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Aerodynamics / Computational fluid dynamics / Numerical analysis / Shock capturing methods / Partial differential equations / Viscosity / Euler equations / Shock wave / Navier–Stokes equations / Fluid dynamics / Fluid mechanics / Dynamics


Sub-Cell Shock Capturing for Discontinuous Galerkin Methods Per-Olof Persson∗ and Jaime Peraire† Massachusetts Institute of Technology, Cambridge, MA 02139, U.S.A. A shock capturing strategy for higher order Discont
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Document Date: 2006-04-18 11:00:14


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File Size: 2,06 MB

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City

Cambridge / /

Country

United States / /

/

Facility

American Institute of Aeronautics / Jaime Peraire† Massachusetts Institute of Technology / /

IndustryTerm

stationary solution / stable solutions / oscillatory solutions / smooth solutions / gas dynamics / control applications / well-defined steady-state solution / aeroacoustics applications / inner product / conservation law / linear systems / steady-state solution / discontinuous solutions / sharpest possible solution / obvious solution / internal energy / approximate solution / shock detection algorithm / /

Organization

Massachusetts Institute of Technology / American Institute of Aeronautics and Astronautics Despite / American Institute of Aeronautics / /

Position

Professor / /

ProvinceOrState

Massachusetts / /

Technology

DG algorithm / heat transfer / shock detection algorithm / simulation / LDG algorithm / /

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