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The Runge–Kutta Discontinuous Galerkin Method for Conservation Laws V
Journal of Computational Physics · 1998 · Vol. 141(2) · pp. 199–224
Bernardo Cockburn✉(University of Minnesota)Chi‐Wang Shu(Brown University)
Computational Fluid Dynamics and AerodynamicsFluid Dynamics and Turbulent FlowsGas Dynamics and Kinetic TheoryConservation lawDiscontinuous Galerkin methodMathematicsRunge–Kutta methodsQuadrature (astronomy)Euler equationsNonlinear systemApplied mathematicsGalerkin methodNumerical analysis
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References
Efficient implementation of essentially non-oscillatory shock-capturing schemes, II
Journal of Computational Physics · 1989 · 4,824 citations
TVB Runge-Kutta local projection discontinuous Galerkin finite element method for conservation laws III: One-dimensional systems
Journal of Computational Physics · 1989 · 1,460 citations
The Runge-Kutta local projection discontinuous Galerkin finite element method for conservation laws. IV. The multidimensional case
Mathematics of Computation · 1990 · 1,396 citations
The numerical simulation of two-dimensional fluid flow with strong shocks
Journal of Computational Physics · 1984 · 2,820 citations
TVB Runge-Kutta local projection discontinuous Galerkin finite element method for conservation laws. II. General framework
Mathematics of Computation · 1989 · 1,894 citations
Local adaptive mesh refinement for shock hydrodynamics
Journal of Computational Physics · 1989 · 2,550 citations
A High-Order Accurate Discontinuous Finite Element Method for the Numerical Solution of the Compressible Navier–Stokes Equations
Journal of Computational Physics · 1997 · 1,759 citations
Efficient implementation of essentially non-oscillatory shock-capturing schemes
Journal of Computational Physics · 1988 · 4,649 citations
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