋应变,以最小化路堤变形,同时提供最佳的路堤长期服务高度,同时考虑了土和加筋黏土的影响。

著录项

  • 作者

    Taechakumthorn, Chalermpol.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Geological.;Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 294 p.
  • 总页数 294
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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