飞机排放的超细颗粒特征的真实世界近跑道测量

IF 8.4 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES
Jeff Maes, Spyros Bezantakos, Luccas K. Kavabata, George Biskos, Irene C. Dedoussi
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引用次数: 0

摘要

飞机在着陆和起飞过程中排放的(超)细颗粒对机场员工和机场附近社区的人体健康造成越来越大的危害。因此,对运行中的飞机的测量对于表征真实世界的飞机排放及其变异性至关重要。在这项工作中,我们开发了一种方法,可以收集大量关于真实世界飞机特定排放的数据。我们使用三种类型的便携式PM传感器,位于阿姆斯特丹史基浦机场跑道下风约200米处,在不同的季节,对覆盖全球大多数飞机类型的约500种特定操作的羽流进行表征。在近场观察到亚25nm粒子的高浓度峰(约为106个粒子/cm3)。虽然起飞羽流的颗粒数浓度高于到达羽流,但这些数值不一定与飞机尺寸或发动机推力等级成比例。我们发现飞机类型和发动机型号之间存在很大差异,这突出了在评估航空对大气成分和人类健康的影响时纳入实际观测结果的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Aircraft emissions of ultrafine particles characterized by real-world near runway measurements

Aircraft emissions of ultrafine particles characterized by real-world near runway measurements

Aircraft emissions of (ultra)fine particles during landing and take-off operations pose increasing human health hazards for airport employees and near-airport communities. Measurements of in-operation aircraft are therefore crucial for characterizing real-world aircraft emissions, and their variability. In this work, we develop an approach that enables the gathering of large quantities of data on real-world aircraft-specific emissions. We use three types of portable PM sensors located ca. 200 m downwind of an operational runway at Amsterdam Airport Schiphol, over different seasons, to characterize the plumes from ca. 500 specific operations covering most aircraft types of the global flying fleet. High concentration peaks (in the order of 106 particles/cm3) of sub-25 nm particles are observed in the near field. While departure plumes exhibit higher particle number concentrations than arrival plumes, the values do not necessarily scale with aircraft size or engine thrust rating. We find large variability among aircraft types and engine models, highlighting the importance of incorporating real-world observations when assessing the impacts of aviation on the atmospheric composition and human health.

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来源期刊
npj Climate and Atmospheric Science
npj Climate and Atmospheric Science Earth and Planetary Sciences-Atmospheric Science
CiteScore
8.80
自引率
3.30%
发文量
87
审稿时长
21 weeks
期刊介绍: npj Climate and Atmospheric Science is an open-access journal encompassing the relevant physical, chemical, and biological aspects of atmospheric and climate science. The journal places particular emphasis on regional studies that unveil new insights into specific localities, including examinations of local atmospheric composition, such as aerosols. The range of topics covered by the journal includes climate dynamics, climate variability, weather and climate prediction, climate change, ocean dynamics, weather extremes, air pollution, atmospheric chemistry (including aerosols), the hydrological cycle, and atmosphere–ocean and atmosphere–land interactions. The journal welcomes studies employing a diverse array of methods, including numerical and statistical modeling, the development and application of in situ observational techniques, remote sensing, and the development or evaluation of new reanalyses.
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