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Operating cost based cruise speed reduction for ground delay programs: Effect of scope length

机译:基于运营成本的地面延误计划的巡航速度降低:范围长度的影响

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摘要

Ground delay programs typically involve the delaying of aircraft that are departing from origin airports within some set distance of a capacity constrained destination airport. Long haul flights are not delayed in this way. A trade-off exists when fixing the distance parameter: increasing the 'scope' distributes delay among more aircraft and may reduce airborne holding delay but could also result in unnecessary delay in the (frequently observed) case of early program cancellation. In order to overcome part of this drawback, a fuel based cruise speed reduction strategy aimed at realizing airborne delay, was suggested by the authors in previous publications. By flying slower, at a specific speed, aircraft that are airborne can recover part of their initially assigned delay without incurring extra fuel consumption if the ground delay program is canceled before planned. In this paper, the effect of the scope of the program is assessed when applying this strategy. A case study is presented by analyzing all the ground delay programs that took place at San Francisco, Newark Liberty and Chicago O'Hare International airports during one year. Results show that by the introduction of this technique it is possible to define larger scopes, partially reducing the amount of unrecovered delay. (C) 2014 Elsevier Ltd. All rights reserved.
机译:地面延误计划通常会涉及将飞机从始发机场出发的航班延误,飞机的飞行时间应在容量限制的目标机场的某个设定距离内。长途飞行不会以此方式延误。固定距离参数时需要权衡:增加“范围”会在更多飞机上分配延迟,并且可以减少空中保持延迟,但在(经常观察到的)提前取消计划的情况下,也可能导致不必要的延迟。为了克服这一缺点的一部分,作者在以前的出版物中提出了一种旨在实现空中延误的基于燃料的巡航速度降低策略。如果在计划之前取消了地面延误计划,则以特定速度较慢地飞行时,空降飞机可以恢复其最初分配的延误的一部分,而不会产生额外的燃油消耗。在本文中,应用此策略时将评估程序范围的效果。通过分析在一年中在旧金山,纽瓦克自由机场和芝加哥奥黑尔国际机场发生的所有地面延误计划,提出了一个案例研究。结果表明,通过引入此技术,可以定义更大的范围,从而部分减少未恢复的延迟量。 (C)2014 Elsevier Ltd.保留所有权利。

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