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ANALYSIS OF PORE STRUCTURE EFFECTS ON DIFFUSION IN OPALINUS CLAY

机译:透明剂粘土扩散孔隙结构作用分析

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Opalinus clay has a high sealing capacity and is therefore considered as viable candidates for hosting radioactive waste in future deep geological repositories. In order to validate and to predict the sealing capacity of the clay and the long-term containment performance of radioactive waste repositories, a comprehensive understanding of transport processes in the clay is necessary. Pore network models are useful for linking material structure to longer length-scale diffusion, but in principle require accurate description of the morphology of real porous media to support model parameterisation, i.e. pore and throat size distribution, connectivity information. Opalinus clay has tight pore spaces and current experimental techniques do not allow for extracting sufficient connectivity data and throat sizes (if at all). This work extends previous works on pore network modelling of porous media with limited structural information. Measured solid phase characteristics balance the insufficient geometrical and topological information for the clay pore systems to construct pore network. The constructed networks are described as mathematical graphs with diffusion modelled as a continuous process in water-saturated bonds. The effects of length scale parameters and shaper factors on effective diffusivities are analyzed in this work. Calculated results are in the range of experimental data in different clay directions. The analyses suggest that the micro-pores, those smaller than 5nm, have major effect on diffusivity. Diffusion of larger complexes can be used for experimental validation of the model. The proposed methodology can be used for any micro and meso-porous material with limited information and be useful for further development of multi-phase and reactive transport.
机译:蛋白石粘土具有高密封能力,因此被视为可行的候选人,用于在未来的深层地质存储库中举办放射性废物。为了验证和预测粘土的密封能力和放射性废物存储库的长期遏制性能,需要全面了解粘土中的运输过程。孔网模型可用于将材料结构连接到更长的长度级扩散,但原则上需要准确描述真实多孔介质的形态,以支持模型参数化,即孔和喉部尺寸分布,连接信息。 Opalinus粘土具有紧密的孔隙空间,目前的实验技术不允许提取足够的连接数据和喉部尺寸(如果有的话)。这项工作在具有有限的结构信息的多孔介质的孔网络建模上扩展了上一项工作。测量的固相特性平衡粘土孔系统的不足的几何信息,以构建孔网络。构造的网络被描述为具有扩散在水饱和键的连续过程中的扩散的数学图。在这项工作中分析了长度参数和平板因子对有效扩散性的影响。计算结果在不同粘土方向上的实验数据范围内。分析表明,小于5nm的微孔对扩散率具有重大影响。较大复合物的扩散可用于模型的实验验证。所提出的方法可以用于任何具有有限信息的微孔和中间多孔材料,可用于进一步发展多相和反应性。

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