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Measurement of aircraft engine non-volatile PM emissions: results of the Aviation-Particle Regulatory Instrumentation Demonstration Experiment (A-PRIDE) 4 campaign

机译:飞机发动机非易失性PM排放的测量:航空颗粒物监管仪器演示实验(A-PRIDE)4活动的结果

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摘要

This study reports the first of a kind data on aircraft engine non-volatile particulate matter (nvPM) number- and mass-based emissions using standardized systems. Two compliant sampling and measurement systems operated by Missouri University of Science and Technology (Missouri S&T) and Empa were evaluated during the Aviation - Particle Regulatory Instrumentation Demonstration Experiment (A-PRIDE) 4 campaign at the SR Technics facilities in Z\ufcrich, Switzerland, in November 2012. The Missouri S&T and Empa systems were compared during a series of dedicated engine tests using a CFM56-5B4/2P engine source, and maintenance engine testing using CFM56-7B24/3 and PW4168A engine sources at a range of engine operating conditions. These two compliant systems were found to agree within 6% of each other in terms of nvPM number-based emissions, and within 15% for nvPM mass-based emissions. For the three engine sources studied, at several engine power conditions the mass instruments approached their limit of detection, resulting in high measurement uncertainties. Ancillary instrumentation was used to determine PM size distributions, chemical composition, and effective density from mass-mobility experiments. Particle geometric mean mobility diameter ranged 20\u201345 nm, and geometric standard deviation varied from 1.55 to 1.9 for the three engine types studied. The fraction of PM organic content measured in the emissions from the CFM56-5B4/2P engine was \u223c4% while the size-dependent particle effective density was parameterized with a mass-mobility exponent of 2.57 and a pre-factor of 0.606. Results of this study will contribute to the development of the new nvPM emissions certification standard and emissions inventories from commercial aviation operations.
机译:这项研究报告了使用标准化系统的飞机发动机非挥发性颗粒物(nvPM)数量和质量排放的第一类数据。在瑞士Z \ ufcrich的SR Technics设施的“航空-粒子监管仪器演示实验(A-PRIDE)4”活动中,对密苏里科技大学(Missouri S&T)和Empa运营的两个符合要求的采样和测量系统进行了评估, 2012年11月。在一系列发动机工作条件下,使用CFM56-5B4 / 2P发动机源进行了一系列专用发动机测试,并使用CFM56-7B24 / 3和PW4168A发动机源进行了维修发动机测试,比较了密苏里州的S&T和Empa系统。 。发现这两个符合标准的系统在基于nvPM数量的排放方面彼此相差6%,而对于基于nvPM质量的排放彼此相差15%。对于研究的三个发动机源,在几种发动机功率条件下,质量仪器均接近其检测极限,从而导致测量不确定性高。辅助仪器用于通过质量迁移实验确定PM尺寸分布,化学成分和有效密度。对于所研究的三种发动机类型,颗粒几何平均迁移率直径范围为20μm,几何标准偏差从1.55到1.9不等。在CFM56-5B4 / 2P发动机的排放物中测得的PM有机物含量为\ u223c4%,而尺寸依赖性颗粒有效密度的参数为2.57,质量迁移率指数为0.606。这项研究的结果将有助于开发新的nvPM排放认证标准和商业航空运营的排放清单。

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