Extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformation

To effectively select random variable in nonlinear dynamic reliability analysis, the extremum selection method (ESM) is proposed. Firstly, the basic idea was introduced and the mathematical model was established for the ESM. The nonlinear dynamic reliability analysis of turbine blade radial deformat...

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Main Authors: Chengwei Fei, Guangchen Bai
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2012-12-01
Series:Propulsion and Power Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2212540X12000119
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author Chengwei Fei
Guangchen Bai
author_facet Chengwei Fei
Guangchen Bai
author_sort Chengwei Fei
collection DOAJ
description To effectively select random variable in nonlinear dynamic reliability analysis, the extremum selection method (ESM) is proposed. Firstly, the basic idea was introduced and the mathematical model was established for the ESM. The nonlinear dynamic reliability analysis of turbine blade radial deformation was taken as an example to verify the ESM. The results show that the analysis precision of the ESM is 99.972%, which is almost kept consistent with that of the Monte Carlo method; moreover, the computing time of the ESM is shorter than that of the traditional method. Hence, it is demonstrated that the ESM is able to save calculation time and improve the computational efficiency while keeping the calculation precision for nonlinear dynamic reliability analysis. The present study provides a method to enhance the nonlinear dynamic reliability analysis in selecting the random variables and offers a way to design structure and machine in future work.
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spelling doaj.art-ac2042f2f37e427fbb0b736e4328f6922023-09-02T20:52:01ZengKeAi Communications Co., Ltd.Propulsion and Power Research2212-540X2012-12-0111586310.1016/j.jppr.2012.10.010Extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformationChengwei FeiGuangchen BaiTo effectively select random variable in nonlinear dynamic reliability analysis, the extremum selection method (ESM) is proposed. Firstly, the basic idea was introduced and the mathematical model was established for the ESM. The nonlinear dynamic reliability analysis of turbine blade radial deformation was taken as an example to verify the ESM. The results show that the analysis precision of the ESM is 99.972%, which is almost kept consistent with that of the Monte Carlo method; moreover, the computing time of the ESM is shorter than that of the traditional method. Hence, it is demonstrated that the ESM is able to save calculation time and improve the computational efficiency while keeping the calculation precision for nonlinear dynamic reliability analysis. The present study provides a method to enhance the nonlinear dynamic reliability analysis in selecting the random variables and offers a way to design structure and machine in future work.http://www.sciencedirect.com/science/article/pii/S2212540X12000119Extremum selection method (ESM)Turbine bladeRadial deformationReliability analysisRandom variableNonlinearDynamic
spellingShingle Chengwei Fei
Guangchen Bai
Extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformation
Propulsion and Power Research
Extremum selection method (ESM)
Turbine blade
Radial deformation
Reliability analysis
Random variable
Nonlinear
Dynamic
title Extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformation
title_full Extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformation
title_fullStr Extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformation
title_full_unstemmed Extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformation
title_short Extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformation
title_sort extremum selection method of random variable for nonlinear dynamic reliability analysis of turbine blade deformation
topic Extremum selection method (ESM)
Turbine blade
Radial deformation
Reliability analysis
Random variable
Nonlinear
Dynamic
url http://www.sciencedirect.com/science/article/pii/S2212540X12000119
work_keys_str_mv AT chengweifei extremumselectionmethodofrandomvariablefornonlineardynamicreliabilityanalysisofturbinebladedeformation
AT guangchenbai extremumselectionmethodofrandomvariablefornonlineardynamicreliabilityanalysisofturbinebladedeformation