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Facing the Challenges of Supercooled Large Droplet Icing: Results of a Flight Test Based Joint DLR-Embraer Research Project

机译:面对超冷却大液滴结冰的挑战:基于飞行测试的联合性DLR-Protaer研究项目的结果

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Today’s airplanes are well equipped to cope with most common icing conditions. However, some atmospheric conditions consisting of supercooled large droplets (SLD) have been identified as cause of severe accidents over the last decades as existing countermeasures even on modern aircraft are not necessarily effective against SLD-ice. In 2014, the new Appendix O to the certification regulations (FAR Part 25 / CS-25) had been issued to guarantee the safe operation of future airplane when encountering SLD conditions. But as the SLD topic is quite new for the majority of aircraft manufacturers and research institutes in a same way, DLR (German Aerospace Center) and Embraer established a joint research cooperation in 2012 to obtain a better understanding of the distinct influences of SLD-ice shapes on aircraft characteristics and to evaluate proper ways for future airplane certification under App. O. Furthermore, one additional scientific goal of the cooperation was to develop and test new tools for the in-flight monitoring of aircraft characteristics as well as the on-board identification of simulation models. During the 4 years of the project, a distinct way to better understand icing-induced degradations on a specific aircraft was followed: first, data of the clean aircraft was gathered in flight test to identify a dynamic simulation model as base for the subsequent evaluations. Second, data of test flights with artificial App. C ice configurations were analyzed and used for the development of distinct modifications of the base aircraft simulation model; a first evaluation of the icing-induced changes of aircraft characteristics was conducted. Third, after the generation of SLD-ice shapes, wind tunnel testing and flight clearance, a second flight test campaign with these artificial SLD-ice shapes delivered the data for an additional model modification and identification. The results of the final data and model evaluation provide the observable degradation of SLD-ice in flight, which is well comparable to results obtained from the App. C ice configurations.
机译:今天的飞机都装备精良,以应付最常见的结冰情况。然而,由过冷大水滴(SLD)的一些大气条件已被确定为在过去的几十年甚至上现代飞机现有对策严重事故的原因不反对SLD-冰不一定有效。在2014年,新的附录O到安规认证(FAR第25 / CS-25)已经印发遇到SLD条件时,保证未来飞机的安全运行。但由于SLD话题是对于在相同的方式大多数飞机制造商和科研院所很新,DLR(德国航空航天中心)和巴西航空工业公司成立于2012年联合研究合作,以更好地了解SLD-冰的不同影响形状上飞机的特性,并评价为App下未来飞机认证正确方法。 O.此外,合作的一个额外的科学目标是开发和测试新的工具,用于在飞行监测飞机的特性以及车载识别的仿真模型。在4年的项目,一个独特的方式,以更好地了解一个特定的飞机结冰引起的降级之后都:首先,清洁飞机的数据聚集在飞行试验,以确定一个动态仿真模型为基础进行后续评估。二,人工应用飞行试验数据。 Ç冰配置进行了分析和用于基础飞行器仿真模型的不同变型的发展;的飞机特性的结冰引起的变化的第一评价进行。第三,SLD-冰形状,风洞试验和飞行间隙,与这些人工SLD-冰形状的第二飞行测试活动的生成后传送的数据额外模型修改和识别。最终的数据和模型评价的结果提供SLD-冰的在飞行中可观察到的降解,这是很好比得上从App获得的结果。 Ç冰配置。

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