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Characterizing heterogeneous soil water flow and solute transport using information measures
Authors:Kang Wang  Renduo Zhang  Yasuda Hiroshi
Institution:aState Key Lab. of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan 430072, China;bSchool of Environmental Science and Engineering, Sun Yat-Sen (Zhongshan) University, Guangzhou 510275, China;cArid Land Research Center, Tottori University, Hamasaka 1390, Tottori 680-0001, Japan
Abstract:Heterogeneous water flow and solute transport in soils are an important phenomenon and difficult to be characterized. The objectives of this study were to investigate the heterogeneity of solute transport related to heterogeneous soil water flow using dye infiltration experiments, and to characterize heterogeneous water flow and solute transport in soils using the information theory. Field experiments of dye infiltration were performed in four plots. Various information measures were applied to characterize information content and complexity of water flow and solute transport in soils. Information contents and complexities of the maximum and apparent infiltration depths, and the mean and standard deviation of concentrations in the vertical direction of the plots were calculated. More heterogeneous processes of soil water flow and transport result in higher information/complexity values. The probability distributions of mean concentration were similar to those of the corresponding apparent infiltration depths for the plots, indicating that heterogeneity of dye concentrations was closely related to that of soil water flow. However, the range of information entropy and complexity of the water flow sequences was much narrower than that of the sequences of the concentrations. The results suggested that the transport processes were more heterogeneous than the water flow processes. Compared with the probability distributions of flow parameters, the information measures appeared to be a more versatile tool to describe flow and transport heterogeneities in soils.
Keywords:Flow heterogeneity  Information measures  Solute transport  Dye experiments
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