Unsteady simulation of jets in a cross flow
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Publication:1368653
DOI10.1006/jcph.1997.5712zbMath0887.76044OpenAlexW2024122511MaRDI QIDQ1368653
Seonghyeon Hahn, Hae Cheon Choi
Publication date: 1 June 1998
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1006/jcph.1997.5712
time steplarge CFL numberplanar jetgrid stretchingvortex sheddingscounter-rotating vortex pairturbulent cross flowtwo-dimensional laminar boundary layer
Finite difference methods applied to problems in fluid mechanics (76M20) Shear flows and turbulence (76F10) Wakes and jets (76D25)
Related Items (12)
Large Eddy and Reynolds-Averaged Navier - Stokes Simulations of Turbulent Flow Over an Airfoil ⋮ Discretization errors in large eddy simulation: on the suitability of centered and upwind-biased compact difference schemes ⋮ An implicit velocity decoupling procedure for the incompressible Navier-Stokes equations ⋮ Self-adaptive Newton-based iteration strategy for the LES of turbulent multi-scale flows ⋮ A multi-GPU method for ADI-based fractional-step integration of incompressible Navier-Stokes equations ⋮ Unsteady Simulation of a Jet-in-crossflow ⋮ Effects of uniform blowing or suction from a spanwise slot on a turbulent boundary layer flow ⋮ Direct Numerical Simulation of Mixing and Chemical Reactions in a Round Jet into a Crossflow — a Benchmark ⋮ Stretched Cartesian grids for solution of the incompressible Navier-Stokes equations ⋮ An assessment of streamline curvature effects on the mixing region of a turbulent plane jet in crossflow ⋮ DNS study of pulsed film cooling for enhanced cooling effectiveness ⋮ Large eddy simulations of film cooling flows
Cites Work
- Direct simulations of turbulent flow using finite-difference schemes
- A stable and accurate convective modelling procedure based on quadratic upstream interpolation
- On the suppression of numerical oscillations using a non-linear filter
- An implicit finite-difference algorithm for hyperbolic systems in conservation-law form
- Effects of the computational time step on numerical solutions of turbulent flow
- Direct simulation of a turbulent boundary layer up to Rθ = 1410
- The structure of wall-pressure fluctuations in turbulent boundary layers with adverse pressure gradient and separation
- Direct numerical simulation of turbulent flow over a backward-facing step
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