This article presents a design optimization method for maximizing lift without increasing the drag of multielement airfoils at takeoff and landing configurations. It uses an incompressible Navier-Stokes flow solver (INS2D), a chimera overlaid grid system (PEGSUS), and a constrained numerical optimizer (DOT). Aerodynamic sensitivity derivatives are obtained using finite differencing. The method is first validated with single-element airfoil designs and then applied to three-element airfoil designs. Reliable design results are obtained at reasonable costs. Results demonstrate that numerical optimization can be an attractive design tool for the development of multielement high-lift systems
, which allows one to control the abruptness of stall. Some examples of using the developed techniq...
The development and application of a rapid methodology for the optimization of HighLift configuratio...
The development and application of a rapid methodology for the optimization of HighLift configuratio...
The objective of the presented work is to demonstrate the benefits of using numerical optimization o...
The objective of the presented work is to demonstrate the benefits of using numerical optimization o...
method Abstract. This paper presents an aerodynamic optimization chain whose purpose is to find the ...
This work deals with the application of numerical optimisation to the aerodynamic design of high-lif...
This lecture deals with the application of numerical optimization for aerodynamic design of high-lif...
The presentation will show the successful application of numerical optimization for 3D high-lift des...
This paper presents an aerodynamic optimization chain whose purpose is to find the optimal High Lift...
A two-dimensional aircraft high-lift system design and optimization method, which can be easily exte...
A multi-objective and multipoint optimization problem is presented dealing with a multi-element airf...
Aiming at the synthetical optimization of the aerodynamic performance between the low-speed conditio...
, which allows one to control the abruptness of stall. Some examples of using the developed techniq...
Abstract. The design of high-lift (HL) systems represents a challenging task within the aero-space c...
, which allows one to control the abruptness of stall. Some examples of using the developed techniq...
The development and application of a rapid methodology for the optimization of HighLift configuratio...
The development and application of a rapid methodology for the optimization of HighLift configuratio...
The objective of the presented work is to demonstrate the benefits of using numerical optimization o...
The objective of the presented work is to demonstrate the benefits of using numerical optimization o...
method Abstract. This paper presents an aerodynamic optimization chain whose purpose is to find the ...
This work deals with the application of numerical optimisation to the aerodynamic design of high-lif...
This lecture deals with the application of numerical optimization for aerodynamic design of high-lif...
The presentation will show the successful application of numerical optimization for 3D high-lift des...
This paper presents an aerodynamic optimization chain whose purpose is to find the optimal High Lift...
A two-dimensional aircraft high-lift system design and optimization method, which can be easily exte...
A multi-objective and multipoint optimization problem is presented dealing with a multi-element airf...
Aiming at the synthetical optimization of the aerodynamic performance between the low-speed conditio...
, which allows one to control the abruptness of stall. Some examples of using the developed techniq...
Abstract. The design of high-lift (HL) systems represents a challenging task within the aero-space c...
, which allows one to control the abruptness of stall. Some examples of using the developed techniq...
The development and application of a rapid methodology for the optimization of HighLift configuratio...
The development and application of a rapid methodology for the optimization of HighLift configuratio...