A proper velocity scale for modeling subgrid-scale eddy viscosities in large eddy simulation
From MaRDI portal
Publication:4036340
DOI10.1063/1.858800zbMath0813.76035OpenAlexW2088146531MaRDI QIDQ4036340
Publication date: 16 May 1993
Published in: Physics of Fluids A: Fluid Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.858800
plane channel flownear-wall regionsingle parameterSGS modelnormal shear stressSmagorinsky model constantVan Driest damping function
Related Items (12)
A dynamic mixed subgrid-scale model and its application to turbulent recirculating flows ⋮ Statistics of turbulence subgrid-scale stresses: Necessary conditions and experimental tests ⋮ Large-eddy simulation for an axisymmetric piston-cylinder assembly with and without swirl ⋮ A dynamic nonlinear subgrid-scale stress model ⋮ A general optimal formulation for the dynamic Smagorinsky subgrid-scale stress model ⋮ An Integral-type Dynamic Localization Two-parameter Subgrid-scale Model: Formulation and Simulation ⋮ DNS and LES of decaying isotropic turbulence with and without frame rotation using lattice Boltzmann method ⋮ General formalism for a reduced description and modelling of momentum and energy transfer in turbulence ⋮ A new dynamic two-parameter mixed model for large-eddy simulation ⋮ Truncation error analysis of the rotational form for the convective terms in the Navier-Stokes equation ⋮ Transformation properties of dynamic subgrid-scale models in a frame of reference undergoing rotation ⋮ A prioritests of one-equation LES modeling of rotating turbulence
Cites Work
- Renormalization group analysis of turbulence. I: Basic theory
- Subgrid scale model for finite difference simulations of turbulent flows in plane channels and annuli
- Comparison of conservative and rotational forms in large eddy simulation of turbulent channel flow
- Modelling the pressure–strain correlation of turbulence: an invariant dynamical systems approach
- Nonlinear Reynolds stress models and the renormalization group
- Statistical analysis of the deviation of the Reynolds stress from its eddy-viscosity representation
- On the magnitude of the subgrid-scale eddy coefficient in large-eddy simulations of turbulent channel flow
- Subgrid scale stress models for the large-eddy simulation of rotating turbulent flows
- Galilean invariance of subgrid-scale stress models in the large-eddy simulation of turbulence
- On nonlinear K-l and K-ε models of turbulence
- Large-eddy simulation of a passive scalar in isotropic turbulence
- Analysis of a strongly sheared, nearly homogeneous turbulent shear flow
- Computational Modeling of Turbulent Flows
- Numerical investigation of turbulent channel flow
- A dynamic subgrid-scale eddy viscosity model
- Subgrid-scale backscatter in turbulent and transitional flows
- Progress in the development of a Reynolds-stress turbulence closure
- Evaluation of subgrid-scale models using an accurately simulated turbulent flow
- Turbulence statistics in fully developed channel flow at low Reynolds number
- Turbulent channel and Couette flows using an anisotropic k-epsilon model
- A numerical study of three-dimensional turbulent channel flow at large Reynolds numbers
This page was built for publication: A proper velocity scale for modeling subgrid-scale eddy viscosities in large eddy simulation