AbstractThe paper presents a computationally efficient and robust methodology for the inverse design of transonic airfoils. The approach replaces the direct optimization of an accurate, but computationally expensive, high-fidelity airfoil model by an iterative reoptimization of a corrected low-fidelity model. The low-fidelity model is based on the same governing fluid flow equations as the high-fidelity one, but uses coarser discretization and relaxed convergence criteria. The shape-preserving response prediction technique is utilized to align the pressure distribution of the low-fidelity model with that of the high-fidelity model. This alignment process is particularly suitable since a target pressure distribution is specified in the inver...
The aerodynamic inverse design approach consists of finding the ge-ometry that produces a desired (t...
Title: Solution of inverse problem for a flow around an airfoil Author: Mgr. Jan Šimák Department: D...
Design optimization methods using high-fidelity computational fluid dynamics simulations are becomin...
AbstractA computationally efficient methodology for transonic airfoil design optimization is present...
The increasing popularity of high fidelity computational fluid dynamics simulations in aerodynamic d...
The feasibility of the use of the Navier-Stokes equations in aerodynamic design is examined. The Nav...
The inverse design method of aerodynamic configuration is hard to give a reasonable pressure distrib...
Design optimization using high-fidelity computational fluid dynamics simulations is becoming increas...
A numerical technique for designing transonic airfoils having a prescribed pressure distribution (th...
Aerodynamic characteristics are very sensitive to airfoil leading-edge geometry, and its accurate tr...
The direct-inverse technique was developed into a numerical method, called TRANDES, that is suitable...
In this paper an inverse design method is presented which couples a Navier-Stokes flow solver and a ...
A method for the design of airfoils and wings in transonic flow is described, in which the desired p...
A design method for transonic airfoils and wings based on the solution of the Euler-/Navier-Stokes e...
AbstractMulti fidelity optimization can be utilized for efficient design of airfoil shapes. In this ...
The aerodynamic inverse design approach consists of finding the ge-ometry that produces a desired (t...
Title: Solution of inverse problem for a flow around an airfoil Author: Mgr. Jan Šimák Department: D...
Design optimization methods using high-fidelity computational fluid dynamics simulations are becomin...
AbstractA computationally efficient methodology for transonic airfoil design optimization is present...
The increasing popularity of high fidelity computational fluid dynamics simulations in aerodynamic d...
The feasibility of the use of the Navier-Stokes equations in aerodynamic design is examined. The Nav...
The inverse design method of aerodynamic configuration is hard to give a reasonable pressure distrib...
Design optimization using high-fidelity computational fluid dynamics simulations is becoming increas...
A numerical technique for designing transonic airfoils having a prescribed pressure distribution (th...
Aerodynamic characteristics are very sensitive to airfoil leading-edge geometry, and its accurate tr...
The direct-inverse technique was developed into a numerical method, called TRANDES, that is suitable...
In this paper an inverse design method is presented which couples a Navier-Stokes flow solver and a ...
A method for the design of airfoils and wings in transonic flow is described, in which the desired p...
A design method for transonic airfoils and wings based on the solution of the Euler-/Navier-Stokes e...
AbstractMulti fidelity optimization can be utilized for efficient design of airfoil shapes. In this ...
The aerodynamic inverse design approach consists of finding the ge-ometry that produces a desired (t...
Title: Solution of inverse problem for a flow around an airfoil Author: Mgr. Jan Šimák Department: D...
Design optimization methods using high-fidelity computational fluid dynamics simulations are becomin...