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The Healing Process of the Joints between Buffer Material Blocks and the Influence on Solute Migration

机译:缓冲材料块关节的愈合过程及对溶质迁移的影响

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A set of thermo-hydro-mechanical coupling control equations was established, and the healing process of the joints between Gaomiaozi bentonite (GMZ01) buffer material blocks and the influence of the joint parameters were numerically simulated. The calculations consider the effect of joints on solute migration, the permeability and thermal conductivity of the buffer material, and the evolution of the healing effect. The effects of the joint design parameters, including the type, number, width, splicing form, and average dry density of the joint, are investigated. Studies show that, under an external water head, the joints will become hydraulic priority channels due to their higher permeability, which will shorten the saturation time of the blocks. As the bentonite gradually saturates, the swelling force compresses the joint material. This action improves the overall uniformity of the buffer material and reduces the priority channel effect. Meanwhile, the final average permeability and diffusion coefficient of the buffer material are found to mainly depend on the average dry density of the buffer material. The higher the average dry density of the buffer material is, the lower the final average permeability and diffusion coefficient are, whereas the distribution of joints and the block splicing are less affected by the average dry density of the buffer material. The findings of this study can provide a reference for the design of bentonite buffer material blocks in the repository.
机译:建立了一组热水 - 机械耦合控制方程,数值模拟了高级膨润土(GMZ01)缓冲材料块之间的关节的愈合过程和关节参数的影响。计算考虑关节对缓冲材料的溶质迁移,渗透率和导热性的影响,以及愈合效果的演变。研究了关节设计参数的影响,包括关节的类型,数量,宽度,拼接形式和平均干密度。研究表明,在外部水头下,接头将成为液压优先频道由于其较高的渗透率,这将缩短块的饱和时间。当膨润土逐渐饱和时,溶胀力压缩接头材料。该动作提高了缓冲材料的整体均匀性并降低了优先级频道效应。同时,发现缓冲材料的最终平均渗透性和扩散系数主要取决于缓冲材料的平均干密度。缓冲材料的平均干密度越高,最终平均渗透率和扩散系数越低,而接头的分布和块剪接的分布受缓冲材料的平均干密度的影响较小。该研究的发现可以为储存库中的膨润土缓冲材料块设计提供参考。

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