In this paper a stability analysis of a two dimensional laminar airfoil with two degrees-of-freedom is presented and compared to turbulent flow conditions. The process for the flutter calculations is introduced, containing a description of the structural parameters, the aerodynamic derivatives due to a pitch motion, which are identified experimentally and two DLM correction methods to determine the aerodynamic derivatives due to a heave motion. For the local pressure distributions the corrections include nonlinearities due to transonic flow as well as transitional effects. The resulting aerodynamic derivatives reflect the differences between laminar and turbulent flow as measured in the experiment. An influence of the mean angle-of-attack o...
Transonic aeroelastic analysis at the design level relies on linear panel methods, such as the Doubl...
Today a lot of attention is paid to the development of environmental friendly technologies. In the a...
This dissertation deals with the instability, known as flutter, of the lifting and control surfaces ...
In this paper a stability analysis of a laminar airfoil is presented and compared to turbulent flow ...
A laminar wing test case for the flutter behavior in transonic flow with free boundary layer transit...
Nowadays drag reductions are important also in aircraft design. Natural laminar flow on aircraft win...
First results of a flutter experiment in transonic flow are presented. A wind tunnel model with the ...
This paper derives linear 2nd order ordinary differential equations describ-ing the motion of a 2 di...
A Navier-Stokes Computational Fluid Dynamics (CFD) code is coupled with a Computa-tional Structural ...
Angle of attack has impact on transonic flow filed and aerodynamic force, but most of current resear...
A laminar wing has a high potential in terms of fuel savings. It should however not lead to a reduct...
This paper presents a utter analysis for the supercritical CAST 10-2 airfoil and the laminar NACA 64...
The problem of flutter is first introduced. The equations of motion of an airfoil with two degrees o...
For assessment of the applicability of the Transonic Doublet Lattice Method (TDLM) to transonic flut...
This work presents the robust stability analysis of 2DoF airfoil by including various uncertainties....
Transonic aeroelastic analysis at the design level relies on linear panel methods, such as the Doubl...
Today a lot of attention is paid to the development of environmental friendly technologies. In the a...
This dissertation deals with the instability, known as flutter, of the lifting and control surfaces ...
In this paper a stability analysis of a laminar airfoil is presented and compared to turbulent flow ...
A laminar wing test case for the flutter behavior in transonic flow with free boundary layer transit...
Nowadays drag reductions are important also in aircraft design. Natural laminar flow on aircraft win...
First results of a flutter experiment in transonic flow are presented. A wind tunnel model with the ...
This paper derives linear 2nd order ordinary differential equations describ-ing the motion of a 2 di...
A Navier-Stokes Computational Fluid Dynamics (CFD) code is coupled with a Computa-tional Structural ...
Angle of attack has impact on transonic flow filed and aerodynamic force, but most of current resear...
A laminar wing has a high potential in terms of fuel savings. It should however not lead to a reduct...
This paper presents a utter analysis for the supercritical CAST 10-2 airfoil and the laminar NACA 64...
The problem of flutter is first introduced. The equations of motion of an airfoil with two degrees o...
For assessment of the applicability of the Transonic Doublet Lattice Method (TDLM) to transonic flut...
This work presents the robust stability analysis of 2DoF airfoil by including various uncertainties....
Transonic aeroelastic analysis at the design level relies on linear panel methods, such as the Doubl...
Today a lot of attention is paid to the development of environmental friendly technologies. In the a...
This dissertation deals with the instability, known as flutter, of the lifting and control surfaces ...