A three-dimensional unstructured grid approach to aerodynamic shape sensitivity analysis and design optimization has been developed and is extended to model geometrically complex configurations. The advantage of unstructured grids (when compared with a structured-grid approach) is their inherent ability to discretize irregularly shaped domains with greater efficiency and less effort. Hence, this approach is ideally suited for geometrically complex configurations of practical interest. In this work the nonlinear Euler equations are solved using an upwind, cell-centered, finite-volume scheme. The discrete, linearized systems which result from this scheme are solved iteratively by a preconditioned conjugate-gradient-like algorithm known as GMR...
A novel (geometrical) parametrization procedure using solutions to a suitably chosen fourth order pa...
An algorithm is developed to obtain the grid sensitivity with respect to design parameters for aerod...
A recently developed three-dimensional aerodynamic shape optimization procedure AeSOP(sub 3D) is des...
This paper presents a brief overview of some of the more recent advances in steady aerodynamic shape...
An aerodynamic shape optimization procedure based on discrete sensitivity analysis is extended to tr...
An aerodynamic shape optimization procedure based on discrete sensitivity analysis is extended to tr...
A novel (geometrical) parametrization procedure using solutions to a suitably chosen fourth order pa...
A new and efficient procedure for aerodynamic shape optimization is presented. The salient lineament...
An algorithm is developed to obtain the grid sensitivity with respect to design parameters for aerod...
A methodology for aerodynamic shape optimization on two-dimensional unstructured grids using Euler e...
A multiblock, discrete sensitivity analysis method is used to couple a direct optimization method an...
This investigation was conducted from March 1994 to August 1995, primarily, to extend and implement ...
These lecture notes, prepared for the 1997 VKI Lecture Course on Inverse Design, discuss the use of ...
This report addresses the development of a multidisciplinary optimization procedure using an efficie...
A multiblock sensitivity analysis method is applied in a numerical aerodynamic shape optimization te...
A novel (geometrical) parametrization procedure using solutions to a suitably chosen fourth order pa...
An algorithm is developed to obtain the grid sensitivity with respect to design parameters for aerod...
A recently developed three-dimensional aerodynamic shape optimization procedure AeSOP(sub 3D) is des...
This paper presents a brief overview of some of the more recent advances in steady aerodynamic shape...
An aerodynamic shape optimization procedure based on discrete sensitivity analysis is extended to tr...
An aerodynamic shape optimization procedure based on discrete sensitivity analysis is extended to tr...
A novel (geometrical) parametrization procedure using solutions to a suitably chosen fourth order pa...
A new and efficient procedure for aerodynamic shape optimization is presented. The salient lineament...
An algorithm is developed to obtain the grid sensitivity with respect to design parameters for aerod...
A methodology for aerodynamic shape optimization on two-dimensional unstructured grids using Euler e...
A multiblock, discrete sensitivity analysis method is used to couple a direct optimization method an...
This investigation was conducted from March 1994 to August 1995, primarily, to extend and implement ...
These lecture notes, prepared for the 1997 VKI Lecture Course on Inverse Design, discuss the use of ...
This report addresses the development of a multidisciplinary optimization procedure using an efficie...
A multiblock sensitivity analysis method is applied in a numerical aerodynamic shape optimization te...
A novel (geometrical) parametrization procedure using solutions to a suitably chosen fourth order pa...
An algorithm is developed to obtain the grid sensitivity with respect to design parameters for aerod...
A recently developed three-dimensional aerodynamic shape optimization procedure AeSOP(sub 3D) is des...