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Porosity reduction at material interface as a result of water-rock interactions in the context of deep geological waste disposal

机译:由于深层地质废物处理的背景下的水岩相互作用,材料界面处的孔隙率降低

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Due to the time scale of potential clogging of pores in deep geological waste repository systems(thousands of years), a modeling approach is required to predict this effect quantitatively. Modeling has to be combined with experiments focusing on the phenomenology to be implemented in the models. This includes changes in the reactive transport parameters due to the decrease of porosity, but also changes in flow patterns in some cases. Existing results and design of a new 2D-clogging experiment is presented. The role of porosity reduction is discussed in terms of robustness as a safety function in radioactive waste repositories.
机译:由于深层地质废物库系统(千年)孔的潜在堵塞的时间规模,需要一种造型方法来定量预测这种效果。建模必须与专注于在模型中实施的现象学的实验相结合。这包括由于孔隙率降低而导致的反应性传输参数的变化,但在某些情况下也是流动模式的变化。提出了新的2D堵塞实验的现有结果和设计。在放射性废物储存库中的安全功能方面讨论了孔隙度减少的作用。

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