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Fractal approach to hydraulic properties in unsaturated porous media

机译:分形方法研究非饱和多孔介质中的水力性质

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摘要

Modelling flow and Solute transport in unsaturated porous media on the basis of the Richards equation requires specifying values for unsaturated hydraulic conductivity and water potential as a function of saturation. The high cost and large spatial variability of measurements makes the prediction of these properties a viable alternative. Fractal approach seems to be a potentially useful tool to describe hierarchical systems and is suitable to model the structure and hydraulic properties of porous media. In this paper, the fractal model for the pore-size distribution of unsaturated soils is constructed. The soil-water characteristics, hydraulic conductivity and soil-water diffusivity of unsaturated soils are derived and expressed by only two parameters, the fractal dimension and the air-entry value, which can be evaluated from the fractal model for the pore-size distribution. The predictions of the soil-water characteristics, hydraulic conductivity and soil-water diffusivity of unsaturated soils are in good accord with the published experimental data. Correlation between the pore-size distribution and the grain-size distribution is also studied, and it is found that both the pore-size distribution and the grain-size distribution satisfy the fractal model and they have the same fractal dimension. The fractal dimension of the grain-size distribution can be used to determine the unsaturated hydraulic conductivity, instead of the fractal dimension of the pore-size distribution. (C) 2003 Elsevier Ltd. All rights reserved.
机译:根据理查兹方程对不饱和多孔介质中的流动和溶质运移进行建模,需要指定不饱和水力传导率和水势与饱和度的函数值。测量的高成本和较大的空间变异性使对这些属性的预测成为可行的选择。分形方法似乎是描述分层系统的潜在有用工具,适用于对多孔介质的结构和水力特性进行建模。本文建立了非饱和土孔径分布的分形模型。得出非饱和土壤的土壤-水特征,水力传导率和土壤-水扩散系数,仅用分形维数和空气进入值这两个参数表示,可以从分形模型对孔径分布进行评估。非饱和土的土壤水分特征,水力传导率和土壤水扩散率的预测与已发表的实验数据非常吻合。研究了孔径分布与晶粒尺寸分布之间的相关性,发现孔径分布和晶粒尺寸分布均满足分形模型,并且具有相同的分形维数。粒度分布的分形维数可以用来确定不饱和水力传导率,而不是孔径分布的分形维数。 (C)2003 Elsevier Ltd.保留所有权利。

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