Blade thickness effects on viscous flutter in a radial turbocharger turbine

Journal article


Sajedin, A., Alport, J., Amoozgar, M. and Farhangiyan Marandi, O. 2022. Blade thickness effects on viscous flutter in a radial turbocharger turbine. Engineering Failure Analysis. 136 (106139). https://doi.org/10.1016/j.engfailanal.2022.106139
AuthorsSajedin, A., Alport, J., Amoozgar, M. and Farhangiyan Marandi, O.
Abstract

Transient blade loading limits the lifetime of turbocharger turbine blades. This study investigates the flutter instability of a radial turbocharger turbine blade under pulsating inlet conditions. The viscous Navier-Stokes equations with the SST-kω turbulence model and curvature correction were solved. A time-marching 3D finite volume method was used in the CFX17 CFD solver to model the vibrating blade in a traveling wave mode applying Fourier Transformation. For flutter calculations, moving boundaries with specified modal displacements were used. An area of instability was recognized on the suction-side of the rotor blade. FSI steady-state analysis was then performed to assess the effects of shock position and blade profile on the blade stability in the recognized vulnerable region. The results show that a higher trailing edge radius increases the stability and leads to a significant reduction of flutter risk whereas the maximum thickness and leading-edge radius do not notably affect the flutter occurrences.

KeywordsTransient blade loading; flutter instability; radial turbocharger turbine blade
Year2022
JournalEngineering Failure Analysis
Journal citation136 (106139)
PublisherElsevier Ltd.
ISSN1350-6307
Digital Object Identifier (DOI)https://doi.org/10.1016/j.engfailanal.2022.106139
Web address (URL)https://www.sciencedirect.com/science/article/pii/S1350630722001133#:~:text=The%20results%20show%20that%20a,notably%20affect%20the%20flutter%20occurrences.
Publisher's version
License
File Access Level
Open
Output statusPublished
Publication dates
Online09 Feb 2022
Publication process dates
Accepted07 Feb 2022
Deposited13 May 2022
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https://repository.derby.ac.uk/item/96136/blade-thickness-effects-on-viscous-flutter-in-a-radial-turbocharger-turbine

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License: CC BY 4.0
File access level: Open

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