Evaluation of NorESM-OC (versions 1 and 1.2), the ocean carbon-cycle stand-alone configuration of the Norwegian Earth System Model (NorESM1)

Type Article
Date 2016-08
Language English
Author(s) Schwinger Jorg1, Goris Nadine1, Tjiputra Jerry F.1, Kriest Iris2, Bentsen Mats1, Bethke Ingo1, Ilicak Mehmet1, Assmann Karen M.1, 4, Heinze Christoph1, 3
Affiliation(s) 1 : Bjerknes Ctr Climate Res, Uni Res Climate, Bergen, Norway.
2 : GEOMAR Helmholtz Zentrum Ozeanforsch, Kiel, Germany.
3 : Univ Bergen, Inst Geophys, Bjerknes Ctr Climate Res, Bergen, Norway.
4 : Univ Gothenburg, Dept Marine Sci, Gothenburg, Sweden.
Source Geoscientific Model Development (1991-959X) (Copernicus Gesellschaft Mbh), 2016-08 , Vol. 9 , N. 8 , P. 2589-2622
DOI 10.5194/gmd-9-2589-2016
WOS© Times Cited 54
Note Special issues : The Norwegian Earth System Model: NorESM; basic development, validation, scientific analyses, and climate scenarios Editor(s): GMD topical editors | Coordinators: T. Iversen and H. Drange
Abstract

Idealised and hindcast simulations performed with the stand-alone ocean carbon-cycle configuration of the Norwegian Earth System Model (NorESM-OC) are described and evaluated. We present simulation results of three different model configurations (two different model versions at different grid resolutions) using two different atmospheric forcing data sets. Model version NorESM-OC1 corresponds to the version that is included in the NorESM-ME1 fully coupled model, which participated in CMIP5. The main update between NorESM-OC1 and NorESM-OC1.2 is the addition of two new options for the treatment of sinking particles. We find that using a constant sinking speed, which has been the standard in NorESM's ocean carbon cycle module HAMOCC (HAMburg Ocean Carbon Cycle model), does not transport enough particulate organic carbon (POC) into the deep ocean below approximately 2000m depth. The two newly implemented parameterisations, a particle aggregation scheme with prognostic sinking speed, and a simpler scheme that uses a linear increase in the sinking speed with depth, provide better agreement with observed POC fluxes. Additionally, reduced deep ocean biases of oxygen and remineralised phosphate indicate a better performance of the new parameterisations. For model version 1.2, a re-tuning of the ecosystem parameterisation has been performed, which (i) reduces previously too high primary production at high latitudes, (ii) consequently improves model results for surface nutrients, and (iii) reduces alkalinity and dissolved inorganic carbon biases at low latitudes. We use hindcast simulations with prescribed observed and constant (pre-industrial) atmospheric CO2 concentrations to derive the past and contemporary ocean carbon sink. For the period 1990-1999 we find an average ocean carbon uptake ranging from 2.01 to 2.58 PgC yr(-1) depending on model version, grid resolution, and atmospheric forcing data set.

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Schwinger Jorg, Goris Nadine, Tjiputra Jerry F., Kriest Iris, Bentsen Mats, Bethke Ingo, Ilicak Mehmet, Assmann Karen M., Heinze Christoph (2016). Evaluation of NorESM-OC (versions 1 and 1.2), the ocean carbon-cycle stand-alone configuration of the Norwegian Earth System Model (NorESM1). Geoscientific Model Development, 9(8), 2589-2622. Publisher's official version : https://doi.org/10.5194/gmd-9-2589-2016 , Open Access version : https://archimer.ifremer.fr/doc/00383/49411/