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Possibilistic Interpretation of Mistuning in Bladed Disks by Fuzzy Algebra
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138-IMAC XXX_Possibilistic Interpretation of Mistuning in Bladed Disks by Fuzzy Algebra_2012.pdf
Date
2012-1-01
Author
Özgüven, Hasan Nevzat
Ciğeroğlu, Ender
Karataş, H. Çağlar
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Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License
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In the study of effect of mistuning on the dynamic response analysis of bladed disk systems, in literature, probabilistic methods are used. Conversely, in this paper, mistuning will be investigated by possibilistic analysis where mistuning parameters are modeled as fuzzy variables possessing possibility distributions. Fuzzy forced response characteristics of mistuned bladed disk systems are determined by mathematical basis of fuzzy sets. In order to do so, extension principle solution of fuzzy functions is used which overcomes the dependency issue problem observed on interval arithmetic solutions; hence, enhancing solution accuracy. Membership function distributions are digitized using alpha-cut methodology, slicing distributions to levels of confidence. Bounds of fuzzy variables in each and every level of confidence are determined using genetic optimization. Using this method, fuzzy forced response characteristics of a cyclically symmetric lumped parameter bladed disk model is determined. The possibilistic interpretation of mistuning is exemplified by determining the bounds of the possible maximum blade forced responses of the system for different orders of engine order excitation and by determining worst-possible case.
Subject Keywords
Mistuning
,
Possibilistic Analysis
,
Fuzzy Modeling
,
Maximum Possible Forced Response
,
Engine Order Excitation
,
Energy Localization
,
Extension Principle Solution
,
Genetic Algorithm
URI
https://hdl.handle.net/11511/105167
Conference Name
Proceedings of the SEM IMAC XXX Conference (January 30 - February 2, 2012)
Collections
Department of Mechanical Engineering, Conference / Seminar
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BibTeX
H. N. Özgüven, E. Ciğeroğlu, and H. Ç. Karataş, “Possibilistic Interpretation of Mistuning in Bladed Disks by Fuzzy Algebra,” Jacksonville, Florida, 2012, p. 117, Accessed: 00, 2023. [Online]. Available: https://hdl.handle.net/11511/105167.