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Adaptive mesh refinement strategies in isogeometric analysis— A computational comparison

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Abstract We explain four variants of an adaptive finite element method with cubic splines and compare their performance in simple elliptic model problems. The methods in comparison are Truncated Hierarchical… Click to show full abstract

Abstract We explain four variants of an adaptive finite element method with cubic splines and compare their performance in simple elliptic model problems. The methods in comparison are Truncated Hierarchical B-splines with two different refinement strategies, T-splines with the refinement strategy introduced by Scott et al. in 2012, and T-splines with an alternative refinement strategy introduced by some of the authors. In four examples, including singular and non-singular problems of linear elasticity and the Poisson problem, the H1-errors of the discrete solutions, the number of degrees of freedom as well as sparsity patterns and condition numbers of the discretized problem are compared. The quantitative results of this paper can help the reader to choose the most appropriate refinement method for the application.

Keywords: refinement strategies; adaptive mesh; isogeometric analysis; strategies isogeometric; refinement; mesh refinement

Journal Title: Computer Methods in Applied Mechanics and Engineering
Year Published: 2017

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