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Erschienen in: Structural and Multidisciplinary Optimization 4/2020

29.07.2020 | Research Paper

Adaptive level set topology optimization using hierarchical B-splines

verfasst von: L. Noël, M. Schmidt, C. Messe, J.A. Evans, K. Maute

Erschienen in: Structural and Multidisciplinary Optimization | Ausgabe 4/2020

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Abstract

This paper presents an adaptive discretization strategy for level set topology optimization of structures based on hierarchical B-splines. This work focuses on the influence of the discretization approach and the adaptation strategy on the optimization results and computational cost. The geometry of the design is represented implicitly by the iso-contour of a level set function. The extended finite element method is used to predict the structural response. The level set function and the state variable fields are discretized by hierarchical B-splines. While first-order B-splines are used for the state variable fields, up to third-order B-splines are considered for discretizing the level set function. The discretizations of the design and the state variable fields are locally refined along the material interfaces and selectively coarsened within the bulk phases. For locally refined meshes, truncated B-splines are considered. The properties of the proposed mesh adaptation strategy are studied for level set topology optimization where either the initial design is comprised of a uniform array of inclusions or inclusions are generated during the optimization process. Numerical studies employing static linear elastic material/void problems in 2D and 3D demonstrate the ability of the proposed method to start from a coarse mesh and converge to designs with complex geometries, reducing the overall computational cost. Comparing optimization results for different B-spline orders suggests that higher interpolation order promote the development of smooth designs and suppress the emergence of small features, without providing an explicit feature size control. A distinct advantage of cubic over quadratic B-splines is not observed.

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Literatur
Zurück zum Zitat Barrera JL, Geiss MJ, Maute K (2019) Hole seeding in level set topology optimization via density fields. arXiv:1909.10703 Barrera JL, Geiss MJ, Maute K (2019) Hole seeding in level set topology optimization via density fields. arXiv:1909.​10703
Zurück zum Zitat Cottrell JA, Hughes TJR, Bazilevs Y (2009) Isogeometric analysis: toward integration of CAD and FEA. Wiley Publishing, 1st edn. ISBN 0470748737, 9780470748732 Cottrell JA, Hughes TJR, Bazilevs Y (2009) Isogeometric analysis: toward integration of CAD and FEA. Wiley Publishing, 1st edn. ISBN 0470748737, 9780470748732
Zurück zum Zitat Gee MW, Siefert CM, Hu JJ, Tuminaro RS, Sala MG (2006) ML 5.0 smoothed aggregation user’s guide. Technical Report SAND2006-2649 Sandia National Laboratories Gee MW, Siefert CM, Hu JJ, Tuminaro RS, Sala MG (2006) ML 5.0 smoothed aggregation user’s guide. Technical Report SAND2006-2649 Sandia National Laboratories
Zurück zum Zitat Schillinger D, Dedè L, Scott MA, Evans JA, Borden MJ, Rank E, Hughes TJR (2012) An isogeometric design-through-analysis methodology based on adaptive hierarchical refinement of NURBS, immersed boundary methods, and t-spline cad surfaces. Computer Methods in Applied Mechanics and Engineering 249-252:116–150. https://doi.org/10.1016/j.cma.2012.03.017. Higher order finite element and isogeometric methodsMathSciNetCrossRefMATH Schillinger D, Dedè L, Scott MA, Evans JA, Borden MJ, Rank E, Hughes TJR (2012) An isogeometric design-through-analysis methodology based on adaptive hierarchical refinement of NURBS, immersed boundary methods, and t-spline cad surfaces. Computer Methods in Applied Mechanics and Engineering 249-252:116–150. https://​doi.​org/​10.​1016/​j.​cma.​2012.​03.​017. Higher order finite element and isogeometric methodsMathSciNetCrossRefMATH
Zurück zum Zitat Wang S, de Sturler E, Paulino GH (2010) Dynamic adaptive mesh refinement for topology optimization. arXiv:1009.4975 Wang S, de Sturler E, Paulino GH (2010) Dynamic adaptive mesh refinement for topology optimization. arXiv:1009.​4975
Metadaten
Titel
Adaptive level set topology optimization using hierarchical B-splines
verfasst von
L. Noël
M. Schmidt
C. Messe
J.A. Evans
K. Maute
Publikationsdatum
29.07.2020
Verlag
Springer Berlin Heidelberg
Erschienen in
Structural and Multidisciplinary Optimization / Ausgabe 4/2020
Print ISSN: 1615-147X
Elektronische ISSN: 1615-1488
DOI
https://doi.org/10.1007/s00158-020-02584-6

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