May, Georg and Devesse, Koen and Rangarajan, Ajay and Magin, Thierry (2021) A Hybridized Discontinuous Galerkin Solver for High-Speed Compressible Flow. Aerospace, 8 (11). p. 322. ISSN 2226-4310
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Abstract
We present a high-order consistent compressible flow solver, based on a hybridized discontinuous Galerkin (HDG) discretization, for applications covering subsonic to hypersonic flow. In the context of high-order discretization, this broad range of applications presents unique difficulty, especially at the high-Mach number end. For instance, if a high-order discretization is to efficiently resolve shock and shear layers, it is imperative to use adaptive methods. Furthermore, high-Enthalpy flow requires non-trivial physical modeling. The aim of the present paper is to present the key enabling technologies. We discuss efficient discretization methods, including anisotropic metric-based adaptation, as well as the implementation of flexible modeling using object-oriented programming and algorithmic differentiation. We present initial verification and validation test cases focusing on external aerodynamics.
Item Type: | Article |
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Subjects: | OA Library Press > Engineering |
Depositing User: | Unnamed user with email support@oalibrarypress.com |
Date Deposited: | 23 Mar 2023 06:42 |
Last Modified: | 12 Aug 2024 11:23 |
URI: | http://archive.submissionwrite.com/id/eprint/422 |