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A study on solute flux in a porous medium with multi-scale heterogeneity

机译:多尺度非均质多孔介质中溶质通量的研究

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In this study, a numerical moment method (NMM) is applied to study groundwater flow and solute transport in a multiple-scale heterogeneous formation. The formation is composed of various materials and conductivity distribution within each material is heterogeneous. The distribution of materials in the domain under study is characterized by an indicator function and the conductivity field within each material is assumed to be statistically stationary. Based on this assumption, a general expression is derived for the covariance function of the composite field in terms of the covariance of the indicator variables and the properties of the composite materials. The NMM is used to investigate the effects of various uncertain parameters on flow and transport predictions in the case study. It is shown from the study results that the two-scale stochastic processes of heterogeneity will both significantly influence the flow and transport predictions, especially for the variances of hydraulic head and solute fluxes.
机译:在这项研究中,数值矩量法(NMM)用于研究多尺度非均质地层中的地下水流和溶质运移。地层由多种材料组成,每种材料内的电导率分布是不均匀的。所研究领域中材料的分布以指示函数为特征,并且每种材料内的电导率场被认为在统计上是固定的。基于此假设,就指示变量的协方差和复合材料的特性而言,得出了复合场协方差函数的一般表达式。在案例研究中,NMM用于研究各种不确定参数对流量和运输预测的影响。研究结果表明,非均质性的两尺度随机过程都将显着影响流量和输运预测,特别是对于水头和溶质通量的变化。

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