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Fuel Efficiency Benefits and Implementation Consideration for Cruise Altitude and Speed Optimization in the National Airspace System

机译:国家空域系统巡航高度和速度优化的燃油效率优势和实施考虑

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摘要

This study examines the potential fuel burn benefits of altitude and speed optimization in the cruise phase of flight for domestic airlines in the United States. Airlines can achieve cost reductions and reduce environmental impact by making small modifications to the cruise phase operating condition. The efficiency of the National Airspace System can be improved with coordination between air traffic controllers, pilots, and airline dispatchers. This study builds off of prior work in this area to establish best-case benefits assuming full implementation of fuel-optimal cruise altitudes and speeds.In order to achieve these objectives, a cruise-phase fuel burn estimator was developed using publicly-available radar tracks and weather data. This estimator was used to examine 217,000 flights from 2012. Maximum benefits from altitude optimization (holding speed constant) were found to be on the order 1.96%. The majority of potential altitude benefits can be achieved using step climb optimization, with only marginal gain from cruise climb implementation. The maximum benefits for speed optimization (holding altitude constant) were found to be 1.94% with an average flight time increase of 3.5 minutes per flight. Simultaneous altitude and speed optimization yielded a potential cruise fuel burn reduction of 3.71%. In practice, operational considerations and barriers to implementation limit likely system fuel reduction to lower levels. High-benefit operations within the NAS are identified and potential implementation considerations are discussed.
机译:这项研究调查了美国国内航空公司在飞行巡航阶段,高度和速度优化可能带来的燃油消耗效益。航空公司可以通过对巡航阶段的运行条件进行少量修改来降低成本并减少对环境的影响。空中交通管制员,飞行员和航空公司调度员之间的协调可以提高国家空域系统的效率。这项研究是在此领域的先前工作基础上进行的,假设完全实现了燃油最佳巡航高度和速度,则可以建立最佳案例效益。和天气数据。该估算器用于检查2012年以来的217,000个航班。高度优化(保持速度恒定)带来的最大收益约为1.96%。使用爬升优化可以实现大多数潜在的海拔优势,而巡航爬升的实施仅带来少量收益。发现速度优化(保持高度恒定)的最大收益为1.94%,平均每次飞行时间增加3.5分钟。同时进行高度和速度优化可以使巡航燃料的潜在燃烧减少3.71%。在实践中,操作上的考虑和实施的障碍将系统燃料的减少限制在较低水平。确定了NAS内的高收益运营,并讨论了潜在的实施注意事项。

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