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首页> 外文期刊>Journal of The institution of engineers (India), Series C >Aerodynamic Analysis of Flexible Flapping Wing Micro Aerial Vehicle Using Quasi-Steady Approach
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Aerodynamic Analysis of Flexible Flapping Wing Micro Aerial Vehicle Using Quasi-Steady Approach

机译:柔性扑翼微型飞行器气动特性的准稳态分析

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In recent times flexible flapping-wing aerodynamics has generated a great deal of interest and is the topic of contemporary research because of its potential application in micro aerial vehicles (MAVs). The prominent features of MAVs include low Reynolds Number, changing the camber of flapping wings, development of related mechanisms, study of the suitability airfoil shape selection and other parameters. Generally, low Reynolds Number is similar to that of an insect or a bird (10~3-10~5). The primary goal of this project work is to perform CFD analysis on flexible flapping wing MAVs in order to estimate the lift and drag by using engineering methods such as quasi-steady approach. From the wind tunnel data, 3-D deformation is obtained. For CFD analysis, two types of quasi-steady methods are considered. The first method is to slice the wing section chord-wise and span wise at multiple regions, frame by frame, and obtain the 2-D corrugated camber section for each frame. This 2-D corrugated camber is analysed using CFD techniques and all the individual 2-D corrugated camber results are summed up frame by frame, to obtain the total lift and drag for one wing beat. The second method is to consider the 3D wing in entirety and perform the CFD analysis to obtain the lift and drag for five wing beat.
机译:近年来,柔性襟翼空气动力学引起了极大的兴趣,并且由于其在微型飞行器(MAV)中的潜在应用而成为当代研究的主题。 MAV的突出特征包括低雷诺数,改变襟翼的外倾角,发展相关机制,研究适合的机翼形状选择和其他参数。通常,低雷诺数类似于昆虫或鸟类(10〜3-10〜5)。该项目工作的主要目的是对挠性襟翼MAV进行CFD分析,以便通过准稳态方法等工程方法估算升力和阻力。从风洞数据中可以获得3-D变形。对于CFD分析,考虑了两种类型的准稳态方法。第一种方法是在多个区域按翼弦方向和翼展方向对翼部进行切片,一帧一帧地获取,然后为每一帧获取二维波纹外倾部分。使用CFD技术分析此2-D波纹外倾角,并逐帧汇总所有单个2-D波纹外倾角结果,以获得一个机翼节拍的总升力和阻力。第二种方法是全面考虑3D机翼并执行CFD分析,以获得五机翼节拍的升力和阻力。

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