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A singular parameterized finite volume method for the advection-diffusion equation in irregular geometries

  • Hefei University of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Solving the advection-diffusion equation in irregular geometries is of great importance for realistic simulations. To this end, we adopt multi-patch parameterizations to describe irregular geometries. Different from the classical multi-patch parameterization method, C1continuity is introduced in order to avoid designing interface conditions between adjacent patches. However, singularities of parameterizations can’t always be avoided. Thus, in this paper, a finite volume method is proposed based on smooth multi-patch singular parameterizations. It is called a singular parameterized finite volume method. Firstly, we present a numerical scheme for pure advection equation and pure diffusion equation respectively. Secondly, numerical stability results in L2 norm show that the numerical method is not suffered from the singularities. Thirdly, the numerical method has second order accurate in L2 norm. Finally, three numerical tests in different irregular geometries are presented to show efficiency of this numerical method.

Original languageEnglish
Pages (from-to)579-608
Number of pages30
JournalJournal of Computational Mathematics
Volume37
Issue number5
DOIs
StatePublished - 2019

Keywords

  • Finite volume method
  • Irregular geometries
  • Smooth multi-patch singular parameterizations
  • The advection-diffusion equation

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