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EFFECTS OF STRUCTURAL COUPLING ON MISTUNED CASCADE FLUTTER AND RESPONSE.

Publication ,  Journal Article
Kielb, RE; Kaza, KRV
Published in: NASA Technical Memorandum
January 1, 1983

The effects of structural coupling on mistuned cascade flutter and response are analytically investigated using an extended typical section model. Previous work using two degree of freedom per blade typical section models has included only aerodynamic coupling. The present work extends this model to include both structural and aerodynamic coupling between the blades. The model assumes that the structurally coupled system natural modes have been determined and can be represented in the form of N bending and N torsional uncoupled modes for each blade, where N is the number of blades and, hence, is only valid for blade dominated motion. The aerodynamic loads are calculated by using two-dimensional unsteady cascade theories in the subsonic and supersonic flow regimes. The results show that the addition of structural coupling can affect both the aeroelastic stability and frequency. The stability is significantly affected only when the system is mistuned.

Duke Scholars

Published In

NASA Technical Memorandum

ISSN

0499-9320

Publication Date

January 1, 1983
 

Citation

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Kielb, R. E., & Kaza, K. R. V. (1983). EFFECTS OF STRUCTURAL COUPLING ON MISTUNED CASCADE FLUTTER AND RESPONSE. NASA Technical Memorandum.
Kielb, R. E., and K. R. V. Kaza. “EFFECTS OF STRUCTURAL COUPLING ON MISTUNED CASCADE FLUTTER AND RESPONSE.NASA Technical Memorandum, January 1, 1983.
Kielb RE, Kaza KRV. EFFECTS OF STRUCTURAL COUPLING ON MISTUNED CASCADE FLUTTER AND RESPONSE. NASA Technical Memorandum. 1983 Jan 1;
Kielb, R. E., and K. R. V. Kaza. “EFFECTS OF STRUCTURAL COUPLING ON MISTUNED CASCADE FLUTTER AND RESPONSE.NASA Technical Memorandum, Jan. 1983.
Kielb RE, Kaza KRV. EFFECTS OF STRUCTURAL COUPLING ON MISTUNED CASCADE FLUTTER AND RESPONSE. NASA Technical Memorandum. 1983 Jan 1;

Published In

NASA Technical Memorandum

ISSN

0499-9320

Publication Date

January 1, 1983