OPTIMAL-DESIGN OF COMPOSITE TURBINE BLADE USING GENETIC ALGORITHMS

Citation
K. Mahesh et al., OPTIMAL-DESIGN OF COMPOSITE TURBINE BLADE USING GENETIC ALGORITHMS, Advanced composite materials, 5(2), 1996, pp. 87-98
Citations number
19
Categorie Soggetti
Materials Sciences, Composites
ISSN journal
09243046
Volume
5
Issue
2
Year of publication
1996
Pages
87 - 98
Database
ISI
SICI code
0924-3046(1996)5:2<87:OOCTBU>2.0.ZU;2-Y
Abstract
The present paper proposes the use of genetic algorithms (GAs) for the optimal design (cost effective) of a composite turbine blade made of layers of several materials. The coupling of in-plane and twisting sti ffnesses in general laminates is made use of to design the turbine bla de. The optimized blade will have minimal twisting curvature, reduced twisting vibrations of the blade and consequent less turbulence in the working fluid. A simplified design method is developed to determine t he optimum combination of layer materials, layer orientations, layer t hicknesses and laminate configuration, With the assumption of the turb ine blade as a flat plate for the purpose of analysis, the use of the genetic algorithm is illustrated with examples of blades of 12, 24 and 36 layered composites. The discreteness of the search space makes GAs particularly suitable to use in this problem.