A sub-grid structure enhanced discontinuous Galerkin method for multiscale diffusion and convection-diffusion problems

Tsz Shun Eric CHUNG Wing Tat Leung

TBD mathscidoc:1910.43481

Communications in Computational Physics, 14, (2), 370-392, 2013.8
In this paper, we present an efficient computational methodology for diffusion and convection-diffusion problems in highly heterogeneous media as well as convection-dominated diffusion problem. It is well known that the numerical computation for these problems requires a significant amount of computer memory and time. Nevertheless, the solutions to these problems typically contain a coarse component, which is usually the quantity of interest and can be represented with a small number of degrees of freedom. There are many methods that aim at the computation of the coarse component without resolving the full details of the solution. Our proposed method falls into the framework of interior penalty discontinuous Galerkin method, which is proved to be an effective and accurate class of methods for numerical solutions of partial differential equations. A distinctive feature of our method is that the solution space
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@inproceedings{tsz2013a,
  title={A sub-grid structure enhanced discontinuous Galerkin method for multiscale diffusion and convection-diffusion problems},
  author={Tsz Shun Eric CHUNG, and Wing Tat Leung},
  url={http://archive.ymsc.tsinghua.edu.cn/pacm_paperurl/20191020180248633158010},
  booktitle={Communications in Computational Physics},
  volume={14},
  number={2},
  pages={370-392},
  year={2013},
}
Tsz Shun Eric CHUNG, and Wing Tat Leung. A sub-grid structure enhanced discontinuous Galerkin method for multiscale diffusion and convection-diffusion problems. 2013. Vol. 14. In Communications in Computational Physics. pp.370-392. http://archive.ymsc.tsinghua.edu.cn/pacm_paperurl/20191020180248633158010.
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