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1 <ul><li>
2 J. Campin, C. Hill, H. Jones, and J. Marshall, 2011:
3 <a href="http://www-paoc.mit.edu/paoc/papers/superparam.pdf">
4 Superparameterization in ocean modeling: application to deep
5 convection.</a> Ocean Modeling, in press.
6 </li></ul>
7
8 <ul><li>
9 A. Condron and P. Winsor, 2011:
10 <a href="http://ecco2.org/manuscripts/2011/CondronWinsor2011.pdf">
11 A subtropical fate awaited freshwater discharged from glacial Lake
12 Agassiz.</a> Geophys. Res. Lett., 38, L03705.
13 </li></ul>
14
15 <ul><li>
16 X. Davis, L. Rothstein, W. Dewar, and D. Menemenlis, 2011:
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., in press.
21 </li></ul>
22
23 <ul><li>
24 G. Forget, G. Maze, M. Buckley, and J. Marshall, 2011:
25 Estimated Seasonal Cycle of North Atlantic Eighteen Degree Water Volume.
26 J. Phys. Oceanogr., in press.
27 </li></ul>
28
29 <ul><li>
30 P. Heimbach, C. Wunsch, R. Ponte, G. Forget, C. Hill, and J. Utke, 2011:
31 Timescales and Regions of the Sensitivity of Atlantic Meridional Volume and
32 Heat Transport Magnitudes: Toward Observing System Design. Deep Sea Res. II
33 (special issue on the AMOC), in press.
34 </li></ul>
35
36 <ul><li>
37 E. Hill, D. Enderton, P. Heimbach, and C. Hill, 2011: SPGrid: A
38 numerical grid generation program for domain decomposed geophysical
39 fluid dynamics models. Unpublished manuscript.
40 </li></ul>
41
42 <ul><li>
43 M. Manizza, M. Follows, S. Dutkiewicz, D. Menemenlis, J. McClelland,
44 C. Hill, B. Peterson, R. Key, 2011:
45 A model of the Arctic Ocean carbon cycle.
46 J. Geophys. Res., submitted.
47 </li></ul>
48
49 <ul><li>
50 G. Maze, G. Forget, M. Buckley and J. Marshall, 2011: Using
51 transformation and formation maps to study water mass transformation:
52 a case study of North Atlantic Eighteen Degree water. J. Phys.
53 Oceanogr, submitted.
54 </li></ul>
55
56 <ul><li>
57 A. Nguyen, D. Menemenlis, and R. Kwok, 2011:
58 <a href="http://ecco2.org/manuscripts/2011/NguyenJGR2011.pdf">
59 Arctic ice-ocean simulation with optimized model parameters: approach
60 and assessment.</a> J. Geophys. Res., in press.
61 </li></ul>
62
63 <ul><li>
64 R. Tulloch, J. Marshall, C. Hill, and K. Smith, 2011:
65 <a href="http://ocean.mit.edu/~tulloch/Publications/tulloch_etaljpo10.pdf">
66 Scales, growth rates and spectral fluxes of baroclinic instability in
67 the ocean.</a> J. Phys. Oceanogr., in press.
68 </li></ul>
69
70 <ul><li>
71 C. Ubelmann and L. Fu, 2011:
72 <a href="http://ecco2.org/manuscripts/2011/UbelmannFu2011.pdf">
73 Vorticity structures in the tropical Pacific from a numerical simulation.</a>
74 J. Phys. Oceanogr., submitted.
75 </li></ul>
76
77 <ul><li>
78 N. Vinogradova, R. Ponte, M. Tamisiea, J. Davis, and
79 E. Hill, 2011: Effects of self-attraction and loading on annual
80 variations of ocean bottom pressure. J. Geophys. Res., submitted.
81 </li></ul>
82
83 <ul><li>
84 N. Vinogradova, R. Ponte, and P. Heimbach, 2011: Dynamics and forcing of sea
85 surface temperature variability on climate time scales. J. Clim., submitted.
86 </li></ul>
87
88 <ul><li>
89 D. Volkov and L. Fu, 2011: Mechanism for the interannual variability of the
90 Azores Current eddy energy. Geophys. Res. Lett., submitted.
91 </li></ul>
92
93 <ul><li>
94 Y. Xu and L. Fu, 2011: Global variability of the wavenumber spectrum of
95 oceanic mesoscale turbulence. J. Phys. Oceanogr., in press,
96 doi:10.1175/2010JPO4558.1.
97 </li></ul>
98
99 <ul><li>
100 L. Zanna, P. Heimbach, A. Moore, and E. Tziperman, 2011: Optimal
101 excitation of interannual Atlantic meridional overturning circulation
102 variability. J. Climate, in press, doi:10.1175/2010JCLI3610.1.
103 </li></ul>
104
105 <ul><li>
106 L. Zanna, P. Heimbach, A. Moore and E. Tziperman, 2011. Analysis of the
107 predictability and variability of the Atlantic ocean in response to optimal
108 surface excitation. Quart. J. Roy. Met. Soc., submitted.
109 </li></ul>

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