MOM6-Publications
From CSDMS
References MOM6
Publication(s) | Year | Type | Cited |
---|---|---|---|
Reichl, Brandon G.; Hallberg, Robert; 2018. A simplified energetics based planetary boundary layer (ePBL) approach for ocean climate simulations.. Ocean Modelling, 132, 112–129. 10.1016/j.ocemod.2018.10.004 (View/edit entry) | 2018 | Model overview | 31 |
Gibson, Angus H.; Hogg, Andrew McC.; Kiss, Andrew E.; Shakespeare, Callum J.; Adcroft, Alistair; 2017. Attribution of horizontal and vertical contributions to spurious mixing in an Arbitrary Lagrangian–Eulerian ocean model. Ocean Modelling, 119, 45–56. 10.1016/j.ocemod.2017.09.008 (View/edit entry) | 2017 | Model overview | 12 |
Wu, Xiaoning; Reed, Kevin; Bachman, Scott; Bryan, Frank; Wolfe, Christopher; Marques, Gustavo; 2020. A Simplified Climate Model for Understanding Tropical Cyclones and Ocean Heat Transport. . (View/edit entry) | 2020 | Model application | 0 |
Roobaert, Alizée; Resplandy, Laure; Laruelle, Goulven Gildas; Liao, Enhui; Regnier, Pierre; 2021. A framework to evaluate and elucidate the driving mechanisms of coastal sea surface pCO<sub>2</sub> seasonality using an ocean general circulation model (MOM6-COBALT). . (View/edit entry) | 2021 | Model application | 0 |
Kong, Hailu; 2020. hlkong/MOM6_channel_config_parameters: Parameters for configuring the channel setup of MOM6. , , . 10.5281/zenodo.3903644 (View/edit entry) | 2020 |
Model application | 0 |
Roobaert, Alizée; Resplandy, Laure; Laruelle, Goulven Gildas; Liao, Enhui; Regnier, Pierre; 2021. A framework to evaluate and elucidate the driving mechanisms of coastal sea surface pCO<sub>2</sub> seasonality using an ocean general circulation model (MOM6-COBALT). . (View/edit entry) | 2021 |
Model application | 0 |
Roobaert, Alizée; Resplandy, Laure; Laruelle, Goulven Gildas; Liao, Enhui; Regnier, Pierre; 2021. Supplementary material to "A framework to evaluate and elucidate the driving mechanisms of coastal sea surface pCO<sub>2</sub> seasonality using an ocean general circulation model (MOM6-COBALT)". . (View/edit entry) | 2021 |
Model application | 0 |
Delworth, Thomas L.; Cooke, William F.; Adcroft, Alistair; Bushuk, Mitchell; Chen, Jan‐Huey; Dunne, Krista A.; Ginoux, Paul; Gudgel, Richard; Hallberg, Robert W.; Harris, Lucas; Harrison, Matthew J.; Johnson, Nathaniel; Kapnick, Sarah B.; Lin, Shian‐Jian; Lu, Feiyu; Malyshev, Sergey; Milly, Paul C.; Murakami, Hiroyuki; Naik, Vaishali; Pascale, Salvatore; Paynter, David; Rosati, Anthony; Schwarzkopf, M.D.; Shevliakova, Elena; Underwood, Seth; Wittenberg, Andrew T.; Xiang, Baoqiang; Yang, Xiaosong; Zeng, Fanrong; Zhang, Honghai; Zhang, Liping; Zhao, Ming; 2020. SPEAR: The Next Generation GFDL Modeling System for Seasonal to Multidecadal Prediction and Projection. Journal of Advances in Modeling Earth Systems, 12, . 10.1029/2019MS001895 (View/edit entry) | 2020 |
Model application | 56 |
Yankovsky, Elizabeth; Zanna, Laure; Smith, Shafer; 2021. Relationships between eddy representation and vertical structure. . (View/edit entry) | 2021 |
Model application | 0 |
Xue, Yan; Koch, Dorothy; Tallapragada, Vijay; Mehra, Avichal; Yang, Fanglin; Stan, Cristiana; Kinter, James; Whitaker, Jeffrey; Adimi, Farida; Jensen, Tara; Wang, Jun; Kleist, Daryl; Barlage, Michael; Bao, Jian-Wen; Stajner, Ivanka; 2021. Development of a Coupled Subseasonal-to-Seasonal Prediction Model Using Community-based Unified Forecast System for NCEP Operations. . (View/edit entry) | 2021 |
Model application | 0 |
Stan, Christiana; 2021. Predictability of extreme events in UFS at subseasonal time scale. . (View/edit entry) | 2021 |
Model application | 0 |
Sun, Luyu; Penny, Stephen; Harrison, Matthew; 2021. Improving Ocean Circulations Using Lagrangian Data Assimilation of Surface Drifters During Grand Lagrangian Deployments. . (View/edit entry) | 2021 |
Model application | 0 |
Lu, Feiyu; Harrison, Matthew J.; Rosati, Anthony; Delworth, Thomas L.; Yang, Xiaosong; Cooke, William F.; Jia, Liwei; McHugh, Colleen; Johnson, Nathaniel C.; Bushuk, Mitchell; Zhang, Yongfei; Adcroft, Alistair; 2020. GFDL's SPEAR Seasonal Prediction System: Initialization and Ocean Tendency Adjustment (OTA) for Coupled Model Predictions. Journal of Advances in Modeling Earth Systems, 12, . 10.1029/2020MS002149 (View/edit entry) | 2020 |
Model application | 11 |
Raeder, Kevin; Anderson, Jeffrey; Hoar, TImothy; Collins, Nancy; El Gharamti, Moha; 2020. Results from An Ensemble Reanalysis with the Community Earth System Model 2.1. . (View/edit entry) | 2020 |
Model application | 0 |
Raeder, Kevin; Hoar, Timothy J.; Gharamti, Mohamad El; Johnson, Benjamin K.; Collins, Nancy; Anderson, Jeffrey L.; Steward, Jeff; Coady, Mick; 2021. A New CAM6+DART Reanalysis with Surface Forcing from CAM6 to Other CESM Models. . (View/edit entry) | 2021 |
Model application | 0 |
Roobaert, Alizee; Laruelle, Goulven; Resplandy, Laure; Landschützer, Peter; Gruber, Nicolas; Liao, Enhui; Chou, Lei; Regnier, Pierre; 2021. The spatiotemporal dynamics of the sources and sinks of CO2 in the global coastal ocean. . (View/edit entry) | 2021 |
Model application | 48 |
Raeder, Kevin; Hoar, Timothy J.; El Gharamti, Mohamad; Johnson, Benjamin K.; Collins, Nancy; Anderson, Jeffrey L.; Steward, Jeff; Coady, Mick; 2021. A new CAM6 + DART reanalysis with surface forcing from CAM6 to other CESM models. Scientific Reports, 11, 16384. 10.1038/s41598-021-92927-0 (View/edit entry) | 2021 |
Model application | 0 |
Stajner, Ivanka; Tallapragada, Vijay; Zhu, Yuejian; Alves, Henrique; McQueen, Jeff; Hamill, Tom; Whitaker, Jeff; Grell, Georg; Levit, Jason; 2020. NOAA’s Unified Forecast System for Sub-Seasonal Predictions: Development and operational implementation plans of Global Ensemble Forecast System v12 (GEFSv12) at NCEP. . (View/edit entry) | 2020 |
Model application | 1 |
Sun, Luyu; 2019. Developments in Lagrangian Data Assimilation and Coupled Data Assimilation to Support Earth System Model Initialization. , , . 10.13016/9JQ0-U5BR (View/edit entry) | 2019 |
Model application | 0 |
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Citations
Nr. of publications: | 19 |
Total citations: | 159 |
h-index: | 5 |
m-quotient: | 0.71 |
Publications per year