全天运行多跑道机场入口滑行道运行模式仿真研究

X. Niu, Feng Xiao, Shenmin Zhang, Yin Zhang, Ran Lin
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引用次数: 0

摘要

改变跑道和滑行道的几何形状是提高机场运行效率的有效措施。增加与跑道相连的平行入口滑行道(ET)的数量是节省航班等待时间的一般方法,但减少了跑道的实际起飞长度。为了克服这一问题,在跑道末端设置垂直ET的基础上,增加了额外的倾斜ET。然而,额外的倾斜ET对机场运行效率的影响是悬垂的。在这项研究中,全天multi-runway机场建成运行的物理模型研究的影响等更多倾向于机场运营效率相比之下的跑道与垂直ET和额外的倾斜等。发现航班延误率从17%降低到13.8%的跑道和额外的倾斜等。最大的航班延误和延误航班的数量减少,而跑道与额外的倾斜等。空气延迟和滑行延迟分别是造成抵港航班和离港航班延误的主要原因。增加倾斜ET后,减少到达航班的滑行延误。附加倾斜ET的运行对跑道容量影响不大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation study on the entrance taxiway operation mode for all day run multi-runway airport
Changing the configuration of the runway and taxiway geometry is an effective measure to improve the airport operation efficiency. Increasing the number of parallel Entrance Taxiways (ET) which is connected to the runway is a general way of saving flights waiting times, but the actual take off length for runway is reduced. To overcome this problem, the new operation mode was applied by increasing the additional inclined ET besides vertical ET which were set at the end of the runway. However, the effect of the additional inclined ET to the airport operation efficiency is hang over. In this study, the physical model of all-day run multi-runway airport was built to study the influence of the additional inclined ET to airport operation efficiency by comparison of runway with vertical ET and with additional inclined ET. It is found that flight delay rate is reduced from 17% to 13.8% for the runway with additional inclined ET. The time of maximum flight delay and the number of delay flights are reduced while the runway is connected to the additional inclined ET. Air delay and taxiing delay are the major reason for the ground delay for arrival flights and departure flights, respectively. Taxiing delay for arrival flights is reduced while the additional inclined ET is operated. Runway capacity has little change by the operation of the additional inclined ET.
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