首页> 外文会议>AIAA aviation forum >Analysis and Design of a Small-Scale Wingtip-Mounted Pusher Propeller
【24h】

Analysis and Design of a Small-Scale Wingtip-Mounted Pusher Propeller

机译:小型Wingtip安装推动式推动器的分析与设计

获取原文

摘要

The wingtip-mounted pusher propeller, which experiences a performance benefit from the interaction with the wingtip flowfield, is an interesting concept for distributed propulsion. This paper examines a propeller design framework and provides verification with RANS CFD simulations by analysing the wing of a 9-passenger commuter airplane with a wingtip-mounted propeller in pusher configuration. In the taken approach, a wingtip flowfield is extracted from a CFD simulation, circumferentially averaged and provided to a lower order propeller analysis and optimisation routine. Possible propulsive efficiency gains for the propeller due to installation are significant, up to 16% increase at low thrust levels, decreasing to approximately 7.5% at the highest thrust level, for a range of thrust from 5% up to 100% of the wing drag. These gains are found to be independent of propeller radius for thrust levels larger than 30% of the wing drag. Effectively, the propeller geometry is optimized for the required thrust and to a lesser degree for the non-uniformity in the flowfield. Propeller blade optimization and installation result in higher profile efficiency in the blade root sections and a more inboard thrust distribution.
机译:翼面安装的推动器螺旋桨,经历了与Wingtip流场的互动的性能受益,是分布推进的一个有趣的概念。本文介绍了螺旋桨设计框架,并通过在推动器配置中分析了9乘客通勤飞机的机翼,并通过翼面安装螺旋桨分析了一个带RanS CFD模拟的验证。在采取的方法中,从CFD模拟中提取WINGTIP流场,周向平均并提供给较低的螺旋桨分析和优化程序。由于安装导致的螺旋桨可能的推进效率提升,低推力水平升高至多16%,在最高推力水平下降至约7.5%,从5%到100%的机翼阻力。发现这些收益与推力水平的螺旋桨半径无关,其推力大于30%的机翼阻力。有效地,螺旋桨几何形状针对所需的推力和较小程度进行了优化,并且在流场中的不均匀性较小。螺旋桨刀片优化和安装导致刀片根部的较高型材效率和更多的内侧推力分布。

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