Wall-function treatment in pdf methods for turbulent flows
From MaRDI portal
Publication:5755756
DOI10.1063/1.869381zbMath1185.76752OpenAlexW2041222706MaRDI QIDQ5755756
Thomas D. Dreeben, Stephen B. Pope
Publication date: 15 August 2007
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.869381
Related Items (16)
Recent Developments in the Statistical Modelling of Turbulent Flows ⋮ Analysis of wall-modelled particle/mesh PDF methods for turbulent parietal flows ⋮ A time-step-robust algorithm to compute particle trajectories in 3-D unstructured meshes for Lagrangian stochastic methods ⋮ Transported Probability Density Function Methods for Reynolds-Averaged and Large-Eddy Simulations ⋮ On conditional McKean Lagrangian stochastic models ⋮ On confined McKean Langevin processes satisfying the mean no-permeability boundary condition ⋮ The Lagrangian spectral relaxation model for differential diffusion in homogeneous turbulence ⋮ Wall-boundary conditions in probability density function methods and application to a turbulent channel flow ⋮ A non-hybrid method for the PDF equations of turbulent flows on unstructured grids ⋮ On the Kolmogorov constant in stochastic turbulence models ⋮ Improved Lagrangian mixing models for passive scalars in isotropic turbulence ⋮ Full velocity-scalar probability density function computation of heated channel flow with wall function approach ⋮ Stochastic downscaling method: application to wind refinement ⋮ Velocity filtered density function for large eddy simulation of turbulent flows ⋮ Advances in PDF modeling for inhomogeneous turbulent flows ⋮ Study on Langevin model parameters of velocity in turbulent shear flows
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Predictions of two-dimensional boundary layers with the aid of the k- epsilon model of turbulence
- The numerical computation of turbulent flows
- The velocity-dissipation probability density function model for turbulent flows
- A generalized Langevin model for turbulent flows
- Progress in the development of a Reynolds-stress turbulence closure
- Probability Density Distribution in Turbulent Wall Boundary-Layer Flows
- Law of the wall for turbulent flows in pressure gradients
- On the relationship between stochastic Lagrangian models of turbulence and second-moment closures
This page was built for publication: Wall-function treatment in pdf methods for turbulent flows