Finite element differential forms on cubical meshes

Author:

Arnold Douglas,Awanou Gerard

Abstract

We develop a family of finite element spaces of differential forms defined on cubical meshes in any number of dimensions. The family contains elements of all polynomial degrees and all form degrees. In two dimensions, these include the serendipity finite elements and the rectangular BDM elements. In three dimensions they include a recent generalization of the serendipity spaces, and new H ( c u r l ) H(\mathrm {curl}) and H ( d i v ) H(\mathrm {div}) finite element spaces. Spaces in the family can be combined to give finite element subcomplexes of the de Rham complex which satisfy the basic hypotheses of the finite element exterior calculus, and hence can be used for stable discretization of a variety of problems. The construction and properties of the spaces are established in a uniform manner using finite element exterior calculus.

Publisher

American Mathematical Society (AMS)

Subject

Applied Mathematics,Computational Mathematics,Algebra and Number Theory

Reference12 articles.

1. Scot Adams and Victor Reiner, private communication.

2. The serendipity family of finite elements;Arnold, Douglas N.;Found. Comput. Math.,2011

3. Douglas N. Arnold, Daniele Boffi, and Francesca Bonizzoni, Tensor product finite element differential forms and their approximation properties, preprint 2012, arXiv: 1212.6559 [math.NA].

4. Finite element exterior calculus, homological techniques, and applications;Arnold, Douglas N.;Acta Numer.,2006

5. Finite element exterior calculus: from Hodge theory to numerical stability;Arnold, Douglas N.;Bull. Amer. Math. Soc. (N.S.),2010

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