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Takeoff and Performance Trade-Offs of Retrofit Distributed Electric Propulsion for Urban Transport

机译:城市交通改造分布式电力推进的起飞与性能取舍

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摘要

While vertical takeoff and landing aircraft have shown promise for urban air transport, distributed electric propulsion on existing aircraft may offer immediately implementable alternatives. Distributed electric propulsion could potentially decrease takeoff distances enough to enable thousands of potential intercity runways. This conceptual study explores the effects of a retrofit of open-bladed electric propulsion units. To model and explore the design space, blade element momentum method, vortex lattice method, linear-beam finite element analysis, classical laminate theory, composite failure, empirically based blade noise modeling, motor and motor-controller mass models, and gradient-based optimization are used. With liftoff time of seconds and the safe total field length for this aircraft type undefined, this paper focused on the minimum conceptual takeoff distance. It was found that 16 propellers could reduce the takeoff distance by over 50% compared with the optimal 2-propeller case. This resulted in a conceptual minimum takeoff distance of 20.5 m to clear a 50 ft (15.24 m) obstacle. It was also found that, when decreasing the allowable noise by approximately 10 dBa, the 8-propeller case performed the best with a 43% reduction in takeoff distance compared with the optimal 2-propeller case. This resulted in a noise-restricted conceptual minimum takeoff distance of 95 m.
机译:虽然垂直起降飞机已经显示出城市航空运输的前景,但现有飞机上的分布式电力推进可能会提供可立即实施的替代方案。分布式电力推进系统有可能会减小起飞距离,足以使成千上万的潜在城际跑道成为可能。这项概念性研究探索了开式电动推进装置改造的效果。建模和探索设计空间,叶片元素动量法,涡流格子法,线性束有限元分析,经典层板理论,复合材料破坏,基于经验的叶片噪声建模,电动机和电动机控制器质量模型以及基于梯度的优化被使用。由于起升时间为几秒钟,并且该飞机类型的安全总场长未定义,因此本文着重于最小概念起飞距离。结果发现,与最佳的2螺旋桨相比,16螺旋桨可以将起飞距离减少50%以上。这导致20.5 m的概念性最小起飞距离可以清除50英尺(15.24 m)的障碍物。还发现,当将允许噪声降低约10 dBa时,与最佳2螺旋桨情况相比,8螺旋桨情况表现最佳,起飞距离减少43%。这导致噪音限制的概念最小起飞距离为95 m。

著录项

  • 来源
    《Journal of Aircraft 》 |2019年第5期| 1880-1892| 共13页
  • 作者

    Moore Kevin R.; Ning Andrew;

  • 作者单位

    Brigham Young Univ Dept Mech Engn Provo UT 84602 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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