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  • The compressible Euler equations describe the motion of compressible inviscid fluids. They are used in many areas ranging from aerospace, automotive, and nuclear engineering to chemistry, ecology, climatology, and others. These equations are solved most frequently by means of Finite Volume Methods (FVM) and low-order Finite Element Methods (FEM). However, both these approaches are lacking higher order accuracy and moreover, it is well known that conforming FEM is not the optimal tool for the discretization of first-order equations. The most promising approach to the approximate solution of the compressible Euler equations is the hp-adaptive discontinuous Galerkin method that combines the stability of FVM, with excellent approximation properties of higher-order FEM.
  • The compressible Euler equations describe the motion of compressible inviscid fluids. They are used in many areas ranging from aerospace, automotive, and nuclear engineering to chemistry, ecology, climatology, and others. These equations are solved most frequently by means of Finite Volume Methods (FVM) and low-order Finite Element Methods (FEM). However, both these approaches are lacking higher order accuracy and moreover, it is well known that conforming FEM is not the optimal tool for the discretization of first-order equations. The most promising approach to the approximate solution of the compressible Euler equations is the hp-adaptive discontinuous Galerkin method that combines the stability of FVM, with excellent approximation properties of higher-order FEM. (en)
Title
  • Adaptive hp-DG Method for Nonstationary Compressible Euler Equations
  • Adaptive hp-DG Method for Nonstationary Compressible Euler Equations (en)
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  • Adaptive hp-DG Method for Nonstationary Compressible Euler Equations
  • Adaptive hp-DG Method for Nonstationary Compressible Euler Equations (en)
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  • RIV/49777513:23220/12:43916212!RIV13-MSM-23220___
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  • RIV/49777513:23220/12:43916212
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  • Equations; Euler; Compressible; Nonstationary; for; Method; hp-DG; Adaptive (en)
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  • 23220
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