A time-marching aeroelastic method developed for the study of propeller flutter is presented and validated. Propeller flutter can take many forms, with stall, whirl, and classical flutter being the primary responses. These types of flutter require accurate capture of the nonlinear aerodynamics associated with propeller blades. Stall flutter in particular needs detailed unsteady flow modeling. With the development of modern propeller designs potentially adjusting the flutter boundary and the development of faster computing power, computational fluid dynamics is required to ensure accurate capture of aerodynamics. Given the lack of reliable experimental stall flutter data for propellers, the method was focused on observing the correct qualita...
A solution procedure was developed to investigate the two-dimensional, one- or two-dimensional flutt...
A new time-domain approach for computing flutter speed is presented. Based on the time-history resul...
Numerical stall flutter prediction methods are much needed, as modern jet engines require blade desi...
A time-marching aeroelastic method developed for the study of propeller flutter is presented and val...
A time-marching aeroelastic method developed for the study of propeller flutter is presented and va...
Propeller flutter can manifest in a variety of ways. This includes classical bending-torsion flutter...
This paper presents recent research on numerical methods for whirl and stall flutter using computati...
With the development of modern propellers for low acoustic emissions and high performance, the infl...
An experimental setup has been designed to examine rotor blade stall flutter. The blade had to be de...
Three semi-empirical aerodynamic stall models are compared with respect to their lift and moment hys...
This paper demonstrates the importance of assessing the whirl flutter stability of propeller configu...
During the past decade, aircraft engine manufacturers and scientists at NASA have worked on extendin...
A procedure to compute flutter boundaries of rotating blades is presented; a) Navier-Stokes equation...
The maturity of simulation codes for aerodynamics (CFD) and structures (CSD) now leads to high fidel...
ABSTRACT A computational method for accurately and efficiently predicting unsteady viscous flow thro...
A solution procedure was developed to investigate the two-dimensional, one- or two-dimensional flutt...
A new time-domain approach for computing flutter speed is presented. Based on the time-history resul...
Numerical stall flutter prediction methods are much needed, as modern jet engines require blade desi...
A time-marching aeroelastic method developed for the study of propeller flutter is presented and val...
A time-marching aeroelastic method developed for the study of propeller flutter is presented and va...
Propeller flutter can manifest in a variety of ways. This includes classical bending-torsion flutter...
This paper presents recent research on numerical methods for whirl and stall flutter using computati...
With the development of modern propellers for low acoustic emissions and high performance, the infl...
An experimental setup has been designed to examine rotor blade stall flutter. The blade had to be de...
Three semi-empirical aerodynamic stall models are compared with respect to their lift and moment hys...
This paper demonstrates the importance of assessing the whirl flutter stability of propeller configu...
During the past decade, aircraft engine manufacturers and scientists at NASA have worked on extendin...
A procedure to compute flutter boundaries of rotating blades is presented; a) Navier-Stokes equation...
The maturity of simulation codes for aerodynamics (CFD) and structures (CSD) now leads to high fidel...
ABSTRACT A computational method for accurately and efficiently predicting unsteady viscous flow thro...
A solution procedure was developed to investigate the two-dimensional, one- or two-dimensional flutt...
A new time-domain approach for computing flutter speed is presented. Based on the time-history resul...
Numerical stall flutter prediction methods are much needed, as modern jet engines require blade desi...