Volume 1011 2011

IUTAM Symposium on Emerging Trends in Rotor Dynamics

Proceedings of the IUTAM Symposium on Emerging Trends in Rotor Dynamics, held in New Delhi, India, March 23 - March 26, 2009

Editors:

ISBN: 978-94-007-0019-2 (Print) 978-94-007-0020-8 (Online)

Table of contents (45 chapters)

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  1. Front Matter

    Pages i-xxvii

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    Book Chapter

    Pages 1-11

    Rotordynamics Research: Current Interests and Future Directions

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    Pages 13-26

    Optimized Life Using Frequency and Time Domain Approaches

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    Pages 27-38

    Dynamic Modeling of Rotors: A Modal Approach

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    Pages 39-50

    Evolution of Frequency-Speed Diagram in Rotating Machinery

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    Pages 51-62

    Developments in Rotor Dynamical Modeling of Hydropower Units

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    Pages 63-75

    Control-Oriented Approach to the Rotor Dynamics

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    Pages 77-87

    New Approach to the Analysis of the Dynamics Behavior of a Fluid Structure Interaction

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    Pages 89-101

    On the Analysis of Rotor-Bearing-Foundation Systems

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    Pages 103-112

    A Multiple Whirls Phenomenon and Heuristic Problems in Rotor-Bearing Systems

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    Pages 113-123

    Experimental Decomposition of Vibration, Whirl and Waves in Rotating and Non-rotating Parts

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    Pages 125-134

    Rotating Internal Damping in the Case of Composite Shafts

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    Pages 135-142

    Unbalance Response Analysis of a Spinning Rotor Mounted on a Precessing Platform

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    Pages 143-151

    A Simple Viscoelastic Model of Rotor-Shaft Systems

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    Pages 153-162

    Rotor Dynamic Analysis Using ANSYS

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    Pages 163-175

    Vibration of Rotating Bladed Discs: Mistuning, Coriolis, and Robust Design

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    Pages 177-184

    Modeling Geometric Mistuning of a Bladed Rotor: Modified Modal Domain Analysis

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    Pages 185-199

    Trends in Controllable Oil Film Bearings

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    Pages 201-215

    Developments in Fluid Film Bearing Technology

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    Pages 217-227

    Numerical Model of the High Speed Rotors Supported on Variable Geometry Bearings

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    Book Chapter

    Pages 229-239

    Effect of Unbalance on the Dynamic Response of a Flexible Rotor Supported on Porous Oil Journal Bearings

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