No AccessA Guide to the Implementation of Boundary Conditions in Compact High-Order Methods for Compressible AerodynamicsGianmarco Mengaldo, Daniele De Grazia, Freddie Witherden, Antony Farrington, Peter Vincent, Spencer Sherwin and Joaquim PeiroGianmarco MengaldoImperial College LondonSearch for more papers by this author, Daniele De GraziaImperial College LondonSearch for more papers by this author, Freddie WitherdenImperial College LondonSearch for more papers by this author, Antony FarringtonImperial College LondonSearch for more papers by this author, Peter VincentImperial College LondonSearch for more papers by this author, Spencer SherwinImperial College LondonSearch for more papers by this author and Joaquim PeiroImperial College LondonSearch for more papers by this authorAIAA 2014-2923Session: Simulation Algorithms IIPublished Online:13 Jun 2014https://doi.org/10.2514/6.2014-2923SectionsRead Now ToolsAdd to favoritesDownload citationTrack citations ShareShare onFacebookXLinked InRedditEmail About Previous chapter Next chapter FiguresReferencesRelatedDetailsSee PDF for referencesCited byNektar++: Development of the Compressible Flow Solver for Jet Aeroacoustics1 Apr 2024 | Computer Physics CommunicationsWeak Boundary Conditions for Lagrangian Shock Hydrodynamics: A High-Order Finite Element Implementation on Curved Boundaries1 Mar 2024 | Journal of Computational PhysicsDeep neural operators as accurate surrogates for shape optimization1 Mar 2024 | Engineering Applications of Artificial Intelligence, Vol. 129Aeroacoustic Analysis of a Closely Installed Chevron Nozzle Jet using the High-Order Discontinuous Galerkin MethodDaniel Lindblad, Spencer J. 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Watkins, Joshua Romero and Antony Jameson10 June 2016 What's Popular 7th AIAA Theoretical Fluid Mechanics Conference 16-20 June 2014Atlanta, GAhttps://doi.org/10.2514/6.2014-2923 CrossmarkInformationCopyright © 2014 by the American Institute of Aeronautics and Astronautics, Inc. All rights reserved. TopicsAerodynamicsAerospace SciencesComputational Fluid DynamicsConservation of Momentum EquationsEquations of Fluid DynamicsFinite Element MethodFlow RegimesFluid DynamicsFluid Flow PropertiesMesh GenerationNumerical Analysis KeywordsAerodynamicsComputational Fluid DynamicsNavier Stokes EquationsNo Slip ConditionSpectral Element MethodDiscontinuous Galerkin MethodOpen Source SoftwareUnstructured GridRankine Hugoniot RelationAdvectionDigital Topics Aerodynamics, Fluids and Thermal Sciences