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Monitoring of Low-Level Wind Shear by Ground-based 3D Lidar for Increased Flight Safety Protection of Human Lives and Health

机译:地面3D激光雷达监视低空风切变以增强飞行安全保护生命和健康

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摘要

Low-level wind shear, i.e., sudden changes in wind speed and/or wind direction up to altitudes of 1600 ft (500 m) above-ground is a hazardous meteorological phenomenon in aviation. It may radically change the aerodynamic circumstances of the flight, particularly during landing and take-off and consequently, it may threaten human lives and the health of passengers, people at the airport and its surrounding areas. The Bratislava Airport, the site of this case study, is one of the few airports worldwide and the first in Central Europe that is equipped with a Doppler lidar system, a perspective remote sensing tool for detecting low-level wind shear. The main objective of this paper was to assess the weather events collected over a period of one year with the occurrences of low-level wind shear situations, such as vertical discontinuities in the wind field, frontal passages and gust fronts to increase the level of flight safety and protect human lives and health. The lidar data were processed by a computer algorithm with the main focus on potential wind shear alerts and microburst alerts, guided by the recommendations of the International Civil Aviation Organisation. In parallel, the selected weather events were analyzed by the nearby located meteorological radar to utilize the strengths of both approaches. Additionally, an evaluation of the lidar capability to scan dynamics of aerosol content above the airport is presented.
机译:低空风切变,即风速和/或风向突然发生变化,直到地上1600英尺(500 m)的高度都是航空中的危险气象现象。它可能会从根本上改变飞行的空气动力学状况,尤其是在着陆和起飞过程中,因此,它可能威胁到人类生命以及旅客,机场及其周围地区人员的健康。案例研究的地点布拉迪斯拉发机场是世界上为数不多的机场之一,也是中欧第一个配备多普勒激光雷达系统的机场,多普勒激光雷达系统是用于检测低水平风切变的透视遥感工具。本文的主要目的是评估在一年时间内收集的天气事件以及低水平风切变情况的发生,例如风场中的垂直不连续,额叶通道和阵风锋面以增加飞行水平安全,保护人类生命和健康。激光雷达数据由计算机算法处理,主要针对潜在的风切变警报和微暴警报,并遵循国际民航组织的建议。同时,选定的天气事件由附近的气象雷达进行分析,以利用两种方法的优势。此外,提出了对激光雷达扫描机场上方气溶胶含量动态的能力的评估。

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