This paper deals with shape optimization of continuous structures. As in early works on shape optimization, coordinates of boundary nodes of the FE-domain are directly chosen as design variables. Convergence problems and problems with jagged shapes are eliminated by a new regularization technique: an artificial inequality constraint added to the optimization problem limits a fictitious total strain energy that measures the shape change of the design with respect to a reference design. The energy constraint defines a feasible design space whose size can be varied by one parameter, the upper energy limit. By construction, the proposed regularization is applicable to a wide range of problems; although in this paper, the application is restrict...
This paper describes and compares an experimental and a numerical method for shape optimization of c...
The main purpose of this article is to present a numerical method for geometrical shape optimization...
The geometric strain method is developed to obtain an optimum (minimum weight) shape of a general el...
This contribution deals with a numerical regularization technique for con-figurational r-adaptivity ...
This contribution deals with a numerical regularization technique for con-figurational r-adaptivity ...
We consider shape optimization problems for elasticity systems in architecture. A typical objective ...
Shape optimization problems of linear elastic continua, flow fields, magnetic fields, etc. under equ...
International audienceWe consider shape optimization problems for elasticity systems in architecture...
International audienceWe consider shape optimization problems for elasticity systems in architecture...
International audienceIn this paper, we focus on numerical aspects of structural optimization. We co...
International audienceIn this paper, we focus on numerical aspects of structural optimization. We co...
International audienceIn this paper, we focus on numerical aspects of structural optimization. We co...
International audienceThis work gives some applications of a pseudo-constructal technique for shape ...
This dissertation deals with problems of shape and topology optimization in which the goal is to fin...
The main purpose of this article is to present a numerical method for geometrical shape optimization...
This paper describes and compares an experimental and a numerical method for shape optimization of c...
The main purpose of this article is to present a numerical method for geometrical shape optimization...
The geometric strain method is developed to obtain an optimum (minimum weight) shape of a general el...
This contribution deals with a numerical regularization technique for con-figurational r-adaptivity ...
This contribution deals with a numerical regularization technique for con-figurational r-adaptivity ...
We consider shape optimization problems for elasticity systems in architecture. A typical objective ...
Shape optimization problems of linear elastic continua, flow fields, magnetic fields, etc. under equ...
International audienceWe consider shape optimization problems for elasticity systems in architecture...
International audienceWe consider shape optimization problems for elasticity systems in architecture...
International audienceIn this paper, we focus on numerical aspects of structural optimization. We co...
International audienceIn this paper, we focus on numerical aspects of structural optimization. We co...
International audienceIn this paper, we focus on numerical aspects of structural optimization. We co...
International audienceThis work gives some applications of a pseudo-constructal technique for shape ...
This dissertation deals with problems of shape and topology optimization in which the goal is to fin...
The main purpose of this article is to present a numerical method for geometrical shape optimization...
This paper describes and compares an experimental and a numerical method for shape optimization of c...
The main purpose of this article is to present a numerical method for geometrical shape optimization...
The geometric strain method is developed to obtain an optimum (minimum weight) shape of a general el...