1996JSME International Journal Series BOpen access

Torsional Flutter of Stalled and Unstalled Mistuned Cascades. (Effect of Natural Frequency and Blade Arrangement on Mistuning Flutter).

Hiroshi Nagai, Ichiro Fujimoto, Hideo Tanaka, Susumu ISHII

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Abstract

A comparison of mistuning effects on the torsional flutter suppression between fully stalled and unstalled cascades is made focusing on variation of the natural frequency and blade arrangement. Numerical results are obtained for fundamental characteristics of flutter suppression effects. In both stalled and unstalled cascades, the larger the variation of natural frequency the more stable the cascades. Furthermore, the difference in flutter modes caused by mistuning between both cascades is clarified.

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A comparison of mistuning effects on the torsional flutter suppression between fully stalled and unstalled cascades is made focusing on variation of the natural frequency and blade arrangement. Numerical results are obtained for fundamental characteristics of flutter suppression effects. In both stalled and unstalled cascades, the larger the variation of natural frequency the more stable the cascades. Furthermore, the difference in flutter modes caused by mistuning between both cascades is clarified.

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Available abstract

A comparison of mistuning effects on the torsional flutter suppression between fully stalled and unstalled cascades is made focusing on variation of the natural frequency and blade arrangement. Numerical results are obtained for fundamental characteristics of flutter suppression effects. In both stalled and unstalled cascades, the larger the variation of natural frequency the more stable the cascades. Furthermore, the difference in flutter modes caused by mistuning between both cascades is clarified.

Key concepts: Mistuning, Flutter, Natural frequency, Aeroelasticity, Physics, Structural engineering, Control theory (sociology), Acoustics

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Torsional Flutter of Stalled and Unstalled Mistuned Cascades. (Effect of Natural Frequency and Blade Arrangement on Mistuning Flutter). — Research Paper | ScholarLens