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Transient growth mechanisms of low Reynolds number flow over a low-pressure turbine blade

Transient growth mechanisms of low Reynolds number flow over a low-pressure turbine blade
Transient growth mechanisms of low Reynolds number flow over a low-pressure turbine blade
A direct transient growth analysis for three-dimensional perturbations to flow past a periodic array of T-106/300 low-pressure turbine fan blades is presented. The methodology is based on a singular value decomposition of the flow evolution operator, linearised about a steady or periodic base flow. This analysis yields the optimal growth modes. Previous work on global mode stability analysis of this flow geometry showed the flow is asymptotically stable, indicating a non-modal explanation of transition may be more appropriate. The present work extends previous investigations into the transient growth around a steady base flow, to higher Reynolds numbers and periodic base flows. It is found that the notable transient growth of the optimal modes suggests a plausible route to transition in comparison to modal growth for this configuration. The spatial extent and localisation of the optimal modes is examined and possible physical triggering mechanisms are discussed. It is found that for longer times and longer spanwise wavelengths, a separation in the shear layer excites the wake mode. For shorter times and spanwise wavelengths, smaller growth associated with excitation of the near wake are observed.
transient growth, stability, global modes
0935-4964
19-30
Sharma, A.S.
cdd9deae-6f3a-40d9-864c-76baf85d8718
Abdessemed, N.
14053946-7083-4176-919c-d2355b53b14e
Sherwin, S.J.
09645be9-8f45-4748-9b5e-f567c1140bf3
Theofilis, V.
46c52577-b47b-4770-a2f9-7071ce1a1842
Sharma, A.S.
cdd9deae-6f3a-40d9-864c-76baf85d8718
Abdessemed, N.
14053946-7083-4176-919c-d2355b53b14e
Sherwin, S.J.
09645be9-8f45-4748-9b5e-f567c1140bf3
Theofilis, V.
46c52577-b47b-4770-a2f9-7071ce1a1842

Sharma, A.S., Abdessemed, N., Sherwin, S.J. and Theofilis, V. (2011) Transient growth mechanisms of low Reynolds number flow over a low-pressure turbine blade. Theoretical and Computational Fluid Dynamics, 25 (1-4), 19-30. (doi:10.1007/s00162-010-0183-9).

Record type: Article

Abstract

A direct transient growth analysis for three-dimensional perturbations to flow past a periodic array of T-106/300 low-pressure turbine fan blades is presented. The methodology is based on a singular value decomposition of the flow evolution operator, linearised about a steady or periodic base flow. This analysis yields the optimal growth modes. Previous work on global mode stability analysis of this flow geometry showed the flow is asymptotically stable, indicating a non-modal explanation of transition may be more appropriate. The present work extends previous investigations into the transient growth around a steady base flow, to higher Reynolds numbers and periodic base flows. It is found that the notable transient growth of the optimal modes suggests a plausible route to transition in comparison to modal growth for this configuration. The spatial extent and localisation of the optimal modes is examined and possible physical triggering mechanisms are discussed. It is found that for longer times and longer spanwise wavelengths, a separation in the shear layer excites the wake mode. For shorter times and spanwise wavelengths, smaller growth associated with excitation of the near wake are observed.

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e-pub ahead of print date: 29 January 2010
Published date: 2011
Keywords: transient growth, stability, global modes
Organisations: Aerodynamics & Flight Mechanics Group

Identifiers

Local EPrints ID: 350299
URI: http://eprints.soton.ac.uk/id/eprint/350299
ISSN: 0935-4964
PURE UUID: 18ab8b3b-6179-40a8-aef5-082f88cd3de4
ORCID for A.S. Sharma: ORCID iD orcid.org/0000-0002-7170-1627

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Date deposited: 25 Mar 2013 12:06
Last modified: 15 Mar 2024 03:46

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Contributors

Author: A.S. Sharma ORCID iD
Author: N. Abdessemed
Author: S.J. Sherwin
Author: V. Theofilis

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