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A Column Experiment to Study the Thermo-Hydro-Mechanical Behaviour of Expansive Soils

机译:膨胀土热水力学行为的柱试验

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The study of heat transfer, water flow, and swelling pressure development in engineered clay barriers and the evaluation of the influence of these phenomena on the barrier properties are important issues for predicting the performance of nuclear waste repository facilities. In this work, an experimental setup is presented especially meant to assess the response of the sand-bentonite mixture under conditions close to that of the buffer in a radioactive waste repository. A newly developed column device for laboratory testing of coupled thermo-hydro-mechanical (THM) behaviour of clay-buffer materials is introduced and its calibration, verification and the first experimental data are presented and discussed. The main features of the column device are: hydraulic and thermal gradients are possible to be applied; water content, suction and temperature development can be measured continuously at three locations along the sample height; swelling stress can be measured at top and the bottom of the sample. Measuring transient temperature, water content and suction simultaneously at the same height levels and with special care to minimise the sample disturbance is one of the advantages of the column device proposed here when compared to that previously reported in the literature. The main objectives of this paper are: (1) to describe the experimental device, (2) to introduce the sensors implemented and their calibration, and (3) to present and discuss the first experimental results obtained with the new equipment. The first experimental results show promise in the ability of the newly developed column device to provide reliable data for assessing the THM behaviour of expansive materials that are foreseen as buffer material in high level waste repositories.
机译:工程粘土屏障的传热,水流和膨胀压力发展的研究以及这些现象对屏障性能的影响的评估是预测核废料储存设施性能的重要问题。在这项工作中,提出了一种实验装置,特别是用来评估在接近放射性废物库中缓冲液的条件下,砂-膨润土混合物的响应。介绍了一种新的用于测试粘土缓冲材料的热-水-机械耦合特性的色谱柱装置,并介绍和讨论了其校准,验证和第一批实验数据。色谱柱设备的主要特点是:可以应用液压梯度和热梯度;可以沿着样品高度在三个位置连续测量水分,吸力和温度变化;可以在样品的顶部和底部测量膨胀应力。与以前的文献报道相比,在同一高度水平上同时测量瞬态温度,水含量和吸力,并要特别小心以最大程度地减少样品干扰,是此处提出的色谱柱设备的优点之一。本文的主要目的是:(1)描述实验设备,(2)介绍实现的传感器及其校准,(3)介绍和讨论使用新设备获得的第一个实验结果。最初的实验结果表明,新开发的色谱柱设备能够提供可靠的数据,以评估膨胀材料的THM行为,这些材料被预料为高级废物处置库中的缓冲材料。

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