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首页> 外文期刊>The Aeronautical Journal >Effect of aspect ratio variation on subsonic aerodynamics of cascade type grid fin at different gap-to-chord ratios
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Effect of aspect ratio variation on subsonic aerodynamics of cascade type grid fin at different gap-to-chord ratios

机译:梯度比变化对级联型网格鳍片亚源间气动力学的影响不同差距对弦比

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摘要

This paper dwells upon investigating the effect of aspect ratio (AR) variation on the aerodynamic performance of unconventional control surfaces called grid fins by virtue of a series of subsonic experiments on a simplified grid fin variant called the cascade fin. Wind tunnel tests were performed for different AR (variable span) grid fins. The same had been investigated for different gap-to-chord ratio (g/c) variants. Results demonstrated a tangible increase in the aerodynamic efficiency as well as stall angle reduction for higher AR. Moreover, higher AR leads to increased pitching moment, which emphasizes elevated hinge moment requirements. The study ensued the presence of higher deviation between the low AR fins, that is AR compared to the pertinent deviations between the high AR fins, that is ARgeq2 . The effect associated with these variations was termed as span effect in this paper. It was established that, the deviations arising due to this phenomena were lesser for higher g/c and higher AR. The analysis of AR variation for different g/c presented a limiting value of AR reduction for stall performance enhancement. Thus, optimised selection of the g/c and AR values can lead to enhanced aerodynamic efficiency alongside an improved stalling characteristic.
机译:本文在研究纵横比(AR)变化对GRID翅片的纵横控制表面的空气动力学性能的影响时,凭借一系列称为级联鳍片的简化网格翅片变体的余弦实验,依据纵横比(AR)变化。对不同的AR(可变跨度)网格翅片进行风隧道试验。已经研究了不同的间隙至弦比(G / C)变体的研究。结果表明,空气动力学效率的变形和更高的AR的失速角度降低。此外,更高的AR导致俯仰力矩增加,这强调了铰链时刻要求的升高。该研究随着高AR翅片之间的相关偏差而言,在低AR翅片之间存在更高的偏差,即AR GEQ2。本文中的跨度效果称为与这些变化相关的效果。建立,由于这种现象引起的偏差对于更高的G / C和更高的AR较小。不同G / C的AR变化分析呈现了停滞性能增强的AR降低的限制值。因此,优化的G / C和AR值选择可以提高空气动力学效率,以及改进的停滞特性。

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