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Comparison of aircraft measurements during GoAmazon2014/5 and ACRIDICON-CHUVA

机译:GoAmazon2014 / 5期间飞机测量比较和艾奇逊 - Chuva

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The indirect effect of atmospheric aerosol particles on the Earth's radiation balance remains one of the most uncertain components affecting climate change throughout the industrial period. The large uncertainty is partly due to the incomplete understanding of aerosol–cloud interactions. One objective of the GoAmazon2014/5 and the ACRIDICON (Aerosol, Cloud, Precipitation, and Radiation Interactions and Dynamics of Convective Cloud Systems)-CHUVA (Cloud Processes of the Main Precipitation Systems in Brazil) projects was to understand the influence of emissions from the tropical megacity of Manaus (Brazil) on the surrounding atmospheric environment of the rainforest and to investigate its role in the life cycle of convective clouds. During one of the intensive observation periods (IOPs) in the dry season from 1?September to 10?October?2014, comprehensive measurements of trace gases and aerosol properties were carried out at several ground sites. In a coordinated way, the advanced suites of sophisticated in situ instruments were deployed aboard both the US Department of Energy Gulfstream-1 (G1) aircraft and the German High Altitude and Long-Range Research Aircraft (HALO) during three coordinated flights on 9 and 21 September and 1?October. Here, we report on the comparison of measurements collected by the two aircraft during these three flights. Such comparisons are challenging but essential for assessing the data quality from the individual platforms and quantifying their uncertainty sources. Similar instruments mounted on the G1 and HALO collected vertical profile measurements of aerosol particle number concentrations and size distribution, cloud condensation nuclei concentrations, ozone and carbon monoxide mixing ratios, cloud droplet size distributions, and downward solar irradiance. We find that the above measurements from the two aircraft agreed within the measurement uncertainties. The relative fraction of the aerosol chemical composition measured by instruments on HALO agreed with the corresponding G1 data, although the total mass loadings only have a good agreement at high altitudes. Furthermore, possible causes of the discrepancies between measurements on the G1 and HALO are examined in this paper. Based on these results, criteria for meaningful aircraft measurement comparisons are discussed.
机译:大气气溶胶颗粒对地球辐射平衡的间接影响仍然是影响整个工业期间气候变化的最不确定的部件之一。大的不确定性是部分原因是对气溶胶云相互作用的不完全理解。 Goamazon2014 / 5的一个目标和蝗虫(气溶胶,云,降水和辐射相互作用和对流云系统的动态)-chuva(巴西主要降水系统的云过程)项目是理解排放的影响Manaus(巴西)的热带巨大度在雨林周围的大气环境中,并调查其在对流云生命周期中的作用。在旱季中的一个强化观察期(IOPS)之一,从1?9月到10日?2014年10月,在几个地点进行痕量气体和气溶胶性能的综合测量。以协调的方式,在美国能源湾流 - 1(G1)飞机和德国高海拔和远程研究飞机(HALO)在9个协调的航班上,部署了先进的原位仪器的先进套件。 9月21日和1日10月。在这里,我们报告了这三种飞行中两架飞机收集的测量的比较。这种比较是具有挑战性的,但对于评估各个平台的数据质量并量化其不确定性来源至关重要。类似的仪器安装在G1和Halo收集的气溶胶颗粒数浓度和尺寸分布的垂直轮廓测量,云凝结核浓度,臭氧和一氧化碳混合比,云液滴尺寸分布和向下的太阳辐照度。我们发现两架飞机的上述测量在测量不确定性内同意。仪器上测量的气溶胶化学成分的相对分数与Halo上的仪器同意相应的G1数据,尽管总容量负荷仅在高海拔地区具有良好的一致性。此外,本文研究了G1和光环对G1和光环之间的测量之间的差异的可能原因。基于这些结果,讨论了有意义的飞机测量比较的标准。

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