Inlet conditions for LES using mapping and feedback control
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Publication:435378
DOI10.1016/j.compfluid.2009.02.001zbMath1242.76071OpenAlexW2070964239WikidataQ57933154 ScholiaQ57933154MaRDI QIDQ435378
M. H. Baba-Ahmadi, G. R. Tabor
Publication date: 11 July 2012
Published in: Computers and Fluids (Search for Journal in Brave)
Full work available at URL: http://hdl.handle.net/10871/9842
Finite difference methods applied to problems in fluid mechanics (76M20) Finite volume methods applied to problems in fluid mechanics (76M12) Direct numerical and large eddy simulation of turbulence (76F65)
Related Items (10)
Meshless approach to the large-eddy simulation of the continuous casting process ⋮ Evaluation of scale resolving turbulence generation methods for large eddy simulation of turbulent flows ⋮ A multi-scale synthetic eddy method for generating inflow data for LES ⋮ A coherence-improved and mass-balanced inflow turbulence generation method for large eddy simulation ⋮ Inlet conditions for large eddy simulation: a review ⋮ A time and space correlated turbulence synthesis method for Large Eddy Simulations ⋮ Implementation of synthetic turbulence inlet for turbomachinery LES ⋮ CFD simulations of turbulent buoyant atmospheric flows over complex geometry: solver development in OpenFOAM ⋮ A variational multiscale framework for atmospheric turbulent flows over complex environmental terrains ⋮ Large-eddy simulations for hill terrains: validation with wind-tunnel and field measurements
Cites Work
- Unnamed Item
- Solution of the implicitly discretized fluid flow equations by operator- splitting
- Generation of turbulent inflow data for spatially-developing boundary layer simulations
- Mathematical and physical constraints on large-eddy simulations
- Large eddy simulation of premixed turbulent combustion using \(\Xi\) flame surface wrinkling model
- A digital filter based generation of inflow data for spatially developing direct numerical or large eddy simulations.
- A robust method for generating inflow conditions for direct simulations of spatially-developing turbulent boundary layers
- Numerical study of the turbulent flow past an airfoil with trailing edge separation
- A direct numerical simulation study on the mean velocity characteristics in turbulent pipe flow
- Determination of the coefficients of Langevin models for inhomogeneous turbulent flows by three-dimensional particle tracking velocimetry and direct numerical simulation
- A priori and a posteriori tests of inflow conditions for large-eddy simulation
- Sharp cutoff versus smooth filtering in large eddy simulation
- Direct simulation of a turbulent boundary layer up to Rθ = 1410
- High resolution NVD differencing scheme for arbitrarily unstructured meshes
- Simulation of spatially evolving turbulence and the applicability of Taylor’s hypothesis in compressible flow
- Numerical study of sink-flow boundary layers
- A dynamic localization model for large-eddy simulation of turbulent flows
- A comparative study of subgrid scale models in homogeneous isotropic turbulence
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