Torque-Speed Characteristics for Electrically Powered Rim Driven Fans and Thrust Comparison with a Small Conventional Fan Jet Engine

R. Bolam, Jhon Paul C. Roque, Y. Vagapov, Richard J. Day
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Abstract

The aim of this paper is to provide a method of estimating torque versus speed characteristics of single and dual-stage electrically powered Rim Driven Fans which are intended for aircraft propulsion. The methodology is based on the well-known Euler equation which considers the change in angular momentum of the air as it passes through the fan rotors. A derivation of the useful and versatile Specific Work parameter (Y) is provided along with its important relationship with the fan Work Co-efficient ($\psi$) and an explanation of the relevance of the Fan Flow Co-efficient ($\emptyset$) in determining the flow of air through the RDF device. An equation is derived which relates the fan torque to its rotational speed and a specimen calculation of a 200 mm inlet diameter RDF has been provided. Electrical performance graphs, generated with Motor-CAD LAB software, are included to illustrate an example of a suitably optimised RDF motor circuit. Finally, a thrust performance comparison is made between a theoretical dual-stage RDF and a commercially available fan-jet engine. It is demonstrated that the dual-stage RDF technology could offer a viable solution to power high-speed medium and large commercial transport aircraft, making them particularly suited to distributed thrust system architectures and blended-wing-body aircraft designs.
电动轮辋驱动风扇的转矩-转速特性及其与小型传统风扇喷气发动机的推力比较
本文的目的是提供一种估计用于飞机推进的单级和双级电动轮辋驱动风扇的扭矩与速度特性的方法。该方法基于著名的欧拉方程,该方程考虑了空气通过风扇转子时角动量的变化。提供了有用和通用的比功参数(Y)的推导,以及它与风扇功系数($\psi$)的重要关系,并解释了风扇流量系数($\emptyset$)在确定通过RDF设备的空气流量方面的相关性。推导了风机转矩与转速的关系式,并给出了进气直径为200mm的风机转矩的试样计算。电气性能图,由电机cad LAB软件生成,包括说明一个适当优化RDF电机电路的例子。最后,对理论双级RDF发动机与市售风扇喷气发动机的推力性能进行了比较。结果表明,双级RDF技术可以为高速中大型商用运输机提供可行的动力解决方案,使其特别适合分布式推力系统架构和混合翼身飞机设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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