The unsteady loads experienced by a helicopter are known to be strongly influenced by aerodynamic interactions between the rotor and fuselage; these unsteady loads can lead to deficiencies in handling qualities and unacceptable vibratory characteristics of the rotorcraft. This work uses a vorticity-based computational model to study the governing processes that underpin this aerodynamic interaction and aims to provide greater understanding of the wake dynamics in the presence of a fuselage, as well as an appreciation of how the geometry of the wake affects the loading on the fuselage. The well-known experiments using NASA's ROBIN fuselage are used to assess the accuracy of the computations. Comparisons of calculations against results from s...
Unsteady rotor wake interactions with the empennage, tail boom, and other aerodynamic surfaces of a ...
The rotor hub is one of the most important features of all helicopters, as it provides the pilot a m...
Under transient conditions, a helicopter rotor generates a complex, time-dependent pattern of shed a...
The unsteady loads experienced by a helicopter are known to be strongly influenced by aerodynamic in...
The prediction capabilities of unstructured primitive-variable and vorticity-transport-based Navier-...
The problem of rotor-fuselage aerodynamic interaction has to be considered in industry applications ...
A computational method was developed to treat unsteady aerodynamic interactions between a helicopter...
Interactions between the blades and vortical structures within the wake of a helicopter rotor are a ...
Interactions between the blades and vortical structures within the wake of a helicopter rotor are a ...
Aerodynamic interactions between the main rotor, fuselage, and tail rotor must be considered during ...
Unsteady rotor wake interactions with the empennage, tail boom, and other aerodynamic surfaces have ...
Brown's Vorticity Transport Model has been used to predict the wake structure and resultant blade lo...
Interactions between the blades and vortical structures within the wake of a helicopter rotor are a ...
A method was developed which allows the fully coupled calculation of fuselage and rotor airloads for...
The nature of the aerodynamic environment surrounding a helicopter causes a significant amount of vi...
Unsteady rotor wake interactions with the empennage, tail boom, and other aerodynamic surfaces of a ...
The rotor hub is one of the most important features of all helicopters, as it provides the pilot a m...
Under transient conditions, a helicopter rotor generates a complex, time-dependent pattern of shed a...
The unsteady loads experienced by a helicopter are known to be strongly influenced by aerodynamic in...
The prediction capabilities of unstructured primitive-variable and vorticity-transport-based Navier-...
The problem of rotor-fuselage aerodynamic interaction has to be considered in industry applications ...
A computational method was developed to treat unsteady aerodynamic interactions between a helicopter...
Interactions between the blades and vortical structures within the wake of a helicopter rotor are a ...
Interactions between the blades and vortical structures within the wake of a helicopter rotor are a ...
Aerodynamic interactions between the main rotor, fuselage, and tail rotor must be considered during ...
Unsteady rotor wake interactions with the empennage, tail boom, and other aerodynamic surfaces have ...
Brown's Vorticity Transport Model has been used to predict the wake structure and resultant blade lo...
Interactions between the blades and vortical structures within the wake of a helicopter rotor are a ...
A method was developed which allows the fully coupled calculation of fuselage and rotor airloads for...
The nature of the aerodynamic environment surrounding a helicopter causes a significant amount of vi...
Unsteady rotor wake interactions with the empennage, tail boom, and other aerodynamic surfaces of a ...
The rotor hub is one of the most important features of all helicopters, as it provides the pilot a m...
Under transient conditions, a helicopter rotor generates a complex, time-dependent pattern of shed a...