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The comparison of aerodynamic and stability characteristics between conventional and blended wing body aircraft

机译:常规机翼和混合机翼飞机的空气动力学和稳定性能比较

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摘要

Aircraft with advanced wing geometry, like the flying wing or blended wing body configuration, seems to be the seed candidate of future aircraft. Compared with conventional aircraft, there are significant aerodynamic performance improvements because of its highly integrated wing and fuselage configuration. On the other hand, due to its tailless configuration, the stability characteristics are not as good as conventional aircraft.The research aims to compare the aerodynamic and stability characteristics of conventional, flying wing and blended wing body aircraft. Based on the same requirement—250 passenger capability and 7,500 nautical miles range, three different configurations—conventional, flying wing and blended wing body options were provided to make direct comparison.The research contains four parts. In the first part, the aerodynamic characteristics were compared using empirical equation ESDU datasheet and Vortex-Lattice Method based AVL software. In the second part, combined with the aerodynamic data and output mass data from other team member, the stability characteristics were analysed. The stability comparison contains longitudinal, lateral-directional static stability and dynamic stability. In the third part, several geometry parameters were varied to investigate the influence on the aerodynamic and stability characteristics of blended wing body configuration. In the last part, a special case has been explored in an attempt to improve the static stability by changing geometry parameters. The process shows that the design of blended wing body is really complex since the closely coupling of several parameters.
机译:具有先进机翼几何形状的飞机,例如飞行机翼或混合机翼机身配置,似乎是未来飞机的种子候选者。与传统飞机相比,由于其高度集成的机翼和机身配置,空气动力学性能得到了显着改善。另一方面,由于其无尾翼配置,其稳定性特征不如常规飞机。研究旨在比较常规,飞行翼和混合翼飞机的空气动力学和稳定性特征。基于相同的需求(250名乘客的能力和7,500海里的航程),提供了三种不同的配置-传统机翼,飞行机翼和混合机翼机身选项,以便进行直接比较。研究包括四个部分。在第一部分中,使用经验公式ESDU数据表和基于Vortex-Lattice方法的AVL软件对空气动力学特性进行了比较。在第二部分中,结合空气动力学数据和其他团队成员的输出质量数据,分析了稳定性特征。稳定性比较包括纵向,横向静态稳定性和动态稳定性。在第三部分中,改变了几个几何参数,以研究其对混合机翼构型的空气动力学和稳定性特征的影响。在最后一部分中,探讨了一种特殊情况,试图通过更改几何参数来提高静态稳定性。该过程表明,由于多个参数的紧密耦合,混合机翼的设计确实非常复杂。

著录项

  • 作者

    Wang Faliang;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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