Publication
Title
Integrating sediment biogeochemistry into 3D oceanic models : a study of benthic-pelagic coupling in the Black Sea
Author
Abstract
Three-dimensional (3D) ecosystem models of shelf environments should properly account for the biogeochemical cycling within the sea floor. However, a full and explicit representation of sediment biogeochemistry into 3D ocean models is computationally demanding. Here, we describe a simplified approach to include benthic processes in 3D ocean models, which includes a parameterization of the different pathways for organic matter mineralization and allows for organic matter remobilization by bottom currents and waves. This efficient approach enables decadal simulations that resolve the inertial contribution of the sea floor to the biogeochemical cycling in shelf environments. The model was implemented to analyze the benthic-pelagic coupling in the northwestern shelf of the Black Sea. Three distinct biogeochemical provinces were identified on the basis of fluxes and rates associated with benthic-pelagic coupling. Our model simulations suitably capture the seasonal variability of in situ flux data as well as their regional variation, which stresses the importance of incorporating temporally varying sediment biogeochemistry and resuspension/redeposition cycles in shelf ecosystem models.
Language
English
Source (journal)
Ocean modelling. - Amsterdam
Publication
Amsterdam : 2016
ISSN
1463-5003
DOI
10.1016/J.OCEMOD.2016.03.006
Volume/pages
101 (2016) , p. 83-100
ISI
000375135200007
Full text (Publisher's DOI)
Full text (publisher's version - intranet only)
UAntwerpen
Publication type
Subject
External links
Web of Science
Record
Identifier
Creation 31.10.2017
Last edited 27.01.2023
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