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    STABILITY OF GYROSCOPIC SYSTEMS

    by Ardeshir Guran (Institute for Structronics, Canada & Institut National Polytechnique de Grenoble, France) , Anil Bajaj (Purdue University) , Yukio Ishida (Nagoya University, Japan) , Noel Perkins (University of Michigan) , Gabriel D'Eluterio (University of Toronto, Canada) , & Christophe Pierre (University of Michigan)

    The motion of mechanical systems undergoing rotation about a fixed axis has been the subject of extensive studies over a few centuries. These systems are generally subject to gyroscopic forces which are associated with coriolis accelerations or mass transport and render complex dynamics.

    The unifying theme among topics presented in this book is the gyroscopic nature of the system equations of motion. The book represents comprehensive and detailed reviews of the state of art in four diverse application areas: flow-induced oscillations in structures, oscillations in rotating systems or rotor dynamics, dynamics of axially moving material systems, and dynamics of gyroelastic systems. The book also includes a chapter on dynamics of repetitive structures. These systems feature spatial periodicity and are generally subject to considerable gyroscopic forces. “Gyroelastic systems” and “repetitive structures” are the topics with very recent origins and are still in their infancies compared to the other examples represented in this book. Thus, the contributions on gyroelastic systems and repetitive structures are limited to only modeling, localization and linear stability analysis results.

    This book covers many important aspects of recent developments in various types of gyroscopic systems. Thus, at last, a comprehensive book is made available to serve as a supplement and resource for any graduate level course on elastic gyroscopic systems, as well as for a course covering the stability of mechanical systems. Moreover, the inclusion of an up-to-date bibliography attached to each chapter will make this book an invaluable text for professional reference.

     
    Contents:
    • Nonlinear Flow-Induced Vibration of Structures (C Folley & A Bajaj)
    • Nonlinear Oscillations of Rotors (Y Ishida)
    • Dynamics of High-Speed Axially Moving Material Systems (N Perkins & S-J Hwang)
    • Gyroelastic Dynamics (G D'Eleuterio)
    • Fluid Conveying Pipe with Shear and Compressibility (A Guran & T Atanackovic)
    • Localization Phenomena in Structural Dynamics (C Pierre)
     
    Readership: Civil, mechanical and aerospace engineers.
     
    “… is a very useful book for students, lecturers, scientists, and engineers dealing with the stability of mechanical systems in general, and can be recommended for their libraries.”
    Appl. Mech. Rev.

     
    “The book certainly demonstrates the importance of the mentioned fields, and is a valuable contribution to the literature both in the presentation of the subject and in the explanation of occurring phenomena.”
    Mathematics Abstracts
     
    “… The authors succeed in covering a range of important problems in Stability Theory and Nonlinear Mechanics that should appeal to all who are interested in understanding Gyroscopic Systems. Besides the general principles of the motion of systems undergoing rotation about a fixed axis, the book treats applications in Nonlinear Flow-Induced Vibration of Structures, Nonlinear Rotor Dynamics, Dynamics of High-Speed Axially Moving Material Systems, Large Space Vehicles, Repetitive Structures , etc. The authors are experts in these areas and elucidate many important facets of nuclear engineering structures, aerospace structures, turbomachinery, magnetic tape recording devices, belt and chain drives, paper and web handling machinery, bandsaws, robotics, automative and automation industry. Of special interest are two chapters devoted to study the effects of shear deformation and compressibility and to analyse the phenomenon of mode localization in repetitive structures.”
    Professor F P J Rimrott
    University of Toronto, Canada
     
    436pp    Pub. date: Apr 1999  
    ISBN:   978-981-02-2630-5
    981-02-2630-6
       US$100 / £68

     


     

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    Updated on 20 November 2009