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arxiv: 1702.04540 · v3 · pith:2S2OFLTOnew · submitted 2017-02-15 · 🧮 math.NA · physics.comp-ph

Dispersion optimized quadratures for isogeometric analysis

classification 🧮 math.NA physics.comp-ph
keywords analysisschemesdispersioneigenvalueerrorsisogeometricanalyzeconvergence
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We develop and analyze quadrature blending schemes that minimize the dispersion error of isogeometric analysis up to polynomial order seven with maximum continuity in the span ($C^{p-1}$). The schemes yield two extra orders of convergence (superconvergence) on the eigenvalue errors, while the eigenfunction errors are of optimal convergence order. Both dispersion and spectrum analysis are unified in the form of a Taylor expansion for eigenvalue errors. As a consequence, the schemes increase the accuracy and robustness of isogeometric analysis for wave propagation as well as the differential eigenvalue problems. We analyze the methods' robustness and efficacy and utilize numerical examples to verify our analysis of the performance of the proposed schemes.

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