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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Response surface approach to aerodynamic optimization design of helicopter rotor blade
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Response surface approach to aerodynamic optimization design of helicopter rotor blade

机译:响应面法在直升机旋翼气动优化设计中的应用

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摘要

This paper describes a hovering rotor blade design through the suitable combination of flow analysis and optimization technique. It includes a parametric study concerned with the influence of design variables and different design conditions such as objective functions and constraints on the rotor performance. Navier-Stokes analysis is employed to compute the hovering rotor performance in subsonic and transonic operating conditions. Response surface method based on D-optimal 3-level factorial design and genetic algorithm are applied to obtain the optimum solution of a defined objective function including the penalty terms of constraints. The designs of the rotor airfoil geometry and the rotor tip shape are performed in subsonic and transonic conditions, and it is observed that the new rotor blades optimized by various objective functions and constraints have better aerodynamic characteristics than the baseline rotor blade. The influence of design variables and their mutual interactions on the rotor performance is also examined through the optimization process. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:本文通过流分析和优化技术的适当结合,描述了一种悬停式转子叶片设计。它包括与设计变量和不同设计条件(例如目标函数和约束条件)对转子性能的影响有关的参数研究。 Navier-Stokes分析用于计算亚音速和跨音速工况下的悬停转子性能。运用基于D最优三级因子设计和遗传算法的响应面方法,获得了包含约束惩罚项的目标函数的最优解。在亚音速和跨音速条件下进行转子翼型几何形状和转子尖端形状的设计,并且观察到,通过各种目标功能和约束条件优化的新型转子叶片具有比基线转子叶片更好的空气动力学特性。还通过优化过程检查了设计变量及其相互影响对转子性能的影响。版权所有(c)2005 John Wiley&Sons,Ltd.

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