An Introduction To Turbulent Flow Pdf


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An Introduction to Turbulent Reacting Flows


An Introduction to Turbulent Reacting Flows

Author: R. S. Cant

language: en

Publisher: Imperial College Press

Release Date: 2008


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Provides physical intuition and key entries to the body of literature. This book includes historical perspective of the theories.

Turbulent Flows


Turbulent Flows

Author: Stephen B. Pope

language: en

Publisher: Cambridge University Press

Release Date: 2000-08-10


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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.

An Introduction to Turbulent Flow


An Introduction to Turbulent Flow

Author: Jean Mathieu

language: en

Publisher: Cambridge University Press

Release Date: 2000-06-26


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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.