Aerodynamic analysis of flapping-pitching flat plates

Wisdom D. Omoware, A. Maheri, U. Azimov
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引用次数: 2

Abstract

Modern wind energy industry is highly under the influence of the advances in aerospace and has borrowed and adopted many new and innovative concepts from that industry. With the aim of exploring potential benefits of flapping blades in wind turbines, this paper presents the preliminary results of the numerical simulation of a flapping-pitching rectangular flat plate in a uniform air flow. Various combinations of flapping amplitude, flapping frequency and pitching amplitude are analysed and their effect on the instantaneous and maximum lift coefficient is presented. The change in the flapping frequency and amplitude were shown to have considerable effect on the lift coefficient. It can be deduced from the results that the lift coefficient is influenced by the flapping frequency and flapping amplitude combination. For the size and geometry presented in this study, the lift coefficient is most affected by the flapping amplitude when compared to the flapping frequency. The results indicate that the pitching amplitude initially enhances the lift coefficient. However, excessive pitching amplitude results in low lift coefficient.
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扑俯仰平板的气动分析
现代风能产业深受航空航天技术进步的影响,借鉴和采用了许多新的创新理念。为了探索扑翼叶片在风力机中的潜在效益,本文给出了均匀气流下扑翼-俯仰矩形平板的初步数值模拟结果。分析了摆振幅度、摆振频率和俯仰幅度的不同组合对瞬时升力系数和最大升力系数的影响。振荡频率和振幅的变化对升力系数有相当大的影响。结果表明,升力系数受扑动频率和幅值组合的影响。对于本研究的尺寸和几何形状,与扑动频率相比,升力系数受扑动幅度的影响最大。结果表明,俯仰幅度对升力系数有初步的提高作用。然而,过大的俯仰幅度导致了较低的升力系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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