AbstractThe paper addresses the integration of blade dynamics, aerodynamics, structures and aeroelasticity in the design of helicopter rotors using a formal optimization technique. The interaction of the disciplines is studied inside a closed-loop optimization process. The goal is to reduce vibratory shear forces at the blade root with constraints imposed on dynamic, structural and aeroelastic design requirements. Both structural and aerodynamic design variables are used. Multiobjective formulation. procedures are needed since more than one design objective is used. A nonlinear programming technique and an approximate analysis procedure are used for optimization. Substantial reductions are obtained in the vibratory root forces and moments w...
Aeroelastic optimization of a four-bladed, soft-inplane hingeless rotor is performed to reduce hub l...
An optimization procedure to 1) reduce the 4/revolution oscillatory hub loads and 2) increase the la...
Within the DLR project VicToria an aerodynamic and aero-acoustic optimization of helicopter rotor bl...
AbstractThe paper addresses the integration of blade dynamics, aerodynamics, structures and aeroelas...
AbstractThe paper presents an analytical study of the helicopter rotor vibratory load reduction desi...
In this thesis analysis and design of helicopter rotor blades were discussed for reduced vibrational...
An aeroelastic analysis based on finite elements in space and time is used to model the helicopter r...
An aeroelastic analysis based on finite elements in space and time is used to model the helicopter r...
Active/passive optimization of helicopter rotor blades for vibration reduction and per-formance enha...
Summarized here is the first six years of research into the integration of structural, dynamic, and ...
The problem of structural optimization of helicopter rotor blades with integrated dynamic and aerody...
This paper describes an integrated aerodynamic /dynamic/structural (IADS) optimization procedure for...
The use of multiple active trailing edge flaps for vibration reduction in a helicopter rotor is inve...
The use of multiple active trailing edge flaps for vibration reduction in a helicopter rotor is inve...
An integrated aerodynamic/dynamic optimization procedure is used to minimize blade weight and 4 per ...
Aeroelastic optimization of a four-bladed, soft-inplane hingeless rotor is performed to reduce hub l...
An optimization procedure to 1) reduce the 4/revolution oscillatory hub loads and 2) increase the la...
Within the DLR project VicToria an aerodynamic and aero-acoustic optimization of helicopter rotor bl...
AbstractThe paper addresses the integration of blade dynamics, aerodynamics, structures and aeroelas...
AbstractThe paper presents an analytical study of the helicopter rotor vibratory load reduction desi...
In this thesis analysis and design of helicopter rotor blades were discussed for reduced vibrational...
An aeroelastic analysis based on finite elements in space and time is used to model the helicopter r...
An aeroelastic analysis based on finite elements in space and time is used to model the helicopter r...
Active/passive optimization of helicopter rotor blades for vibration reduction and per-formance enha...
Summarized here is the first six years of research into the integration of structural, dynamic, and ...
The problem of structural optimization of helicopter rotor blades with integrated dynamic and aerody...
This paper describes an integrated aerodynamic /dynamic/structural (IADS) optimization procedure for...
The use of multiple active trailing edge flaps for vibration reduction in a helicopter rotor is inve...
The use of multiple active trailing edge flaps for vibration reduction in a helicopter rotor is inve...
An integrated aerodynamic/dynamic optimization procedure is used to minimize blade weight and 4 per ...
Aeroelastic optimization of a four-bladed, soft-inplane hingeless rotor is performed to reduce hub l...
An optimization procedure to 1) reduce the 4/revolution oscillatory hub loads and 2) increase the la...
Within the DLR project VicToria an aerodynamic and aero-acoustic optimization of helicopter rotor bl...