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1 heimbach 1.9 <ul><li>
2 dimitri 1.24 M. Baringer, et al., 2013: Meridional Overturning Circulation and Heat
3     Transport Observations in the Atlantic Ocean. Bull. Amer. Met. Soc., Special
4     Supplement: State of the Climate in 2012, S65-S68.
5 heimbach 1.9 </li></ul>
6    
7     <ul><li>
8 dimitri 1.1 A. Chaudhuri, R. Ponte, G. Forget, and P. Heimbach, 2013: A comparison of
9     atmospheric reanalysis surface products over the ocean and implications for
10 dimitri 1.25 uncertainties in air-sea boundary forcing. J. Clim., 26, 153-170.
11 dimitri 1.1 </li></ul>
12    
13     <ul><li>
14 dimitri 1.21 R. Chen, 2013: <a href="http://ecco2.org/manuscripts/2013/Chen2013.pdf">
15     Energy pathways and structures of oceanic eddies from the ECCO2 state
16     estimate and simplified models.</a> Ph.D. Thesis, MIT-WHOI Joint
17     Program, Cambridge, MA.
18 dimitri 1.10 </li></ul>
19    
20     <ul><li>
21 dimitri 1.11 B. Dushaw, P. Worcester, M. Dzieciuch, and D. Menemenlis,
22     2013: <a href="http://ecco2.org/manuscripts/2013/Dushaw2013.pdf"> On
23     the time-mean state of ocean models and the properties of long-range
24 dimitri 1.22 acoustic propagation.</a> J. Geophys. Res., 118, 4346-4362.
25 dimitri 1.3 </li></ul>
26    
27     <ul><li>
28 dimitri 1.1 I. Fenty and P. Heimbach, 2013: Coupled sea ice-ocean state estimation
29 dimitri 1.25 in the Labrador Sea and Baffin Bay. J. Phys. Oceanogr., 43, 884-904.
30 dimitri 1.1 </li></ul>
31    
32     <ul><li>
33     I. Fenty and P. Heimbach, 2013: Hydrographic preconditioning for seasonal sea
34 dimitri 1.25 ice anomalies in the Labrador Sea. J. Phys. Oceanogr., 43, 863-883.
35 dimitri 1.1 </li></ul>
36    
37     <ul><li>
38 dimitri 1.22 D. Goldberg and P. Heimbach, 2013: Parameter and state estimation with
39     a time-dependent adjoint marine ice sheet model. The Cryosphere, 7,
40     1659-1678.
41 dimitri 1.1 </li></ul>
42    
43     <ul><li>
44 heimbach 1.26 I. Hoteit, T. Hoar, G. Gopalakrishnan, N. Collins, J. Anderson,
45     B. Cornuelle, A. Koehl, and P. Heimbach, 2013: A MITgcm/DART ensemble
46     analysis and prediction system: Development and application to the
47     Gulf of Mexico. Dynamics of Atmospheres and Oceans,
48     63, 1-23, doi:10.1016/j.dynatmoce.2013.03.002.
49     </li></ul>
50    
51     <ul><li>
52 dimitri 1.10 A. Kalmikov, 2013: Uncertainty quantification in ocean state estimation.
53     Ph.D. Thesis, MIT-WHOI Joint Program, Cambridge, MA.
54     </li></ul>
55    
56     <ul><li>
57 dimitri 1.2 A. Khazendar, M. Schodlok, I. Fenty, S. Ligtenberg, E. Rignot, and
58 dimitri 1.18 M. van den Broeke, 2013:
59     <a href="http://ecco2.org/manuscripts/2013/Khazendar2013.pdf">
60     Observed thinning of Totten Glacier is linked to coastal polynya
61     variability.</a> Nat. Commun., 4, 2857.
62 dimitri 1.2 </li></ul>
63    
64     <ul><li>
65 dimitri 1.15 M. Manizza, M. Follows, S. Dutkiewicz, D. Menemenlis, C. Hill, R. Key, 2013:
66     <a href="http://ecco2.org/manuscripts/2013/Manizza2013.pdf">
67 dimitri 1.18 Changes in the Arctic Ocean CO2 sink (1996-2007): A regional model
68 dimitri 1.22 analysis.</a> Global Biogeochem. Cycles, 27, 1108-1118.
69     </li></ul>
70    
71     <ul><li>
72     M. Mazloff, R. Ferrari, and T. Schneider, 2013: The force balance of
73     the Southern Ocean meridional overturning circulation.
74     J. Phys. Oceanogr., 43, 1193-1208.
75     </li></ul>
76    
77     <ul><li>
78     M. Morlighem, E. Rignot, J. Mouginot, X. Wu, H. Seroussi, E. Larour,
79     and J. Paden, 2013: High-resolution bed topography mapping of Russell
80     Glacier, Greenland, inferred from Operation IceBridge data.
81     J. Glaciol., 59, 1016-1023.
82 dimitri 1.15 </li></ul>
83    
84     <ul><li>
85 dimitri 1.22 M. Morlighem, H. Seroussi, E. Larour and E. Rignot, 2013: Inversion of
86     basal friction in Antarctica using exact and incomplete adjoints of a
87     higher-order model, J. Geophys. Res., 118, 1746-1753.
88 dimitri 1.1 </li></ul>
89    
90     <ul><li>
91 dimitri 1.22 C. Piecuch and R. Ponte, 2013. Buoyancy-driven interannual sea level
92     changes in the tropical South Atlantic, Journal of Physical
93     Oceanography, 43, 533-547.
94 heimbach 1.20 </li></ul>
95    
96     <ul><li>
97 dimitri 1.3 R. Reynolds, D. Chelton, J. Roberts, M. Martin, D. Menemenlis, and C. Merchant,
98     2013: <a href="http://journals.ametsoc.org/doi/abs/10.1175/JCLI-D-12-00787.1">
99     Objective determination of feature resolution in two sea surface temperature
100 dimitri 1.6 analyses.</a> J. Clim., 26, 2514-2533.
101 dimitri 1.3 </li></ul>
102    
103     <ul><li>
104 dimitri 1.25 F. Roquet, C. Wunsch, G. Forget, P. Heimbach, et al., 2014: Estimates of the Southern Ocean General Circulation Improved by Animal-Borne Instruments. Geophys. Res. Lett., 40, 6176-6180.
105 heimbach 1.19 </li></ul>
106    
107     <ul><li>
108 dimitri 1.18 R. Sciascia, F. Straneo, C. Cenedese, and P. Heimbach, 2013: Seasonal
109     variability of sub- marine melt rate and circulation in an east Greenland
110 dimitri 1.25 fjord. J. Geophys. Res., 118, 2492-2506.
111 heimbach 1.9 </li></ul>
112    
113     <ul><li>
114 dimitri 1.18 K. Speer and G. Forget, 2013: Global distribution and formation of mode waters
115     (accepted book chapter). In: G.Siedler, J.Church, J.Gould and S.Griffies,
116     eds.: Ocean circulation and climate: observing and modelling the global ocean,
117     2nd Ed., Elsevier.
118 dimitri 1.16 </li></ul>
119    
120     <ul><li>
121 heimbach 1.23 F. Straneo and P. Heimbach, 2013: North Atlantic warming and the retreat of Greenland's outlet glaciers. Nature, 504, 36-43, doi:10.1038/nature12854.
122 heimbach 1.19 </li></ul>
123    
124     <ul><li>
125 dimitri 1.22 F. Straneo, P. Heimbach, O. Sergienko, and 14 others, 2013: Challenges to Understanding the Dynamic Response of Greenlands Marine Terminating Glaciers to Oceanic and Atmospheric Forcing. Bull. Amer. Met. Soc., 94, 1131-1144.
126 dimitri 1.1 </li></ul>
127    
128     <ul><li>
129 dimitri 1.7 R. Tenzer, N. Dayoub, and A. Abdalla, 2013: Analysis of a relative
130     offset between vertical datums at the North and South Islands of New
131     Zealand. Applied Geomatics,
132     <a href="http://link.springer.com/article/10.1007%2Fs12518-013-0106-8">
133     doi:10.1007/s12518-013-0106-8</a>.
134     </li></ul>
135    
136     <ul><li>
137 dimitri 1.27 R. Tulloch, C. Hill, and O. Jahn, 2013:
138     <a href="http://ocean.mit.edu/~tulloch/Publications/tulloch_etalagu11.pdf">
139     Possible spreadings of buoyant plumes and local coastline
140     sensitivities using flow syntheses from 1992 to 2007.</a> Geophysical
141     Monograph Series, 195, 245-255.
142     </li></ul>
143    
144     <ul><li>
145 dimitri 1.22 N. Vinogradova and R. Ponte, 2013. Clarifying the link between surface salinity and freshwater fluxes on monthly to inter-annual timescales, J. Geophys. Res., 118, 3190-3201.
146 heimbach 1.20 </li></ul>
147    
148     <ul><li>
149 dimitri 1.14 D. Volkov, F. Landerer, and S. Kirillov,
150     2013: <a href="http://ecco2.org/manuscripts/2013/VolkovCSR2013.pdf">
151     The genesis of sea level variability in the Barents Sea.</a>
152     Continental Shelf Reseach, 66, 92-104.
153     </li></ul>
154    
155     <ul><li>
156     D. Volkov and F. Landerer, 2013:
157     <a href="http://ecco2.org/manuscripts/2013/VolkovJGR2013.pdf">
158 dimitri 1.18 Non-seasonal fluctuations of the Arctic Ocean mass observed by the GRACE
159 dimitri 1.22 satellites.</a> J. Geophys. Res., 118, 6451-6460.
160 dimitri 1.10 </li></ul>
161    
162     <ul><li>
163 dimitri 1.18 C. Wortham, 2013: A multi-dimensional spectral description of ocean
164     variability with applications. Ph.D. Thesis, MIT-WHOI Joint Program,
165     Cambridge, MA.
166 heimbach 1.9 </li></ul>
167    
168     <ul><li>
169 dimitri 1.1 C. Wunsch, 2013: Covariances and linear predictability of the Atlantic
170 dimitri 1.25 Ocean. Deep-Sea Research Part II, 85, 228-243.
171 dimitri 1.1 </li></ul>
172    
173     <ul><li>
174 dimitri 1.10 C. Wunsch, 2013: Baroclinic motions and energetics as measured by altimeters.
175 dimitri 1.25 J. Atmos. Ocean Tech., 20, 140-150.
176 heimbach 1.9 </li></ul>
177    
178     <ul><li>
179 dimitri 1.10 C. Wunsch, R. Schmitt, and D. Baker, 2013:
180 heimbach 1.9 Climate change as an intergen- erational problem.
181     Proceedings of the National Academy of Sciences,
182 dimitri 1.25 110, 4435-4436.
183 heimbach 1.9 </li></ul>
184    
185     <ul><li>
186 dimitri 1.25 C. Wunsch and P. Heimbach, 2013: Two Decades of the Atlantic Meridional Overturning Circulation: Anatomy, Variations, Extremes, Prediction, and Overcoming Its Limitations. J. Clim., 26, 7167-7186.
187 heimbach 1.9 </li></ul>
188    
189     <ul><li>
190 dimitri 1.25 C. Wunsch and P. Heimbach, 2013: Dynamically and kinematically consistent
191     global ocean circulation and ice state estimates. In Ocean Circulation and
192     Climate: A 21st Century Perspective, ed. G. Siedler, S. Griffies, J. Gould,
193     and J. Church, Chapter 21, pp. 553-579, Academic Press, New York.
194 heimbach 1.9 </li></ul>
195    
196     <ul><li>
197 dimitri 1.11 Y. Xu, E. Rignot, I. Fenty, D. Menemenlis, and M. Flexas,
198     2013: <a href="http://ecco2.org/manuscripts/2013/Xu2013.pdf">
199     Subaqueous melting of Store Glacier, West Greenland from
200     three-dimensional, high-resolution numerical modeling and ocean
201 dimitri 1.22 observations.</a> Geophys. Res. Lett., 40, 4648-4653.
202 dimitri 1.11 </li></ul>
203    
204     <ul><li>
205     X. Zhai and C. Wunsch, 2013:
206 heimbach 1.9 On the Variability of Wind Power Input to the Oceans with a Focus on the
207     Subpolar North Atlantic.
208 dimitri 1.25 J. Clim., 26, 3892-3903.
209 dimitri 1.1 </li></ul>

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