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Bibliographic Details
Main Authors: Schuchard, Malte, Bärfuss, Konrad, Bretschneider, Lutz, Käthner, Ralf, Lampert, Astrid, Pilz, Christian, Schlerf, Andreas, Harm-Altstädter, Barbara
Format: Dataset Open Access
Language:en
Published: PANGAEA 2026
Subjects:
aerosol; AIDA_2024; AIDA_ALADINA_20240524_10; airborne measurements; ALTITUDE; Arctic; Arctic aerosol; atmospheric boundary layer; Autopilot system, CubePilot Pty. Ltd. Australia, Pixhawk 2.1 Cube; AWIPEV; Condensation particle counter (CPC), TSI Inc. USA, 3007; DATE/TIME; Finewire temperature sensor, TU Braunschweig Germany; and Temperature sensor, Measurement Specialists Ireland, TSYS01; GNSS, u-blox Holding AG Switzerland, uBlox ZED-F9P; Heading; Humidity, relative; Hygrometer, Innovative Sensor Technology, Rapid P14; and Thermometer/Hygrometer, Vaisala, HMP110; LATITUDE; LONGITUDE; new particle formation; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Optical particle counter (OPC), Met One lnstruments inc. USA, GT-526S; Particle number concentration, particle diameter range 0.006 µm to 1 µm; Particle number concentration, particle diameter range 0.019 µm to 1 µm; Particle number concentration, particle diameter range 0.3 µm to 0.5 µm; Particle number concentration, particle diameter range 0.5 µm to 0.7 µm; Particle number concentration, particle diameter range 0.7 µm to 1 µm; Particle number concentration, particle diameter range 1 µm to 2.5 µm; Particle number concentration, particle diameter range 2.5 µm to 5 µm; Particle number concentration, particle diameter range 5 µm to 10 µm; Pitch angle; Pressure, at given altitude; Pressure sensor, Analog Microelectronics Germany, AMS 5812; Pyranometer, EKO Instruments, ML-01; Roll angle; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Surface temperature; Svalbard; Temperature, air; Temperature sensor, Melexis Belgium, MLX90614; UAV; Unmanned aerial vehicle; Wind direction; Wind speed
Online Access:https://doi.org/10.1594/PANGAEA.988234
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author Schuchard, Malte
Bärfuss, Konrad
Bretschneider, Lutz
Käthner, Ralf
Lampert, Astrid
Pilz, Christian
Schlerf, Andreas
Harm-Altstädter, Barbara
author_facet Schuchard, Malte
Bärfuss, Konrad
Bretschneider, Lutz
Käthner, Ralf
Lampert, Astrid
Pilz, Christian
Schlerf, Andreas
Harm-Altstädter, Barbara
collection Datos científicos de ciencias marinas y ambientales
contents 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).
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_988234
institution PANGAEA
language en
publishDate 2026
publisher PANGAEA
record_format pangaea
spellingShingle Airborne measurements of Arctic aerosol and meteorological parameters using the UAV ALADINA in Ny-Ålesund during flight AIDA_ALADINA_20240524_10
Schuchard, Malte
Bärfuss, Konrad
Bretschneider, Lutz
Käthner, Ralf
Lampert, Astrid
Pilz, Christian
Schlerf, Andreas
Harm-Altstädter, Barbara
aerosol; AIDA_2024; AIDA_ALADINA_20240524_10; airborne measurements; ALTITUDE; Arctic; Arctic aerosol; atmospheric boundary layer; Autopilot system, CubePilot Pty. Ltd. Australia, Pixhawk 2.1 Cube; AWIPEV; Condensation particle counter (CPC), TSI Inc. USA, 3007; DATE/TIME; Finewire temperature sensor, TU Braunschweig Germany; and Temperature sensor, Measurement Specialists Ireland, TSYS01; GNSS, u-blox Holding AG Switzerland, uBlox ZED-F9P; Heading; Humidity, relative; Hygrometer, Innovative Sensor Technology, Rapid P14; and Thermometer/Hygrometer, Vaisala, HMP110; LATITUDE; LONGITUDE; new particle formation; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Optical particle counter (OPC), Met One lnstruments inc. USA, GT-526S; Particle number concentration, particle diameter range 0.006 µm to 1 µm; Particle number concentration, particle diameter range 0.019 µm to 1 µm; Particle number concentration, particle diameter range 0.3 µm to 0.5 µm; Particle number concentration, particle diameter range 0.5 µm to 0.7 µm; Particle number concentration, particle diameter range 0.7 µm to 1 µm; Particle number concentration, particle diameter range 1 µm to 2.5 µm; Particle number concentration, particle diameter range 2.5 µm to 5 µm; Particle number concentration, particle diameter range 5 µm to 10 µm; Pitch angle; Pressure, at given altitude; Pressure sensor, Analog Microelectronics Germany, AMS 5812; Pyranometer, EKO Instruments, ML-01; Roll angle; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Surface temperature; Svalbard; Temperature, air; Temperature sensor, Melexis Belgium, MLX90614; UAV; Unmanned aerial vehicle; Wind direction; Wind speed
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).
title Airborne measurements of Arctic aerosol and meteorological parameters using the UAV ALADINA in Ny-Ålesund during flight AIDA_ALADINA_20240524_10
topic aerosol; AIDA_2024; AIDA_ALADINA_20240524_10; airborne measurements; ALTITUDE; Arctic; Arctic aerosol; atmospheric boundary layer; Autopilot system, CubePilot Pty. Ltd. Australia, Pixhawk 2.1 Cube; AWIPEV; Condensation particle counter (CPC), TSI Inc. USA, 3007; DATE/TIME; Finewire temperature sensor, TU Braunschweig Germany; and Temperature sensor, Measurement Specialists Ireland, TSYS01; GNSS, u-blox Holding AG Switzerland, uBlox ZED-F9P; Heading; Humidity, relative; Hygrometer, Innovative Sensor Technology, Rapid P14; and Thermometer/Hygrometer, Vaisala, HMP110; LATITUDE; LONGITUDE; new particle formation; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Optical particle counter (OPC), Met One lnstruments inc. USA, GT-526S; Particle number concentration, particle diameter range 0.006 µm to 1 µm; Particle number concentration, particle diameter range 0.019 µm to 1 µm; Particle number concentration, particle diameter range 0.3 µm to 0.5 µm; Particle number concentration, particle diameter range 0.5 µm to 0.7 µm; Particle number concentration, particle diameter range 0.7 µm to 1 µm; Particle number concentration, particle diameter range 1 µm to 2.5 µm; Particle number concentration, particle diameter range 2.5 µm to 5 µm; Particle number concentration, particle diameter range 5 µm to 10 µm; Pitch angle; Pressure, at given altitude; Pressure sensor, Analog Microelectronics Germany, AMS 5812; Pyranometer, EKO Instruments, ML-01; Roll angle; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Surface temperature; Svalbard; Temperature, air; Temperature sensor, Melexis Belgium, MLX90614; UAV; Unmanned aerial vehicle; Wind direction; Wind speed
url https://doi.org/10.1594/PANGAEA.988234