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Numerical Prediction of Turbulent Compressible Flows Using K-e Model and Reynolds Stress Closure Model

Numerical Prediction of Turbulent Compressible Flows Using K-e Model and Reynolds Stress Closure Model PDF Author: N. T. H. Nguyen-Bui
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Numerical Prediction of Turbulent Compressible Flows Using K-e Model and Reynolds Stress Closure Model

Numerical Prediction of Turbulent Compressible Flows Using K-e Model and Reynolds Stress Closure Model PDF Author: N. T. H. Nguyen-Bui
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Simulation and Modeling of Turbulent Flows

Simulation and Modeling of Turbulent Flows PDF Author: Thomas B. Gatski
Publisher: Oxford University Press
ISBN: 0195355563
Category : Science
Languages : en
Pages : 329

Book Description
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.

Reynolds Stress Modeling of Turbulent Open-channel Flows

Reynolds Stress Modeling of Turbulent Open-channel Flows PDF Author: Sung-Uk Choi
Publisher:
ISBN:
Category : Mathematics
Languages : en
Pages : 116

Book Description
This book presents numerical simulations of three-dimensional turbulent open-channel flows. In the simulations, Reynolds-averaged Navier-Stokes equations are solved with the Reynolds stress model for turbulence closure. The overall solution strategy is the SIMPLER algorithm, and the power-law scheme is used to discretise the convection and diffusion terms in the governing equations. The Reynolds stress model is applied to rectangular open-channel flows, partly-vegetated open-channel flows, and compound open-channel flows. The simulated mean flow and turbulence structures including streamwise mean velocity, secondary currents, turbulence intensity, and Reynolds stress, are provided and compared with measure data in the literature. As shown in this book, these comparisons reveal that the proposed Reynolds stress model successfully predicts the mean flow and turbulence statistics of turbulent open-channel flows.

Turbulent Flows

Turbulent Flows PDF Author: Jean Piquet
Publisher: Springer Science & Business Media
ISBN: 3662035596
Category : Technology & Engineering
Languages : en
Pages : 767

Book Description
obtained are still severely limited to low Reynolds numbers (about only one decade better than direct numerical simulations), and the interpretation of such calculations for complex, curved geometries is still unclear. It is evident that a lot of work (and a very significant increase in available computing power) is required before such methods can be adopted in daily's engineering practice. I hope to l"Cport on all these topics in a near future. The book is divided into six chapters, each· chapter in subchapters, sections and subsections. The first part is introduced by Chapter 1 which summarizes the equations of fluid mechanies, it is developed in C~apters 2 to 4 devoted to the construction of turbulence models. What has been called "engineering methods" is considered in Chapter 2 where the Reynolds averaged equations al"C established and the closure problem studied (§1-3). A first detailed study of homogeneous turbulent flows follows (§4). It includes a review of available experimental data and their modeling. The eddy viscosity concept is analyzed in §5 with the l"Csulting ~alar-transport equation models such as the famous K-e model. Reynolds stl"Css models (Chapter 4) require a preliminary consideration of two-point turbulence concepts which are developed in Chapter 3 devoted to homogeneous turbulence. We review the two-point moments of velocity fields and their spectral transforms (§ 1), their general dynamics (§2) with the particular case of homogeneous, isotropie turbulence (§3) whel"C the so-called Kolmogorov's assumptions are discussed at length.

Analysis of the K-epsilon Turbulence Models for Simulation of Compressible Flows

Analysis of the K-epsilon Turbulence Models for Simulation of Compressible Flows PDF Author: Krishnendu Sinha
Publisher:
ISBN:
Category :
Languages : en
Pages : 436

Book Description


On Prediction of Equilibrium States in Homogeneous Compressible Turbulence

On Prediction of Equilibrium States in Homogeneous Compressible Turbulence PDF Author: Ridha Abid
Publisher:
ISBN:
Category :
Languages : en
Pages : 36

Book Description


Center for Modeling of Turbulence and Transition (CMOTT)

Center for Modeling of Turbulence and Transition (CMOTT) PDF Author:
Publisher:
ISBN:
Category : Turbulence
Languages : en
Pages : 172

Book Description


Impact of Turbulence Modeling on Numerical Accuracy and Efficiency of Compressible Flow Simulations

Impact of Turbulence Modeling on Numerical Accuracy and Efficiency of Compressible Flow Simulations PDF Author: Thomas J. Coakley
Publisher:
ISBN:
Category :
Languages : en
Pages : 14

Book Description


Numerical Solution of Turbulent Flow Past a Backward Facing Step Using a Nonlinear K-epsilon Model

Numerical Solution of Turbulent Flow Past a Backward Facing Step Using a Nonlinear K-epsilon Model PDF Author: Charles G. Speziale
Publisher:
ISBN:
Category :
Languages : en
Pages : 52

Book Description


Analysis of the K-Epsilon Turbulence Model

Analysis of the K-Epsilon Turbulence Model PDF Author: B. Mohammadi
Publisher:
ISBN:
Category : Mathematics
Languages : en
Pages : 222

Book Description
Aimed at applied mathematicians interested in the numerical simulation of turbulent flows. Centered around the k-&epsis; model, it also deals with other models such as one equation models, subgrid scale models and Reynolds Stress models. Presents the k-&epsis; method for turbulence in a language familiar to applied mathematicians, but has none of the technicalities of turbulence theory.