A hybrid scheme for the numerical simulation of shock/discontinuity problems
DOI10.1080/10618562.2011.632371zbMath1271.76214OpenAlexW2031645875MaRDI QIDQ2847525
Klaus A. Hoffmann, Niloufar Mahmoudnejad
Publication date: 10 September 2013
Published in: International Journal of Computational Fluid Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/10618562.2011.632371
shock capturingshock tubeWENOdouble Mach reflectionnon-oscillatory schemeACM filtershock-vortex interactionweighted compact schemeshock-entropy interactionshock-shear layer interaction
Shock waves and blast waves in fluid mechanics (76L05) Finite difference methods applied to problems in fluid mechanics (76M20) Finite volume methods applied to problems in fluid mechanics (76M12)
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Cites Work
- Unnamed Item
- A bandwidth-optimized WENO scheme for the effective direct numerical simulation of compressible turbulence
- A shock-capturing methodology based on adaptative spatial filtering for high-order non-linear computations
- High resolution schemes for hyperbolic conservation laws
- The numerical simulation of two-dimensional fluid flow with strong shocks
- Uniformly high order accurate essentially non-oscillatory schemes. III
- Efficient implementation of essentially nonoscillatory shock-capturing schemes
- Efficient implementation of essentially nonoscillatory shock-capturing schemes. II
- Approximate Riemann solvers, parameter vectors, and difference schemes
- Compact finite difference schemes with spectral-like resolution
- Low-dissipative high-order shock-capturing methods using characteristic-based filters
- Weighted essentially non-oscillatory schemes
- A characteristic-wise hybrid compact-WENO scheme for solving hyperbolic conservation laws.
- Hybrid tuned center-difference-WENO method for large eddy simulations in the presence of strong shocks.
- Shock-wave-vortex interactions: Shock and vortex deformations, and sound production
- Entropy splitting and numerical dissipation
- Conservative hybrid compact-WENO schemes for shock-turbulence interaction
- Anti-diffusive flux corrections for high order finite difference WENO schemes
- Mapped weighted essentially non-oscillatory schemes: Achieving optimal order near critical points
- Resolution of high order WENO schemes for complicated flow structures.
- Efficient implementation of weighted ENO schemes
- A high-resolution hybrid compact-ENO scheme for shock-turbulence interaction problems
- Analysis of double-Mach-reflection wave configurations with convexly curved Mach stems
- Towards the ultimate conservative difference scheme. V. A second-order sequel to Godunov's method
- A high-order accurate hybrid scheme using a central flux scheme and a WENO scheme for compressible flowfield analysis
- Weighted Compact Scheme for Shock Capturing
- The mixing layer: deterministic models of a turbulent flow. Part 1. Introduction and the two-dimensional flow
- Hybrid finite compact-WENO schemes for shock calculation
- Non-oscillatory central-upwind scheme for hyperbolic conservation laws
- The Artificial Compression Method for Computation of Shocks and Contact Discontinuities: III. Self-Adjusting Hybrid Schemes
- Computational Gasdynamics
- Sound generation by shock–vortex interactions
- Optimized compact finite difference schemes with maximum resolution
- The shock-vortex interaction: The origins of the acoustic wave
- A technique of treating negative weights in WENO schemes
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