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Vibrations of Rotating Machinery = V...
~
Keogh, Patrick.
Vibrations of Rotating Machinery = Volume 2. Advanced Rotordynamics: Applications of Analysis, Troubleshooting and Diagnosis /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Vibrations of Rotating Machinery/ by Osami Matsushita, Masato Tanaka, Masao Kobayashi, Patrick Keogh, Hiroshi Kanki.
Reminder of title:
Volume 2. Advanced Rotordynamics: Applications of Analysis, Troubleshooting and Diagnosis /
Author:
Matsushita, Osami.
other author:
Tanaka, Masato.
Description:
XIV, 577 p. 950 illus., 820 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Vibration. -
Online resource:
https://doi.org/10.1007/978-4-431-55453-0
ISBN:
9784431554530
Vibrations of Rotating Machinery = Volume 2. Advanced Rotordynamics: Applications of Analysis, Troubleshooting and Diagnosis /
Matsushita, Osami.
Vibrations of Rotating Machinery
Volume 2. Advanced Rotordynamics: Applications of Analysis, Troubleshooting and Diagnosis /[electronic resource] :by Osami Matsushita, Masato Tanaka, Masao Kobayashi, Patrick Keogh, Hiroshi Kanki. - 1st ed. 2019. - XIV, 577 p. 950 illus., 820 illus. in color.online resource. - Mathematics for Industry,2198-350X. - Mathematics for Industry,18.
Basics of plain bearings -- Unbalance vibration of a rotor in plain bearings -- Stability of a rotor in plain bearings -- Vibration due to rolling bearings -- Vibration in active magnetic bearing rotor systems -- Case studies of forced vibration problems -- Case studies of self-excited vibration problems -- Torsional vibration and related coupled vibration -- Signal processing for rotor vibration diagnosis -- Trial examination for vibration expert certification -- Rotor vibration analysis program: MyROT.
Building on the previous volume “Vibrations of Rotating Machinery - Volume 1. Basic Rotordynamics: Introduction to Practical Vibration Analysis,” this book is intended for all practical designers and maintenance experts who are responsible for the reliable manufacturing and operation of rotating machinery. It opens with the dynamics of oil film bearings and their influences on unbalance, vibration resonance and the stability of rotor whirl motion. Subsequently, the book introduces readers to vibration diagnosis techniques for traditional ball bearings and active vibration control from magnetic bearings. Case studies on vibration problems and troubleshooting in industrial turbo machines are then presented and explained, showing rotor designers how to eliminate instability and modify resonance characteristics. Torsional vibration and other coupled vibration phenomena are discussed, and vibration measurement techniques and related signal processing procedures for vibration diagnosis are provided. Our latest three topics are included, covering: (a) the importance of the modeling order reduction (MOR) technique; (b) the approximate evaluation for oil-wheel/whip instability; and (c) a systematic method for shafting-blading coupled vibration analyses. In closing, a 100-question trial test is supplied as an example of the certification of vibration experts based on the ISO standard.
ISBN: 9784431554530
Standard No.: 10.1007/978-4-431-55453-0doiSubjects--Topical Terms:
595749
Vibration.
LC Class. No.: TA355
Dewey Class. No.: 620
Vibrations of Rotating Machinery = Volume 2. Advanced Rotordynamics: Applications of Analysis, Troubleshooting and Diagnosis /
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Building on the previous volume “Vibrations of Rotating Machinery - Volume 1. Basic Rotordynamics: Introduction to Practical Vibration Analysis,” this book is intended for all practical designers and maintenance experts who are responsible for the reliable manufacturing and operation of rotating machinery. It opens with the dynamics of oil film bearings and their influences on unbalance, vibration resonance and the stability of rotor whirl motion. Subsequently, the book introduces readers to vibration diagnosis techniques for traditional ball bearings and active vibration control from magnetic bearings. Case studies on vibration problems and troubleshooting in industrial turbo machines are then presented and explained, showing rotor designers how to eliminate instability and modify resonance characteristics. Torsional vibration and other coupled vibration phenomena are discussed, and vibration measurement techniques and related signal processing procedures for vibration diagnosis are provided. Our latest three topics are included, covering: (a) the importance of the modeling order reduction (MOR) technique; (b) the approximate evaluation for oil-wheel/whip instability; and (c) a systematic method for shafting-blading coupled vibration analyses. In closing, a 100-question trial test is supplied as an example of the certification of vibration experts based on the ISO standard.
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