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首页> 外文期刊>Advances in Water Resources >Flow based oversampling technique for multiscale finite element methods
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Flow based oversampling technique for multiscale finite element methods

机译:基于流的多尺度有限元过采样技术

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摘要

Oversampling techniques are often used in porous media simulations to achieve high accuracy in multiscale simulations. These methods reduce the effect of artificial boundary conditions that are imposed in computing local quantities, such as upscaled permeabilities or basis functions. In the problems without scale separation and strong non-local effects, the oversampling region is taken to be the entire domain. The basis functions are computed using single-phase flow solutions which are further used in dynamic two-phase simulations. The standard oversampling approaches employ generic global boundary conditions which are not associated with actual flow boundary conditions. In this paper, we propose a flow based oversampling method where the actual two-phase flow boundary conditions are used in constructing oversampling auxiliary functions. Our numerical results show that the flow based oversampling approach is several times more accurate than the standard oversampling method. We provide partial theoretical explanation for these numerical observations.
机译:过采样技术通常用于多孔介质模拟中,以在多尺度模拟中实现高精度。这些方法减少了在计算局部量(例如,较高的渗透率或基函数)时施加的人为边界条件的影响。在没有规模分离和强烈的非局部效应的问题中,将过采样区域视为整个域。基本函数是使用单相流动解决方案计算的,该解决方案还用于动态两相模拟中。标准的过采样方法采用与实际流边界条件无关的通用全局边界条件。在本文中,我们提出了一种基于流量的过采样方法,该方法将实际的两相流边界条件用于构造过采样辅助函数。我们的数值结果表明,基于流的过采样方法比标准过采样方法准确几倍。我们为这些数值观测提供部分理论解释。

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