The present analysis focuses on the model capability to properly simulate long-range Saharan dust transport for summer 2012 in the Western Mediterranean. The present contribution shows an intercomparison of a set of 9 European regional dust model simulations. An exhaustive comparison of model outputs against other models and observations can reveal weaknesses of individual models, provide an assessment of uncertainties in simulating the dust cycle and give additional information on sources for potential model improvement. The model outputs are compared against a variety of both ground-based and airborne in situ and remote sensing measurements performed during the pre-ChArMEx/TRAQA field campaign. For this kind of study, multiple and different observations are combined to deliver a detailed idea of the structure and evolution of the dust cloud and the state of the atmosphere at the different stages of the event.
- Aerosol Optical Depth
- Saharan Dust
- Forecast Uncertainty
- Dust Model
- Dust Outbreak
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Attié JL, Ravetta F, Durand P, El Amraoui L, Di Biaggio C, Dulac F, Sicard M, Renard J-B, Fleury L, Bourdon A, Verdier N (2014) Transport of pollution and air quality experiment over the Mediterranean basin (TRAQA/ChArMEx campaign). In: EGU general assembly conference abstracts, vol 16. p 12125
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The authors want to acknowledge the OMP/SEDOO for the ChArMEx data portal and to CNES for balloon operations and funding. The other main sponsors of the campaign were ADEME and INSU under the umbrella of the programmes PRIMEQUAL and MISTRALS. LOAC was developed with funding from ANR.
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Basart, S. et al. (2016). Extensive Comparison Between a Set of European Dust Regional Models and Observations in the Western Mediterranean for the Summer 2012 Pre-ChArMEx/TRAQA Campaign. In: Steyn, D., Chaumerliac, N. (eds) Air Pollution Modeling and its Application XXIV. Springer Proceedings in Complexity. Springer, Cham. https://doi.org/10.1007/978-3-319-24478-5_13
Publisher Name: Springer, Cham
Print ISBN: 978-3-319-24476-1
Online ISBN: 978-3-319-24478-5