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A Bad Moon Rising: The Puzzling Inaccuracies of the Work-Energy Theorem in Aircraft Performance

机译:坏月亮升起:飞机性能中的功能定理令人费解

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This paper summarizes problems that occur when engineers use the classic work-energy-theorem equation, climb gradient equals thrust minus drag over weight ( (T-D)/W), to predict climb performance. Over years of work in industry and academia, I noted that aircraft modeled using a rigorous set of equations of motion would climb at a different rate than otherwise predicted by the classic equation. In this paper, the reader can compare and contrast actual against work-energy-theorem predicted climb performance for a variety of aircraft configurations. As the thrust loading (T/W) grows stronger, the work-energy-theorem increasingly underpredicts the actual climb rate. Other factors like lift-curve-slope (dCL/da), climb speed, induced drag and zero-lift-drag impact actual climb performance. Because these factors are not negligible, the discriminating engineer should always solve the full equations of motion to predict even unaccelerated climb performance at modest flight path angles.
机译:本文总结了工程师使用经典的功能定理方程(爬升梯度等于推力减去重量的拖曳阻力(T-D)/ W)来预测爬升性能时出现的问题。在工业界和学术界的多年工作中,我注意到,使用一组严格的运动方程式建模的飞机将以与经典方程式所预测的不同的速率爬升。在本文中,读者可以将各种飞机配置的实际能量与工作能量定理预测的爬升性能进行比较和对比。随着推力载荷(T / W)的增大,功能定理越来越无法预测实际的爬升率。诸如升力曲线斜率(dCL / da),爬升速度,感应阻力和零升力-阻力等其他因素也会影响实际的爬升性能。由于这些因素是不可忽略的,因此有区别的工程师应始终求解完整的运动方程,以预测在适度的飞行路径角度下什至没有加速的爬升性能。

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