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Aerodynamic Comparison of Freezing Rain and Freezing Drizzle Conditions at the RTA Icing Wind Tunnel

机译:RTA结冰风洞冻结雨和冷冻毛毛调条件的空气动力学比较

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The simulation of icing conditions in icing wind tunnels (IWTs) is a significant element in the certification of aircraft components and offers unique possibilities for research purposes. Up to 2014 only the conditions defined in Appendix C of the EASA Certification Specification 25, respectively the FAA Code of Federal Regulations Title 14 Part 25 were used for the certification processes in IWTs. In addition, Appendix O was introduced in 2014 to cover the supercooled large droplet (SLD) icing conditions of freezing drizzle and freezing rain, which pose a potential risk for flight safety. The simulation of SLD icing in IWTs is, due to the different behavior of the large droplets, very challenging and not all required conditions have successfully been recreated yet. RTA Rail Tec Arsenal Fahrzeugversuchsanlage GmbH has focused on the simulation of in-flight icing conditions since 2012 and increased effort was put in the simulation of SLDs in recent years. During several research projects funded by the Austrian government it was shown that droplet size distributions for freezing drizzle MVD > 40 μm and freezing rain MVD > 40 μm can be recreated close to the requirements. With further improvements to the spray system, a cloud uniformity within certain tolerances also has been achieved over areas large enough to cover an unscaled wing section. In order to determine the influence of the different droplet sizes on the aerodynamic performance, a NACA0012 wing section with a wingspan of 1.8 m and a chord of 1 m was exposed to different icing clouds including Appendix C conditions, freezing drizzle and freezing rain. The aerodynamic lift coefficient was recorded over a large angle of attack range and the characteristics of the different ice accretions were analyzed and documented using high resolution 3D scan technology. Furthermore, the drag increase during the icing process was measured. It was the first time that an unscaled wing was iced under artificial freezing rain conditions.
机译:冰风隧道(IWTS)中的糖霜条件的仿真是飞机组件认证的重要因素,并为研究目的提供独特的可能性。截至2014年,仅在EASA认证规范25附录C中定义的条件,分别为联邦法规第14部分第25部分的FAA守则用于IWTS的认证过程。此外,附录o于2014年推出,覆盖过冷的大型液滴(SLD)冻结毛毛雨和冻雨的冰,这为飞行安全构成了潜在的风险。由于大液滴的不同行为,SLD在IWTS中的模拟,非常具有挑战性,并非所有所需的条件都已成功地重新创建。 RTA Rail Tec Arsenal Fahrzeugversuchsanlage GmbH专注于自2012年以来的飞行中锦冰条件的模拟,近年来逐步筹集了SLD的努力。在奥地利政府资助的几个研究项目期间,表明液滴尺寸用于冷冻毛毛仪MVD>40μm和冷冻雨MVD>40μm的分布可以重新创建接近要求。随着喷雾系统的进一步改进,在足够大的区域中也已经实现了某些公差内的云均匀性,以覆盖未乘积的机翼部分。为了确定不同液滴尺寸对空气动力学性能的影响,NaCa0012翼片与翅膀的翅膀为1.8米和1米的和弦,暴露于不同的糖霜,包括附录C条件,冷冻毛毛雨和冻结雨。在大量的攻角范围内记录了空气动力升力系数,并使用高分辨率3D扫描技术分析和记录了不同冰量身的特性。此外,测量糖化过程中的阻力增加。这是第一次在人为冻结雨条件下被冰冻了。

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