Articles | Volume 8, issue 2
https://doi.org/10.5194/essd-8-679-2016
© Author(s) 2016. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/essd-8-679-2016
© Author(s) 2016. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
C-GLORSv5: an improved multipurpose global ocean eddy-permitting physical reanalysis
Centro Euro-Mediterraneo sui Cambiamenti Climatici, 40128 Bologna, Italy
Simona Masina
Centro Euro-Mediterraneo sui Cambiamenti Climatici, 40128 Bologna, Italy
Istituto Nazionale di Geofisica e Vulcanologia, 40128 Bologna, Italy
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64 citations as recorded by crossref.
- The Euro-Mediterranean Center on Climate Change (CMCC) decadal prediction system D. Nicolì et al.
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- Freshwater in the Arctic Ocean 2010–2019 A. Solomon et al.
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- Recent spread of non-indigenous ascidians (Chordata: Tunicata) in Icelandic harbours J. Micael et al.
- Antarctic krill habitat suitability variation in the Southern Ocean over 20 years Y. Tan & Y. Bai
- An Improved Estimate of the Coupled Arctic Energy Budget M. Mayer et al.
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- Stochastic schemes for the perturbation of the atmospheric boundary conditions in ocean general circulation models A. Storto & C. Yang
- Reconstruction of Antarctic sea ice thickness from sparse satellite laser altimetry data via deep learning Z. Ma et al.
- Improving the CFSv2 prediction of the Indian Ocean Dipole based on a physical‐empirical model and a deep‐learning approach P. Chen et al.
- The role of upper-ocean heat content in the regional variability of Arctic sea ice at sub-seasonal timescales E. Bianco et al.
- Observational Needs for Improving Ocean and Coupled Reanalysis, S2S Prediction, and Decadal Prediction S. Penny et al.
- Surface‐Forced Variability in the Nordic Seas Overturning Circulation and Overflows M. Årthun
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- Applying satellite sea surface temperature as Dirichlet-type surface thermal boundary condition in an ocean model T. Zhang et al.
- Surface buoyancy control of millennial-scale variations in the Atlantic meridional ocean circulation M. Willeit et al.
- Regional sea level trend budget over 2004–2022 M. Bouih et al.
- Suppression of Arctic Sea Ice Growth in the Eurasian–Pacific Seas by Winter Clouds and Snowfall W. Lim et al.
- A Surface “Superconvergence” Pathway Connecting the South Indian Ocean to the Subtropical South Pacific Gyre C. Maes et al.
- The Mean State and Variability of the North Atlantic Circulation: A Perspective From Ocean Reanalyses L. Jackson et al.
- Strongly Coupled Data Assimilation Experiments with Linearized Ocean–Atmosphere Balance Relationships A. Storto et al.
- A High Resolution Reanalysis for the Mediterranean Sea R. Escudier et al.
- Global decline in ocean memory over the 21st century H. Shi et al.
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- The added value of the multi-system spread information for ocean heat content and steric sea level investigations in the CMEMS GREP ensemble reanalysis product A. Storto et al.
- Inverse Modeling of Global and Regional Energy and Water Cycle Fluxes using Earth Observation Data C. Thomas et al.
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Latest update: 01 May 2026
Short summary
A large number of applications related to the study of ocean climate require reliable datasets of the main physical variables of the ocean. Ocean reanalyses are a methodology based on the synthesis of information from ocean observations and models, and near-surface atmospheric observations into a dataset in a way as consistent in time as possible. In this paper, we describe and validate an upgraded version of the CMCC global ocean physical reanalysis (1980–present) at 1 / 4° resolution.
A large number of applications related to the study of ocean climate require reliable datasets...
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