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Modelling the vertical distribution of radionuclides in soil. Part 1: the convection-dispersion― equation revisited

机译:模拟土壤中放射性核素的垂直分布。第1部分:对流色散方程

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The convective-dispersive transport and linear sorption model is discussed for the vertical migration of radionuclides in soil. An alternative procedure of solving the corresponding system of partial differential equations is presented as well as the special solution for the pulse-like fallout initial condition. Idealizations and simplifications of the model and properties of the solution are discussed. The model is fitted to a set of 528 measured radionuclide soil profiles and the resulting model parameters, apparent convection velocity v and apparent dispersion constant D, are evaluated statistically. Typical orders of magnitude of the velocities and the diffusion constants of Chernobyl-~(134)Cs are 0.3 cm/year and 0.3 cm~2/year, respectively. The mobilities of the radionuclides are ranked as ~(137)Cs (global fallout) < ~(134)Cs <~(106)Ru, ~(125)Sb. Significant regional differences (related to different soils and geological properties below ground) of v and D exist. These analyses also indicate that v and D are not mere fitting parameters, but can be given a real physical interpretation. While in most cases, the convection-dispersion equation (CDE) model produces good descriptions for near-surface soil layers, potentially important limitations are its failure to describe "young" profiles shortly after fallout.
机译:讨论了放射性核素在土壤中垂直迁移的对流扩散和线性吸附模型。提出了求解相应的偏微分方程组的替代方法,以及针对脉冲状辐射初始条件的特殊解决方案。讨论了模型的理想化和简化以及解决方案的性质。将模型拟合到一组528个测量的放射性核素土壤剖面,并对得到的模型参数,表观对流速度v和表观弥散常数D进行统计评估。切尔诺贝利-((134)Cs)的速度和扩散常数的典型数量级分别为0.3 cm /年和0.3 cm〜2 /年。放射性核素的迁移率被定为〜(137)Cs(整体沉降)<〜(134)Cs <〜(106)Ru,〜(125)Sb。存在明显的v和D区域差异(与地下不同的土壤和地质特性有关)。这些分析还表明,v和D不仅是拟合参数,而且可以给出真实的物理解释。尽管在大多数情况下,对流弥散方程(CDE)模型可以很好地描述近地表土壤层,但潜在的重要限制是其无法在沉降后不久描述“年轻”剖面。

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