节点文献
基因算法在喷管反设计中的应用
Using Genetic Algorithms for Optimum Shape Design of Nozzle
【摘要】 在气动优化设计中引进了基于达尔文的自然选择机制和生物遗传机制的基因算法,构造了相应的基因变异等算子。针对喷管气动外形的特点提出了与之相适应的Bézier曲线基因表达,把算法搜索空间缩小为由有限参数曲线控制点构成的子空间,从而加快了算法收敛速度。并与全位势方程求解程序相结合,提出了具体的供优化设计的适应函数,研制了二维气动反设计计算程序,进行了二维喷管反设计数值实验。结果表明,本文构造的方法是可行的,而且具有全局优化和鲁棒性强等特点
【Abstract】 Applys Genetic Algorithms (GAs), based on the mechanics of natural selection and genetics to the optimization of aerodynamic design. The genetic operators are constructed. Bézier curve representation is proposed based on the features of the aerodynamic shapes and the principle of genetic algorithms. Bézier curve representation can reduce the searching scope of GAs because it needs only small control points to describe an aerodynamic shape. The fitness function is defined based on the solution of full potential equation. A two dimensional program for the optimization of aerodynamic design is developed. Then the method is applied to nozzle reconstruction. The numerical experiments are carried out for the design of 2 D aerodynamic nozzle. The results show that the method is feasible and has the ability to obtain the approximate optimum shape within finite genetic generations.
- 【文献出处】 南京航空航天大学学报 ,JOURNAL OF NANJING UNIVERSITY OF AERONAUTICS & ASTRONAUTICS , 编辑部邮箱 ,1999年02期
- 【分类号】V211.41
- 【被引频次】11
- 【下载频次】121