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首页> 外文期刊>Journal of hydrologic engineering >Comparison of Numerical Techniques Used for Simulating Variable-Density Flow and Transport Experiments
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Comparison of Numerical Techniques Used for Simulating Variable-Density Flow and Transport Experiments

机译:模拟变密度流和输运实验的数值技术比较

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摘要

The writers investigated the relative performance of three different numerical techniques available in the SEAWAT/MT3DMS code by simulating two new variable-density-flow and transport experimental data sets. The experiments were designed to represent two distinctly different variable-density configurations that involve transport of a sinking groundwater plume and a rising groundwater plume. The numerical techniques used for simulating these experiments included the method of characteristics approach (MOC), total-variation-diminishing scheme (TVD), and finite-difference scheme (FD). Both homogeneous and heterogeneous hydraulic conductivity fields were employed in the numerical simulations to explore the effects of heterogeneities. The results indicate that all three numerical methods have limitations and were not able to satisfactorily reproduce the instabilities observed in the experimental data sets. The results show the need for improving the accuracy of numerical techniques that are currently being used for solving variable-density groundwater flow problems.
机译:作者通过模拟两个新的可变密度流和运输实验数据集,研究了SEAWAT / MT3DMS代码中可用的三种不同数值技术的相对性能。实验设计为代表两种截然不同的可变密度配置,其中涉及下沉的地下水羽流和上升的地下水羽流的运输。用于模拟这些实验的数值技术包括特征方法(MOC),总变化量减小方案(TVD)和有限差分方案(FD)。数值模拟中均采用了均质和非均质导水率场,以探讨非均质性的影响。结果表明,所有三种数值方法都有局限性,不能令人满意地重现在实验数据集中观察到的不稳定性。结果表明,需要提高数值技术的准确性,这些数值技术目前正用于解决密度可变的地下水流问题。

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