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Fuel Burn and Emissions Reduction Potential of Low Power/Low Drag Approaches

机译:低功率/低阻力方法的燃料燃烧和减少排放的潜力

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摘要

Changing aircraft operational procedures is one strategy that can be used to reduce fuel burn and mitigate environmental impacts of aviation in relatively short timeframes with existing aircraft types. This study quantifies the fuel burn and emissions reduction potential of delayed deceleration approaches, where the aircraft is kept fast and in clean aerodynamic configuration for as long as possible during the approach phase of flight. This reduces the drag and thrust requirements and these procedures are therefore called Low Power/Low Drag approaches. Operational data is used to characterize approach profiles, together with their fuel burn and emissions properties correlated to airspeed and configuration for a selection of aircraft types. Aircraft that were observed to decelerate and configure flaps later in the approach had 30-40% lower fuel burn and carbon dioxide emissions below 10,000 ft compared to those that did not. Estimates of US system-wide fuel burn and emissions reduction potential from Low Power/Low Drag approaches are provided: if only 1% of the total operations used these approaches, savings across all operators would amount to 2.9 million US gallons ($5.8-11.6 million at $2-4/US gallon) of fuel and 28,000 metric tons of carbon dioxide emissions per year. A discussion is provided on the implementation barriers which need to be addressed if benefits are to be realized.
机译:改变飞机运行程序是一种策略,可用于在现有飞机类型相对较短的时间内减少燃油消耗并减轻航空对环境的影响。这项研究量化了延迟减速进近的燃油消耗和减少排放的潜力,在进近飞行阶段,飞机会保持尽可能快的速度并保持清洁的空气动力学配置。这减少了阻力和推力要求,因此这些过程称为“低功率/低阻力方法”。运营数据用于表征进近剖面,以及与空速和配置相关的燃油消耗和排放特性,以供选择飞机类​​型。与未采用该方法的飞机相比,在该方法中后来被观察到减速并配置襟翼的飞机,其燃油消耗和10,000 ft以下的二氧化碳排放降低了30-40%。提供了低功率/低阻力方法对美国全系统燃油燃烧和减排潜力的估计:如果仅使用这些方法的总运营量的1%,则所有运营商的节省额将达到290万加仑(5.8-1160万美元)每年2-4美元/加仑)的燃料和28,000吨的二氧化碳排放量。提供了有关实现障碍的讨论,如果要实现收益,就必须解决这些障碍。

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