Frequency-velocity-scalar filtered mass density function for large eddy simulation of turbulent flows
From MaRDI portal
Publication:5304702
DOI10.1063/1.3153907zbMath1183.76472OpenAlexW2022018112MaRDI QIDQ5304702
Mohammad Reza H. Sheikhi, Peyman Givi, Stephen B. Pope
Publication date: 18 March 2010
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://semanticscholar.org/paper/156ecc8da146cd24fa37cbe377eb707b4e077e6f
Navier-Stokes equationsconvectionstochastic processesMonte Carlo methodsturbulencefinite difference methodsflow simulationchemically reactive flow
Related Items (9)
An energy-consistency-preserving large eddy simulation-scalar filtered mass density function (LES-SFMDF) method for high-speed flows ⋮ A hybrid DG-Monte Carlo FDF simulator ⋮ Effects of combined dimension reduction and tabulation on the simulations of a turbulent premixed flame using a large-eddy simulation/probability density function method ⋮ Transported Probability Density Function Methods for Reynolds-Averaged and Large-Eddy Simulations ⋮ An irregularly portioned Lagrangian Monte Carlo method for turbulent flow simulation ⋮ Entropy transport equation in large eddy simulation for exergy analysis of turbulent combustion systems ⋮ Filtered density function simulator on unstructured meshes ⋮ Statistical descriptions of polydisperse turbulent two-phase flows ⋮ Predicting viscous-range velocity gradient dynamics in large-eddy simulations of turbulence
Cites Work
- Developments in formulation and application of the filtered density function
- Assessment of numerical accuracy of PDF/Monte Carlo methods for turbulent reacting flows
- Several new numerical methods for compressible shear-layer simulations
- A consistent hybrid finite-volume/particle method for the PDF equations of turbulent reactive flows
- Particle method for turbulent flows: Integration of stochastic model equations
- Application of PDF modeling to swirling and nonswirling turbulent jets
- The velocity-dissipation probability density function model for turbulent flows
- Scaling properties of subgrid-scale energy dissipation
- Velocity-scalar filtered density function for large eddy simulation of turbulent flows
- Schmidt number effects on turbulent transport with uniform mean scalar gradient
- A generalized Langevin model for turbulent flows
- Application of the velocity-dissipation probability density function model to inhomogeneous turbulent flows
- A dynamic subgrid-scale model for compressible turbulence and scalar transport
- Subgrid-scale backscatter in turbulent and transitional flows
- The three-dimensional evolution of a plane mixing layer: pairing and transition to turbulence
- A Lagrangian dynamic subgrid-scale model of turbulence
- Compressible mixing layer growth rate and turbulence characteristics
- Large-eddy simulation of the turbulent mixing layer
- Scaling properties of differential molecular diffusion effects in turbulence
- Filtered mass density function for large-eddy simulation of turbulent reacting flows
- Turbulent Flows
- On the relationship between stochastic Lagrangian models of turbulence and second-moment closures
- A dynamic localization model for large-eddy simulation of turbulent flows
- Velocity-scalar filtered mass density function for large eddy simulation of turbulent reacting flows
- Three-dimensional simulations of large eddies in the compressible mixing layer
- Velocity filtered density function for large eddy simulation of turbulent flows
- Advances in PDF modeling for inhomogeneous turbulent flows
- Filtered density function for large eddy simulation of turbulent reacting flows
- Handbook of stochastic methods for physics, chemistry and the natural sciences.
- The hybrid method for the PDF equations of turbulent reactive flows: Consistency conditions and correction algorithms
This page was built for publication: Frequency-velocity-scalar filtered mass density function for large eddy simulation of turbulent flows