This paper presents a new framework for Aerodynamic Shape Optimization (ASO) implemented inside the open-source software SU2. A parametrized surface is iteratively morphed to improve a desired aerodynamic coefficient. At each loop, the computational grid must be updated. The radial basis function (RBF) mesh deformation technique is introduced to extend the capability to explore the design space. RBF is implemented with some state-of-the-art data reduction systems to lower the computational cost. The Discrete Adjoint is adopted to compute the sensitivity in combination with Automatic Differentiation to calculate the required Jacobians. RBF is differentiated as well, resulting in a method-dependent surface sensitivity. The gradient-based algo...
Within the next few years, numerical shape optimization based on high fidelity methods is likely to ...
PhDAdjoint based optimisation has until now demonstrated a great promise for optimisation in aerody...
Gradient-based aerodynamic shape optimization, based on Computational Fluid Dynamics analysis of the...
This paper presents a new framework for Aerodynamic Shape Optimization (ASO) implemented inside the ...
In this paper, the continuous adjoint method, developed by NTUA in the Open-FOAM R environment, is c...
In this paper, the continuous adjoint method, developed by NTUA in the Open-FOAM R environment, is c...
This paper demonstrates the solution of industrial aerodynamic shape optimization problems using the...
This paper presents a CAD-based optimization framework using adjoint functions for aerodynamic desig...
Developments in computational capabilities and the always increasing demand for higher performance o...
Automated shape optimization involves making suitable modifications to a geometry that can lead to s...
Numerical shape optimization will play a strategic role for future aircraft design. It offers the po...
This paper demonstrates a way of solving industrial aerodynamic shape optimization problems using th...
This paper demonstrates a way of solving industrial aerodynamic shape optimization problems using th...
In this paper the exact discrete adjoint of a finite volume formulation on unstructured meshes for t...
With more efficient structures, last trends in aeronautics have witnessed an increased flexibility o...
Within the next few years, numerical shape optimization based on high fidelity methods is likely to ...
PhDAdjoint based optimisation has until now demonstrated a great promise for optimisation in aerody...
Gradient-based aerodynamic shape optimization, based on Computational Fluid Dynamics analysis of the...
This paper presents a new framework for Aerodynamic Shape Optimization (ASO) implemented inside the ...
In this paper, the continuous adjoint method, developed by NTUA in the Open-FOAM R environment, is c...
In this paper, the continuous adjoint method, developed by NTUA in the Open-FOAM R environment, is c...
This paper demonstrates the solution of industrial aerodynamic shape optimization problems using the...
This paper presents a CAD-based optimization framework using adjoint functions for aerodynamic desig...
Developments in computational capabilities and the always increasing demand for higher performance o...
Automated shape optimization involves making suitable modifications to a geometry that can lead to s...
Numerical shape optimization will play a strategic role for future aircraft design. It offers the po...
This paper demonstrates a way of solving industrial aerodynamic shape optimization problems using th...
This paper demonstrates a way of solving industrial aerodynamic shape optimization problems using th...
In this paper the exact discrete adjoint of a finite volume formulation on unstructured meshes for t...
With more efficient structures, last trends in aeronautics have witnessed an increased flexibility o...
Within the next few years, numerical shape optimization based on high fidelity methods is likely to ...
PhDAdjoint based optimisation has until now demonstrated a great promise for optimisation in aerody...
Gradient-based aerodynamic shape optimization, based on Computational Fluid Dynamics analysis of the...