Download Citation on ResearchGate | Linear and Nonlinear Rotordynamics: A Modern Treatment with Applications, Second Edition | This second edition with. Linear and Nonlinear Rotordynamics is a professional engineer’s complete Linear and Nonlinear Rotordynamics: A Modern Treatment with Applications. Linear and Nonlinear Rotordynamics: A Modern Treatment with Applications Closure to “Discussion of ‘A Review of the Rotordynamic Thermally Induced.
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Broad coverage of rotordynamics with an emphasis on understanding and solving vibration problems Rotating parts are among the most common elements in modern mechanical systems and often become the main source of problematic vibrations in machinery. Authors Yamamoto and Ishida provide classification of rotating shaft systems and general coverage of key ideas common to all branches of rotordynamics, such as critical speed, gyroscopic movement, whirling motion, and frequency diagrams.
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Let’s connect Contact Details Facebook Twitter. For assistance or to subscribe, please contact us: Nonlinezr A wide-ranging treatment of fundamental rotordynamics in order to serve engineers with the necessary knowledge to eliminate various vibration problems. You are currently using the site but have requested a page in the site.
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Linear and Nonlinear Rotordynamics: A Modern Treatment with Applications, 2nd Edition
You must be logged in as an individual user to share content. Nonlinear resonances are discussed in detail, as well as methods for shaft stability and various theoretical derivations and computational methods for analyzing rotors to determine and correct vibrations.
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Account Options Sign in. A Modern Treatment with Applications. Jan Awrejcewicz Limited preview – Related Content Customize your page view by dragging and repositioning the boxes below. They also provide state-of-the art analysis of dynamical problems not treated in most other books on the subject, such as nonlinear rotordynamics, self-excited vibration, nonstationary vibration, and flow-induced oscillations.
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Applicatins volume offers wide-ranging aplications of fundamental rotordynamics in order to provide engineers with the necessary knowledge to eliminate various vibration problems. Nonlinear resonances are discussed in detail, as well as methods for shaft stability and various theoretical derivations and computational methods for analyzing rotors to determine and correct vibrations.