A New Reduced Order Modeling for Stability and Forced Response Analysis of Aero-Coupled Blades Considering Various Mode Families
Author:
Affiliation:
1. Royal Institute of Technology, Heat and Power Technology, S-100 44 Stockholm, Sweden
2. VOLVO Aero Corporation, S-461 81 Trollhättan, Sweden
Abstract
Publisher
ASME International
Subject
Mechanical Engineering
Link
http://asmedigitalcollection.asme.org/turbomachinery/article-pdf/doi/10.1115/1.4003830/5853349/051008_1.pdf
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4. Laumert, B., Mårtensson, H., and Fransson, T. H., 2002, “Simulation of Rotor/Stator Interaction with a 4D Finite Volume Method,” ASME Paper No. GT-2002–30601.
5. Mayorca, M., De Andrade, J., Vogt, D., Mårtensson, H., and FranssonT. 2009, “Effect of Scaling of Blade Row Sectors on the Prediction of Aerodynamic Forcing in a Highly-Loaded Transonic Compressor Stage,” Report No. GT2008–50306.
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1. Design of mistuning patterns to control the vibration amplitude of unstable rotor blades;Aerospace Science and Technology;2018-09
2. Aerodynamic Influence of Oscillating Adjacent Airfoils in a Linear Compressor Cascade;AIAA Journal;2017-12
3. Vibration Characteristics and Damping Analysis of the Blisk-Deposited Hard Coating Using the Rayleigh-Ritz Method;Coatings;2017-07-25
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