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In Situ Investigation of the THM Behavior of the Callovo-Oxfordian Claystone

机译:旨在调查Callovo-oxfordian Claystone的THM行为

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摘要

The thermo-hydro-mechanical behavior of the host rock is essential while designing an underground radioactive waste disposal repository, and in particular, while considering the long-term safety of the facility. In 2000, the French National Radioactive Waste Management Agency (Andra) started constructing an underground research laboratory located in the Meuse Haute Marne to carry out a research program aiming to demonstrate the feasibility of constructing and operating a radioactive waste disposal facility in the Callovo-Oxfordian claystone, and to optimize its implementation. To study the thermo-hydro-mechanical effects of the early thermal phase on the clay host rock of a deep repository, Andra has performed various in situ heating tests; one of them is called the TED experiment. The aim of the TED experiment was to measure the evolution of the temperature and pore pressure fields around several heaters and to back-analyze the thermo-hydro-mechanical properties of the Callovo-Oxfordian claystone. Thermal conductivity and heat capacity values were determined based on the back-analysis of the in situ measurements and compared to those measured on samples. The in situ experimental data and numerical model confirm the anisotropic behavior of the claystone. The TED experiment results demonstrate the ability of current models to predict the evolution of temperature and pore pressure in the far field of disposal cells.
机译:主体岩石的热水机械行为在设计地下放射性废物处理储存库时必不可少,特别是考虑到设施的长期安全性。 2000年,法国国家放射性废物管理局(ANDRA)开始构建位于Meuse Haute Marne的地下研究实验室,开展了一个研究计划,旨在展示在Callovo-oxfordian中构建和操作放射性废物处理设施的可行性粘土石,并优化其实施。为了研究深层热相对深层储存库的早期热相的热水 - 机械效应,ANDRA已经进行了各种原位加热试验;其中一个被称为TED实验。 TED实验的目的是测量几种加热器周围的温度和孔隙压力场的演变,并回到呼叫牛津砂岩的热水机械性能。基于原位测量的后分析确定导热性和热容量值,并与样品上测量的那些相比。原位实验数据和数值模型证实了粘土石的各向异性行为。 TED实验结果表明了当前模型预测远方处理细胞中温度和孔隙压力的演变的能力。

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