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Low-Noise Operating Mode for Propeller-Driven Electric Airplanes

机译:螺旋桨驱动电动飞机的低噪声运行模式

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Mechanical shaft power and shaft speed of reciprocating internal combustion engines are closely coupled. Maximum rated shaft power is typically produced at or near peak shaft speed. If a general aviation airplane equipped with a reciprocating engine and a variable-pitch propeller attempts a low-noise takeoff by reducing propeller tip speed, propeller power and thrust are reduced. Such takeoffs are not tolerated due to punishing performance effects, such as increased field lengths and poor climb rates. Certain electric motors, however, are able to deliver maximum shaft power over a wide range of shaft speed. Electric or hybrid-electric propeller-driven airplanes should be able to exploit this behavior. At low shaft speeds, high shaft power levels and high blade pitch angles could be combined to recover much of the thrust that would otherwise be lost. This could enable a low-noise operating mode for propellers normally designed for performance rather than for noise. The subject of this paper is an analytical investigation into low-noise takeoffs and steady overflights of a notional general aviation airplane equipped with a propeller driven by an electric motor.
机译:往复式内燃机的机械轴功率和轴速度紧密相关。最大额定轴功率通常在最大峰值转速或接近峰值转速时产生。如果配备有往复式发动机和可变螺距螺旋桨的通用飞机试图通过降低螺旋桨叶尖速度来实现低噪声起飞,则会降低螺旋桨的功率和推力。由于不利的性能影响,例如增加的场长和较差的爬升率,这种起飞是不能容忍的。但是,某些电动机能够在很大的轴转速范围内提供最大的轴功率。电动或混合电动螺旋桨驱动的飞机应该能够利用这种行为。在低轴转速下,可以将高轴功率水平和高叶片俯仰角结合起来,以恢复原本会损失的大部分推力。这可以为通常设计用于性能而非噪音的螺旋桨提供低噪声的运行模式。本文的主题是对配备有由电动机驱动的螺旋桨的通用飞机的低噪声起飞和稳定飞越的分析研究。

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