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Supersonic wing-body wave drag co-ordinated optimisation based on FCE methodology

机译:基于FCE方法的超音速机翼波阻力协调优化

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摘要

Wave drag reduction is important for the aerodynamic performance optimisation of supersonic cruise aircrafts, such as the supersonic civil transport and the supersonic cruise missile. In this paper a method of the supersonic wing-body wave drag optimisation, the wave drag co-optimisation based on far-field composite elements (CoFCE), is proposed based on class-shape-transformation (CST) parameterisation. Wave drag optimisation cases of a supersonic civil transport wing-body are presented, including the optimisation results and computation cost analyses. It is suggested that the supersonic wing-body wave drag can be significantly reduced by the proposed method with relatively small numbers of design parameter. In the optimisation case presented in this paper a 45% wave drag reduction is achieved. The wave drag optimised configuration also achieved significant lift to drag ratio improvements in small angles-of-attack supersonic cruise flight conditions.
机译:减小波阻对于优化超音速巡航飞机(如超音速民用运输和超音速巡航导弹)的空气动力学性能很重要。本文提出了一种基于翼型变换(CST)参数化的超音速机翼波浪阻力优化方法,即基于远场复合元素(CoFCE)的波浪阻力优化。给出了超音速民用机翼机体的波阻优化实例,包括优化结果和计算成本分析。建议采用设计参数相对较少的方法,可以明显降低超音速机翼的波阻力。在本文提出的优化案例中,可以实现45%的波阻力减小。波浪阻力优化配置在小攻角超音速巡航飞行条件下也实现了显着的升阻比改善。

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  • 来源
    《The Aeronautical Journal》 |2014年第1209期|1359-1372|共14页
  • 作者

    X. Guan;

  • 作者单位

    Institute of System Engineering CAEP Mianyang, China;

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  • 原文格式 PDF
  • 正文语种 eng
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