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Airborne measurements of Arctic aerosol and meteorological parameters using the UAV ALADINA in Ny-Ålesund during flight AIDA_ALADINA_20240604_39

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DataCite Commons2026-05-01 更新2026-05-04 收录
下载链接:
https://doi.pangaea.de/10.1594/PANGAEA.988278
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资源简介:
The influence of aerosol particles on the Arctic climate system and their role in the Arctic amplification remains uncertain. Further research is required to gain a broader understanding of the processes that drive or suppress new particle formation along with transport and spatial distribution of aerosol particles, especially in the atmospheric boundary layer. This dataset provides airborne measurements of the aerosol particle number concentration in different size classes alongside meteorological parameters. During the field campaign, the uncrewed aerial system (UAV) ALADINA (Application of Lightweight Aircraft for Detecting In-situ Aerosols) operated from the airport in Ny-Ålesund, Svalbard, between 20 May and 4 June. The 38 measurement flights consist of 143 vertical profiles up to 930 m altitude above mean sea level (MSL) and 62 horizontal flight legs above land and the Kongsfjord at multiple constant altitudes. A detailed description of the AIDA campaign (Aerosol variability and Interaction with ambient conditions based on small-scale vertical and horizontal Distribution of Arctic measurements), the ALADINA system and the applied methods during the post-processing will be provided by Schuchard et al. (in preparation).

气溶胶粒子对北极气候系统的影响及其在北极放大效应中的作用仍未明确。当前亟需开展进一步研究,以全面理解驱动或抑制新粒子生成、以及气溶胶粒子输运与空间分布的相关过程,尤其是大气边界层内的此类过程。本数据集提供了不同粒径档气溶胶粒子数浓度的机载测量数据,同时配套了相应的气象参数。本次外场观测期间,无人航空系统(uncrewed aerial system, UAV)ALADINA(轻量型飞机原位气溶胶探测应用,Application of Lightweight Aircraft for Detecting In-situ Aerosols)从斯瓦尔巴群岛新奥尔松的机场起飞,观测时段为5月20日至6月4日。本次共完成38架次测量飞行,包含143条垂直探测剖面,最大探测高度可达平均海平面以上930米(MSL),另有62条水平飞行航段,在陆地及孔斯峡湾上空的多个恒定高度开展观测。关于本次AIDA外场试验(Aerosol variability and Interaction with ambient conditions based on small-scale vertical and horizontal Distribution of Arctic measurements)、ALADINA系统以及后处理过程中采用的方法的详细说明,将由Schuchard等人(待刊)予以公布。
提供机构:
PANGAEA
创建时间:
2026-03-31
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