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Numerical model of fluid flow through heterogeneous rock for high level radioactive waste disposal

机译:通过异构岩石流体流动的数值模型进行高水平放射性废物处理

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An international consensus has emerged that deep geological disposal on land is one of the most appropriate means for high level radioactive wastes (HLW). The fluid transport is slow and radioactive elements are dangerous, so it's impossible to experiment over thousands of years. Instead, numerical model in such natural barrier as fractured underground needs to be considered. Field observations reveal that the equation with fractional derivative is more appropriate for describing physical phenomena than the equation which is based on the Fick's law. Thus, non-Fickian diffusion into inhomogeneous underground appears to be important in the assessment of HLW disposal. A solute transport equation with fractional derivative has been suggested and discussed in literature. However, no attempts' were made to apply this equation for modeling of HLW disposal with account for the radioactive decay. In this study, we suggest the use of a novel fractional advection-diffusion equation which accounts for the effect of radioactive disintegration and for interactions between major, macro pores and fractal micro pores. This model is fundamentally different from previous proposed model of HLW, particularly in utilizing fractional derivative. Breakthrough curves numerically obtained by the present model are presented for a variety of rock types with respect to some important nuclides. Results of the calculation showed that for longer distance our model tends to be more conservative than the conventional Fickian model, therefore our model can be said to be safer.
机译:国际共识已经出现了在土地上深入地质处置是最合适的高水平放射性废物(HLW)的手段之一。流体运输缓慢而放射性元素是危险的,因此实验到数千年来是不可能的。相反,需要考虑这种自然屏障在这种天然屏障中的数值模型需要考虑。现场观察表明,具有分数衍生物的等式更适合于描述物理现象而不是基于Fick的法律的等式。因此,在评估HLW处置时,非Fickian扩散在非均匀地下似乎很重要。已经提出和讨论了具有分数衍生物的溶质传输方程。然而,没有尝试应用这种方程以进行HLW处理的建模,以解释放射性衰变。在这项研究中,我们建议使用一种新的分数平流 - 扩散方程,其占放射性崩解的影响和主要,宏观孔和分形微孔之间的相互作用。该模型与先前提出的HLW模型根本不同,特别是在利用分数衍生物。关于本模型数量地获得的突破曲线对于一些重要核素的各种岩石类型呈现出各种岩石类型。计算结果表明,对于更长的距离,我们的模型往往比传统的Fickian模型更保守,因此我们的模型可以说是更安全的。

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