Turbulence Fluids

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Turbulence in Fluids

Author : Marcel Lesieur
Publisher : Springer Science & Business Media
Page : 593 pages
File Size : 52,8 Mb
Release : 2008-03-26
Category : Technology & Engineering
ISBN : 9781402064357

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Turbulence in Fluids by Marcel Lesieur Pdf

Now in its fully updated fourth edition, this leading text in its field is an exhaustive monograph on turbulence in fluids in its theoretical and applied aspects. The authors examine a number of advanced developments using mathematical spectral methods, direct-numerical simulations, and large-eddy simulations. The book remains a hugely important contribution to the literature on a topic of great importance for engineering and environmental applications, and presents a very detailed presentation of the field.

Turbulence in Fluids

Author : Marcel Lesieur
Publisher : Springer Science & Business Media
Page : 435 pages
File Size : 48,9 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9789400905337

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Turbulence in Fluids by Marcel Lesieur Pdf

Turbulence is a dangerous topic which is often at the origin of serious fights in the scientific meetings devoted to it since it represents extremely different points of view, all of which have in common their complexity, as well as an inability to solve the problem. It is even difficult to agree on what exactly is the problem to be solved. Extremely schematically, two opposing points of view have been advocated during these last ten years: the first one is "statistical", and tries to model the evolution of averaged quantities of the flow. This com has followed the glorious trail of Taylor and Kolmogorov, munity, which believes in the phenomenology of cascades, and strongly disputes the possibility of any coherence or order associated to turbulence. On the other bank of the river stands the "coherence among chaos" community, which considers turbulence from a purely deterministic po int of view, by studying either the behaviour of dynamical systems, or the stability of flows in various situations. To this community are also associated the experimentalists who seek to identify coherent structures in shear flows.

Variable Density Fluid Turbulence

Author : P. Chassaing,R.A. Antonia,Fabien Anselmet,L. Joly,S. Sarkar
Publisher : Springer Science & Business Media
Page : 387 pages
File Size : 55,7 Mb
Release : 2013-06-29
Category : Science
ISBN : 9789401700757

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Variable Density Fluid Turbulence by P. Chassaing,R.A. Antonia,Fabien Anselmet,L. Joly,S. Sarkar Pdf

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.

Turbulent Fluid Flow

Author : Peter S. Bernard
Publisher : John Wiley & Sons
Page : 356 pages
File Size : 48,8 Mb
Release : 2019-03-11
Category : Science
ISBN : 9781119106227

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Turbulent Fluid Flow by Peter S. Bernard Pdf

A guide to the essential information needed to model and compute turbulent flows and interpret experiments and numerical simulations Turbulent Fluid Flow offers an authoritative resource to the theories and models encountered in the field of turbulent flow. In this book, the author – a noted expert on the subject – creates a complete picture of the essential information needed for engineers and scientists to carry out turbulent flow studies. This important guide puts the focus on the essential aspects of the subject – including modeling, simulation and the interpretation of experimental data - that fit into the basic needs of engineers that work with turbulent flows in technological design and innovation. Turbulent Fluid Flow offers the basic information that underpins the most recent models and techniques that are currently used to solve turbulent flow challenges. The book provides careful explanations, many supporting figures and detailed mathematical calculations that enable the reader to derive a clear understanding of turbulent fluid flow. This vital resource: • Offers a clear explanation to the models and techniques currently used to solve turbulent flow problems • Provides an up-to-date account of recent experimental and numerical studies probing the physics of canonical turbulent flows • Gives a self-contained treatment of the essential topics in the field of turbulence • Puts the focus on the connection between the subject matter and the goals of fluids engineering • Comes with a detailed syllabus and a solutions manual containing MATLAB codes, available on a password-protected companion website Written for fluids engineers, physicists, applied mathematicians and graduate students in mechanical, aerospace and civil engineering, Turbulent Fluid Flow contains an authoritative resource to the information needed to interpret experiments and carry out turbulent flow studies.

Turbulence and Random Processes in Fluid Mechanics

Author : M. T. Landahl,E. Mollo-Christensen
Publisher : Cambridge University Press
Page : 18 pages
File Size : 42,6 Mb
Release : 1992-09-25
Category : Mathematics
ISBN : 0521419921

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Turbulence and Random Processes in Fluid Mechanics by M. T. Landahl,E. Mollo-Christensen Pdf

Fluid flow turbulence is a phenomenon of great importance in many fields of engineering and science.

Turbulence in Rotating, Stratified and Electrically Conducting Fluids

Author : P. A. Davidson
Publisher : Cambridge University Press
Page : 701 pages
File Size : 50,8 Mb
Release : 2013-09-12
Category : Science
ISBN : 9781107026865

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Turbulence in Rotating, Stratified and Electrically Conducting Fluids by P. A. Davidson Pdf

Starting from first principles, this graduate-level monograph discusses turbulent flow in a wide range of geophysical and astrophysical settings.

Lecture Notes on Turbulence and Coherent Structures in Fluids, Plasmas and Nonlinear Media

Author : Michael Shats,Horst Punzmann
Publisher : World Scientific
Page : 397 pages
File Size : 43,5 Mb
Release : 2006
Category : Science
ISBN : 9789812774071

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Lecture Notes on Turbulence and Coherent Structures in Fluids, Plasmas and Nonlinear Media by Michael Shats,Horst Punzmann Pdf

This book is based on the lectures delivered at the 19th Canberra International Physics Summer School held at the Australian National University in Canberra (Australia) in January 2006.The problem of turbulence and coherent structures is of key importance in many fields of science and engineering. It is an area which is vigorously researched across a diverse range of disciplines such as theoretical physics, oceanography, atmospheric science, magnetically confined plasma, nonlinear optics, etc. Modern studies in turbulence and coherent structures are based on a variety of theoretical concepts, numerical simulation techniques and experimental methods, which cannot be reviewed effectively by a single expert.The main goal of these lecture notes is to introduce state-of-the-art turbulence research in a variety of approaches (theoretical, numerical simulations and experiments) and applications (fluids, plasmas, geophysics, nonlinear optical media) by several experts. A smooth introduction is presented to readers who are not familiar with the field, while reviewing the most recent advances in the area. This collection of lectures will provide a useful review for both postgraduate students and researchers new to the advancements in this field, as well as specialists seeking to expand their knowledge across different areas of turbulence research.

An Informal Introduction to Turbulence

Author : A. Tsinober
Publisher : Springer Science & Business Media
Page : 344 pages
File Size : 43,8 Mb
Release : 2006-04-11
Category : Science
ISBN : 9780306483844

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An Informal Introduction to Turbulence by A. Tsinober Pdf

To Turbulence by ARKADY TSINOBER Department of Fluid Mechanics, Faculty of Engineering, Tel Aviv University, Tel Aviv, Israel KLUWER ACADEMIC PUBLISHERS NEW YORK, BOSTON, DORDRECHT, LONDON, MOSCOW eBookISBN: 0-306-48384-X Print ISBN: 1-4020-0110-X ©2004 Kluwer Academic Publishers NewYork, Boston, Dordrecht, London, Moscow Print ©2001 Kluwer Academic Publishers Dordrecht All rights reserved No part of this eBook maybe reproducedor transmitted inanyform or byanymeans, electronic, mechanical, recording, or otherwise, without written consent from the Publisher Created in the United States of America Visit Kluwer Online at: http://kluweronline. com and Kluwer's eBookstoreat: http://ebooks. kluweronline. com TO My WITS TABLE OF CONTENTS 1 INTRODUCTION 1 Brief history 1 1. 1 1. 2 Nature and major qualitative universal features of turbulent flows 2 1. 2. 1 Representative examples of turbulent flows 2 1. 2. 2 In lieu of definition: major qualitative universal f- tures of turbulent flows 15 1. 3 Why turbulence is so impossibly difficult? The three N's 19 On the Navier-Stokes equations 19 1. 3. 1 1. 3. 2 On the nature of the problem 21 1. 3. 3 Nonlinearity 22 1. 3. 4 Noninegrability 22 Nonlocality 1. 3. 5 23 1. 3. 6 On physics of turbulence 24 1. 3. 7 On statistical theories 24 1. 4 Outline of the following material 25 1. 5 In lieu of summary 26 2 ORIGINS OF TURBULENCE 27 2. 1 Instability 27 2. 2 Transition to turbulence versus routes to chaos 29 2.

An Introduction to Turbulent Flow

Author : Jean Mathieu,Julian Scott
Publisher : Cambridge University Press
Page : 388 pages
File Size : 55,8 Mb
Release : 2000-06-26
Category : Science
ISBN : 0521775388

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An Introduction to Turbulent Flow by Jean Mathieu,Julian Scott Pdf

Most natural and industrial flows are turbulent. The atmosphere and oceans, automobile and aircraft engines, all provide examples of this ubiquitous phenomenon. In recent years, turbulence has become a very lively area of scientific research and application, attracting many newcomers who need a basic introduction to the subject. An Introduction to Turbulent Flow, first published in 2000, offers a solid grounding in the subject of turbulence, developing both physical insight and the mathematical framework needed to express the theory. It begins with a review of the physical nature of turbulence, statistical tools, and space and time scales of turbulence. Basic theory is presented next, illustrated by examples of simple turbulent flows and developed through classical models of jets, wakes, and boundary layers. A deeper understanding of turbulence dynamics is provided by spectral analysis and its applications. The final chapter introduces the numerical simulation of turbulent flows. This well-balanced text will interest graduate students in engineering, applied mathematics, and the physical sciences.

Turbulence and Random Processes in Fluid Mechanics

Author : M. T. Landahl,E. Mollo-Christensen
Publisher : Cambridge University Press
Page : 184 pages
File Size : 52,9 Mb
Release : 1992-09-25
Category : Mathematics
ISBN : 0521422132

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Turbulence and Random Processes in Fluid Mechanics by M. T. Landahl,E. Mollo-Christensen Pdf

Fluid flow turbulence is a phenomenon of great importance in many fields of engineering and science.

Applied Computational Fluid Dynamics and Turbulence Modeling

Author : Sal Rodriguez
Publisher : Springer Nature
Page : 316 pages
File Size : 52,6 Mb
Release : 2019-12-06
Category : Computers
ISBN : 9783030286910

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Applied Computational Fluid Dynamics and Turbulence Modeling by Sal Rodriguez Pdf

This unique text provides engineering students and practicing professionals with a comprehensive set of practical, hands-on guidelines and dozens of step-by-step examples for performing state-of-the-art, reliable computational fluid dynamics (CFD) and turbulence modeling. Key CFD and turbulence programs are included as well. The text first reviews basic CFD theory, and then details advanced applied theories for estimating turbulence, including new algorithms created by the author. The book gives practical advice on selecting appropriate turbulence models and presents best CFD practices for modeling and generating reliable simulations. The author gathered and developed the book’s hundreds of tips, tricks, and examples over three decades of research and development at three national laboratories and at the University of New Mexico—many in print for the first time in this book. The book also places a strong emphasis on recent CFD and turbulence advancements found in the literature over the past five to 10 years. Readers can apply the author’s advice and insights whether using commercial or national laboratory software such as ANSYS Fluent, STAR-CCM, COMSOL, Flownex, SimScale, OpenFOAM, Fuego, KIVA, BIGHORN, or their own computational tools. Applied Computational Fluid Dynamics and Turbulence Modeling is a practical, complementary companion for academic CFD textbooks and senior project courses in mechanical, civil, chemical, and nuclear engineering; senior undergraduate and graduate CFD and turbulence modeling courses; and for professionals developing commercial and research applications.

Turbulence in Rotating, Stratified and Electrically Conducting Fluids

Author : P. A. Davidson
Publisher : Cambridge University Press
Page : 701 pages
File Size : 42,5 Mb
Release : 2013-09-12
Category : Science
ISBN : 9781107434349

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Turbulence in Rotating, Stratified and Electrically Conducting Fluids by P. A. Davidson Pdf

There are two recurring themes in astrophysical and geophysical fluid mechanics: waves and turbulence. This book investigates how turbulence responds to rotation, stratification or magnetic fields, identifying common themes, where they exist, as well as the essential differences which inevitably arise between different classes of flow. The discussion is developed from first principles, making the book suitable for graduate students as well as professional researchers. The author focuses first on the fundamentals and then progresses to such topics as the atmospheric boundary layer, turbulence in the upper atmosphere, turbulence in the core of the earth, zonal winds in the giant planets, turbulence within the interior of the sun, the solar wind, and turbulent flows in accretion discs. The book will appeal to engineers, geophysicists, astrophysicists and applied mathematicians who are interested in naturally occurring turbulent flows.

Basics of Engineering Turbulence

Author : David Ting
Publisher : Academic Press
Page : 258 pages
File Size : 46,7 Mb
Release : 2016-02-23
Category : Science
ISBN : 9780128039830

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Basics of Engineering Turbulence by David Ting Pdf

Basics of Engineering Turbulence introduces flow turbulence to engineers and engineering students who have a fluid dynamics background, but do not have advanced knowledge on the subject. It covers the basic characteristics of flow turbulence in terms of its many scales. The author uses a pedagogical approach to help readers better understand the fundamentals of turbulence scales, especially how they are derived through the order of magnitude analysis. This book is intended for those who have an interest in flowing fluids. It provides some background, though of limited scope, on everyday flow turbulence, especially in engineering applications. The book begins with the ‘basics’ of turbulence which is necessary for any reader being introduced to the subject, followed by several examples of turbulence in engineering applications. This overall approach gives readers all they need to grasp both the fundamentals of turbulence and its applications in practical instances. Focuses on the basics of turbulence for applications in engineering and industrial settings Provides an understanding of concepts that are often challenging, such as energy distribution among the turbulent structures, the effective diffusivity, and the theory behind turbulence scales Offers a user-friendly approach with clear-and-concise explanations and illustrations, as well as end-of-chapter problems

Turbulent Flows

Author : Stephen B. Pope
Publisher : Cambridge University Press
Page : 810 pages
File Size : 41,6 Mb
Release : 2000-08-10
Category : Science
ISBN : 0521598869

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Turbulent Flows by Stephen B. Pope Pdf

This is a graduate text on turbulent flows, an important topic in fluid dynamics. It is up-to-date, comprehensive, designed for teaching, and is based on a course taught by the author at Cornell University for a number of years. The book consists of two parts followed by a number of appendices. Part I provides a general introduction to turbulent flows, how they behave, how they can be described quantitatively, and the fundamental physical processes involved. Part II is concerned with different approaches for modelling or simulating turbulent flows. The necessary mathematical techniques are presented in the appendices. This book is primarily intended as a graduate level text in turbulent flows for engineering students, but it may also be valuable to students in applied mathematics, physics, oceanography and atmospheric sciences, as well as researchers and practising engineers.

Turbulence Phenomena

Author : J.T. Davies
Publisher : Elsevier
Page : 425 pages
File Size : 42,6 Mb
Release : 2012-12-02
Category : Technology & Engineering
ISBN : 9780323150934

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Turbulence Phenomena by J.T. Davies Pdf

Turbulence Phenomena provides an introduction to the eddy transfer of momentum, mass, and heat, specifically at interfaces. The approach of the discussion of the subject matter is based on the eddy mixing length concept of Prandtl. Chapter 1 begins with a discussion on basic concepts regarding liquid flow such as viscosity, turbulent flows, and velocities. As concepts and theories are established, the book then discusses the eddy transfer in fluids, specifically eddy transfer of mass and heat within fluids and eddy transfer near solid surfaces. The concept of eddies in different surfaces is discussed in length all throughout numerous chapters. These different surfaces include clean gas-liquid surfaces, clean liquid-liquid interfaces, and film-covered surfaces. The last few chapters focus on the more detailed discussion on turbulence, such as the concept of spontaneous interfacial turbulence and emulsification and turbulent dispersion and coalescence. The book will be of great use to undergraduate students of chemical engineering, physics, and chemistry.