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Multiresolution Wavelet Scale Up of Unstable Miscible Displacements in Flow Through Heterogeneous Porous Media

机译:非均质多孔介质中不稳定流动的多分辨率小波放大

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We describe scale up of geological models of field-scale porous media using a new method based on the wavelet transformations. The porous media of interest contain broadly-distributed and correlated permeabilities. Wavelet transformation of the permeability field of such porous media coarsens the geological model from smallest to largest length scales, drastically reduces the number of equations to be solved, preserves the important information on the permeability field at all the relevant length scales, and yields numerical results for any fluid flow property that are as accurate as those that are obtained with the highly detailed geological model of the same porous media. To test this method, we carry out extensive computer simulations of unstable miscible displacement processes and the associated viscous fingering phenomenon in highly heterogeneous porous media, both with the fine-scale geological model and the coarsened model. Excellent agreement is found between the results of the two sets of simulations.
机译:我们使用基于小波变换的新方法描述了现场规模的多孔介质地质模型的放大。感兴趣的多孔介质包含分布广泛且相关的渗透率。这种多孔介质渗透率场的小波变换使地质模型从最小到最大长度尺度变粗了,大大减少了要求解的方程式的数量,在所有相关长度尺度上保留了有关渗透率场的重要信息,并产生了数值结果对于任何与通过相同多孔介质的高度详细的地质模型获得的流体流动特性一样精确的流体流动特性。为了测试此方法,我们使用精细的地质模型和粗糙的模型,对高度非均质多孔介质中不稳定的混相驱替过程和相关的粘性指状现象进行了广泛的计算机模拟。在两组模拟结果之间发现了极好的一致性。

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