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首页> 外文期刊>Rock Mechanics and Rock Engineering >A Laboratory Investigation on Thermal Properties of the Opalinus Claystone
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A Laboratory Investigation on Thermal Properties of the Opalinus Claystone

机译:蛋白石粘土的热学性质的室内研究

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Some aspects of the thermal behavior of the Opalinus claystone are investigated through laboratory tests conducted on a new hollow cylinder triaxial apparatus specially designed for studying the thermo-hydromechanical behavior of very low permeable materials. Two hollow cylinder samples are first resaturated under isotropic stress state equal to the mean effective in situ one in order to minimize swelling and induced damage during the resaturation phase. Two drained heating–cooling cycles are performed on the first sample of Opalinus claystone. During the first cycle, a thermo-elasto-plastic response similar to that of plastic clays with low overconsolidation ratio is obtained. The thermal hardening of the sample is demonstrated by the quasi-reversible behavior of the sample during the second heating–cooling cycle. An undrained heating test performed on the second sample of Opalinus claystone induces an excess pore pressure in this sample. This induced pore pressure is attributed to the higher thermal expansion coefficient of pore water compared to that of the solid phase. It is shown that the excess pore pressure generated in the sample by undrained heating cannot be modeled by considering the free water thermal expansion coefficient. The thermal expansion coefficient of the Opalinus claystone water is back-analyzed from the experimental results which show a higher value than free water.
机译:通过在新型中空圆柱三轴设备上进行的实验室测试,对Opalinus粘土岩的热行为的某些方面进行了研究,该设备专门设计用于研究极低渗透性材料的热流体力学行为。首先将两个空心圆柱体样品在各向同性应力状态下重新饱和,该状态等于平均有效原位应力,以便最大程度地减小重新饱和阶段的膨胀和诱发的破坏。对Opalinus粘土岩的第一个样品进行了两个排干的加热-冷却循环。在第一个循环中,获得了与低固结率低的塑料粘土相似的热弹塑性响应。样品的热硬化通过第二个加热-冷却循环期间样品的准可逆行为来证明。在Opalinus粘土岩的第二个样品上进行的不排水加热测试在该样品中产生了过大的孔隙压力。该诱导的孔隙压力归因于孔隙水的热膨胀系数高于固相的热膨胀系数。结果表明,不能通过考虑自由水的热膨胀系数来模拟不排水加热在样品中产生的过量孔隙压力。从实验结果反分析了Opalinus粘土岩水的热膨胀系数,该值显示出比游离水更高的值。

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