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Thermo-Hydro Mechanical Column Experiment to Study Expansive Soil Behaviour

机译:热工机械柱实验研究膨胀土行为

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摘要

Understanding the heat transfer, water flow, and swelling pressure development in engineered clay barrier and the evaluation of the influence of these phenomena on the barrier performance are important issues in constructing nuclear waste repositories. The thermal, hydraulic and mechanical processes that take place within the clay barrier during its functioning lifetime are strongly coupled and therefore difficult for experimental and numerical modelling. In order to collect valuable experimental data for predicting the long term barrier functionality it is necessary to carry out tests with known and controlled initial and boundary conditions as well as to measure temperature, water content and mechanical stress along the specimen in a reliable and robust way. For this reason a new apparatus has been developed for laboratory testing of coupled thermo-hydro-mechanical behaviour of clay-buffer material under conditions close to the situation in the field. 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 the first experimental results obtained with the new equipment.
机译:理解工程粘土屏障的传热,水流和膨胀压力发展以及评估这些现象对屏障性能的影响是构建核废料处置库的重要问题。黏土屏障在其使用寿命期间发生的热,水力和机械过程紧密耦合,因此很难进行实验和数值建模。为了收集有价值的实验数据以预测长期的屏障功能,有必要在已知和受控的初始和边界条件下进行测试,并以可靠且可靠的方式测量沿样品的温度,水含量和机械应力。因此,已经开发出一种新的设备,用于在接近现场情况的条件下对粘土缓冲材料的热-水-机械耦合行为进行实验室测试。本文的主要目的是:(1)描述实验装置; (2)介绍实施的传感器及其校准,以及(3)介绍使用新设备获得的第一个实验结果。

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  • 来源
  • 会议地点 Lausanne(CH)
  • 作者单位

    Chair for Foundation Engineering, Soil and Rock Mechanics, Ruhr-Universitat Bochum, Germany;

    Chair for Foundation Engineering, Soil and Rock Mechanics, Ruhr-Universitat Bochum, Germany;

    Institute of Mechanics - Bulgarian Academy of Sciences Acad. G. Bontchev, block 4,1113 Sofia Bulgaria;

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  • 正文语种 eng
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