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Parameterization and optimization of hypersonic-gliding vehicle configurations during conceptual design

机译:概念设计期间高超声速滑行车辆配置的参数化和优化

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Three-dimensional class/shape function transformation (CST) approach is an analytical method, and it can define the geometrical shapes by a small number of parameters and it is refined to enhance the parametric ability in this study. The interface between the upper and lower surfaces is considered by introducing additional parametric items, and it will be no longer a flat plane. The inviscid engineering methods based on modified Newton theory and Prandtl-Meyer equation are employed to estimate the Hypersonic gliding vehicle's aerodynamic properties. The accuracies of these methods are also validated. In order to obtain vehicles with high lift-to-drag ratio as well as large volumetric efficiency, multi objective optimization algorithm, NSGA-II, has been utilized. The obtained result shows that the Pareto front of the multi-objective problem based on the refined three-dimensional CST method is in front of the Pareto front based on the original three-dimensional CST method, and this implies that the refined method can find configurations with better performance than the original one. One of the configurations on the Pareto front has been analyzed, and its aerodynamic performance has been studied by both panel method and the CFD method. The results show that the obtained configuration owns outstanding aerodynamic properties. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:三维类/形状函数变换(CST)方法是一种分析方法,它可以通过少量参数定义几何形状,并且对其进行了改进以增强参数研究能力。通过引入其他参数项来考虑上表面和下表面之间的界面,该界面将不再是平面。基于修正牛顿理论和Prandtl-Meyer方程的无粘性工程方法被用来估算高超声速滑行飞行器的空气动力学特性。这些方法的准确性也得到了验证。为了获得具有高升阻比和高容积效率的车辆,已经使用了多目标优化算法NSGA-II。所得结果表明,基于改进的三维CST方法的多目标问题的帕累托前沿位于基于原始的三维CST方法的帕累托前沿的前面,这意味着改进的方法可以找到配置表现比原始的更好。分析了帕累托前部的一种构型,并通过面板法和CFD法研究了其气动性能。结果表明,所获得的构型具有出色的空气动力学特性。 (C)2016 Elsevier Masson SAS。版权所有。

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