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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >A Comprehensive Optimization Design Method of Aerodynamic, Acoustic, and Stealth of Helicopter Rotor Blades Based on Genetic Algorithm
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A Comprehensive Optimization Design Method of Aerodynamic, Acoustic, and Stealth of Helicopter Rotor Blades Based on Genetic Algorithm

机译:基于遗传算法的直升机转子叶片的空气动力学,声学和隐形综合优化设计方法

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In this paper, a comprehensive optimization approach is presented to analyze the aerodynamic, acoustic, and stealth characteristics of helicopter rotor blades in hover flight based on the genetic algorithm (GA). The aerodynamic characteristics are simulated by the blade element momentum theory. And the acoustics are computed by the Farassat theory. The stealth performances are calculated through the combination of physical optics (PO) and equivalent currents (MEC). Furthermore, an advanced geometry representation algorithm which applies the class function/shape function transformation (CST) is introduced to generate the airfoil coordinates. This method is utilized to discuss the airfoil shape in terms of server design variables. The aerodynamic, acoustic, and stealth integrated design aims to achieve the minimum radar cross section (RCS) under the constraint of aerodynamic and acoustic requirement through the adjustment of airfoil shape design variables. Two types of rotor are used to illustrate the optimization method. The results obtained in this work show that the proposed technique is effective and acceptable.
机译:本文基于遗传算法(GA),提出了一种综合优化方法来分析Hover飞行器转子叶片的空气动力学,声学和隐形特性。通过叶片元件动量理论模拟空气动力学特性。并且声学由法拉特理论计算。隐身性能通过物理光学(PO)和等效电流(MEC)的组合来计算。此外,引入了应用类功能/形状函数变换(CST)的高级几何表示算法以产生翼型坐标。该方法用于讨论服务器设计变量方面的翼型形状。空气动力学,声学和隐形综合设计旨在通过调整翼型形状设计变量来实现空气动力学和声学要求的限制下的最小雷达横截面(RCS)。两种类型的转子用于说明优化方法。在本工作中获得的结果表明,该技术是有效且可接受的。

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