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Bearing Dynamic Coefficients in Rotordynamics delivers an authoritative guide to the fundamentals of bearing and bearing dynamic coefficients containing various computation methods. Three of the most popular and state-of-the-art methods of determining coefficients are discussed in detail. The computation methods covered include an experimental linear method created by the author, and numerical linear and nonlinear methods using the finite element method. The author—a renowned expert on the topic—presents the results and discusses the limitations of the various methods. Accessibly written, the book provides a clear analysis of the fundamental phenomena in rotor dynamics and includes many illustrations from numerical analysis and the results of the experimental research. Filled with practical examples, the book also includes a companion website hosting code used to calculate the dynamic coefficients of journal bearings. Written for researchers and practitioners working in rotordynamics, Bearing Dynamic Coefficients in Rotordynamics will also earn a place in the libraries of graduate students in mechanical and aerospace engineering who seek a comprehensive treatment of the foundations of this subject.
Introduction
Practical Applications of Bearing Dynamic Coefficients
Characteristics of the Research Subject
Research Tools
Algorithms for the Experimental Determination of Dynamic Coefficients of Bearings
Inclusion of the Impact of an Unbalanced Rotor
Sensitivity Analysis of the Experimental Method of Determining Dynamic Coefficients of Bearings
Experimental Studies
Numerical Calculations of Bearing Dynamic Coefficients
Comparison of Bearing Dynamic Coefficients Calculated with Different Methods
Summary and Conclusions