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Analysis of Low-Speed Stall Aerodynamics of a Swept Wing with Laminar-Flow Glove

机译:层流式手套扫掠机翼的低速失速空气动力学分析

摘要

Reynolds-Averaged Navier-Stokes (RANS) computational fluid dynamics (CFD) analysis was conducted to study the low-speed stall aerodynamics of a GIII aircraft s swept wing modified with a laminar-flow wing glove. The stall aerodynamics of the gloved wing were analyzed and compared with the unmodified wing for the flight speed of 120 knots and altitude of 2300 ft above mean sea level (MSL). The Star-CCM+ polyhedral unstructured CFD code was first validated for wing stall predictions using the wing-body geometry from the First AIAA CFD High-Lift Prediction Workshop. It was found that the Star-CCM+ CFD code can produce results that are within the scattering of other CFD codes considered at the workshop. In particular, the Star-CCM+ CFD code was able to predict wing stall for the AIAA wing-body geometry to within 1 degree of angle of attack as compared to benchmark wind-tunnel test data. Current results show that the addition of the laminar-flow wing glove causes the gloved wing to stall much earlier than the unmodified wing. Furthermore, the gloved wing has a different stall characteristic than the clean wing, with no sharp lift drop-off at stall for the gloved wing.
机译:进行了雷诺平均Navier-Stokes(RANS)计算流体动力学(CFD)分析,以研究GIII飞机后掠翼的层流机翼手套改装后的低速失速空气动力学。分析了带手套的机翼的失速空气动力学,并将其与未修饰的机翼进行比较,得出飞行速度为120节,飞行高度高于平均海平面(MSL)2300英尺。 Star-CCM +多面体非结构化CFD代码首先使用第一AIAA CFD高空预测研讨会的机翼几何体进行了机翼失速预测验证。结果发现,Star-CCM + CFD代码可以产生的结果在车间考虑的其他CFD代码的范围内。特别是,与基准风洞测试数据相比,Star-CCM + CFD代码能够将AIAA机体几何形状的机翼失速预测在1个攻角内。目前的结果表明,层流机翼手套的添加使带手套的机翼比未改装的机翼更早失速。此外,带手套的机翼具有与清洁机翼不同的失速特性,对于带手套的机翼在失速时没有急剧的升力下降。

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    Bui Trong;

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  • 年度 2013
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