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Benefits Assessment for Tactical Runway Configuration Management Tool

机译:战术跑道配置管理工具的收益评估

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The Tactical Runway Configuration Management (TRCM) software tool was developed to provide air traffic flow managers and supervisors with recommendations for airport configuration changes and runway usage. The objective for this study is to conduct a benefits assessment at Memphis (MEM), Dallas Fort-Worth (DFW) and New York's John F. Kennedy (JFK) airports using the TRCM tool. Results from simulations using the TRCM-generated runway configuration schedule are compared with results using historical schedules. For the 12 days of data used in this analysis, the transit time (arrival fix to spot on airport movement area for arrivals, or spot to departure fix for departures) for MEM departures is greater (7%) than for arrivals (3%); for JFK, there is a benefit for arrivals (9%) but not for departures (-2%); for DFW, arrivals show a slight benefit (1%), but this is offset by departures (-2%). Departure queue length benefits show fewer aircraft in queue for JFK (29%) and MEM (11%), but not for DFW (-13%). Fuel savings for surface operations at MEM are seen for both arrivals and departures. At JFK there are fuel savings for arrivals, but these are offset by increased fuel use for departures. In this study, no surface fuel benefits resulted for DFW. Results suggest that the TRCM algorithm requires modifications for complex surface traffic operations that can cause taxi delays. For all three airports, the average number of changes in flow direction (runway configuration) recommended by TRCM was many times greater than the historical data; TRCM would need to be adapted to a particular airport's needs, to limit the number of changes to acceptable levels. The results from this analysis indicate the TRCM tool can provide benefits at some high-capacity airports. The magnitude of these benefits depends on many airport-specific factors and would require adaptation of the TRCM tool; a detailed assessment is needed prior to determining suitability for a particular airport.
机译:开发了战术跑道配置管理(TRCM)软件工具,以向空中交通流量管理者和主管提供有关机场配置更改和跑道使用的建议。这项研究的目的是使用TRCM工具在孟菲斯(MEM),达拉斯沃斯堡(DFW)和纽约的约翰·肯尼迪(JFK)机场进行收益评估。将使用TRCM生成的跑道配置计划的模拟结果与使用历史计划的结果进行比较。在此分析中使用的12天数据中,MEM出发的渡越时间(到达目的地的到达地点为机场移动区域的即位点定点,或针对出发点的到达点为定点)比到达时间(3%)长(7%) ;对于肯尼迪国际机场而言,抵港航班的旅客有9%的收益,而出发航班旅客则有-2%的收益;对于DFW而言,到港人数会显示出一点好处(1%),但是这会被出发点(-2%)所抵消。出发队列长度的好处表明,肯尼迪(29%)和MEM(11%)的飞机排队较少,但DFW(-13%)的飞机却较少。在到达和离开时都可以看到MEM地面操作节省的燃油。在肯尼迪国际机场,可以节省抵达的燃油,但是这些费用被出发时增加的燃油消耗所抵消。在这项研究中,DFW没有产生表面燃料的好处。结果表明,TRCM算法需要对复杂的地面交通操作进行修改,这可能会导致出租车延误。对于这三个机场,TRCM建议的平均流向变化(跑道配置)数量是历史数据的许多倍; TRCM将需要适应特定机场的需求,以将更改数量限制在可接受的水平。该分析的结果表明,TRCM工具可以在某些大容量机场中提供收益。这些收益的大小取决于许多特定于机场的因素,因此需要对TRCM工具进行调整;在确定对特定机场的适合性之前,需要进行详细的评估。

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