Showing posts with label flow. Show all posts
Showing posts with label flow. Show all posts

Saturday, August 13, 2011

Modelling and Experimention in Two-Phase Flow

Modelling and Experimention in Two-Phase Flow Review


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Modelling and Experimention in Two-Phase Flow Feature

This is an up-to-date review of recent advances in the study of two-phase flows, with focus on gas-liquid flows, liquid-liquid flows, and particle transport in turbulent flows. The book is divided into several chapters, which after introducing basic concepts lead the reader through a more complex treatment of the subjects. The reader will find an extensive review of both the older and the more recent literature, with abundance of formulas, correlations, graphs and tables. A comprehensive (though non exhaustive) list of bibliographic references is provided at the end of each chapter. The volume is especially indicated for researchers who would like to carry out experimental, theoretical or computational work on two-phase flows, as well as for professionals who wish to learn more about this topic.


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Sunday, July 10, 2011

Multiphase Flow Handbook (Mechanical and Aerospace Engineering Series)

Multiphase Flow Handbook (Mechanical and Aerospace Engineering Series) Review


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Multiphase Flow Handbook (Mechanical and Aerospace Engineering Series) Feature

Because of the importance of multiphase flows in a wide variety of industries, including power, petroleum, and numerous processing industries, an understanding of the behavior and underlying theoretical concepts of these systems is critical. Contributed by a team of prominent experts led by a specialist with more than thirty years of experience, the Multiphase Flow Handbook provides such an understanding, and much more. It covers all aspects of multiphase flows, from fundamentals to numerical methods and instrumentation.

The book begins with an introduction to the fundamentals of particle/fluid/bubble interactions followed by gas/liquid flows and methods for calculating system parameters. It includes up-to-date information on practical industrial applications such as boiling and condensation, fluidized beds, aerosols, separation systems, pollution control, granular and porous media flow, pneumatic and slurry transport, and sprays. Coverage then turns to the most recent information on particle/droplet-fluid interactions, with a chapter devoted to microgravity and microscale flows and another on basic multiphase interactions. Rounding out the presentation, the authors discuss numerical methods, state-of-the art instrumentation, and advanced experimental techniques.

Supplying up-to-date, authoritative information on all aspects of multiphase flows along with numerous problems and examples, the Multiphase Flow Handbook is the most complete reference available for understanding the flow of multiphase mixtures.


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Sunday, June 26, 2011

Internal Flow: Concepts and Applications (Cambridge Engine Technology Series)

Internal Flow: Concepts and Applications (Cambridge Engine Technology Series) Review


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Internal Flow: Concepts and Applications (Cambridge Engine Technology Series) Feature

Focusing on phenomena important in implementing the performance of a broad range of fluid devices, this work describes the behavior of internal flows encountered in propulsion systems, fluid machinery (compressors, turbines, and pumps) and ducts (diffusers, nozzles and combustion chambers). The book equips students and practicing engineers with a range of new analytical tools. These tools offer enhanced interpretation and application of both experimental measurements and the computational procedures that characterize modern fluids engineering.


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Wednesday, January 12, 2011

Flow Induced Vibrations: Classifications and Lessons from Practical Experiences

Flow Induced Vibrations: Classifications and Lessons from Practical Experiences Review


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Flow Induced Vibrations: Classifications and Lessons from Practical Experiences Feature

In many plants, vibration and noise problems occur due to fluid flow which can greatly disrupt smooth plant operations. These flow-related phenomena are called Flow-Induced Vibration.
This book explains how and why such vibrations happen and provides hints and tips on how to avoid them in future plant design.
The world-leading author team doesn't assume prior knowledge of mathematical methods and provide the reader with information on the basics of modeling.
The book includes several practical examples and thorough explanations of the structure, the evaluation method and the mechanisms to aid understanding of flow induced vibration.

* Helps ensure smooth plant operations
* Explains the structure, evaluation method and mechanisms
* Shows how to avoid vibrations in future plant design


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