中国安全科学学报 ›› 2021, Vol. 31 ›› Issue (11): 78-84.doi: 10.16265/j.cnki.issn 1003-3033.2021.11.011

• 安全工程技术 • 上一篇    下一篇

飞机高空尾涡安全评估模型*

魏志强 教授, 李晓晨   

  1. 中国民航大学 空中交通管理学院,天津 300300
  • 收稿日期:2021-08-10 修回日期:2021-10-02 出版日期:2021-11-28 发布日期:2022-05-28
  • 作者简介:魏志强 (1979—),男,河南渑池人,硕士,教授,主要从事飞机尾流间隔与安全、飞机性能与安全等方面的研究。E-mail:weizhiqia@sina.com。
  • 基金资助:
    国家自然科学基金资助(U1533116, U1633125); 飞机专项科研项目(MJ-2018-Y-60);2020年天津市研究生科研创新项目(2020YJSS089)。

Safety assessment model of aircraft wake vortex in upper airspace

WEI Zhiqiang, LI Xiaochen   

  1. School of Air Traffic Management, Civil Aviation University of China, Tianjin 300300, China
  • Received:2021-08-10 Revised:2021-10-02 Online:2021-11-28 Published:2022-05-28

摘要: 为确定高空尾流间隔的安全性,首先,基于尾涡流场快速仿真计算方法建立尾涡安全评估模型,以诱导滚转力矩系数反映遭遇尾涡严重度;然后,分析高空尾涡消散特性及尾涡流场安全性,确定高空飞行状态下不同类别机型组合的尾流间隔可接受安全水平;最后,计算分析不同转弯坡度角及后机飞行速度对高空飞机遭遇尾涡严重程度的影响。结果表明:与中低空相比,高空尾涡的初始强度大,消散速率快;飞行高度超过13 000 m后,飞机遭遇尾涡后的飞行安全性较差,现行尾流间隔后方一段距离处,仍有较大的尾涡强度;航路飞行时减小前机转弯坡度角或增加后机飞行速度可以提高飞机遭遇尾涡安全性。

关键词: 高空尾涡, 安全评估模型, 诱导滚转力矩系数, 尾流间隔, 危险区域

Abstract: In order to ensure safety of aircraft wake separation in high-altitude en-route phase, firstly, a safety assessment model of wake vortex was established by a fast simulation method, and induced rolling moment coefficients were selected to reflect severities of wake vortex encounters. Secondly, dissipation of wake vortices and safety of vortex flow fields at high altitudes were analyzed, and acceptable safety levels of wake separation for different aircraft combinations were obtained. Finally, influence of different bank angles and flight speeds on severities of high-altitude wake vortex encounters were calculated. The results show that compared with those in medium- and low-altitudes, wake vortices in high-altitudes have larger initial strengths and dissipation rates, and aircraft can be dangerous after flight altitudes exceed 13 000 m. At some distance behind current wake separation, there are still larger encounter strengths. Safety of vortex encounters can be improved by properly decreasing leading aircraft's bank angle and increasing following one's flying speed.

Key words: high-altitude aircraft wake vortex, safety assessment model, induced rolling moment coefficient, wake separation, hazard area

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