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Effect of Soil Replacement Option on Surface Deflections for Expansive Clay Profiles.

机译:土壤替代方案对膨胀黏土剖面的表面挠度的影响。

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摘要

Urbanization and infrastructure development often brings dramatic changes in the surface and groundwater regimes. These changes in moisture content may be particularly problematic when subsurface soils are moisture sensitive such as expansive soils. Residential foundations such as slab-on ground may be built on unsaturated expansive soils and therefore have to resist the deformations associated with change in moisture content (matric suction) in the soil. The problem is more pronounced in arid and semi arid regions with drying periods followed by wet season resulting in large changes in soil suction. Moisture content change causes volume change in expansive soil which causes serious damage to the structures. In order to mitigate these ill effects various mitigation are adopted. The most commonly adopted method in the US is the removal and replacement of upper soils in the profile. The remove and replace method, although heavily used, is not well understood with regard to its impact on the depth of soil wetting or near-surface differential soil movements. In this study the effectiveness of the remove and replace method is studied. A parametric study is done with various removal and replacement materials used and analyzed to obtain the optimal replacement depths and best material. The depth of wetting and heave caused in expansive soil profile under climatic conditions and common irrigation scenarios are studied for arid regions. Soil suction changes and associated soil deformations are analyzed using finite element codes for unsaturated flow and stress/deformation, SVFlux and SVSolid, respectively. The effectiveness and fundamental mechanisms at play in mitigation of expansive soils for remove and replace methods are studied, and include (1) its role in reducing the depth and degree of wetting, and (2) its effect in reducing the overall heave potential, and (3) the effectiveness of this method in pushing the seat of movement deeper within the soil profile to reduce differential soil surface movements. Various non-expansive replacement layers and different surface flux boundary conditions are analyzed, and the concept of optimal depth and soil is introduced. General observations are made concerning the efficacy of remove and replace as a mitigation method.
机译:城市化和基础设施的发展通常会带来地表水和地下水状况的巨大变化。当地下土壤对水分敏感(例如膨胀土壤)时,水分含量的这些变化可能特别成问题。诸如地基的住宅基础可能建在不饱和的膨胀土壤上,因此必须抵抗与土壤中水分含量变化(矩阵吸力)相关的变形。在干旱和半干旱地区,干旱期和随后的湿润季节导致土壤吸力发生较大变化,这一问题尤为突出。水分含量的变化会导致膨胀土壤的体积变化,从而严重破坏结构。为了减轻这些不良影响,采取了各种缓解措施。在美国,最常用的方法是去除和置换剖面中的上层土壤。尽管去除和替换方法使用率很高,但它对土壤润湿深度或近地表差异土壤运动的影响尚不为人所知。在这项研究中,研究了删除和替换方法的有效性。使用各种去除和替换材料进行参数研究,并进行分析以获得最佳替换深度和最佳材料。研究了干旱条件下气候条件和常见灌溉情景下膨胀土壤剖面引起的湿润和隆起深度。分别使用非饱和流动和应力/变形的有限元代码SVFlux和SVSolid来分析土壤吸力变化和相关的土壤变形。研究了缓解膨胀土的去除和替换方法的有效性和基本机制,包括(1)其在减少润湿深度和程度方面的作用,以及(2)在降低整体起伏潜力方面的作用,以及(3)这种方法在将土壤运动推向土壤剖面更深处以减少土壤表面差异运动的有效性。分析了各种非膨胀替代层和不同的表面通量边界条件,并介绍了最佳深度和土壤的概念。普遍观察到了有关作为缓解方法的去除和替换功效。

著录项

  • 作者

    Bharadwaj, Anushree.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Geotechnology.;Engineering Civil.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 252 p.
  • 总页数 252
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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