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Decomposed Lifting-Line Predictions and Optimization for Propulsive Efficiency of Flapping Wings

机译:扑翼的提升线分解预测及优化

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摘要

A decomposed Fourier series solution to Prandtl\u27s classical lifting-line theory is used to predict the lift, induced-thrust, and power coefficients developed by a flapping wing. A significant advantage of this quasi-steady analytical solution over commonly used numerical methods is the utility provided for optimizing wing flapping cycles. The analytical solution involves five time-dependent functions that could all be optimized to maximize thrust, propulsive efficiency, and/or other performance measures. Results show that by optimizing only two of these five functions, propulsive efficiencies exceeding 97% can be obtained. Results are presented for untwisted rectangular wings in pure plunging, rectangular wings with linear washout and the minimum-power washout magnitude, and rectangular wings with the minimum-power washout distribution and magnitude.
机译:普兰特经典升力线理论的分解傅立叶级数解用于预测襟翼产生的升力,诱导推力和功率系数。与通常使用的数值方法相比,这种准稳态分析解决方案的显着优势是可以优化机翼拍打周期。该分析解决方案涉及五个与时间有关的功能,这些功能都可以进行优化以最大化推力,推进效率和/或其他性能指标。结果表明,通过仅优化这五个功能中的两个功能,可以获得超过97%的推进效率。结果显示了纯扭转的非扭转矩形机翼,具有线性冲刷和最小功率冲刷量的矩形机翼,以及具有最小功率冲刷分布和量值的矩形机翼。

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