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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering >Genetic algorithm-based design of transonic aerofoils using Euler equations
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Genetic algorithm-based design of transonic aerofoils using Euler equations

机译:基于遗传算法的欧拉方程设计跨音速翼型

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摘要

The paper describes the adaptation of genetic algorithms (GA) to the design of inviscid transonic aerofoils. GA is effective in optimization strategies for designing transonic aerofoils where the non-linear aerodynamic phenomenon of shock wave results in flow discontinuity. The Euler equations are discretized through the flux-vector splitting method with Poisson's equation-based grid generation. Advanced strategies in the GA such as directed crossover and multi-stage searches are employed in the context of function-based global optimization. The objective is to determine the best combination of weighted parameters of a analytic function for the aerofoil surface, by maximizing the L/D ratio. The paper first covers the optimization of transonic aerofoils to enhance the baseline design of NACA0012. A two-point design problem is also conducted to accommodate both transonic and subsonic regimes represented by the Mach number and angle of attack. The optimized aerofoils have shown improved aerodynamic performance for both flight regimes.
机译:本文介绍了遗传算法(GA)对无粘性跨音速翼型设计的适应性。遗传算法在设计跨音速翼型的优化策略中非常有效,其中冲击波的非线性空气动力学现象会导致流动不连续。欧拉方程通过基于泊松方程的网格生成的磁通矢量分裂方法离散化。在基于函数的全局优化的背景下,采用了GA中的高级策略,例如定向交叉和多阶段搜索。目的是通过最大化L / D比来确定翼型表面分析函数的加权参数的最佳组合。本文首先介绍了跨音速翼型的优化,以增强NACA0012的基线设计。还进行了两点设计问题,以适应由马赫数和攻角表示的跨音速和亚音速状态。优化的机翼在两种飞行状态下均显示出改进的空气动力学性能。

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