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Key lessons from the DACCIWA project for operational meteorological services

Knippertz, Peter; Marsham, John H; Benedetti, Angela; Evans, Mat J; Fink, Andreas H; Kniffka, Anke; van der Linden, Roderick; Dearden, Christopher; Deetz, Konrad; Haslett, Sophie L; Keita, Sekou; Lohou, Fabienne; Maranan, Marlon; Mollard, James D. P.; Pante, Gregor; Reinares Martínez, Irene; Young, Matthew; Akpo, Aristide; Adler, Bianca; Amekudzi, Leonard; Babić, Karmen; Chaboureau, Jean-Pierre; Chiu, J. Christine; Coe, Hugh; Dione, Cheikh; Leal-Liousse, Catherine; Hill, Peter; Kalthoff, Norbert; Vogel, Bernhard; Yoboué, Véronique


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  "description": "<p>This document describes the conclusions of the&nbsp;EU-funded project Dynamics-&nbsp;Aerosol-Chemistry-Cloud Interactions in West Africa (DACCIWA)&nbsp;directly&nbsp;relevant to operational meteorological services.&nbsp;DACCIWA&nbsp;produced&nbsp;the most comprehensive observational dataset of the atmosphere over&nbsp;densely populated&nbsp;southern West Africa to date and used this dataset to foster&nbsp;our understanding of atmospheric&nbsp;processes, and to evaluate dynamical&nbsp;models and satellite data. With this document DACCIWA aims to help improve atmospheric predictions across time-scales, which are important for the&nbsp;development of greater&nbsp;resilience of the West African population to&nbsp;hazardous weather and climate change.&nbsp;</p>", 
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  "datePublished": "2020-07-23", 
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