Summarization: This paper presents an implementation of Eurocode load cases for discrete global optimization algorithm for planar and space structures based on the principles of finite ele- ment methods and genetic algorithms. The final optimal design is obtained using IPE sections chosen as feasible by the algorithm, from the available steel sections from industry, used for ease of comparison with benchmarks. The algorithm is tested on several planar steel frames and a truss from the literature, with good results.Παρουσιάστηκε στο: 3rd South-East European Conference on Computational Mechanics- an ECCOMAS and IAC
In this paper, a technology enabling to optimize the topology of truss or frame structures with gene...
This paper presents a heuristic algorithm for discrete design optimization, based on the optimality ...
In this paper, algorithms are presented for the optimum design of geometrically nonlinear steel spac...
In this paper, a technology enabling the optimization of the topology of truss or frame structures w...
A design procedure incorporating a genetic algorithm is developed for discrete optimization of three...
AbstractThis research presents a procedure and a software application to optimize the topology, size...
In this paper, the performance of the genetic algorithm is improved by introducing some new crossove...
This paper presents genetic based algorithm for the optimum design of multistorey steel frames with ...
Genetic Algorithm (GA) is one of the most widely used optimization algorithms. This algorithm consis...
trusses by a genetic algorithm-Size, shape and topology optimization according to Eurocod
The built environment is responsible for a large share of global greenhouse gas emissions. About 25 ...
In this paper, topology and shape optimization of truss or frame structures is discussed. The optimi...
This paper presents an optimization process using Genetic Algorithm (GA) for minimum weight by selec...
In structural design, achieving minimum cost is the main goal. Structural design optimization plays ...
In this paper we present a genetic algorithm (GA) based optimization procedure for the design of geo...
In this paper, a technology enabling to optimize the topology of truss or frame structures with gene...
This paper presents a heuristic algorithm for discrete design optimization, based on the optimality ...
In this paper, algorithms are presented for the optimum design of geometrically nonlinear steel spac...
In this paper, a technology enabling the optimization of the topology of truss or frame structures w...
A design procedure incorporating a genetic algorithm is developed for discrete optimization of three...
AbstractThis research presents a procedure and a software application to optimize the topology, size...
In this paper, the performance of the genetic algorithm is improved by introducing some new crossove...
This paper presents genetic based algorithm for the optimum design of multistorey steel frames with ...
Genetic Algorithm (GA) is one of the most widely used optimization algorithms. This algorithm consis...
trusses by a genetic algorithm-Size, shape and topology optimization according to Eurocod
The built environment is responsible for a large share of global greenhouse gas emissions. About 25 ...
In this paper, topology and shape optimization of truss or frame structures is discussed. The optimi...
This paper presents an optimization process using Genetic Algorithm (GA) for minimum weight by selec...
In structural design, achieving minimum cost is the main goal. Structural design optimization plays ...
In this paper we present a genetic algorithm (GA) based optimization procedure for the design of geo...
In this paper, a technology enabling to optimize the topology of truss or frame structures with gene...
This paper presents a heuristic algorithm for discrete design optimization, based on the optimality ...
In this paper, algorithms are presented for the optimum design of geometrically nonlinear steel spac...