首页> 外文期刊>The Archive of Mechanical Engineering >Design and Optimisation of Fuel Tanks for BWB Configurations
【24h】

Design and Optimisation of Fuel Tanks for BWB Configurations

机译:BWB配置的油箱的设计和优化

获取原文
获取外文期刊封面目录资料

摘要

This paper describes assumptions, goals, methods, results and conclusions related to fuel tank arrangement of a flying wing passenger airplane configuration. A short overview of various fuel tank systems in use today of different types of aircraft is treated as a starting point for designing a fuel tank system to be used on very large passenger airplanes. These systems may be used to move fuel around the aircraft to keep the centre of gravity within acceptable limits, to maintain pitch and lateral balance and stability. With increasing aircraft speed, the centre of lift moves aft, and for trimming the elevator or trimmer must be used thereby increasing aircraft drag. To avoid this, the centre of gravity can be shifted by pumping fuel from forward to aft tanks. The lesson learnt from this is applied to minimise trim drag by moving the fuel along the airplane. Such a task can be done within coming days if we know the minimum drag versus CG position and weight value. The main part of the paper is devoted to wing bending moment distribution. A number of arrangements of fuel in airplane tanks are investigated and a scenario of refuelling - minimising the root bending moments - is presented. These results were obtained under the assumption that aircraft is in long range flight (14 hours), C_(L)is constant and equal to 0.279, Specific Fuel Consumption is also constant and that overall fuel consumption is equal to 20 tons per 1 hour. It was found that the average stress level in wing structure is lower if refuelling starts from fuel tanks located closer to longitudinal plane of symmetry. It can influence the rate of fatigue.
机译:本文介绍了与飞行翼客机配置的油箱布置有关的假设,目标,方法,结果和结论。对当今用于不同类型飞机的各种油箱系统的简短概述被视为设计用于大型客机的油箱系统的起点。这些系统可用于在飞机周围移动燃料,以将重心保持在可接受的范围内,以保持俯仰和横向平衡以及稳定性。随着飞机速度的提高,举升中心向后移动,必须使用微调升降机或微调器,从而增加飞机的阻力。为了避免这种情况,可以通过将燃油从前油箱泵到后油箱来改变重心。从中汲取的教训可用于通过沿飞机移动燃料来最大程度地减少装饰阻力。如果我们知道最小阻力与CG位置和重量值之间的关系,则可以在未来几天内完成此类任务。本文的主要部分致力于机翼弯矩的分布。研究了飞机油箱中燃料的多种布置方式,并提出了加油的方案-最小化根部弯矩。这些结果是在飞机处于远程飞行(14小时),C_(L)恒定且等于0.279,比油耗也恒定并且总油耗等于每1小时20吨的假设下获得的。已经发现,如果从靠近对称纵向平面的油箱开始加油,机翼结构的平均应力水平会降低。它会影响疲劳率。

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