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Conceptual model for runway change procedure in Guarulhos International Airport based on SODAR data

机译:基于SODAR数据的瓜鲁柳斯国际机场跑道变更程序的概念模型

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In this work, we qualify and quantify the advantages of using SODAR (sonic detection and ranging) from current scenarios of Aeronautical Meteorology, with the goal of establishing a conceptual model for runway change procedures at Guarulhos International Airport (Sao Paulo, Brazil). The methods consist of analysing data from the Department of Airspace Control (DECEA) and Brazilian Airport Infrastructure (Infraero) about the reports of runway changes in Guarulhos in addition to SODAR data from September 2011 and December 2013. It is noted that in 234 analysed cases of runway change, there were significant periods of weak-intensity wind on the surface as well as the anticipated modification wind direction at altitude detected by sonic detection and ranging (SODAR), indicating future changes in levels closer to the surface. By examining the intersection of both scenarios, it is possible to observe that there is enough time for the air traffic controller to anticipate the needed runway change while minimising the impact on the aircraft flow, and this period has an average duration of 1 hour and 24 minutes. This confirms that the preliminary analysis of the information provided by SODAR can help predict alterations in wind direction, requiring redirection and bringing advantages in economic and security teens.
机译:在这项工作中,我们对当前航空气象中使用SODAR(声波检测和测距)的优势进行了评估和量化,目的是在瓜鲁柳斯国际机场(巴西圣保罗)建立跑道变更程序的概念模型。这些方法包括分析2011年9月和2013年12月的SODAR数据以及来自空域控制部(DECEA)和巴西机场基础设施(Infraero)的有关瓜鲁柳斯跑道变化的报告的数据。要注意的是,在234例分析案例中在跑道变化方面,通过声波探测和测距(SODAR)检测到的地面上存在明显的弱风周期以及预期的变高风向,这表明未来更接近地面的水平变化。通过检查这两种情况的交集,可以观察到空中交通管制员有足够的时间来预测所需的跑道变化,同时将对飞机流量的影响降到最低,并且此期间的平均持续时间为1小时24分钟。这证实了对SODAR提供的信息进行的初步分析可以帮助预测风向的变化,需要重新定向并为经济和安全领域的青少年带来好处。

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