Revisiting the Causal Connection between the Great Salinity Anomaly of the 1970s and the Shutdown of Labrador Sea Deep Convection
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[1] Christopher M. Horvat,et al. Impact of horizontal resolution on global ocean–sea ice model simulations based on the experimental protocols of the Ocean Model Intercomparison Project phase 2 (OMIP-2) , 2020, Geoscientific Model Development.
[2] W. Johns,et al. Ocean circulation causes the largest freshening event for 120 years in eastern subpolar North Atlantic , 2020, Nature Communications.
[3] G. Danabasoglu,et al. Atlantic Multidecadal Variability and Associated Climate Impacts Initiated by Ocean Thermohaline Dynamics , 2020, Journal of Climate.
[4] G. Danabasoglu,et al. Robust and Nonrobust Aspects of Atlantic Meridional Overturning Circulation Variability and Mechanisms in the Community Earth System Model , 2019, Journal of Climate.
[5] J. Pietrzak,et al. Pathways and watermass transformation of Atlantic Water entering the Nordic Seas through Denmark Strait in two high resolution ocean models , 2019, Deep Sea Research Part I: Oceanographic Research Papers.
[6] E. Frajka‐Williams,et al. Wind-driven transport of fresh shelf water into the upper 30 m of the Labrador Sea , 2018, Ocean Science.
[7] G. Danabasoglu,et al. JRA-55 based surface dataset for driving ocean–sea-ice models (JRA55-do) , 2018, Ocean Modelling.
[8] Rong‐Hua Zhang. On the persistence and coherence of subpolar sea surface temperature and salinity anomalies associated with the Atlantic multidecadal variability , 2017 .
[9] I. Yashayaev,et al. Recurrent replenishment of Labrador Sea Water and associated decadal‐scale variability , 2016 .
[10] Patrick Heimbach,et al. OMIP contribution to CMIP6: experimental and diagnostic protocol for the physical component of the Ocean Model Intercomparison Project , 2016 .
[11] M. Prange,et al. Linkages between atmospheric blocking, sea ice export through Fram Strait and the Atlantic Meridional Overturning Circulation , 2016, Scientific Reports.
[12] G. Danabasoglu,et al. Atmospheric Conditions Associated with Labrador Sea Deep Convection: New Insights from a Case Study of the 2006/07 and 2007/08 Winters , 2016 .
[13] Jonathan L. Bamber,et al. Emerging impact of Greenland meltwater on deepwater formation in the North Atlantic Ocean , 2016 .
[14] R. Sutton,et al. A reversal of climatic trends in the North Atlantic since 2005 , 2016 .
[15] T. Mote,et al. Oceanic transport of surface meltwater from the southern Greenland ice sheet , 2016 .
[16] Craig M. Lee,et al. An assessment of the Arctic Ocean in a suite of interannual CORE-II simulations. Part I: Sea ice and solid freshwater , 2016 .
[17] B. Samuels,et al. North Atlantic simulations in Coordinated Ocean-ice Reference Experiments phase II (CORE-II). Part II: Inter-annual to decadal variability , 2016 .
[18] Craig M. Lee,et al. Greenland freshwater pathways in the sub-Arctic Seas from model experiments with passive tracers , 2016 .
[19] Veronika Eyring,et al. Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6) experimental design and organization , 2015 .
[20] K.,et al. The Community Earth System Model (CESM) large ensemble project: a community resource for studying climate change in the presence of internal climate variability , 2015 .
[21] R. Wood,et al. Exploring the impact of CMIP5 model biases on the simulation of North Atlantic decadal variability , 2015 .
[22] Michael Karcher,et al. Arctic freshwater export: Status, mechanisms, and prospects , 2015 .
[23] G. Danabasoglu,et al. The Origins of Late-Twentieth-Century Variations in the Large-Scale North Atlantic Circulation , 2014 .
[24] Doug M. Smith,et al. Decadal predictions of the cooling and freshening of the North Atlantic in the 1960s and the role of ocean circulation , 2014, Climate Dynamics.
[25] W. Collins,et al. The Community Earth System Model: A Framework for Collaborative Research , 2013 .
[26] E. Hansen,et al. Arctic Ocean freshwater: How robust are model simulations? , 2012 .
[27] C. Katsman,et al. Mechanisms behind the Temporary Shutdown of Deep Convection in the Labrador Sea: Lessons from the Great Salinity Anomaly Years 1968–71 , 2012 .
[28] D. Lawrence,et al. The CCSM4 Land Simulation, 1850-2005: Assessment of Surface Climate and New Capabilities , 2012 .
[29] Marika M. Holland,et al. Improved sea ice shortwave radiation physics in CCSM4: The impact of melt ponds and aerosols on Arctic Sea ice , 2012 .
[30] C. Deser,et al. Atmospheric forcing of Fram Strait sea ice export: a closer look , 2010 .
[31] J. Bamber,et al. Short-term impacts of enhanced Greenland freshwater fluxes in an eddy-permitting ocean model , 2009 .
[32] Stefan Kern,et al. Fram Strait sea ice volume export estimated between 2003 and 2008 from satellite data , 2009 .
[33] M. Meredith,et al. Sources and fate of freshwater exported in the East Greenland Current , 2009 .
[34] Stephen G. Yeager,et al. The global climatology of an interannually varying air–sea flux data set , 2009 .
[35] M. Kimoto,et al. Reevaluation of historical ocean heat content variations with time-varying XBT and MBT depth bias corrections , 2009 .
[36] H. Drange,et al. Response of the North Atlantic subpolar gyre to persistent North Atlantic oscillation like forcing , 2009 .
[37] Thierry Penduff,et al. Mesoscale Eddies in the Labrador Sea and Their Contribution to Convection and Restratification , 2008 .
[38] Marika M. Holland,et al. Ocean viscosity and climate , 2008 .
[39] Charles C. Eriksen,et al. Buoyant Eddies Entering the Labrador Sea Observed with Gliders and Altimetry , 2007 .
[40] U. Send,et al. Origin and Composition of Seasonal Labrador Sea Freshwater , 2007 .
[41] I. Yashayaev. Hydrographic changes in the Labrador Sea, 1960–2005 , 2007 .
[42] M. Karcher,et al. Current estimates of freshwater flux through Arctic and subarctic seas , 2007 .
[43] F. Straneo. Heat and Freshwater Transport through the Central Labrador Sea , 2006 .
[44] J. Jungclaus,et al. Variability of Fram Strait sea ice export: causes, impacts and feedbacks in a coupled climate model , 2006 .
[45] I. Belkin. Propagation of the “Great Salinity Anomaly” of the 1990s around the northern North Atlantic , 2004 .
[46] Ron Kwok,et al. Fram Strait sea ice outflow , 2004 .
[47] T. Schmith,et al. Fram Strait Ice Export during the Nineteenth and Twentieth Centuries Reconstructed from a Multiyear Sea Ice Index from Southwestern Greenland , 2003 .
[48] Mojib Latif,et al. Formation and propagation of great salinity anomalies , 2003 .
[49] Juliette Mignot,et al. On the interannual variability of surface salinity in the Atlantic , 2003 .
[50] M. Visbeck,et al. Quasi-decadal Salinity Fluctuations in the Labrador Sea* , 2002 .
[51] T. Vinje. Fram Strait Ice Fluxes and Atmospheric Circulation: 1950–2000 , 2001 .
[52] Carsten Eden,et al. Mechanism of Interannual to Decadal Variability of the North Atlantic Circulation , 2001 .
[53] John Marshall,et al. Open‐ocean convection: Observations, theory, and models , 1999 .
[54] S. Levitus,et al. “Great Salinity Anomalies” in the North Atlantic , 1998 .
[55] S. Häkkinen,et al. Influence of sea ice on the thermohaline circulation in the Arctic‐North Atlantic Ocean , 1997 .
[56] James C. McWilliams,et al. Sensitivity to Surface Forcing and Boundary Layer Mixing in a Global Ocean Model: Annual-Mean Climatology , 1997 .
[57] J. Hurrell. Decadal Trends in the North Atlantic Oscillation: Regional Temperatures and Precipitation , 1995, Science.
[58] S. Häkkinen. An Arctic source for the great salinity anomaly: A simulation of the Arctic ice‐ocean system for 1955–1975 , 1993 .
[59] J. Walsh,et al. Arctic Contribution to Upper-Ocean Variability in the North Atlantic , 1990 .
[60] E. Carmack,et al. The role of sea ice and other fresh water in the Arctic circulation , 1989 .
[61] R. Dickson,et al. The great salinity anomaly in the northern North Atlantic 1968-1982 , 1988 .
[62] J. Lazier. Oceanographic conditions at Ocean Weather Ship Bravo, 1964–1974 , 1980 .
[63] J. Paton,et al. Global Climatology , 1970, Nature.