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Improving aircraft approach operations taking into account noise and fuel consumption

机译:考虑到噪音和燃油消耗,改善飞机进近操作

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While air transport brings very significant economic and social benefits to the cities and regions served by airports, aircraft noise is the single major cause of community opposition to airport operations, becoming a critical issue that affects the sustainability of future traffic growth. However, planning operations exclusively focusing on noise impact may result in an increase of fuel consumption or delays. This paper develops a suitable bi-objective model for landing aircraft, which finds a schedule that minimises noise impact, total fuel consumption and delays, under wake vortex separation and Constrained Position Shifting restrictions. The results of this model are compared with real operations in a major European airport to assess the potential level of improvements. By comparing with real data from Madrid-Barajas airport, the research shows potential improvements of up to 4.5% reduction of total fuel consumption (without increasing noise levels) only by modifying the sequence of arrivals, and up to 43% (without extra fuel consumption) of reduction in noise impact over the populations under study.
机译:航空运输为机场所服务的城市和地区带来了巨大的经济和社会效益,而飞机噪音却是社区反对机场运营的唯一主要原因,成为影响未来交通量增长可持续性的关键问题。但是,仅关注噪声影响的计划操作可能会导致燃料消耗增加或延误。本文开发了一种适用于降落飞机的双目标模型,该模型找到了一种计划,该计划在尾流涡流分离和位置偏移限制条件下,将噪声影响,总油耗和延误降至最低。该模型的结果与欧洲主要机场的实际运营进行了比较,以评估改进的潜在水平。通过与马德里-巴拉哈斯机场的真实数据进行比较,研究表明,仅通过更改到达顺序,就可以将总油耗降低多达4.5%(不增加噪音水平),并且可以将燃油消耗降低多达43%(不增加油耗)。 )降低对研究人群的噪声影响。

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