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The Effect of Cracks on Unsaturated Flow and Volume Change Properties of Expansive Clays and Impacts on Foundation Performance.

机译:裂缝对膨胀黏土的不饱和流动和体积变化特性的影响以及对地基性能的影响。

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摘要

The primary objective of this study is to understand the effect of soil cracking on foundation performance for expansive soil profiles. Two major effects of cracks were studied to assess the effect of cracks on foundation performance. First, the effect of cracks on soil volume change response was studied. Second, the effect of cracks on unsaturated flow properties and extent and degree of wetting were evaluated. Multiple oedometer-type pressure plate tests were conducted to evaluate the effect of cracks on soil properties commonly used in volume change (heave) analyses, such as swell pressure, soil water characteristic curve (SWCC), and swell potential. Additionally, the effect of cracks on saturated and unsaturated hydraulic conductivity was studied experimentally to assess the impact of cracks on properties critical to evaluation of extent and degree of wetting. Laboratory experiments were performed on both intact and cracked specimen so that the effect of cracks on behavior could be benchmarked against intact soil response. Based on laboratory observations, the SWCC of a cracked soil is bimodal. However, this bimodal behavior is only observed in the very low suction ranges. Because the bimodal nature of the SWCC of cracked clays is only distinguishable at extremely low suctions, the bimodal behavior is unlikely to have engineering significance when soils remain unsaturated.;A "lumped mass" parameter approach has been studied as a practical approach for modeling of cracked soils for both fluid flow and volume change determination. Laboratory unsaturated flow experiments were simulated using a saturated-unsaturated flow finite element code, SVFlux, to back-analyze unsaturated hydraulic conductivity functions for the subject soils. These back-analyzed results were compared to the results from traditionally-applied analyses of the laboratory instantaneous profile tests on intact and cracked specimens. Based on this comparison, empirical adjustments were suggested for modeling "lumped mass" cracked soil behavior in numerical codes for fluid flow through cracked soils. Using the empirically adjusted flow parameters for unsaturated flow modeling, example analyses were performed for slab-on-grade problems to demonstrate the impact of cracks on degree and extent of wetting under unsaturated and saturated flow conditions for different surface flux boundary conditions.
机译:这项研究的主要目的是了解土壤开裂对膨胀土剖面基础性能的影响。研究了裂纹的两个主要影响,以评估裂纹对地基性能的影响。首先,研究了裂纹对土壤体积变化响应的影响。其次,评估了裂纹对不饱和流动性质以及润湿程度和程度的影响。进行了多个里程表型压力板测试,以评估裂纹对通常用于体积变化(升沉)分析的土壤特性的影响,例如膨胀压力,土壤水分特征曲线(SWCC)和膨胀势。此外,还通过实验研究了裂纹对饱和和不饱和导水率的影响,以评估裂纹对对润湿程度和程度的评价至关重要的性能的影响。在完整和破裂的标本上都进行了实验室实验,因此可以将裂缝对行为的影响与完整的土壤响应进行比较。根据实验室观察,破裂土壤的SWCC是双峰的。但是,这种双峰行为只能在很低的吸力范围内观察到。由于裂化粘土的SWCC的双峰性质仅在极低的吸力下才可辨别,因此当土壤保持不饱和状态时,双峰行为不太可能具有工程学意义。;已经研究了“集总质量”参数方法作为建模的实用方法。破裂的土壤,用于确定流体流量和体积变化。使用饱和-不饱和流量有限元代码SVFlux模拟了实验室的非饱和流实验,以反分析主题土壤的非饱和导水率函数。将这些反向分析的结果与传统方法对完整和破裂样品的实验室瞬时轮廓测试的分析结果进行比较。基于此比较,建议对经验值进行调整,以模拟“集总质量”裂纹土壤行为的数值代码,以模拟流过裂纹土壤的流体。使用经验调整后的流动参数进行非饱和流动建模,对板级问题进行了实例分析,以证明在不同的表面通量边界条件下,裂纹对非饱和和饱和流动条件下润湿程度和程度的影响。

著录项

  • 作者

    Abbaszadeh, Mohammad.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 256 p.
  • 总页数 256
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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