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Simulation of the human airways using virtual topology tools and meshing optimization
Authors:" target="_blank">A Fernández-Tena  A C Marcos  R Agujetas  C Ferrera
Institution:1.Universidad de Oviedo and Hospital Universitario Central de Asturias,Oviedo,Spain;2.Dpto. de Expresión Gráfica,Universidad de Extremadura,Badajoz,Spain;3.Dpto. de Ingeniería Mecánica, Energética y de los Materiales and Instituto de Computación Científica Avanzada (ICCAEx),Universidad de Extremadura,Badajoz,Spain
Abstract:A method is proposed to improve the quality of the three-dimensional airway geometric models using a commercial software, checking the number of elements, meshing time, and aspect ratio and skewness parameters. The use of real and virtual topologies combined with patch-conforming and patch-independent meshing algorithms results in four different models being the best solution the combination of virtual topology and patch-independent algorithm, due to an excellent aspect ratio and skewness of the elements, and minimum meshing time. The result is a reduction in the computational time required for both meshing and simulation due to a smaller number of cells. The use of virtual topologies combined with patch-independent meshing algorithms could be extended in bioengineering because the geometries handling is similar to this case. The method is applied to a healthy person using their computed tomography images. The resulting numerical models are able to simulate correctly a forced spirometry.
Keywords:
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