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Computational aeroacoustics using the B-spline collocation method
Authors:Ronny Widjaja  Andrew Ooi  Li Chen  Richard Manasseh
Institution:1. Department of Mechanical Engineering, University of Melbourne, Parkville, 3010, Australia;2. Maritime Platforms Division, Defence Science Technology Organization, Fishermans Bend, 3027, Australia;3. Energy and Thermofluids Engineering, Commonwealth Scientific and Industrial Research Organization, Highett, 3190, Australia
Abstract:One of the major problems in computational aero-acoustics is the disparity in length scales between the flow field and the acoustic field. As a result, a mapping function is normally used to achieve a non-uniform grid distribution. In this paper, a B-spline collocation method with an arbitrary grid placement capability is proposed. This capability not only allows an optimum grid distribution but also avoids the numerical complexities associated with the mapping function. The B-spline collocation method is applied to the case of spinning co-rotating vortices. The result agrees well with the matched asymptotic solution. To cite this article: R. Widjaja et al., C. R. Mecanique 333 (2005).
Keywords:Acoustics  Computational aero-acoustics  B-spline collocation method  Acoustique  Simulation numérique en aéroacoustique  Méthode de collocation par B-spline
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