A Direct Numerical Simulation of Fully Developed Turbulent Channel Flow with Spanwise Wall Oscillation

A Direct Numerical Simulation of Fully Developed Turbulent Channel Flow with Spanwise Wall Oscillation
Title A Direct Numerical Simulation of Fully Developed Turbulent Channel Flow with Spanwise Wall Oscillation PDF eBook
Author Dongmei Zhou
Publisher
Pages
Release 2005
Genre Fluid dynamics
ISBN

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Direct Numerical Simulation of Compressible and Incompressible Wall Bounded Turbulent Flows with Pressure Gradients

Direct Numerical Simulation of Compressible and Incompressible Wall Bounded Turbulent Flows with Pressure Gradients
Title Direct Numerical Simulation of Compressible and Incompressible Wall Bounded Turbulent Flows with Pressure Gradients PDF eBook
Author
Publisher
Pages 380
Release 2009
Genre
ISBN

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This thesis is focused on direct numerical simulation (DNS) of compressible and incompressible fully developed and developing turbulent flows between isothermal walls using a discontinuous Galerkin method (DGM). Three cases (Ma = 0.2, 0.7 and 1.5) of DNS of turbulent channel flows between isothermal walls with Re ~ 2800, based on bulk velocity and half channel width, have been carried out. It is found that a power law seems to scale mean streamwise velocity with Ma slightly better than the more usual log-law. Inner and outer scaling of second-order and higher-order statistics have been analyzed. The linkage between the pressure gradient and vorticity flux on the wall has been theoretically derived and confirmed and they are highly correlated very close to the wall. The correlation coefficients are influenced by Ma, and viscosity when Ma is high. The near-wall spanwise streak spacing increases with Ma. Isosurfaces of the second invariant of the velocity gradient tensor are more sparsely distributed and elongated as Ma increases. DNS of turbulent isothermal-wall bounded flow subjected to favourable and adverse pressure gradient (FPG, APG) at Ma ~ 0.2 and Reref ~ 428000, based on the inlet bulk velocity and the streamwise length of the bottom wall, is also investigated. The FPG/APG is obtained by imposing a concave/convex curvature on the top wall of a plane channel. The flows on the bottom and top walls are tripped turbulent and laminar boundary layers, respectively. It is observed that the first and second order statistics are strongly influenced by the pressure gradients. The cross-correlation coefficients of the pressure gradients and vorticity flux remain constant across the FPG/APG regions of the flat wall. High correlations between the streamwise/wallnormal pressure gradient and the spanwise vorticity are found near the separation region close to the curved top wall. The angle of inclined hairpin structure to streamwise direction of the bottom wall is smaller (flatter) in the FPG region than the APG region.

Direct Numerical Simulation of Turbulent Flow Over a Backward-facing Step

Direct Numerical Simulation of Turbulent Flow Over a Backward-facing Step
Title Direct Numerical Simulation of Turbulent Flow Over a Backward-facing Step PDF eBook
Author Stanford University. Thermosciences Division. Thermosciences Division
Publisher
Pages 250
Release 1994
Genre Fluid dynamics
ISBN

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Direct Numerical Simulation of Laminar and Turbulent Flow in a Channel with Complex, Time-dependent Wall Geometries

Direct Numerical Simulation of Laminar and Turbulent Flow in a Channel with Complex, Time-dependent Wall Geometries
Title Direct Numerical Simulation of Laminar and Turbulent Flow in a Channel with Complex, Time-dependent Wall Geometries PDF eBook
Author Henry Andrew Carlson
Publisher
Pages 518
Release 1995
Genre
ISBN

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Direct Numerical Simulation of Curved Turbulent Channel Flow

Direct Numerical Simulation of Curved Turbulent Channel Flow
Title Direct Numerical Simulation of Curved Turbulent Channel Flow PDF eBook
Author Robert deLancey Moser
Publisher
Pages 178
Release 1984
Genre Atmospheric turbulence
ISBN

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Turbulence Over a Compliant Surface

Turbulence Over a Compliant Surface
Title Turbulence Over a Compliant Surface PDF eBook
Author Sheng Xu
Publisher
Pages 324
Release 2002
Genre
ISBN

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Simulation and Modeling of Turbulent Flows

Simulation and Modeling of Turbulent Flows
Title Simulation and Modeling of Turbulent Flows PDF eBook
Author Thomas B. Gatski
Publisher Oxford University Press
Pages 329
Release 1996-07-11
Genre Science
ISBN 0195355563

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This book provides students and researchers in fluid engineering with an up-to-date overview of turbulent flow research in the areas of simulation and modeling. A key element of the book is the systematic, rational development of turbulence closure models and related aspects of modern turbulent flow theory and prediction. Starting with a review of the spectral dynamics of homogenous and inhomogeneous turbulent flows, succeeding chapters deal with numerical simulation techniques, renormalization group methods and turbulent closure modeling. Each chapter is authored by recognized leaders in their respective fields, and each provides a thorough and cohesive treatment of the subject.