首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Coupled thermo-hydro-mechanical analysis of a heater test in fractured rock and bentonite at Kamaishi Mine - comparison of field results to predictions of four finite element codes
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Coupled thermo-hydro-mechanical analysis of a heater test in fractured rock and bentonite at Kamaishi Mine - comparison of field results to predictions of four finite element codes

机译:釜石矿在裂隙岩和膨润土中的加热器试验的热-水-力学耦合分析-野外结果与四个有限元代码预测的比较

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Four computer codes were applied for a prediction of coupled thermo-hydro-mechanical responses during an in situ heater experiment which simulates a nuclear waste deposition hole with a waste over-pack and bentonite buffer, surrounded by fractured rock. The elevated temperature in the heater surroundings, which was maintained at 100 C for 8.5 months, generated substantial heat-driven moisture flow and swelling in the clay buffer, and thermal expansion of the surrounding fractured rock. Predicted system responses - including temperature. moisture content, fluid pressure, stress and displacement - were compared to measurements at 70 sensors located both in the clay buffer and the near-field rock. An overall good agreement between modeling and measured results indicates that most thermo-hydro-mechanical responses are fairly well represented by the coupled numerical models. Uncertainties occur for modeling of hydromechanical behavior of the swelling clay buffer at low saturation, modeling of near-field heterogeneous mechanical behavior of the low-stressed fractured reek, and modeling of the rock-buffer interface. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 7]
机译:在原位加热器实验过程中,应用了四个计算机代码来预测耦合的热-水-机械响应,该实验模拟了一个核废料沉积孔,该废料孔带有废物堆积和膨润土缓冲液,被破裂的岩石包围。加热器环境中的高温在100°C下保持8.5个月,在黏土缓冲液中产生了大量的热驱动水分流和溶胀,以及周围裂隙岩石的热膨胀。预测的系统响应-包括温度。水分含量,流体压力,应力和位移-与位于粘土缓冲器和近场岩石中的70个传感器的测量值进行了比较。建模与测量结果之间的总体良好一致性表明,大多数热-水-机械响应都可以通过耦合数值模型很好地表示。在低饱和度条件下,膨胀黏土缓冲器的流体力学行为建模,低应力裂缝口的近场非均质力学行为建模以及岩石-缓冲界面的建模都存在不确定性。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:7]

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