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Analysis of potential wake vortex encounters at a major European airport

机译:分析欧洲主要机场的潜在尾流涡流

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摘要

PurposenIn this study, 12 potential wake vortex encounters that were reported at a major European airport have been investigated. Because almost all encounters occurred in ground proximity, most pilots conducted a go-around. The primary purpose of this study is to discriminate between incidents caused by wake vortices or rather by effects like wind shear or turbulence. Detailed knowledge of real-world encounter scenarios and identification of worst-case conditions during the final approach constitute highly relevant background information to assess the standard scenario used for the definition of revised wake turbulence separations.nDesign/methodology/approachnWake vortex predictions using the probabilistic two-phase wake vortex model (P2P) are used to investigate the incidents in detail by using data from the flight data recorder, meteorological instrumentation at the airport and numerical weather prediction.nFindingsnIn the best documented cases, the flight tracks through the vortices could be reconstructed in good agreement with wake vortex predictions and recorded aircraft reactions. Out of the eight plausible wake vortex encounters, five were characterized by weak crosswinds below 1.5 m/s combined with tailwinds. This meteorological situation appears favourable for encounters because, on the one hand, weak crosswinds may compensate the self-induced lateral propagation of the upwind vortex, such that it may hover over the runway directly in the flight path of the following aircraft. On the other hand, tailwinds limit the propagation of the so-called end effects caused by the breakdown of lift during touchdown.nPractical implicationsnThe installation of plate lines beyond the runway tails may improve safety by reducing the number of wake vortex encounters.nOriginality/valuenThe conducted investigations provide high originality and value for both science and operational application.
机译:目的在本研究中,已经调查了在欧洲主要机场上报告的12次潜在尾流涡流。因为几乎所有的遭遇都发生在地面附近,所以大多数飞行员都进行了复飞。这项研究的主要目的是区分由尾流涡流或由风切变或湍流等效应引起的事件。对现实世界中遇到的场景的详细了解以及在最终进近过程中最坏情况的识别构成了高度相关的背景信息,以评估用于定义修正后的尾流分离的标准场景。相序尾涡模型(P2P)用于通过使用飞行数据记录仪的数据,机场的气象仪器和数值天气预报来详细调查事件.n发现最好的情况下,可以重建通过涡的飞行轨迹与尾流涡流预测和记录的飞机反应高度吻合。在八次可能的尾流涡流中,五次的特征是低于1.5 m / s的侧风和逆风。这种气象情况似乎有利于相遇,因为一方面弱侧风可能会补偿上风涡流的自感应侧向传播,从而使其可能直接悬停在随后飞机的飞行路径上的跑道上。另一方面,顺风限制了降落过程中升力的破坏所引起的所谓末端效应的传播.n实际意义n在跑道尾部以外安装板线可以通过减少尾流涡流的接触次数来提高安全性。进行的调查为科学和运营应用提供了很高的独创性和价值。

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