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Comparison of transport simulations and equivalent dispersion coefficients in heterogeneous media generated by different numerical methods: A genesis model and a simple geostatistical sequential Gaussian simulator

机译:不同数值方法在非均质介质中的传输模拟和等效弥散系数的比较:成因模型和简单的地统计顺序高斯模拟器

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This article presents a genesis method for characterizing heterogeneous media representing alluvial deposits. This method simulates the main steps of the medium genesis for meandering, braided, and incising streams and generates facies, which are then translated into hydraulic conductivities to simulate flow and transport. In order to compare this a€?genetica€? model with other methods commonly used to characterize heterogeneous media, a basic sequential Gaussian indicator method was applied to the same site: a 5200-m-long reach of the Aube River floodplain (France). Ten different geostatistical realizations were generated. An equivalent homogeneous representation was also included. Flow and transport simulations in the different heterogeneous numerical media were conducted with Visual MODFLOW. The results were analyzed and compared in terms of permeability fields, plume spreading, and equivalent longitudinal dispersion. Emphasis is on the ability of the genetic model to represent continuous channels that can serve either as conduits or as barriers to flow, which, we think, is unique.
机译:本文介绍了一种用于表征代表冲积沉积物的非均质介质的成因方法。该方法模拟了河床蜿蜒,编织和切开的介质成因的主要步骤,并生成了相,然后将其转换成水力传导率以模拟流动和运输。为了比较这个“遗传学”在使用通常用于表征异质介质的其他方法进行模型化处理后,将基本的顺序高斯指标方法应用于同一地点:奥伯河漫滩(法国)长达5200米。生成了十个不同的地统计学实现。还包括等效的均质表示。使用Visual MODFLOW进行了不同异构数值介质中的流动和传输模拟。分析并比较了渗透率场,羽流扩散和等效纵向扩散方面的结果。重点在于遗传模型代表连续渠道的能力,这些渠道既可以充当渠道,也可以充当流动障碍,我们认为这是独一无二的。

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