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An Extension of the Classical Subset of Nominal Modes Method for the Model Order Reduction of Gyroscopic Systems

, and . Journal of Engineering for Gas Turbines and Power-Transactions of the ASME, 141 (5): 052501 (2019)
DOI: 10.1115/1.4041117

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An Extension of the Classical Subset of Nominal Modes Method for the Model Order Reduction of Gyroscopic Systems, and . ASME Turbo Expo 2018 : Turbomachinery Technical Conference And Exposition, 7C : Structures and Dynamics, New York, NY, ASME, (2018)Prediction of Aerodynamically Induced Blade Vibrations in a Radial Turbine Rotor Using the Nonlinear Harmonic Approach, , , and . Journal of Engineering for Gas Turbines and Power, 141 (2): 021007 (2019)A Comparison of Two Reduced Order Methods for Probabilistic Mistuning Investigations, and . ASME 2017 Gas Turbine India Conference, 2, New York, NY, The American Society of Mechanical Engineers, (2018)An Extension of the Classical Subset of Nominal Modes Method for the Model Order Reduction of Gyroscopic Systems, and . Journal of Engineering for Gas Turbines and Power-Transactions of the ASME, 141 (5): 052501 (2019)A New Mistuning Identification Method Based on the Subset of Nominal System Modes Method, , and . Journal of Engineering for Gas Turbines and Power, 142 (2): 021016 (2020)Prediction of Low-Engine-Order Excitation Due to a Nonsymmetrical NozzleRing in a Radial Turbine by Means of the Nonlinear Harmonic Approach, , , and . Journal of Engineering for Gas Turbines and Power, 141 (12): 121004 (2019)Prediction of Aerodynamically Induced Blade Vibrations in a Radial Turbine Rotor Using the Nonlinear Harmonic Approach, , , and . Proceedings of the ASME Turbo Expo : Turbomachinery Technical Conference and Exposition, 7C : Structures and Dynamics, page GT2018-76814, V07CT36A020. ASME, (2018)