Rotating Machinery, Structural Health Monitoring, Shock and Vibration, Volume 5

Rotating Machinery, Structural Health Monitoring, Shock and Vibration, Volume 5

Author: Tom Proulx

Publisher: Springer Science & Business Media

Published: 2011-03-24

Total Pages: 542

ISBN-13: 1441994289

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Rotating Machinery, Structural Health Monitoring, Shock and Vibration, Volume 5 Proceedings of the 29th IMAC, A Conference and Exposition on Structural Dynamics, 2011, the fifth volume of six from the Conference, brings together 35 contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Rotating Machinery, Structural Health Monitoring, as well as Shock and Vibration, along with other structural engineering areas.


Encyclopedia of Vibration: A-E

Encyclopedia of Vibration: A-E

Author: Simon G. Braun

Publisher:

Published: 2002

Total Pages: 608

ISBN-13: 9780122270864

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The Encyclopedia of Vibration is the first resource to cover this field so comprehensively. Approximately 190 articles cover everything from basic vibration theory to ultrasonics, from both fundamental and applied standpoints. Areas covered include vibrations in machines, buildings and other structures, vehicles, ships, and aircraft, as well as human response to vibration. Each article provides a concise and authoritative introduction to a topic. The Encyclopedia includes essential facts, background information, and techniques for modeling, analysis, design, testing, and control of vibration. It is highlighted with numerous illustrations and is structured to provide easy access to required information. Key Features * Covers the entire field of vibration with 168 original articles written by leading international authorities * Presents concise overviews of key topics relating to mechanical, civil, aeronautical, and electrical engineering * Provides easy access to information through extensive cross-referencing, detailed subject index in each volume, and further reading lists in each article * Features hundreds of detailed figures and equations, plus color plate sections in each volume.


Shock Wave-Boundary-Layer Interactions

Shock Wave-Boundary-Layer Interactions

Author: Holger Babinsky

Publisher: Cambridge University Press

Published: 2011-09-12

Total Pages: 481

ISBN-13: 1139498649

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Shock wave-boundary-layer interaction (SBLI) is a fundamental phenomenon in gas dynamics that is observed in many practical situations, ranging from transonic aircraft wings to hypersonic vehicles and engines. SBLIs have the potential to pose serious problems in a flowfield; hence they often prove to be a critical - or even design limiting - issue for many aerospace applications. This is the first book devoted solely to a comprehensive, state-of-the-art explanation of this phenomenon. It includes a description of the basic fluid mechanics of SBLIs plus contributions from leading international experts who share their insight into their physics and the impact they have in practical flow situations. This book is for practitioners and graduate students in aerodynamics who wish to familiarize themselves with all aspects of SBLI flows. It is a valuable resource for specialists because it compiles experimental, computational and theoretical knowledge in one place.


Structural Dynamics @ 2000

Structural Dynamics @ 2000

Author: D. J. Ewins

Publisher:

Published: 2001

Total Pages: 518

ISBN-13:

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This book is associated with a forum, held in the USA in April 1999, to discuss the current status and the future directions of Structural Dynamics. The book contains a set of essays which describe and analyze the current technology and also contains a series of reviews of all the major areas within the subject.


Optimal Protection from Impact, Shock and Vibration

Optimal Protection from Impact, Shock and Vibration

Author: Dimitry V Balandin

Publisher: CRC Press

Published: 2001-03-07

Total Pages: 474

ISBN-13: 9789056997014

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Systems that provide protection from impact, shock and vibration are held up by sophisticated physical principles. In this volume, the author explores those principles in a straightforward manner. All aspects of the theory of optimal isolation are presented, from a description of the systems that use these principles to the design of such systems and the limits of the approach. The text offers several examples of how optimal isolation has been applied in real-world situations, thus serving to emphasize and elucidate the explanation of the theory. Optimal Protection From Impact, Shock and Vibration is ideal for applied engineers and mathematicians, whether students or professionals, who need to understand optimal protection.