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Measurement and analysis of aircraft engine PM emissions downwind of an active runway at the Oakland International Airport

机译:奥克兰国际机场活动跑道顺风的飞机发动机PM排放的测量和分析

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The growth of commercial aviation has fueled concerns over air quality around airports and the surrounding communities. Airports must expand their operations to meet the increase in air traffic, but expansion plans have been delayed or canceled due to concerns over local air quality. This paper presents the methodology for real-time measurements of aircraft engine specific Particulate Matter (PM) emissions and analysis of the associated high resolution data acquired during normal Landing and Take-Off (LTO) operations 100-300 m downwind of an active taxi-/runway at the Oakland International Airport. The airframe-engine combinations studied included B737-300 with CFM56-3B engines, B737-700/800 with CFM56-7B engines, A320 with V2500-A5 engines, MD-80 with JT-8D engines, A300 with CF6-80 engines, DC-10 with CF6-50 engines, and CRJ-100/200 with CF34-3B engines. For all engine types studied, the size distributions were typically bimodal in nature with a nucleation mode comprised of freshly nucleated PM and an accumulation mode comprised mostly of PM soot with some condensed volatile material. The PM number-based emission index observed ranged between 7 × 10~(15)-3 × 10~(17) particles kg~(-1) fuel burned at idle/taxi and between 4 × 10~(15)-2 × 10~(17) particles kg~(-1) fuel burned at take-off, and the associated PM mass-based emission index (EIm) ranged between 0.1 and 0.7 g kg~(-1) fuel burned at both the idle/taxi and take-off conditions. Older technology engines such as the CFM56-3B and JT8D engines were observed to have as much as 3× higher PM EIm values at take-off compared to newer engine technology such as the CFM56-7B engine. The results from this study provide information for better characterizing evolving PM emissions from in-service commercial aircraft under normal LTO operations and assessing their impact on local and regional air quality and health related impacts.
机译:商业航空的发展引发了人们对机场和周围社区周围空气质量的担忧。机场必须扩大运营以适应空中交通的增长,但由于担心当地空气质量,扩张计划已被推迟或取消。本文介绍了一种实时测量飞机发动机特定颗粒物(PM)排放的方法,并分析了在正常滑行顺风100-300 m的正常降落和起飞(LTO)操作期间获取的相关高分辨率数据。 /奥克兰国际机场的跑道。所研究的飞机发动机组合包括使用CFM56-3B发动机的B737-300,使用CFM56-7B发动机的B737-700 / 800,使用V2500-A5发动机的A320,使用JT-8D发动机的MD-80,使用CF6-80发动机的A300,配备CF6-50发动机的DC-10和配备CF34-3B发动机的CRJ-100 / 200。对于所有研究的发动机类型,尺寸分布通常在本质上是双峰的,其成核模式由新成核的PM组成,累积模式主要由PM烟灰和一些冷凝的挥发性物质组成。观察到的基于PM数的排放指数介于7×10〜(15)-3×10〜(17)颗粒kg〜(-1)在怠速/出租车行驶时燃烧的燃料和4×10〜(15)-2×在起飞时燃烧了10〜(17)个颗粒kg〜(-1)燃料,在空转/空转时燃烧的相关PM质量排放指数(EIm)在0.1至0.7 g kg〜(-1)燃料之间。出租车和起飞条件。与较新的发动机技术(例如CFM56-7B发动机)相比,较早的技术发动机(例如CFM56-3B和JT8D发动机)起飞时的PM EIm值高出3倍。这项研究的结果为更好地表征正常LTO运营中在役商用飞机的不断发展的PM排放以及评估其对当地和区域空气质量以及与健康相关的影响提供了信息。

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