A modified equation analysis for immersed boundary methods based on volume penalization: Applications to linear advection–diffusion equations and high-order discontinuous Galerkin schemes
Financiación H2020 / H2020 Funds
Resumen: The Immersed Boundary Method (IBM) is a popular numerical approach to impose boundary conditions without relying on body-fitted grids, thus reducing the costly effort of mesh generation. To obtain enhanced accuracy, IBM can be combined with high-order methods (e.g., discontinuous Galerkin). For this combination to be effective, an analysis of the numerical errors is essential. In this work, we apply, for the first time, a modified equation analysis to the combination of IBM (based on volume penalization) and high-order methods (based on nodal discontinuous Galerkin methods) to analyze a priori numerical errors and obtain practical guidelines on the selection of IBM parameters. The analysis is performed on a linear advection–diffusion equation with Dirichlet boundary conditions. Three ways to penalize the immersed boundary are considered, the first penalizes the solution inside the IBM region (classic approach), whilst the second and third penalize the first and second derivatives of the solution. We find optimal combinations of the penalization parameters, including the first and second penalizing derivatives, resulting in minimum errors. We validate the theoretical analysis with numerical experiments for one- and two-dimensional advection–diffusion equations
Idioma: Inglés
DOI: 10.1016/j.compfluid.2023.105869
Año: 2023
Publicado en: Computers and Fluids 257 (2023), 105869 [16 pp.]
ISSN: 0045-7930

Factor impacto JCR: 2.5 (2023)
Categ. JCR: MECHANICS rank: 71 / 170 = 0.418 (2023) - Q2 - T2
Categ. JCR: COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS rank: 88 / 170 = 0.518 (2023) - Q3 - T2

Factor impacto CITESCORE: 5.3 - Engineering (all) (Q1) - Computer Science (all) (Q2)

Factor impacto SCIMAGO: 0.885 - Computer Science (miscellaneous) (Q1) - Engineering (miscellaneous) (Q1)

Financiación: info:eu-repo/grantAgreement/EC/H2020/813605/EU/813605/ASIMIA
Financiación: info:eu-repo/grantAgreement/EC/H2020/956104/EU/CODA: Next generation of industrial aerodynamic simulation code/NextSim
Financiación: info:eu-repo/grantAgreement/ES/MICINN AEI/EIN2020-112315
Tipo y forma: Artículo (Versión definitiva)

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