首页> 外文会议>IEEE International Conference on Engineering Technologies and Applied Sciences >Tri-Engine Single Thrust Vector Analysis for Yaw Movement of Flying Wing
【24h】

Tri-Engine Single Thrust Vector Analysis for Yaw Movement of Flying Wing

机译:飞翼偏航运动的三发动机单推力载体分析

获取原文

摘要

When moving away from the conventional aviation concepts the most crucial areas of concern are efficiency and accuracy. In any design advancement, the efficiency stands with the fuel consumption and accuracy stands with the operational capabilities. Considering the design concept of the flying wing, the shortages are reflected in the effect of inability of yaw movement due to unavailability of vertical fin. In most problems of engineering the solutions used to be found mostly in nature. In most design aspects of aviation flight dynamics of birds have given solutions and this area of drawback can be taken into broader understanding with the same examples. For this constraint the aerodynamic aspects of the `swift' bird were considered. With its ability to handle critical manoeuvres under high speed flight conditions and achieving such with vectored tail movements were assessed. The method of thrust vectoring was considered by movement of engine to achieve necessary movement. In this research the control capabilities which affected thrust vectoring were calculated. As the primary design was built upon the usage of three engines the vector capability of a single engine with forward thrust of the rest were taken into consideration. By taking the same conditions delivered in the research “KF implemented Flying Wing”, this research was built upon. Thus proper condition requirements to give the optimal efficiency and accurate manoeuvring were calculated and presented. The theoretical findings of this research will be forwarded for further studies in computational fluid dynamics simulations and practical testing for prototype model with the Wind Tunnel. Furthermore multi engine thrust vectoring will be comparatively smoother attitude manoeuvring methods. The suggestions made will give the technical advantage for practical approach for engine movement requirement. In this research the readily available drawback of Flying Wing concepts are addressed.
机译:当远离传统的航空概念时,最重要的关切领域是效率和准确性。在任何设计进步中,效率都具有燃料消耗和精度符合操作能力。考虑到飞行翼的设计概念,由于垂直翅片不可用的横摆运动无法实现的短缺。在大多数工程问题中,常常在自然界中发现的解决方案。在航空飞行动态的大多数设计方面,鸟类的动态具有给定的解决方案,并且可以通过相同的例子更广泛地理解该缺点。对于这一限制,考虑了“SWIFT”鸟的空气动力学方面。通过其在高速飞行条件下处理关键演习并评估随着矢量尾部运动的能力进行了评估。通过发动机的运动来考虑推力矢量的方法,以实现必要的运动。在这项研究中,计算了影响推力载体的控制能力。由于主要设计建立在使用三个发动机时,考虑到其余的单个发动机的矢量能力。通过在研究“KF实施飞行翼”的研究中采取相同的条件,建立了这项研究。因此,计算并呈现了适当的条件要求,以提供最佳效率和准确的操纵。本研究的理论发现将被转发,以便在计算流体动力学模拟中进行进一步的研究,以及带风洞的原型模型的实际测试。此外,多发动机推力矢量将是相对更平滑的姿态操纵方法。提出的建议将为发动机运动要求的实用方法提供技术优势。在这项研究中,可以解决飞行翼概念的可行缺点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号