Evaluation of rotated upwind schemes for contact discontinuity and strong shock
DOI10.1016/j.compfluid.2016.05.010zbMath1390.76541OpenAlexW2348748848MaRDI QIDQ1646973
Jun Liu, Fan Zhang, Biao-Song Chen, Wan-xie Zhong
Publication date: 26 June 2018
Published in: Computers and Fluids (Search for Journal in Brave)
Full work available at URL: https://lirias.kuleuven.be/handle/123456789/649400
carbuncle phenomenoncontact discontinuityshock-capturingdissipative density termrotated upwind schemerotation strategy
Shock waves and blast waves in fluid mechanics (76L05) Finite volume methods applied to problems in fluid mechanics (76M12) Finite volume methods for initial value and initial-boundary value problems involving PDEs (65M08)
Related Items (11)
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- A sequel to AUSM: AUSM\(^ +\)
- High resolution schemes for hyperbolic conservation laws
- The numerical simulation of two-dimensional fluid flow with strong shocks
- Approximate Riemann solvers, parameter vectors, and difference schemes
- Restoration of the contact surface in the HLL-Riemann solver
- A robust shock-capturing scheme based on rotated Riemann solvers.
- Mass flux schemes and connection to shock instability
- Use of a rotated Riemann solver for the two-dimensional Euler equations
- Hybrid upwind methods for the simulation of unsteady shock-wave diffraction over a cylinder
- Cures for the shock instability: Development of a shock-stable Roe scheme.
- Convergence to steady state solutions of the Euler equations on unstructured grids with limiters
- An improvement of AUSM schemes by introducing the pressure-based weight functions
- On the solution of the compressible Navier--Stokes equations using improved flux vector splitting methods
- Very simple, carbuncle-free, boundary-layer-resolving, rotated-hybrid Riemann solvers
- Numerical experiments using high-resolution schemes for unsteady, inviscid, compressible flows
- Dissipative mechanism in Godunov-type schemes
- Cures for numerical shock instability in HLLC solver
- On Upstream Differencing and Godunov-Type Schemes for Hyperbolic Conservation Laws
- On Godunov-Type Methods for Gas Dynamics
- A contribution to the great Riemann solver debate
- On the accuracy and efficiency of CFD methods in real gas hypersonics
- A Stability Analysis of Hybrid Schemes to Cure Shock Instability
- Numerical instabilities in upwind methods: Analysis and cures for the ``carbuncle phenomenon
This page was built for publication: Evaluation of rotated upwind schemes for contact discontinuity and strong shock