Data presented in González-Flórez et al. 2023 "Insights into the size-resolved dust emission from field measurements in the Moroccan Sahara", Atmos. Chem. Phys.
- 1. Barcelona Supercomputing Center (BSC), Barcelona (Spain); Department of Civil and Environmental Engineering, Polytechnical University of Catalonia (UPC), Barcelona, Spain
- 2. 3Karlsruhe Institute of Technology (KIT), Institute of Meteorology and Climate Research - Department Troposphere Research (IMK-TRO), Karlsruhe, Germany
- 3. Institute of Environmental Assessment and Water Research (IDAEA-CSIC), Barcelona, Spain
- 4. INRAE, Bordeaux Sciences Agro, ISPA, Villenave d'Ornon, France
- 5. Barcelona Supercomputing Center (BSC), Barcelona, Spain
- 6. Desert Research Institute, Las Vegas, US
- 7. Barcelona Supercomputing Center (BSC), Barcelona (Spain); Department of Civil and Environmental Engineering, Polytechnical University of Catalonia (UPC), Barcelona, Spain; Institute of Environmental Assessment and Water Research (IDAEA-CSIC), Barcelona, Spain
- 8. NASA Goddard Institute for Space Studies, New York, US
- 9. Institute of Applied Geosciences, Technical University of Darmstadt, 64287 Darmstadt, Germany
- 10. Institute of Environmental Assessment and Water Research (IDAEA-CSIC), Barcelona, Spain ;Grup de Meteorologia, Departament de Física Aplicada, Universitat de Barcelona, C/Martí i Franquès, 1, 08028, Barcelona, Spain; Center for Atmospheric Research, University of Nova Gorica, Vipavska 11c, SI-5270 Ajdovšcina, Slovenia
- 11. Barcelona Supercomputing Center (BSC), Barcelona, Spain; ICREA, Catalan Institution for Research and Advanced Studies, Barcelona, Spain
Description
Meteorological, dust and saltation data used in González-Flórez et al., 2023. Data are based on measurements taken during an intensive dust field campaign conducted in the context of the FRontiers in dust minerAloGical coMposition and its Effects upoN climaTe (FRAGMENT) project. The campaign took place in September 2019 in a small ephemeral lake, locally named "L'Bour", located in the Lower Drâa Valley in Morocco. The description of the data is provided below:
- t.nc: time series of temperature measured with four aspirated shield temperature sensors (Campbell Scientific 43502 fan-aspirated shield with 43347 RTD Temperature probe) placed at heights of 1m, 2m, 4m and 8m.
- t005.nc time series of temperature measured with a temperature and relative humidity probe (Campbell Scientific HC2A-S3) at 0.5m height.
- rh005.nc: time series relative humidity measured with a temperature and relative humidity probe (Campbell Scientific HC2A-S3) at 0.5m height.
- wspd.nc: time series of wind speed measured with five 2-D sonic anemometers (Campbell Scientific WINDSONIC4-L) placed at heights of 0.4m, 0.8m, 2m, 5m and 10m.
- sdir.nc: time series of wind direction measured with five 2-D sonic anemometers (Campbell Scientific WINDSONIC4-L) placed at heights of 0.4m, 0.8m, 2m, 5m and 10m.
- radout.nc: time series of outgoing long wave radiation measured with a four-component net radiometer (Campbell Scientific NR01-L radiometer) placed at 1.5m height.
- p015.nc: times series barometric pressure measured with a barometer (Campbell Scientific CS106) at around 1.5m height.
- u_star_law.nc: time series friction velocity calculated through the law of the wall method.
- z0_law.nc: time series of roughness length calculated through the law of the wall method.
- zeta_law.nc: time series of dimensionless height, zref/L, where zref is the reference height (zref=2m) and L is the Obukhov length calculated through the law of the wall method.
- psd_lower_15avg_20190904_000000_integrated_bins.nc: time series of 15-min average number concentrations in integrated size bin resolution measured with an optical particle counter (Fidas 200S, Palas GmbH) at ~1.8m height.
- psd_upper_15avg_20190904_000000_integrated_bins.nc: time series of 15-min average number concentrations in integrated size bin resolution measured with an optical particle counter (Fidas 200S, Palas GmbH) at ~3.5m height and corrected for systematic bias based on an intercomparison between the two Fidas at the end of the campaign.
- diff_flux_nb_15avg_20190904_000000_integrated_bins.nc: time series of 15-min average number diffusive flux calculated using the flux-gradient method.
- q_15avg.nc: time series of 15-min average saltation flux calculated based on measurements with optical gate devices at heights of 0.05m, 0.15m and 0.3m as part of the Standalone AeoliaN Transport Real-time Instrument (SANTRI, Desert Research Institute).
- geometric_diameters_integrated_size_bins.csv: containing the minimum, maximum and mean logarithmic optical diameter of the integrated size bins.
- optical_diameters_integrated_size_bins: containing the minimum, maximum and mean logarithmic geometric diameter of the integrated size bins.
SANTRI data were processed by Martina Klose (martina.klose@kit.edu) and the rest by Cristina González Flórez (cristina.gonzalez@bsc.es). Please, cite González-Flórez et al. (2023, ACP) if you use these data. If the data become the key main component of a paper then co-authorship may be offered. Contact Carlos Pérez García-Pando (carlos.perez@bsc.es) if more details are needed.
This work has received funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme (grant agreement No. 773051, FRAGMENT).
Files
geometric_diameters_integrated_size_bins.csv
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Additional details
Related works
- Is new version of
- Preprint: 10.5194/acp-2022-758 (DOI)