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Vertical Grid Shifting Approach to the Development of Contrail Reduction Strategies with Sector Capacity Constraints

机译:垂直电网转换方法对剪辑减少策略开发的划分能力约束

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Many strategies have been proposed to reduce contrail formation in the United States airspace. One approach is to build three-dimensional weather grids and have aircraft cruising at different flight levels to avoid the persistent contrail potential area with the consideration to constraints like fuel burn, flight level capacity, and total operations of climbing/descending aircraft count at each level. However, there is no air traffic control regulation defining the flight level capacity and the total number of climbing/descending aircraft operations for each flight level. This paper presents a contrail reduction scheme, which considers the defined Monitor Alert Parameter value as the sector capacity constraint. Instead of shifting (changing cruise altitude among vertical grids) for all aircraft in a center, the new scheme only shifts certain aircraft out of those grids that are within the persistent contrail potential area. Compared with the level shifting scheme, the grid shifting has a finer resolution and brings the benefits of more contrail reduction and less fuel burn. Furthermore, the one-hour planning interval is changed to one-minute, which provides higher temporal resolution in solution results. Numerical experiments are performed to compare the new vertical grid shifting scheme with the previous level shifting scheme.
机译:已经提出了许多策略来减少美国空军集团的ContleaIl。一种方法是建立三维天气网格,并在不同的飞行水平上巡航飞机,以避免燃料燃烧,飞行水平容量等限制的持久碰撞潜在区域,以及每个级别的攀登/下降飞机计数的总操作。但是,没有空中交通管制调节,限定了每个飞行水平的飞行水平容量和攀登/下降飞机操作的总数。本文提出了一个Contrail减少方案,它将定义的监视器警报参数值视为扇区容量约束。除了中心的所有飞机中而不是移位(垂直栅格之间的巡航高度),新方案仅将某些飞机从持久碰撞潜在区域内的那些网格移出。与水平换档方案相比,电网移位具有更精细的分辨率,并带来更具抵果减少和燃料燃烧更少的益处。此外,一小时的规划间隔改变为一分钟,在解决方案结果中提供更高的时间分辨率。进行数值实验以将新的垂直电网换档方案与先前的级移位方案进行比较。

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