This paper described the implementation of a forecasting system of the coupled physical and biogeochemical state of the northern Adriatic Sea and discussed the preliminary results. The forecasting system is composed of two components: the NEMO general circulation model and the BFM biogeochemical model. The BFM component includes an explicit benthic pelagic coupling providing fluxes at the sediment-water interface and the dynamic of the major benthic state variables. The system is forced by atmospheric forcing from a limited-area model and by available land-based (river runoff and nutrient load) data. The preliminary results were validated against available remote and in situ observations. The validation effort indicated a good performance of the system in defining the basin scale characteristics, while locally the forecasting model performance seemed mostly impaired by the uncertainties in the definition of the land-based forcing.
Isabella Scroccaro, Marco Zavatarelli, Tomas Lovato, Piero Lanucara, Andrea Valentini (2022). The Northern Adriatic Forecasting System for Circulation and Biogeochemistry: Implementation and Preliminary Results. WATER, 14(17), 1-20 [10.3390/w14172729].
The Northern Adriatic Forecasting System for Circulation and Biogeochemistry: Implementation and Preliminary Results
Isabella ScroccaroWriting – Original Draft Preparation
;Marco Zavatarelli
Writing – Original Draft Preparation
;Andrea ValentiniMembro del Collaboration Group
2022
Abstract
This paper described the implementation of a forecasting system of the coupled physical and biogeochemical state of the northern Adriatic Sea and discussed the preliminary results. The forecasting system is composed of two components: the NEMO general circulation model and the BFM biogeochemical model. The BFM component includes an explicit benthic pelagic coupling providing fluxes at the sediment-water interface and the dynamic of the major benthic state variables. The system is forced by atmospheric forcing from a limited-area model and by available land-based (river runoff and nutrient load) data. The preliminary results were validated against available remote and in situ observations. The validation effort indicated a good performance of the system in defining the basin scale characteristics, while locally the forecasting model performance seemed mostly impaired by the uncertainties in the definition of the land-based forcing.File | Dimensione | Formato | |
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