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Titlebook: New Challenges in Grid Generation and Adaptivity for Scientific Computing; Simona Perotto,Luca Formaggia Book 2015 Springer International

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发表于 2025-3-21 18:45:05 | 显示全部楼层 |阅读模式
书目名称New Challenges in Grid Generation and Adaptivity for Scientific Computing
编辑Simona Perotto,Luca Formaggia
视频video
概述One of the few books on the market about mesh generation and adaptation.Contains contributions from the most renowned scientists and practitioners of the field.Mixes theoretical and implementation asp
丛书名称SEMA SIMAI Springer Series
图书封面Titlebook: New Challenges in Grid Generation and Adaptivity for Scientific Computing;  Simona Perotto,Luca Formaggia Book 2015 Springer International
描述This volume collects selected contributions from the “Fourth Tetrahedron Workshop on Grid Generation for Numerical Computations”, which was held in Verbania, Italy in July 2013. The previous editions of this Workshop were hosted by the Weierstrass Institute in Berlin (2005), by INRIA Rocquencourt in Paris (2007), and by Swansea University (2010)..This book covers different, though related, aspects of the field: the generation of quality grids for complex three-dimensional geometries; parallel mesh generation algorithms; mesh adaptation, including both theoretical and implementation aspects; grid generation and adaptation on surfaces – all with an interesting mix of numerical analysis, computer science and strongly application-oriented problems.
出版日期Book 2015
关键词Applied mathematics; Computer aided design; Mesh adaptation; Mesh generation; Scientific computing
版次1
doihttps://doi.org/10.1007/978-3-319-06053-8
isbn_softcover978-3-319-35926-7
isbn_ebook978-3-319-06053-8Series ISSN 2199-3041 Series E-ISSN 2199-305X
issn_series 2199-3041
copyrightSpringer International Publishing Switzerland 2015
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The Benefits of Anisotropic Mesh Adaptation for Brittle Fractures Under Plane-Strain Conditions,e, after its approximation by means of the Ambrosio-Tortorelli variational model. We show that an adaptive algorithm based on this estimator reproduces all the previously obtained well-known benchmarks on fracture development with particular attention to the fracture directionality. Additionally, we
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An Optimization Based Method for the Construction of 2D Parameterizations for Isogeometric Analysis of 2D geometries for the application of isogeometric analysis. The proposed method only demands a boundary representation of the geometry as input data. The algorithm obtains, as a result, high quality parametric transformation between 2D objects and the parametric domain, the unit square. First, w
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Thread-Parallel Anisotropic Mesh Adaptation, where the required mesh resolution can vary by orders of magnitude across the domain. The end result is local control over solution accuracy and reduced time to solution..In the case of large scale simulations, where the time to solution is unacceptable or the memory requirements exceeds available
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Strategies for Generating Well Centered Tetrahedral Meshes on Industrial Geometries,ircumcentre, which is a basic property required for a valid co-volume discretisation. Although most work in this area has focussed on improving meshes generated using classical techniques, in this paper we consider modification of the generation procedure itself. A simple lattice point insertion tec
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