Conference paper Open Access

Naturally Curved Quadrilateral Mesh Generation Using an Adaptive Spectral Element Solver

Marcon, Julian; Kopriva, David A.; Sherwin, Spencer J.; Peiró, Joaquim


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    "description": "<p>We describe an adaptive version of a method for generating valid naturally curved quadrilateral meshes. The method uses a guiding field, derived from the concept of a cross field, to create block decompositions of multiply connected two dimensional domains. The a priori curved quadrilateral blocks can be further split into a finer high-order mesh as needed. The guiding field is computed by a Laplace equation solver using a continuous Galerkin or discontinuous Galerkin spectral element formulation. This operation is aided by using p-adaptation to achieve faster convergence of the solution with respect to the computational cost. From the guiding field, irregular nodes and separatrices can be accurately located. A first version of the code is implemented in the open source spectral element framework Nektar++ and its dedicated high order mesh generation platform NekMesh.</p>", 
    "language": "eng", 
    "title": "Naturally Curved Quadrilateral Mesh Generation Using an Adaptive Spectral Element Solver", 
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    "keywords": [
      "cross field", 
      "quadrilateral meshing", 
      "high order", 
      "spectral element method", 
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    "publication_date": "2020-02-06", 
    "creators": [
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        "affiliation": "Imperial College London", 
        "name": "Marcon, Julian"
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      {
        "affiliation": "The Florida State University", 
        "name": "Kopriva, David A."
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      {
        "affiliation": "Imperial College London", 
        "name": "Sherwin, Spencer J."
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      {
        "affiliation": "Imperial College London", 
        "name": "Peir\u00f3, Joaquim"
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      "dates": "October 14-17, 2019", 
      "place": "Buffalo, New York, USA", 
      "title": "28th International Meshing Roundtable"
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