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Law of the wall
Modified Log–Wake Law for Zero-Pressure-Gradient Turbulent Boundary Layers
Introduction to Turbulent Flow
PDF MODELING of TURBULENT FLOWS on UNSTRUCTURED GRIDS J´Ozsef Bakosi, Phd George Mason University, 2008 Dissertation Director: Dr
Self-Similarity of Mean Flow in Pipe Turbulence
A Theoretical Closure Model for Wall Bounded Turbulent Flows
A Generalized Wall Function
A Single Formula for the Law of the Wall and Its Application to Wall-Modelled Large-Eddy Simulation
How to – Understand Computational Fluid Dynamics Jargon
Theory-Derived Law of the Wall for Parallel Flat- Plates Turbulent Flow
A Primer on Turbulence in Hydrology and Hydraulics: the Power of Dimensional Analysis
Wind Energy in the Built Environment
A Method to Determine Wall Shear Stress from Mean Profiles in Turbulent Boundary Layers
Velocity Transformation for Compressible Wall Turbulence with Heat Transfer
On the Wall Boundary Condition for Turbulence Models
Modified Log–Wake Law for Zero-Pressure-Gradient Turbulent
Active and Inactive Components of the Streamwise Velocity in Wall-Bounded Turbulence
Arxiv:2107.02329V1 [Physics.Flu-Dyn] 6 Jul 2021
Comparison of Boundary Layer Similarity Transformations for High Mach Number Flows
Top View
Velocity Scaling of High-Speed Turbulent Boundary Layer Flows With
Chapter 8: Convection in External Turbulent Flow
Reynolds Number Effects in Wall-Bounded Turbulent Flows
A New Approach to Wall Modeling in LES of Incompressible Flow Via
GPU-Accelerated Modeling of Microscale Atmospheric Flows Over Com- Plex Terrain
Wall Shear Stress Fluctuations: Mixed Scaling and Their Effects on Velocity