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Temperature Effect on the Soil Water Retention Characteristic.

机译:温度对土壤保水特性的影响。

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摘要

The importance of unsaturated soil behavior stems from the fact that a vast majority of infrastructures are founded on unsaturated soils. Research has recently been concentrated on unsaturated soil properties. In the evaluation of unsaturated soils, researchers agree that soil water retention characterized by the soil water characteristic curve (SWCC) is among the most important factors when assessing fluid flow, volume change and shear strength for these soils.;The temperature influence on soil moisture flow is a major concern in the design of important engineering systems such as barriers in underground repositories for radioactive waste disposal, ground-source heat pump (GSHP) systems, evapotranspirative (ET) covers and pavement systems. Accurate modeling of the temperature effect on the SWCC may lead to reduction in design costs, simpler constructability, and hence, more sustainable structures.;The study made use of two possible approaches to assess the temperature effect on the SWCC. In the first approach, soils were sorted from a large soil database into families of similar properties but located on sites with different MAAT. The SWCCs were plotted for each family of soils. Most families of soils showed a clear trend indicating the influence of temperature on the soil water retention curve at low degrees of saturation. The second approach made use of statistical analysis. It was demonstrated that the suction increases as the MAAT decreases. The statistical analysis showed that even though the plasticity index proved to have the greatest influence on suction, the mean annual air temperature effect proved not to be negligible. In both approaches, a strong relationship between temperature, suction and soil properties was observed. Finally, a comparison of the model based on the mean annual air temperature environmental factor was compared to another model that makes use of the Thornthwaite Moisture Index (TMI) to estimate the environmental effects on the suction of unsaturated soils. Results showed that the MAAT can be a better indicator when compared to the TMI found but the results were inconclusive due to the lack of TMI data available.
机译:非饱和土壤行为的重要性源于以下事实:绝大多数基础设施都建立在非饱和土壤上。最近的研究集中在非饱和土壤的性质上。在评估非饱和土壤时,研究人员一致认为,以土壤水分特征曲线(SWCC)为特征的土壤保水能力是评估这些土壤的流体流量,体积变化和剪切强度时最重要的因素之一。温度对土壤水分的影响流量是重要工程系统设计中的主要问题,例如放射性废物处置地下仓库的屏障,地源热泵(GSHP)系统,蒸散(ET)覆盖层和人行道系统。对SWCC的温度影响进行准确建模可能会降低设计成本,简化施工性并因此使结构更具可持续性。该研究利用两种可能的方法来评估SWCC的温度影响。在第一种方法中,将土壤从大型土壤数据库中分类为相似属性的科,但位于具有不同MAAT的地点。绘制了每个土壤家族的SWCC。大多数土壤家庭都表现出明显的趋势,表明温度在低饱和度下对土壤保水曲线的影响。第二种方法利用了统计分析。事实证明,吸力随MAAT的降低而增加。统计分析表明,即使可塑性指数对吸力的影响最大,但年平均气温影响也不容忽视。在两种方法中,都观察到温度,吸力和土壤特性之间的密切关系。最后,将基于年平均气温环境因素的模型与另一种利用Thornthwaite湿度指数(TMI)估算对非饱和土壤吸水的环境影响的模型进行了比较。结果表明,与发现的TMI相比,MAAT可以作为更好的指标,但由于缺乏可用的TMI数据,因此结果尚无定论。

著录项

  • 作者

    El-Keshky, Maie.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2011
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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