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SWCC and clay mineralogy based models for realistic simulation of swell behavior of expansive soils.

机译:基于SWCC和粘土矿物学的模型,用于真实模拟膨胀土的膨胀行为。

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摘要

Predicting the volume change behavior of expansive soils has been a major challenge to the engineers in the past few years, due to the intricate couple effects caused by different soil composition parameters toward swelling. Hence, the behavior of an expansive soil is better understood with its inherent composition parameters. For this research, eight natural expansive clays have been sampled from different active swell zones across The United States. Basic soil classification was performed on these soil to identify the high plasticity and low plasticity clays. The swell behavior of these clays are studied using different testing methods and initial dry density conditions. A novel 3-D swell test apparatus was introduced to study the volumetric strains of these soils under confining pressures. These test results are utilized for the validation of swell prediction models.;Different soil composition parameters like clay mineralogy, soil-suction relationship and pore distribution are studied using advanced techniques. These techniques include the determination of clay mineralogy from chemical properties of soil, soil water relationship (i.e. soil water characteristic curve) from pressure plate and filter paper techniques and pore distribution studies from mercury intrusion porosimetry technique and X-ray computed tomography tests. Once the soil composition parameters are determined, analysis of test results was performed to identify the variation of composition parameters with soil type.;Based on the soil composition test results three soil swell prediction models have been formulated. The first model is based on diffused double layer effect of clay minerals present in the soil. The second model termed as MHC is based on two swell governing parameters which are Mechanical hydro and chemical behavior which constitutes the effect of soil matric suction, void ratio change and clay mineralogy. The final model was based on the ratio of total surface area measured from clay mineralogy and mercury intrusion porosimetry. All the models showed good predictions with the measured test results.
机译:过去几年中,由于不同的土壤组成参数对膨胀产生的复杂耦合效应,预测膨胀土的体积变化行为一直是工程师面临的主要挑战。因此,通过其固有的组成参数可以更好地理解膨胀土的行为。在这项研究中,从美国各地不同的活性膨胀带中取样了八种天然膨胀粘土。在这些土壤上进行了基本的土壤分类,以识别高塑性和低塑性粘土。使用不同的测试方法和初始干密度条件研究了这些粘土的溶胀行为。介绍了一种新型的3-D溶胀测试仪,以研究这些土壤在封闭压力下的体积应变。这些测试结果被用于膨胀预测模型的验证。;使用先进技术研究了不同的土壤组成参数,例如粘土矿物学,吸水关系和孔隙分布。这些技术包括从土壤的化学性质确定粘土矿物学,从压板和滤纸技术确定土壤水的关系(即土壤水特征曲线)以及通过压汞法和X射线计算机断层扫描技术进行孔分布研究。确定土壤组成参数后,进行测试结果分析,以识别组成参数随土壤类型的变化。基于土壤组成测试结果,建立了三个土壤膨胀预测模型。第一个模型基于土壤中存在的粘土矿物的扩散双层效应。第二个模型称为MHC,基于两个溶胀控制参数,即机械的水和化学行为,构成了土壤基质吸力,孔隙率变化和粘土矿物学的影响。最终模型基于粘土矿物学和压汞法测得的总表面积之比。所有模型对测得的测试结果均显示出良好的预测。

著录项

  • 作者

    Pedarla, Aravind.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 338 p.
  • 总页数 338
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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