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Erratum to: A survey of Trefftz methods for the Helmholtz equation (Lecture Notes in Computational Science and Engineering, (2016), 114, 10.1007/978-3-319-41640-3_8)

Chapter
Publication Date:
2016
abstract:
Trefftz methods are finite element-type schemes whose test and trial functions are (locally) solutions of the targeted differential equation. They are particularly popular for time-harmonic wave problems, as their trial spaces contain oscillating basis functions and may achieve better approximation properties than classical piecewise-polynomial spaces. We review the construction and properties of several Trefftz variational formulations developed for the Helmholtz equation, including least squares, discontinuous Galerkin, ultra weak variational formulation, variational theory of complex rays and wave based methods. The most common discrete Trefftz spaces used for this equation employ generalised harmonic polynomials (circular and spherical waves), plane and evanescent waves, fundamental solutions and multipoles as basis functions; we describe theoretical and computational aspects of these spaces, focusing in particular on their approximation properties. One of the most promising, but not yet well developed, features of Trefftz methods is the use of adaptivity in the choice of the propagation directions for the basis functions. The main difficulties encountered in the implementation are the assembly and the ill-conditioning of linear systems, we briefly survey some strategies that have been proposed to cope with these problems.
Iris type:
2.1 Contributo in volume (Capitolo o Saggio)
Keywords:
Modeling and Simulation; Engineering (all); Discrete Mathematics and Combinatorics; Control and Optimization; Computational Mathematics
List of contributors:
Hiptmair, Ralf; Moiola, Andrea; Perugia, Ilaria
Authors of the University:
MOIOLA ANDREA
Handle:
https://iris.unipv.it/handle/11571/1181661
Book title:
Lecture Notes in Computational Science and Engineering
Published in:
LECTURE NOTES IN COMPUTATIONAL SCIENCE AND ENGINEERING
Journal
LECTURE NOTES IN COMPUTATIONAL SCIENCE AND ENGINEERING
Series
  • Overview

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URL

http://www.springer.com/series/3527
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