Flow-Induced Vibrations -

Flow-Induced Vibrations

Classifications and Lessons from Practical Experiences
Buch | Hardcover
432 Seiten
2013 | 2nd edition
Academic Press Inc.(London) Ltd (Verlag)
978-0-08-098347-9 (ISBN)
108,45 inkl. MwSt
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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.
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 provides 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 vibrations.

Professor of Mechanical Engineering at Osaka Sangyo University, Professor Nakamura has over thirty years of experience of working with fluid dynamics. Professor Kaneko is Vice Chairman of the Engineering Education Committee at the University of Tokyo, with a specialist interest in researching Flow Induced Vibration and Vibration Control. He has received a number of awards in the fields of Mechanical and Design Engineering, and published over 30 papers.

1. Introduction 2. Vibration Induced by Cross-Flow 3. Vibration Induced by External Axial Flow 4. Vibrations Induced by Internal Fluid Flow 5. Vibration Induced by Pressure Waves in Piping 6. Heating-Related Oscillations and Noise 7. Vibrations in Rotary Machines 8. Vibrations in Fluid–Structure Interaction Systems

Erscheint lt. Verlag 13.12.2013
Verlagsort London
Sprache englisch
Maße 191 x 235 mm
Gewicht 920 g
Themenwelt Technik Maschinenbau
ISBN-10 0-08-098347-2 / 0080983472
ISBN-13 978-0-08-098347-9 / 9780080983479
Zustand Neuware
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