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首页> 外文期刊>Journal of Scientific Computing >Multiscale Hybridizable Discontinuous Galerkin Method for Flow Simulations in Highly Heterogeneous Media
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Multiscale Hybridizable Discontinuous Galerkin Method for Flow Simulations in Highly Heterogeneous Media

机译:多尺度杂交的不连续的Galerkin方法,用于高度异构媒体的流动模拟

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摘要

We propose a multiscale hybridizable discontinuous Galerkin method for Darcy flow and two phase flow simulations in highly heterogeneous media. The multiscale space consists of offline and online multiscale basis functions. The offline basis functions are constructed by solving appropriate local spectral problem, and thus contain important local media information. The online basis functions are computed iteratively with the residuals of previous multiscale solution on selected local regions. Typically, the offline basis provides initial multiscale solution for constructing online basis. For the two phase flow simulations, we only compute the basis space for the initial permeability field and keep it fixed as time advancing. Numerical experiments show the multiscale solution can approximate the fine scale solution accurately for both types of flow simulations.
机译:我们提出了一种用于达西流动的多尺度杂交的不连续的Galerkin方法,以及在高度异质介质中的两个相流模拟。多尺度空间包括离线和在线多尺度基本功能。通过解决适当的局部光谱问题来构建离线基函数,因此包含重要的本地媒体信息。在线基本函数迭代地计算所选本地区域上的先前多尺度解决方案的残差。通常,离线基础为构建在线提供初始多尺度解决方案。对于两相流模拟,我们只计算初始渗透性场的基础空间,并将其保持为时间推进。数值实验表明,多尺度解决方案可以准确地近似于两种类型的流模拟。

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