Dns Of Turbulent Wall Bounded Flows With A Passive Scalar
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Author | : Tapan K. Sengupta |
Publisher | : Springer |
Total Pages | : 393 |
Release | : 2018-06-07 |
Genre | : Technology & Engineering |
ISBN | : 9811300380 |
This book highlights by careful documentation of developments what led to tracking the growth of deterministic disturbances inside the shear layer from receptivity to fully developed turbulent flow stages. Associated theoretical and numerical developments are addressed from basic level so that an uninitiated reader can also follow the materials which lead to the solution of a long-standing problem. Solving Navier-Stokes equation by direct numerical simulation (DNS) from the first principle has been considered as one of the most challenging problems of understanding what causes transition to turbulence. Therefore, this book is a very useful addition to advanced CFD and advanced fluid mechanics courses.
Author | : Michel Stanislas |
Publisher | : Springer Science & Business Media |
Total Pages | : 465 |
Release | : 2010-10-26 |
Genre | : Technology & Engineering |
ISBN | : 9048196035 |
This book will consist of a coherent collection of recent results on near wall turbulence including theory, new experiments, DNS, and modeling with RANS, LES and Low Order Dynamical Systems.
Author | : Christophe Brun |
Publisher | : Springer Science & Business Media |
Total Pages | : 344 |
Release | : 2009-03-07 |
Genre | : Technology & Engineering |
ISBN | : 3540899561 |
Large Eddy Simulation (LES) is a high-fidelity approach to the numerical simulation of turbulent flows. Recent developments have shown LES to be able to predict aerodynamic noise generation and propagation as well as the turbulent flow, by means of either a hybrid or a direct approach. This book is based on the results of two French/German research groups working on LES simulations in complex geometries and noise generation in turbulent flows. The results provide insights into modern prediction approaches for turbulent flows and noise generation mechanisms as well as their use for novel noise reduction concepts.
Author | : Peter A. Davidson |
Publisher | : Cambridge University Press |
Total Pages | : 450 |
Release | : 2013 |
Genre | : Science |
ISBN | : 0521769442 |
Leading experts summarize our current understanding of the fundamental nature of turbulence, covering a wide range of topics.
Author | : Doyle Knight |
Publisher | : Springer Science & Business Media |
Total Pages | : 516 |
Release | : 2012-12-06 |
Genre | : Technology & Engineering |
ISBN | : 940114513X |
This collection of papers presents a broad range of topics in DNS and LES, from new developments in LES modeling to DNS and LES for supersonic and hypersonic boundary layers. The book provides an extensive view of the state of the art in the field.
Author | : William Layton |
Publisher | : MDPI |
Total Pages | : 229 |
Release | : 2018-05-04 |
Genre | : Mathematics |
ISBN | : 3038428094 |
This book is a printed edition of the Special Issue "Turbulence: Numerical Analysis, Modelling and Simulation" that was published in Fluids
Author | : Michel Favre-Marinet |
Publisher | : John Wiley & Sons |
Total Pages | : 326 |
Release | : 2013-03-01 |
Genre | : Science |
ISBN | : 1118619005 |
Convection heat transfer is an important topic both for industrial applications and fundamental aspects. It combines the complexity of the flow dynamics and of the active or passive scalar transport process. It is part of many university courses such as Mechanical, Aeronautical, Chemical and Biomechanical Engineering. The literature on convective heat transfer is large, but the present manuscript differs in many aspects from the existing ones, particularly from the pedagogical point of view. Each chapter begins with a brief yet complete presentation of the related topic. This is followed by a series of solved problems. The latter are scrupulously detailed and complete the synthetic presentation given at the beginning of each chapter. There are about 50 solved problems, which are mostly original with gradual degree of complexity including those related to recent findings in convective heat transfer phenomena. Each problem is associated with clear indications to help the reader to handle independently the solution. The book contains nine chapters including laminar external and internal flows, convective heat transfer in laminar wake flows, natural convection in confined and no-confined laminar flows, turbulent internal flows, turbulent boundary layers, and free shear flows.
Author | : Michael Leschziner |
Publisher | : World Scientific |
Total Pages | : 424 |
Release | : 2015-08-20 |
Genre | : Science |
ISBN | : 1783266635 |
This book is intended for self-study or as a companion of lectures delivered to post-graduate students on the subject of the computational prediction of complex turbulent flows. There are several books in the extensive literature on turbulence that deal, in statistical terms, with the phenomenon itself, as well its many manifestations in the context of fluid dynamics. Statistical Turbulence Modelling for Fluid Dynamics — Demystified differs from these and focuses on the physical interpretation of a broad range of mathematical models used to represent the time-averaged effects of turbulence in computational prediction schemes for fluid flow and related transport processes in engineering and the natural environment. It dispenses with complex mathematical manipulations and instead gives physical and phenomenological explanations. This approach allows students to gain a 'feel' for the physical fabric represented by the mathematical structure that describes the effects of turbulence and the models embedded in most of the software currently used in practical fluid-flow predictions, thus counteracting the ill-informed black-box approach to turbulence modelling. This is done by taking readers through the physical arguments underpinning exact concepts, the rationale of approximations of processes that cannot be retained in their exact form, and essential calibration steps to which the resulting models are subjected by reference to theoretically established behaviour of, and experimental data for, key canonical flows.
Author | : A. Hanifi |
Publisher | : Springer Science & Business Media |
Total Pages | : 540 |
Release | : 2012-12-06 |
Genre | : Science |
ISBN | : 9401145156 |
This single-volume work gives an introduction to the fields of transition, turbulence, and combustion modeling of compressible flows and provides the physical background for today’s modeling approaches in these fields. It presents basic equations and discusses fundamental aspects of hydrodynamical instability.
Author | : P. Chassaing |
Publisher | : Springer Science & Business Media |
Total Pages | : 387 |
Release | : 2013-06-29 |
Genre | : Science |
ISBN | : 9401700753 |
The first part aims at providing the physical and theoretical framework of the analysis of density variations in fully turbulent flows. Its scope is deliberately educational. In the second part, basic data on dynamical and scalar properties of variable density turbulent flows are presented and discussed, based on experimental data and/or results from direct numerical simulations. This part is rather concerned with a research audience. The last part is more directly devoted to an engineering audience and deals with prediction methods for turbulent flows of variable density fluid. Both first and second order, single point modeling are discussed, with special emphasis on the capability to include specific variable density / compressibility effects.