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首页> 外文期刊>Journal of porous media >NUMERICAL MODELING OF CONTAMINANT TRANSPORT IN FRACTURED POROUS MEDIA USING MIXED FINITE-ELEMENT AND FINITE-VOLUME METHODS
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NUMERICAL MODELING OF CONTAMINANT TRANSPORT IN FRACTURED POROUS MEDIA USING MIXED FINITE-ELEMENT AND FINITE-VOLUME METHODS

机译:混合有限元和有限体积法数值模拟破裂多孔介质中污染物的输运

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摘要

A mathematical model for contaminant species passing through fractured porous media is presented. In the numerical model, we combine two locally conservative methods; i.e., the mixed finite-element (MFE) method and the finite-volume method. Adaptive triangle mesh is used for effective treatment of the fractures. A hybrid MFE method is employed to provide an accurate approximation of velocity fields for both the fractures and matrix, which are crucial to the convection part of the transport equation. The finite-volume method and the standard MFE method are used to approximate the convection and dispersion terms, respectively. The temporary evolution for the pressure distributions, streamline fields, and concentration profiles are obtained for six different arrangements of fractures. The results clearly show the distorted concentration effects caused by the ordered and disordered (random) patterns of the fractures and illustrate the robustness and efficiency of the proposed numerical model.
机译:提出了通过破裂的多孔介质的污染物种类的数学模型。在数值模型中,我们结合了两种局部保守方法:即混合有限元(MFE)方法和有限体积方法。自适应三角形网格用于有效治疗骨折。混合MFE方法用于为裂缝和基质提供精确的速度场近似值,这对于输运方程的对流部分至关重要。有限体积法和标准MFE法分别用于近似对流项和色散项。对于六种不同的裂缝布置,获得了压力分布,流线场和浓度剖面的临时演变。结果清楚地表明了由有序和无序(随机)的裂缝模式引起的畸变集中效应,并说明了所提出数值模型的鲁棒性和效率。

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