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1 <ul><li>
2 R. Abernathey, J. Marshall, M. Mazloff, and E. Shuckburgh, 2010:
3 <a href="http://ams.allenpress.com/perlserv/?request=get-abstract&doi=10.1175%2F2009JPO4201.1">
4 Enhancement of mesoscale eddy stirring at steering levels in the
5 Southern Ocean.</a> J. Phys. Oceanogr., 40, 170-184.
6 </li></ul>
7
8 <ul><li>
9 J. Campin, C. Hill, H. Jones, and J. Marshall, submitted:
10 <a href="http://www-paoc.mit.edu/paoc/papers/superparam.pdf">
11 Superparameterization in ocean modeling: application to deep
12 convection.</a> Ocean Modeling.
13 </li></ul>
14
15 <ul><li>
16 X. Davis, L. Rothstein, W. Dewar, and D. Menemenlis, in press:
17 <a href="http://ecco2.org/manuscripts/2010/DavisJcli10.pdf">
18 Numerical investigations of seasonal and interannual variability of
19 North Pacific Subtropical Mode Water and its implications for Pacific
20 climate variability.</a> J. Clim.
21 </li></ul>
22
23 <ul><li>
24 M. Durand, L. Fu, D. Lettenmaier, D. Alsdorf, E. Rodriguez, and
25 D. Fernandez, 2010:
26 <a href="http://ecco2.org/manuscripts/2010/DurandIEEE2010.pdf">
27 The Surface Water and Ocean Topography mission: observing terrestrial
28 surface water and oceanic submesoscale eddies.</a> Proceedings of the
29 IEEE, 766.
30 </li></ul>
31
32 <ul><li>
33 G. Forget, in press:
34 <a href="http://ams.allenpress.com/archive/1520-0485/preprint/2009/pdf/10.1175_2009JPO4043.1.pdf">
35 Mapping ocean observations in a dynamical framework: a 2004-2006 ocean
36 atlas.</a> J. Phys. Oceanogr.
37 </li></ul>
38
39 <ul><li>
40 G. Forget, G. Maze, M. Buckley, and J. Marshall, submitted:
41 Quantitative and dynamical analysis of EDW formation using a
42 model-data synthesis. J. Phys. Oceanogr.
43 </li></ul>
44
45 <ul><li>
46 J. Hausman and V. Zlotnicki, 2010:
47 <a href="http://ecco2.org/manuscripts/2010/HausmanMarineGeodesy10.pdf">
48 Sea state bias in radar altimetry revisited.</a> Marine Geodesy, 33,
49 336-347.
50 </li></ul>
51
52 <ul><li>
53 Heimbach, P., C. Wunsch, R.M. Ponte, G. Forget, C. Hill, and J. Utke, 2010: Timescales and Regions of the Sensitivity of Atlantic Meridional Volume and Heat Transport Magnitudes: Toward Observing System Design. Deep Sea Res. II (special issue on the AMOC), in press.</li></ul>
54
55 <ul><li>
56 Heimbach, P., D. Menemenlis, M. Losch, J. Campin, and C. Hill,
57 2010: <a
58 href="http://ecco2.org/manuscripts/2010/ceaice_part2.pdf"> On the
59 formulation of sea-ice models. Part 2: Lessons from multi-year adjoint
60 sea ice export sensitivities through the Canadian Arctic
61 Archipelago.</a> Ocean Modelling, 33, 145-158, doi:10.1016/j.ocemod.2010.02.002.
62 </li></ul>
63
64 <ul><li>
65 Herraiz Borreguero, L., R. Mottram, and I. Cvijanovic, 2010: <a href="http://www.mit.edu/~heimbach/papers/2010_acdc2010_eos_ocean_icesheet.pdf">Discussing progress in understanding ice sheet-ocean interactions.</a> EOS Transactions AGU, 91(45), p. 419 (Advanced Climate Dynamics Course - ACDC 2010, co-organized by P. Heimbach, MIT).
66 </li></ul>
67
68 <ul><li>
69 E. Hill, D. Enderton, P. Heimbach, and C. Hill, submitted: SPGrid: A
70 numerical grid generation program for domain decomposed geophysical
71 fluid dynamics models. Submitted to Mon. Weather Rev.
72 </li></ul>
73
74 <ul><li>
75 Hoteit, I., B. Cornuelle, and P. Heimbach, 2010:
76 An Eddy-Permitting, Dynamically Consistent Adjoint-Based Assimilation System for the Tropical Pacific:
77 Hindcast Experiments in 2000.
78 J. Geophys. Res., 115, C03001, doi:10.1029/2009JC005437.
79 </li></ul>
80
81 <ul><li>
82 T. Lee, T. Awaji, M. Balmaseda, N. Ferry, Y. Fuji, I. Fukumori,
83 B. Giese, P. Heimbach, A. Koehl, S. Masina, E. Remy, A. Rosati,
84 M.P. Schodlok, D. Stammer, and A.T. Weaver, 2010: Consistency and
85 fidelity of Indonesian-throughflow total volume transport estimated by
86 14 ocean data assimilation products. Dyn. Atmos. Ocean (Special issue
87 on the ITF), in press, doi:10.1016/j.dynatmoce.2009.12.004
88 </li></ul>
89
90 <ul><li>
91 M. Losch, D. Menemenlis, P. Heimbach, J. Campin, and C. Hill, 2010:
92 <a href="http://ecco2.org/manuscripts/2010/ceaice_part1.pdf"> On the
93 formulation of sea-ice models. Part 1: Effects of different solver
94 implementations and parameterizations.</a> Ocean Modelling, 33, 129-144,
95 doi:10.1016/j.ocemod.2009.12.008.
96 </li></ul>
97
98 <ul><li>
99 M. Manizza, M. Follows, S. Dutkiewicz, D. Menemenlis, J. McClelland,
100 C. Hill1, B. Peterson, R. Key, submitted:
101 <a href="http://ecco2.org/manuscripts/2010/ManizzaJGR2010.pdf">
102 Modeling the Arctic Ocean carbon cycle and its sensitivity to the
103 influence of the riverine dissolved organic carbon.</a>
104 J. Geophys. Res.
105 </li></ul>
106
107 <ul><li>
108 G. Maze, G. Forget, M. Buckley and J. Marshall, submitted: Using
109 transformation and formation maps to study water mass transformation:
110 a case study of North Atlantic Eighteen Degree water. J. Phys.
111 Oceanogr.
112 </li></ul>
113
114 <ul><li>
115 M. Mazloff, P. Heimbach, and C. Wunsch, in press: An Eddy-Permitting
116 Southern Ocean State Estimate. J. Phys. Oceanogr., 40(5), 880-899, doi:10.1175/2009JPO4236.1.
117 </li></ul>
118
119 <ul><li>
120 A. McGuire, D. Hayes, D. Kicklighter, M. Manizza, Q. Zhuang, M. Chen,
121 M. Follows, K. Gurney, J. McClelland, J. Melillo, B. Peterson, and
122 R. Prinn, 2010:
123 <a href="http://ecco2.org/manuscripts/2010/McGuireTellus2010.pdf">
124 An analysis of the carbon balance of the Arctic Basin
125 from 1997 to 2006.</a> Tellus, doi:10.1111/j.1600-0889.2010.00497.x
126 </li></ul>
127
128 <ul><li>
129 A. T. Nguyen, D. Menemenlis, and R. Kwok, submitted:
130 <a href="http://ecco2.org/manuscripts/2010/NguyenJGR10.pdf">
131 Arctic ice-ocean simulation with optimized model parameters: approach
132 and assessment.</a> J. Geophys. Res.
133 </li></ul>
134
135 <ul><li>
136 R. Tulloch, J. Marshall, C. Hill, and K. Smith, submitted:
137 <a href="http://ocean.mit.edu/~tulloch/Publications/tulloch_etaljpo10.pdf">
138 Scales, growth rates and spectral fluxes of baroclinic instability in
139 the ocean.</a> J. Phys. Oceanogr.
140 </li></ul>
141
142 <ul><li>
143 J. Utke, L. Harscoet, P. Heimbach, C. Hill, P. Hovland, and U.
144 Naumann, in press: Toward adjointable MPI. Proceedings of the 23rd
145 IEEE International Parallel & Distributed Processing Symposium.
146 </li></ul>
147
148 <ul><li>
149 Vinogradova, N.T., R.M. Ponte, M.E. Tamisiea, J.L. Davis, and
150 E.M. Hill, submitted: Effects of self-attraction and loading on annual
151 variations of ocean bottom pressure. J. Geophys. Res.
152 </li></ul>
153
154 <ul><li>
155 P. van der Werf, P. van Leeuwen, H. Ridderinkhof, and W. de Ruijter, 2010:
156 <a href="http://www.agu.org/pubs/crossref/2010/2009JC005633.shtml">
157 Comparison between observations and models of the Mozambique Channel
158 transport: Seasonal cycle and eddy frequencies.</a>
159 J. Geophys. Res., 115, C02002.
160 </li></ul>
161
162 <ul><li>
163 J. Willis, 2010:
164 <a href="http://www.agu.org/journals/ABS/2010/2010GL042372.shtml">
165 Can in situ floats and satellite altimeters detect
166 long-term changes in Atlantic Ocean overturning?</a>
167 Geophys. Res. Let., 37, L06602.
168 </li></ul>
169
170 <ul><li>
171 C. Wunsch, in press: The oceanic variability spectrum and transport
172 trends. Atmosphere-Ocean.
173 </li></ul>
174
175 <ul><li>
176 Zanna, L., P. Heimbach, A. Moore, and E. Tziperman, 2010:
177 Optimal growth of Atlantic SST anomalies in an idealized ocean GCM.
178 J. Phys. Oceanogr., 40(5), 983-1003, doi:10.1175/2009JPO4196.1.
179 </li></ul>
180
181 <ul><li>
182 Zanna L., P. Heimbach, A.M. Moore and E. Tziperman, 2010: Optimal
183 excitation of interannual Atlantic meridional overturning circulation
184 variability. J. Climate, in press, doi:10.1175/2010JCLI3610.1.
185 </li></ul>

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