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General polytopal H(div)-conformal finite elements and their discretisation spaces

Abgrall, Rémi; Le Mélédo, Élise; Öffner, Philipp (2021). General polytopal H(div)-conformal finite elements and their discretisation spaces. Mathematical Modelling and Numerical Analysis, 55:S677-S704.

Abstract

We present a class of discretisation spaces and H(div)-conformal elements that can be built on any polytope. Bridging the flexibility of the Virtual Element spaces towards the element’s shape with the divergence properties of the Raviart–Thomas elements on the boundaries, the designed frameworks offer a wide range of H(div)-conformal discretisations. As those elements are set up through degrees of freedom, their definitions are easily amenable to the properties the approximated quantities are wished to fulfil. Furthermore, we show that one straightforward restriction of this general setting share its properties with the classical Raviart–Thomas elements at each interface, for any order and any polytopal shape. Then, to close the introduction of those new elements by an example, we investigate the shape of the basis functions corresponding to particular elements in the two dimensional case.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Institute of Mathematics
Dewey Decimal Classification:340 Law
610 Medicine & health
510 Mathematics
Scopus Subject Areas:Physical Sciences > Analysis
Physical Sciences > Numerical Analysis
Physical Sciences > Modeling and Simulation
Physical Sciences > Computational Mathematics
Physical Sciences > Applied Mathematics
Uncontrolled Keywords:Modelling and Simulation, Applied Mathematics, Analysis, Numerical Analysis
Language:English
Date:1 January 2021
Deposited On:29 Mar 2021 13:13
Last Modified:25 Dec 2024 02:37
Publisher:Cambridge University Press
ISSN:0764-583X
Additional Information:ESAIM: M2AN 55 (2021) S677-S704. Copyright: Cambridge University Press.
OA Status:Hybrid
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1051/m2an/2020048
Project Information:
  • Funder: SNSF
  • Grant ID: 200020_175784
  • Project Title: Solving advection dominated problems with high order schemes with polygonal meshes: application to compressible and incompressible flow problems
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