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Modeling the WRC and volume change behavior of GCLs considering net stress and temperature

机译:考虑净应力和温度的GCLS的WRC和体积变化行为建模

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摘要

Geosynthetic clay liners (GCLs) are used in cover and bottom lining systems to mitigate contamination from landfills. During their service period, they are often subjected to varying net mean stress levels, temperature fluctuation, and water content, which could affect their water retention and volume change behavior severely. These changes under thermo-hydro-mechanical conditions can be evaluated through experimental methods or mathematical models. In the present study, the combined effect of net mean stress and temperature on water retention and volume change behavior of GCL in the unsaturated regime were studied. A theoretical thermo-hydro-mechanical framework for GCLs over a wide suction range is proposed based on experimental observations. The proposed framework was implemented in a simple water retention model and volumetric constitutive model to capture the thermo-hydro-mechanical behavior of GCL through several sets of experimental data available in the literature. The predicted results from the proposed method were in good agreement with the experimental results. Also, the proposed method required minimal input parameters to predict water retention and volume change behavior over a wide suction range. The proposed framework is therefore quite useful for engineering applications of GCLs under the combined effect of suction, net mean stress, and temperature.
机译:地质合成粘土衬垫(GCLS)用于盖子和底部衬里系统,以减轻垃圾填埋场的污染。在其服务期间,它们通常受到不同的净平均压力水平,温度波动和水含量,这可能会严重影响其水保留和体积变化行为。可以通过实验方法或数学模型评估热水机械条件下的这些变化。在本研究中,研究了净平均应力和温度对不饱和状态下GCL水保留和体积变化行为的综合作用。基于实验观察,提出了一种基于宽吸入范围内的GCLS的理论热水机械框架。所提出的框架是在简单的水保留模型和体积组成型模型中实现的,以通过文献中提供的几组实验数据捕获GCL的热水机械行为。该方法的预测结果与实验结果吻合良好。此外,所提出的方法需要最小的输入参数,以预测宽吸入范围内的水保持和体积变化行为。因此,所提出的框架对于在吸入,净平均应力和温度的综合作用下,GCLS的工程应用非常有用。

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