Article ID Journal Published Year Pages File Type
4526014 Advances in Water Resources 2011 9 Pages PDF
Abstract

In this short note, we discuss variational multiscale methods for solving porous media flows in high-contrast heterogeneous media with rough source terms. Our objective is to separate, as much as possible, subgrid effects induced by the media properties from those due to heterogeneous source terms. For this reason, enriched coarse spaces designed for high-contrast multiscale problems are used to represent the effects of heterogeneities of the media. Furthermore, rough source terms are captured via auxiliary correction equations that appear in the formulation of variational multiscale methods [23]. These auxiliary equations are localized and one can use additive or multiplicative constructions for the subgrid corrections as discussed in the current paper. Our preliminary numerical results show that one can capture the effects due to both spatial heterogeneities in the coefficients (such as permeability field) and source terms (e.g., due to singular well terms) in one iteration. We test the cases for both smooth source terms and rough source terms and show that with the multiplicative correction, the numerical approximations are more accurate compared to the additive correction.

Research highlights► In this study we model subgrid effects for flows in multiscale media with rough source terms. ► We propose several numerical techniques in the framework of variational multiscale method. ► Our approaches use spectral multiscale basis functions and correction strategies that take into account rough source terms.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Earth-Surface Processes
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