Basics of Engineering Turbulence

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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

Author(s): Ting, David
Edition: 1
Publisher: Academic Press
Year: 2016

Language: English
Pages: 256
City: London, UK L
Tags: Механика;Механика жидкостей и газов;Турбулентность;

Content:
Front matter,Copyright,Dedication,Acknowledgments,Foreword,PrefaceEntitled to full textPart 1: Some Basics of Flow TurbulenceChapter 1 - Introducing Flow Turbulence, Pages 3-18
Chapter 2 - Equations of Fluid in Motion, Pages 19-46
Chapter 3 - Statistical Description of Flow Turbulence, Pages 47-68
Chapter 4 - Turbulence Scales, Pages 69-98
Chapter 5 - Turbulence Simulations and Modeling, Pages 99-118
Chapter 6 - Wall Turbulence, Pages 119-138
Chapter 7 - Grid Turbulence, Pages 139-164
Chapter 8 - Vortex Dynamics, Pages 165-186
Chapter 9 - Sphere and Circular Cylinder in Cross Flow, Pages 189-202
Chapter 10 - Premixed Turbulent Flame Propagation, Pages 203-226
Subject Index, Pages 227-234