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Stall Behavior of the HINVA KH-A320-HA Highlift Model in ETW

机译:静脉KH-A320-HA Highlift模型的摊位行为

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The objective of the joint research project HINVA (High-Lift In-Flight Validation) funded by the German Federal Ministry of Economics and Technology within the fourth Aeronautical Research Program LuFo IV is to significantly enhance the accuracy and reliability of both numerical and experimental simulation methods with respect to the aerodynamic performance prediction of civil transport aircraft with deployed high-lift devices. To achieve this goal, the most advanced computational fluid dynamics (CFD) and wind tunnel simulation methods currently in industrial use are to be validated against flight test data. DLR's Airbus A320-200 Advanced Technology Research Aircraft (ATRA) serves as a common configurative basis for the three fields of methodology 1) flight test, 2) high Reynolds-number testing in the European Transonic Windtunnel (ETW), and 3) numerical simulation using DLR's TAU code. Within the test campaign in ETW Reynolds-number scaling effects on maximum lift of the landing configuration were assessed as well as the influence of small geometric features such as an outboard nacelle strake and an enlarged slathorn. To analyze the aerodynamic effects in detail, integral force measurements were accompanied with surface pressure measurements, aerial Particle Image Velocimetry measurements and transition measurements using temperature sensitive paint. Measurements of the distribution of twist and bending of the model at different levels of total pressure finally allowed to achieve a very high geometric similarity to the flight-test reference on the one hand and on the other hand an assessment of the influence of deviations from the targeted distribution on maximum lift and the associated angle of attack.
机译:由德国联邦经济和技术资助的联合研究项目Hinva(高升降机验证)的目标是,第四航空研究计划Lufo IV是显着提高数值和实验模拟方法的准确性和可靠性关于部署高升力设备的民用运输机的空气动力学性能预测。为实现这一目标,目前在工业用途中最先进的计算流体动力学(CFD)和风洞仿真方法将验证在飞行测试数据中。 DLR的空中客车A320-200先进的技术研究飞机(ATRA)为方法1)飞行试验的三个领域的常见配置基础,2)欧洲跨音绕风隧洞(ETW)的高雷诺数测试,以及3)数值模拟使用DLR的TAU代码。在ETW Reynolds-Number缩放效果中的测试活动内,评估了降落配置的最大升力以及小几物体诸如舷外机舱阵风和放大的锯齿的影响。为了详细分析空气动力学效果,使用温度敏感涂料伴随着整体力测量,伴随着表面压力测量,空中粒子图像速度测量和过渡测量。在不同水平的总压力水平上的扭曲和弯曲的分布的测量最终允许在一方面达到飞行试验参考的非常高的几何相似性,另一方面是对与偏差的影响的评估最大升力和相关攻角的有针对性的分布。

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