Thermal Convection :Patterns, Evolution and Stability

Publication subTitle :Patterns, Evolution and Stability

Author: Marcello Lappa  

Publisher: John Wiley & Sons Inc‎

Publication year: 2009

E-ISBN: 9780470749999

P-ISBN(Hardback):  9780470699942

Subject: TB303 the structure and physical properties

Language: ENG

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Description

Thermal Convection - Patterns, Stages of Evolution and Stability Behavior provides the reader with an ensemble picture of the subject, illustrating the state-of-the-art and providing the researchers from universities and industry with a basis on which they are able to estimate the possible impact of a variety of parameters. Unlike earlier books on the subject, the heavy mathematical background underlying and governing the behaviors illustrated in the text are kept to a minimum.

The text clarifies some still unresolved controversies pertaining to the physical nature of the dominating driving force responsible for asymmetric/oscillatory convection in various natural phenomena and/or technologically important processes and can help researchers in elaborating and validating new, more complex models, in accelerating the current trend towards predictable and reproducible natural phenomena and in establishing an adequate scientific foundation to industrial processes.

Thermal Convection - Patterns, Stages of Evolution and Stability Behavior is intended as a useful reference guide for specialists in disciplines such as the metallurgy and foundry field and researchers and scientists who are now coordinating their efforts to improve the quality of semiconductor or macromolecular crystals. The text may also be of use to organic chemists and materials scientists, atmosphere and planetary physicists, as well as an advanced level text for students taking part in courses on the physics of fluids, fluid mechanics, the behavior and evolution of non-linear systems, environmental phenomena and materials engineering.

Chapter

Contents

pp.:  1 – 9

Preface

pp.:  9 – 17

Acknowledgements

pp.:  17 – 21

3 Examples of Thermal Fluid Convection and Pattern Formation in Nature and Technology

pp.:  85 – 117

4 Thermogravitational Convection: The Rayleigh–Benard Problem

pp.:  117 – 141

5 The Dynamics of Thermal Plumes and Related Regimes of Motion

pp.:  141 – 217

6 Systems Heated from the Side: The Hadley Flow

pp.:  217 – 237

7 Thermogravitational Convection in Inclined Systems

pp.:  237 – 293

8 Thermovibrational Convection

pp.:  293 – 311

9 Marangoni–Benard Convection

pp.:  311 – 339

10 Thermocapillary Convection

pp.:  339 – 363

11 Mixed Buoyancy–Marangoni Convection

pp.:  363 – 449

12 Hybrid Regimes with Vibrations

pp.:  449 – 539

13 Flow Control by Magnetic Fields

pp.:  539 – 603

References

pp.:  603 – 631

Index

pp.:  631 – 681

LastPages

pp.:  681 – 692

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