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Stochastic analysis of the effect of spatial variability of diffusion parameters on radionuclide transport in low permeability clay layer

机译:扩散参数空间变异性对低渗透性黏土层中放射性核素迁移影响的随机分析

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摘要

Most studies that incorporate subsurface heterogeneity in groundwater flow and transport models only analyze and simulate the spatial variability of hydraulic conductivity. Heterogeneity of the other flow and transport parameters is usually neglected. This approach is often justified, but there are however cases in which disregarding the heterogeneity of the other flow and transport parameters can be questionable. In low permeability media, for instance, diffusion is often the dominant transport mechanism. It therefore seems logical to incorporate the spatial variability of the diffusion parameters in the transport model. This study therefore analyzes and simulates the spatial variability of the effective diffusion coefficient and the diffusion accessible porosity with geostatistical techniques and incorporates their heterogeneity in the transport model of a low permeability formation. The calculated output radionuclide fluxes of this model are compared with the fluxes calculated with a homogeneous model and a model with a heterogeneous hydraulic conductivity distribution. This analysis shows that the heterogeneity of the diffusion parameters has a much larger effect on the calculated output radionuclide fluxes than the heterogeneity of hydraulic conductivity.
机译:大多数将地下非均质性纳入地下水流和运输模型的研究仅分析和模拟水力传导率的空间变异性。其他流动和运输参数的异质性通常被忽略。这种方法通常是有道理的,但是在某些情况下,忽视其他流量和传输参数的异质性可能会引起质疑。例如,在低渗透性介质中,扩散通常是主要的传输机制。因此,在运输模型中纳入扩散参数的空间变异性似乎是合乎逻辑的。因此,本研究利用地统计学方法分析和模拟了有效扩散系数和扩散可及孔隙度的空间变异性,并将其非均质性纳入了低渗透性地层的运移模型中。将计算出的该模型的输出放射性核素通量与通过均质模型和具有非均质水力传导率分布的模型计算出的通量进行比较。该分析表明,与水力传导率的非均质性相比,扩散参数的非均质性对计算的输出放射性核素通量的影响要大得多。

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