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The MIDAS project studied the use of scatterometer wind data within mesoscale Numerical Weather Prediction (NWP) models.
EUMETSAT
https://www-cdn.eumetsat.int/files/2020-06/pdf_ss_s3_slstr_buoys_6.pdf
https://www-cdn.eumetsat.int/files/2020-06/pdf_ss_s3_slstr_buoys_7.pdf
2B
https://www-cdn.eumetsat.int/files/2023-01/CLS_TRUSTED-22-13_Metadata_Analysis_v2b.pdf
https://www-cdn.eumetsat.int/files/2023-01/FM-A2-1_NOV-FE-1187-SL-124_Presentation_of_results_and_work_MMDB.pdf
https://www-cdn.eumetsat.int/files/2023-01/FM-A2-1_NOV-FE-1187-SL-125_Presentation_of_results_and_work_GHRSST_DDC.pdf
2.3
https://www-cdn.eumetsat.int/files/2020-04/pdf_ss_s3_slstr_pvp_d5.pdf
ADD-CROSS assesses the impact of cross-channel assimilation on air quality and numerical weather prediction (NWP).
AboutThe purpose of this study is to help estimate the individual impacts of current Aeolus observations and future EPS-Aeolus-like observations on NWP.
This study aimed to enhance the EUMETSAT vicarious calibration system across a selection of bright desert pseudo-invariant calibration sites.
Scientific studies for the evolution of operational products suite and for the development of new products.