Literature DB >> 19829757

Surface Smoothing and Quality Improvement of Quadrilateral/Hexahedral Meshes with Geometric Flow.

Yongjie Zhang1, Chandrajit Bajaj, Guoliang Xu.   

Abstract

This paper describes an approach to smooth the surface and improve the quality of quadrilateral/hexahedral meshes with feature preserved using geometric flow. For quadrilateral surface meshes, the surface diffusion flow is selected to remove noise by relocating vertices in the normal direction, and the aspect ratio is improved with feature preserved by adjusting vertex positions in the tangent direction. For hexahedral meshes, besides the surface vertex movement in the normal and tangent directions, interior vertices are relocated to improve the aspect ratio. Our method has the properties of noise removal, feature preservation and quality improvement of quadrilateral/hexahedral meshes, and it is especially suitable for biomolecular meshes because the surface diffusion flow preserves sphere accurately if the initial surface is close to a sphere. Several demonstration examples are provided from a wide variety of application domains. Some extracted meshes have been extensively used in finite element simulations.

Year:  2007        PMID: 19829757      PMCID: PMC2761001          DOI: 10.1002/cnm.1067

Source DB:  PubMed          Journal:  Commun Numer Methods Eng        ISSN: 1069-8299


  2 in total

1.  Adaptive and Quality Quadrilateral/Hexahedral Meshing from Volumetric Data.

Authors:  Yongjie Zhang; Chandrajit Bajaj
Journal:  Comput Methods Appl Mech Eng       Date:  2006-02-01       Impact factor: 6.756

2.  3D Finite Element Meshing from Imaging Data.

Authors:  Yongjie Zhang; Chandrajit Bajaj; Bong-Soo Sohn
Journal:  Comput Methods Appl Mech Eng       Date:  2005-11-15       Impact factor: 6.756

  2 in total
  15 in total

1.  Topologically correct reconstruction of tortuous contour forests.

Authors:  John Edwards; Chandrajit Bajaj
Journal:  Comput Aided Des       Date:  2011-10-01       Impact factor: 3.027

2.  Modeling Cardiovascular Anatomy from Patient-Specific Imaging Data.

Authors:  Chandrajit Bajaj; Samrat Goswami
Journal:  Comput Methods Appl Sci       Date:  2009-01-01

3.  New software developments for quality mesh generation and optimization from biomedical imaging data.

Authors:  Zeyun Yu; Jun Wang; Zhanheng Gao; Ming Xu; Masahiko Hoshijima
Journal:  Comput Methods Programs Biomed       Date:  2013-09-04       Impact factor: 5.428

4.  Multiscale Multiphysics and Multidomain Models I: Basic Theory.

Authors:  Guo-Wei Wei
Journal:  J Theor Comput Chem       Date:  2013-12       Impact factor: 0.939

5.  Multiscale geometric modeling of macromolecules I: Cartesian representation.

Authors:  Kelin Xia; Xin Feng; Zhan Chen; Yiying Tong; Guo Wei Wei
Journal:  J Comput Phys       Date:  2014-01       Impact factor: 3.553

6.  High-order fractional partial differential equation transform for molecular surface construction.

Authors:  Langhua Hu; Duan Chen; Guo-Wei Wei
Journal:  Mol Based Math Biol       Date:  2013-01-01

7.  Geometric modeling of subcellular structures, organelles, and multiprotein complexes.

Authors:  Xin Feng; Kelin Xia; Yiying Tong; Guo-Wei Wei
Journal:  Int J Numer Method Biomed Eng       Date:  2012-11-21       Impact factor: 2.747

8.  A three-dimensional finite element model of human atrial anatomy: new methods for cubic Hermite meshes with extraordinary vertices.

Authors:  Matthew J Gonzales; Gregory Sturgeon; Adarsh Krishnamurthy; Johan Hake; René Jonas; Paul Stark; Wouter-Jan Rappel; Sanjiv M Narayan; Yongjie Zhang; W Paul Segars; Andrew D McCulloch
Journal:  Med Image Anal       Date:  2013-03-21       Impact factor: 8.545

9.  Variational multiscale models for charge transport.

Authors:  Guo-Wei Wei; Qiong Zheng; Zhan Chen; Kelin Xia
Journal:  SIAM Rev Soc Ind Appl Math       Date:  2012-11-08       Impact factor: 10.780

10.  A Fast Variational Method for the Construction of Resolution Adaptive C-Smooth Molecular Surfaces.

Authors:  Chandrajit L Bajaj; Guoliang Xu; Qin Zhang
Journal:  Comput Methods Appl Mech Eng       Date:  2009-05-01       Impact factor: 6.756

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