Numerical Analysis of Reduced Frequency on Flapping Tandem Foils

Michael Joevian, Sheila Tobing, Rainer Louis Surjadi, Kenneth Timothy, Adrianus Indrat Aria
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Abstract

Numerous investigations on flapping wing motion have been conducted over the last two decades. The study of flapping wing motion was inspired by the possibility of using it to design and develop micro air vehicles. The application of flapping wing motion in power generation systems has attracted attention recently because of the growing need to replace fossil fuels with renewable energy sources. This research examines the effect of pitch oscillation frequency on the propulsion of a tandem flapping foils power generation system. Herein, the 2D models of tandem foils pitching with reduced frequencies f* of 0.04, 0.14, and 0.18 are used for parametric investigation. The results reveal that f* = 0.18 offers the optimal lift force among other reduced frequencies and 2.91% lower drag force compared to f* = 0.14.
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扑动串联箔的降频数值分析
在过去的二十年里,对扑翼运动进行了大量的研究。扑翼运动的研究灵感来自于利用它来设计和开发微型飞行器的可能性。近年来,随着可再生能源替代化石燃料的需求日益增长,扑翼运动在发电系统中的应用引起了人们的关注。本文研究了纵摇频率对串联式扑翼发电系统推进力的影响。本文采用降低频率f*为0.04、0.14和0.18的串联桨叶俯仰二维模型进行参数化研究。结果表明,当f* = 0.18时升力最佳,阻力比f* = 0.14低2.91%。
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