Litcius/Paper detail

Modelling Turbulence in Engineering and the Environment

Kemal Hanjalić, B. E. Launder

2022Cambridge University Press eBooks12 citationsDOI

Abstract

Modelling transport and mixing by turbulence in complex flows are huge challenges for computational fluid dynamics (CFD). This highly readable book introduces readers to modelling levels that respect the physical complexity of turbulent flows. It examines the hierarchy of Reynolds-averaged Navier-Stokes (RANS) closures in various situations ranging from fundamental flows to three-dimensional industrial and environmental applications. The general second-moment closure is simplified to linear eddy-viscosity models, demonstrating how to assess the applicability of simpler schemes and the conditions under which they give satisfactory predictions. The principal changes for the second edition reflect the impact of computing power: a new chapter devoted to unsteady RANS and another on how large-eddy simulation, LES, and RANS strategies can be effectively combined for particular applications. This book will remain the standard for those in industry and academia seeking expert guidance on the modelling options available, and for graduate students in physics, applied mathematics and engineering entering the world of turbulent flow CFD.

Topics & Concepts

Reynolds-averaged Navier–Stokes equationsComputational fluid dynamicsTurbulenceTurbulence modelingLarge eddy simulationReynolds stress equation modelStatistical physicsClosure (psychology)Flow (mathematics)Computer scienceEngineeringAerospace engineeringMechanicsMechanical engineeringK-epsilon turbulence modelK-omega turbulence modelPhysicsEconomicsMarket economyReservoir Engineering and Simulation Methods