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首页> 外文期刊>Advances in Mechanical Engineering >Investigation of the Three-Dimensional Hinge Moment Characteristics Generated by the ONERA-M6 Wing with an Aileron
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Investigation of the Three-Dimensional Hinge Moment Characteristics Generated by the ONERA-M6 Wing with an Aileron

机译:带有副翼的ONERA-M6机翼产生的三维铰链矩特性的研究

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摘要

The hinge moment characteristics for ONERA-M6 wing with aileron configuration have been investigated numerically based on the different gaps and deflecting angles. The results show that the effects on the wing made by the deflecting aileron are notable. Comparing with the nonaileron case, the chordwise pressure coefficient distribution for the wing with aileron has shown the totally different trends. The small gap can force the air flow through and form the extremely strong spraying flow. It can directly destroy the previously formed leading edge vortex (LEV). Due to the presence of the positive deflecting angle, the trailing edge vortex (TEV) will begin to generate at the trailing edge of the aileron. The induced secondary LEV will be mixed with the developing TEVs and form the stronger TEVs at the downstream position. Comparing with the subsonic flow, the curve for the supersonic flow has shown a good linear. The corresponding hinge moments are also extremely sensitive to the changing angle of attack, and the slope of curves is also bigger than that of the subsonic flow. The bigger gap and deflecting angle can result in the curve of hinge moment bending upward at high angle of attack. The corresponding pressure cloud and streamlines have also been obtained computationally and analyzed in detail.
机译:基于不同的间隙和偏转角,对具有副翼配置的ONERA-M6机翼的铰链力矩特性进行了数值研究。结果表明,偏转副翼对机翼的影响显着。与无副翼相比,副翼机翼的弦向压力系数分布呈现出完全不同的趋势。小间隙可迫使空气流过并形成极强的喷雾流。它可以直接破坏先前形成的前缘涡流(LEV)。由于存在正偏转角,后缘涡流(TEV)将在副翼的后缘开始产生。诱导的次级LEV将与正在发展的TEV混合并在下游位置形成较强的TEV。与亚音速流相比,超音速流的曲线显示出良好的线性。相应的铰链力矩对迎角的变化也极为敏感,曲线的斜率也大于亚音速流的斜率。较大的间隙和偏斜角可能导致铰链力矩的曲线在大迎角下向上弯曲。相应的压力云和流线也已通过计算获得并进行了详细分析。

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