Two highly efficient fully-coupled methods of predicting the resonant forced response of turbomachinery blades have been developed with the intention of increased computational efficiency over a decoupled method. The flow and structural equations are solved simultaneously, based on the frequency-domain nonlinear harmonic method and the modal reduction technique. By combining the aerodynamic forcing and damping calculations into a single analysis, the coupled solution at a single excitation frequency is approximately half that of the decoupled method. Significant flow–structure coupling effects were discovered, leading to a study into the impact of frequency shift on the fully-coupled solution. A case study on the NASA Rotor 67 transonic aer...
Mistuning, small differences among sectors of bladed disks, is unavoidable because of manufacturing ...
Mistuning, small differences among sectors of bladed disks, is unavoidable because of manufacturing ...
Accurate prediction of aerodynamic damping is essential for flutter and forced response analysis of ...
Forced response is the main reason for high cycle fatigue in turbomachinery. Not all resonance point...
Forced response is the main reason for high cycle fatigue in turbomachinery. Not all resonance point...
The forced response of turbomachinery blades is a primary source of high cycle fatigue (HCF) failure...
An introduction is given to the research activity that is underway to enable the prediction of turbo...
An integrated experimental-numerical study of forced response for a mistuned bladed disk has been pe...
<p>This research investigates the forced response of mistuned rotor blades that can lead to excessiv...
<p>One of the grand challenges faced by industry is the accurate prediction of unsteady aerodynamics...
An integrated experimental-numerical study of forced response for a mistuned bladed disc has been pe...
A new effective method for comprehensive modeling of gas flow effects on vibration of nonlinear vibr...
Current trends in turbomachinery design significantly reduce the mass ratio of structure to air, mak...
Severe resonant vibration is one of the main roots of turbomachinery blades failure. Forced response...
Severe resonant vibration is one of the main roots of turbomachinery blades failure. Forced response...
Mistuning, small differences among sectors of bladed disks, is unavoidable because of manufacturing ...
Mistuning, small differences among sectors of bladed disks, is unavoidable because of manufacturing ...
Accurate prediction of aerodynamic damping is essential for flutter and forced response analysis of ...
Forced response is the main reason for high cycle fatigue in turbomachinery. Not all resonance point...
Forced response is the main reason for high cycle fatigue in turbomachinery. Not all resonance point...
The forced response of turbomachinery blades is a primary source of high cycle fatigue (HCF) failure...
An introduction is given to the research activity that is underway to enable the prediction of turbo...
An integrated experimental-numerical study of forced response for a mistuned bladed disk has been pe...
<p>This research investigates the forced response of mistuned rotor blades that can lead to excessiv...
<p>One of the grand challenges faced by industry is the accurate prediction of unsteady aerodynamics...
An integrated experimental-numerical study of forced response for a mistuned bladed disc has been pe...
A new effective method for comprehensive modeling of gas flow effects on vibration of nonlinear vibr...
Current trends in turbomachinery design significantly reduce the mass ratio of structure to air, mak...
Severe resonant vibration is one of the main roots of turbomachinery blades failure. Forced response...
Severe resonant vibration is one of the main roots of turbomachinery blades failure. Forced response...
Mistuning, small differences among sectors of bladed disks, is unavoidable because of manufacturing ...
Mistuning, small differences among sectors of bladed disks, is unavoidable because of manufacturing ...
Accurate prediction of aerodynamic damping is essential for flutter and forced response analysis of ...