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首页> 外文期刊>Soils and foundations >MULTI-COMPONENT MIGRATION IN THE GAS PHASE OF SOIL: COMPARISON BETWEEN RESULTS OF EXPERIMENTS AND SIMULATION BY DUSTY GAS MODEL
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MULTI-COMPONENT MIGRATION IN THE GAS PHASE OF SOIL: COMPARISON BETWEEN RESULTS OF EXPERIMENTS AND SIMULATION BY DUSTY GAS MODEL

机译:土壤气相中的多组分迁移:实验结果与含尘气体模型模拟的比较

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摘要

Fick's law has been used to simulate gas systems within soil, although this law can be applied only to binary gas systems and the effect of the Knudsen diffusion is not considered. By contrast, the dusty gas model can be applied to multi-component gas systems with Knudsen diffusion. Blanc's law is a simplified version of the dusty gas model, but it can be used only for gas systems in which the tracer gas is dilute. Although the dusty gas model is superior to other methods for simulating gas systems within soil, it is not generally used because of its complexity. Numerical techniques such as the Eulerian-Lagrangian method for solving the advection-dispersion equation can be used to simulate the migration of chemical substance in the water or gas phases of soil within the range of every Peclet number. We derived the compound diffusion coefficient and compound velocity from the dusty gas model and formulated the advection-diffusion equation with these values by using the characteristic finite element scheme. Results of the model developed here were consistent with the results of column experiments conducted in this study, and the precision of the developed model was verified.
机译:尽管该定律仅适用于二元气体系统,并且未考虑克努森扩散的影响,但已使用菲克定律模拟土壤中的气体系统。相比之下,含尘气体模型可以应用于具有Knudsen扩散的多组分气体系统。布兰克定律是含尘气体模型的简化版本,但仅可用于将示踪气体稀释的气体系统。尽管含尘气体模型优于其他模拟土壤中气体系统的方法,但由于其复杂性,因此通常不使用它。求解对流扩散方程的诸如Eulerian-Lagrangian方法之类的数值技术可用于模拟化学物质在每个Peclet数范围内在土壤的水相或气相中的迁移。我们从含尘气体模型推导了复合扩散系数和复合速度,并通过特征有限元格式用这些值建立了平流扩散方程。在此开发的模型的结果与本研究中进行的柱实验的结果一致,并且验证了所开发模型的精度。

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