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Powerplant Design and Performance Analysis of a Manned All-Electric Helicopter

机译:载人全电动直升机的动力装置设计与性能分析

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摘要

This paper describes the conceptual design of three all-electric powerplants-a battery-only, a fuel-cell-only, and a battery-fuel cell hybrid powerplant - for a manned ultralight utility helicopter (Robinson R 22 Beta Ⅱ-like) and carries out a comparative evaluation of performance delivered by each. The new powerplants consist of a combination of high-pressure proton exchange membrane fuel cells, 700 bar type-4 hydrogen storage, a compressor-expander, lithium-ion batteries, and an alternating current synchronous permanent magnet motor. The key conclusion is that a hybrid powerplant that combines high specific power of batteries in hover and high calorific value of hydrogen in cruise delivers a superior performance compared to either system alone. The efficiency is higher than current rotorcraft piston engines but the key limitation is its low specific power, which is half of the current engines. Only 60% of the original payload can be flown (90kg solo pilot) for a duration of 35 min (including 11 min hover) over a range of 47 km under high/hot (4000 ft/95℉) conditions. The paper lays the foundations of performance analysis for all-electric rotorcraft, benchmarks the best performance achievable with current state of the art, and quantifies future technology targets to enable performance comparable to existing internal combustion engines.
机译:本文介绍了三种全电动动力装置的概念设计,这三种动力装置分别是:一台仅电池,一个仅燃料电池和一个电池-燃料电池混合动力装置,用于载人超轻型通用直升机(类似于Robinson R 22 BetaⅡ)和对每个人提供的绩效进行比较评估。新的动力装置由高压质子交换膜燃料电池,700 bar的4型储氢装置,压缩机膨胀机,锂离子电池和交流同步永磁电动机组成。关键结论是,与单独使用任一系统相比,结合了悬停时电池的高比功率和巡航中氢气的高热值的混合动力装置,其性能卓越。效率高于目前的旋翼飞机活塞发动机,但关键的限制是其低比功率,仅为当前发动机的一半。在高温/高温(4000英尺/ 95度)条件下,在47公里范围内,仅60%的原始有效载荷可以飞行35分钟(包括悬停11分钟),飞行时间为90千克。本文为全电动旋翼飞机的性能分析奠定了基础,对当前最先进的性能进行了基准测试,并对未来的技术目标进行了量化,以实现与现有内燃机相当的性能。

著录项

  • 来源
    《Journal of propulsion and power》 |2014年第2期|490-505|共16页
  • 作者

    Anubhav Datta; Wayne Johnson;

  • 作者单位

    Science and Technology Corporation, Moffett Field, California 94035,NASA Ames Research Center;

    NASA Ames Research Center, Moffett Field, California 94035;

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  • 原文格式 PDF
  • 正文语种 eng
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