论文标题

横向各向同性页岩的热孔弹性行为:热膨胀和加压

Thermo-poro-elastic behaviour of a transversely isotropic shale: Thermal expansion and pressurization

论文作者

Braun, Philipp, Ghabezloo, Siavash, Delage, Pierre, Sulem, Jean, Conil, Nathalie

论文摘要

Callovo-Oxfordian(Cox)粘土石被认为是法国深层放射性废物存储库的候选宿主岩石。由于放热的废物包,预计岩石将提交至90°C的温度。温度升高会引起宿主岩石的变形,并增加孔隙压力,涉及复杂的热氢机械(THM)耦合。这项研究旨在更好地表征Cox粘土岩对实验室温度变化的THM响应。为此,在接近原位的压力条件下,在温度控制的高压各向同性压缩细胞中测试了粘土岩标本。沿不同的加热和冷却路径上的样品上施加热荷载。温度校正的应变计系统提供了对试样的各向异性应变响应的精确测量。在两个横向各向同性方向上排水和未排水的热膨胀系数。孔隙压力变化在未排水状态下的测量得出的热加压系数。分析了所有参数在热孔弹性框架中的兼容性,并确定了其应力和温度依赖性。

The Callovo-Oxfordian (COx) claystone is considered as a candidate host rock for a deep geological radioactive waste repository in France. Due to the exothermic waste packages, the rock is expected to be submitted to temperatures up to 90 °C. The temperature rise induces deformations of the host rock, together with an increase in pore pressures, involving complex thermo-hydro-mechanical (THM) couplings. This study aims to better characterize the THM response of the COx claystone to temperature changes in the laboratory. To this end, claystone specimens were tested in a temperature controlled, high pressure isotropic compression cell, under stress conditions close to the in-situ ones. Thermal loads were applied on the specimens along different heating and cooling paths. A temperature corrected strain gage system provided precise measurements of the anisotropic strain response of the specimens. Drained and undrained thermal expansion coefficients in both transversely isotropic directions were determined. The measurement of pore pressure changes in undrained condition yielded the thermal pressurization coefficient. All parameters were analysed for their compatibility within the thermo-poro-elastic framework, and their stress and temperature dependency was identified.

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