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Sizing Power Components of an Electrically Driven Tail Cone Thruster and a Range Extender

机译:电动尾锥推进器和增程器的功率组件的尺寸

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The aeronautics industry has been challenged on many fronts to increase efficiency, reduce emissions, and decrease dependency on carbon-based fuels. This paper provides an overview of the turboelectric and hybrid electric technologies being developed under NASA's Advanced Air Transportation Technology (AATT) Project and discusses how these technologies can impact vehicle design. The discussion includes an overview of key hybrid electric studies and technology investments, the approach to making informed investment decisions based on key performance parameters and mission studies, and the power system architectures for two candidate aircraft. Finally, the power components for a single-aisle turboelectric aircraft with an electrically driven tail cone thruster and for a hybrid-electric nine-passenger aircraft with a range extender are parametrically sized, and the sensitivity of these components to key parameters is presented.
机译:航空业在提高效率,减少排放和减少对碳基燃料的依赖等诸多方面都面临着挑战。本文概述了在NASA的高级航空运输技术(AATT)项目下正在开发的涡轮电技术和混合电技术,并讨论了这些技术如何影响车辆设计。讨论内容包括关键混合动力电气研究和技术投资的概述,基于关键性能参数和任务研究做出知情投资决策的方法,以及两架候选飞机的动力系统架构。最后,对带有电动尾锥推进器的单通道涡轮电动飞机和带有增程器的混合电动九乘客飞机的功率组件进行参数化确定大小,并给出了这些组件对关键参数的敏感性。

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