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revision 1.22 by dimitri, Wed Nov 26 20:39:46 2014 UTC revision 1.23 by dimitri, Sun Dec 21 14:21:23 2014 UTC
# Line 46  global eddy-permitting state estimate. < Line 46  global eddy-permitting state estimate. <
46  </li></ul>  </li></ul>
47    
48  <ul><li>  <ul><li>
49  Dail, H. and C. Wunsch, 2014:  H. Dail and C. Wunsch, 2014: Dynamical Reconstruction of Upper-Ocean
50  Dynamical Reconstruction of Upper-Ocean Conditions in the Last Glacial Maximum Atlantic.  Conditions in the Last Glacial Maximum Atlantic.  J. Clim., 27, 807–823.
 J. Clim., 27(2), 807–823. doi:10.1175/JCLI-D-13-00211.1  
51  </ul></li>  </ul></li>
52    
53  <ul><li>  <ul><li>
54  G. Danabasoglu, et al., 2014: North Atlantic simulations in  G. Danabasoglu, et al., 2014: North Atlantic simulations in Coordinated
55  Coordinated Ocean-ice Reference Experiments, phase II (CORE-II): Part  Ocean-ice Reference Experiments, phase II (CORE-II): Part I: Mean
56  I: Mean states. Ocean Modelling, 73, 76-107, doi:10.1016/j.ocemod.2013.10.005.  states. Ocean Modelling, 73, 76-107.
57  </li></ul>  </li></ul>
58    
59  <ul><li>  <ul><li>
60  Danabasoglu, G., R. Curry, P. Heimbach, Y. Kushnir, C. Meinen, R. Msadek, M. Patterson, L. Thompson, S. Yeager, and R. Zhang, 2014:  G. Danabasoglu, R. Curry, P. Heimbach, Y. Kushnir, C. Meinen, R. Msadek,
61  2013 US AMOC Science Team Annual Report on Progress and Priorities. 162 pp.  M. Patterson, L. Thompson, S. Yeager, and R. Zhang, 2014: 2013 US AMOC Science
62  <a href="https://usclivar.org/sites/default/files/amoc/2014/USAMOC_2013AnnualReport_final.pdf">US CLIVAR Report 2014-4</a>, US CLIVAR Project Office, Washington D.C., 20006.  Team Annual Report on Progress and Priorities. 162 pp. <a
63    href="https://usclivar.org/sites/default/files/amoc/2014/USAMOC_2013AnnualReport_final.pdf">
64    US CLIVAR Report 2014-4</a>, US CLIVAR Project Office, Washington D.C., 20006.
65  </ul></li>  </ul></li>
66    
67  <ul><li>  <ul><li>
68  Dansereau, V., P. Heimbach, and M. Losch, 2014:  V. Dansereau, P. Heimbach, and M. Losch, 2014: Simulation of sub-ice shelf
69  Simulation of sub-ice shelf melt rates in a general circulation model: velocity-dependent transfer and the role of friction.  melt rates in a general circulation model: velocity-dependent transfer and the
70  J. Geophys. Res., 119(3), 1765-1790, doi:10.1002/2013JC008846.  role of friction.  J. Geophys. Res., 119, 1765-1790.
71  </ul></li>  </ul></li>
72    
73  <ul><li>  <ul><li>
# Line 85  Deep-Sea Res. I, 86, 1-20. Line 86  Deep-Sea Res. I, 86, 1-20.
86  </li></ul>  </li></ul>
87    
88  <ul><li>  <ul><li>
89  M. Flexas, M. Schodlok, L. Padman, D. Menemenlis, and A. Orsi, 2014:  M.M. Flexas, M. Schodlok, L. Padman, D. Menemenlis, and A. Orsi, 2014:
90  <a href="http://ecco2.org/manuscripts/2014/Flexas2014.pdf">  <a href="http://ecco2.org/manuscripts/2014/Flexas2014.pdf">
91  Role of tides on the formation of the Antarctic Slope Front at the  Role of tides on the formation of the Antarctic Slope Front at the
92  Weddell-Scotia Confluence.</a> J. Geophys. Res., submitted.  Weddell-Scotia Confluence.</a> J. Geophys. Res., submitted.
93  </li></ul>  </li></ul>
94    
95  <ul><li>  <ul><li>
96  Forget, G. and R.M. Ponte, 2014: The partition of regional sea level variability.  G. Forget and R.M. Ponte, 2014: The partition of regional sea level
97  Prog. Oceanogr., submitted.  variability.  Prog. Oceanogr., submitted.
98  </ul></li>  </ul></li>
99    
100  <ul><li>  <ul><li>
# Line 112  Tech., in press. Line 113  Tech., in press.
113  </li></ul>  </li></ul>
114    
115  <ul><li>  <ul><li>
116  Heimbach, P., F. Straneo, O. Sergienko, and G. Hamilton, 2014:  P. Heimbach, F. Straneo, O. Sergienko, and G. Hamilton, 2014:
117  International workshop on understanding the response of Greenlands marine-terminating glaciers to oceanic and atmospheric forcing: Challenges to improving observations, process understanding and modeling. June 4-7, 2013, Beverly, MA, USA.  International workshop on understanding the response of Greenlands marine-terminating glaciers to oceanic and atmospheric forcing: Challenges to improving observations, process understanding and modeling. June 4-7, 2013, Beverly, MA, USA.
118  <a href="http://www.usclivar.org/sites/default/files/documents/2014/2013GRISOWorkshopReport_v2_0.pdf">US CLIVAR Report 2014-1</a>, US CLIVAR Project Office, Washington DC, 20006.  <a href="http://www.usclivar.org/sites/default/files/documents/2014/2013GRISOWorkshopReport_v2_0.pdf">US CLIVAR Report 2014-1</a>, US CLIVAR Project Office, Washington DC, 20006.
119  </ul></li>  </ul></li>
# Line 124  Quantification in Global Ocean State Est Line 125  Quantification in Global Ocean State Est
125  </li></ul>  </li></ul>
126    
127  <ul><li>  <ul><li>
128  Liang, X., C. Wunsch, P. Heimbach, and G. Forget, 2014:  X. Liang, C. Wunsch, P. Heimbach, and G. Forget, 2014:
129  Vertical redistribution of oceanic heat. Submitted.  Vertical redistribution of oceanic heat. Submitted.
130  </ul></li>  </ul></li>
131    
# Line 150  L. Ott, S. Pawson, J. Collatz, W. Gregg, Line 151  L. Ott, S. Pawson, J. Collatz, W. Gregg,
151  C. Rousseaux, K. Bowman, J. Liu, A. Eldering, M. Gunson, S. Kawa,  C. Rousseaux, K. Bowman, J. Liu, A. Eldering, M. Gunson, S. Kawa,
152  2014: Quantifying the observability of CO2 flux uncertainty in  2014: Quantifying the observability of CO2 flux uncertainty in
153  atmospheric CO2 records using products from NASA's Carbon Monitoring  atmospheric CO2 records using products from NASA's Carbon Monitoring
154  Flux Pilot Project. J. Geophys. Res., submitted.  Flux Pilot Project. J. Geophys. Res., in press.
155  </li></ul>  </li></ul>
156    
157  <ul><li>  <ul><li>
# Line 171  in the Australian-Antarctic and Bellings Line 172  in the Australian-Antarctic and Bellings
172  </li></ul>  </li></ul>
173    
174  <ul><li>  <ul><li>
175  Sciascia, R., C. Cenedese, D. Nicoli, P. Heimbach, and F. Straneo, 2014:  R. Sciascia, C. Cenedese, D. Nicoli, P. Heimbach, and F. Straneo, 2014: Impact
176  Impact of periodic intermediary flows on submarine melting of a Greenland glacier.  of periodic intermediary flows on submarine melting of a Greenland glacier.
177  J. Geophys. Res., 119(10), 7078-7098, doi:10.1002/2014JC009953.  J. Geophys. Res., 119, 7078-7098.
178  </ul></li>  </ul></li>
179    
180  <ul><li>  <ul><li>
# Line 204  self-attraction and loading effects, J. Line 205  self-attraction and loading effects, J.
205  </li></ul>  </li></ul>
206    
207  <ul><li>  <ul><li>
208    J. Whitefield, P. Winsor, J. McClelland, and D. Menemenlis, 2014: A new river
209    discharge and river temperature data set for the pan-Arctic region. Ocean
210    Modelling, in press.
211    </li></ul>
212    
213    <ul><li>
214  C. Wortham and C. Wunsch, 2014: A multi-dimensional spectral description of  C. Wortham and C. Wunsch, 2014: A multi-dimensional spectral description of
215  ocean variability, J. Phys. Oceanogr., 44, 944-966, doi:10.1175/JPO-D-13-0113.1.  ocean variability, J. Phys. Oceanogr., 44, 944-966, doi:10.1175/JPO-D-13-0113.1.
216  </li></ul>  </li></ul>

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