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1 <ul><li>
2 G. Boezio, D. Menemenlis, and C. Mechoso, 2008: <a
3 href="http://ecco2.org/manuscripts/2008/ecco_cgcm.pdf">Impact of ECCO
4 Ocean State Estimates on the Initialization of Seasonal Climate Forecasts.</a>
5 J. Climate, in press.
6 </li></ul>
7
8 <ul><li>
9 J. Campin, J. Marshall, and D. Ferreira, 2008: <a
10 href="http://mitgcm.org/~jmc/iceLoading.pdf"> Sea-ice ocean coupling using a
11 rescaled vertical coordinate z*</a>, Ocean Modeling, in press.
12 </li></ul>
13
14 <ul><li>
15 J. Campin and J. Marshall, 2008: Implicit treatment of internal gravity waves
16 in the MIT general circulation model, in preparation.
17 </li></ul>
18
19 <ul><li>
20 A. Condron, P. Winsor, C. Hill, and D. Menemenlis, 2008: Response of
21 the Arctic freshwater budget to extreme NAO forcing. In preparation.
22 </li></ul>
23
24 <ul><li>
25 G. Danabasoglu, R. Ferrari, and J. McWilliams, 2008: Sensitivity of an ocean
26 general circulation model to a parameterization of near-surface eddy
27 fluxes. J. Climate, submitted.
28 </li></ul>
29
30 <ul><li>
31 B. Dushaw, P. Worcester, R. Andrew, B. Howe, J. Mercer, R. Spindel,
32 B. Cornuelle, M. Dzieciuch, W. Munk, T. Birdsall, K. Metzger,
33 D. Menemenlis, and C. Wunsch, 2007: A decade of acoustic thermometry
34 in the North Pacific Ocean: using long-range acoustic travel times to
35 test gyre-scale temperature variability derived from other
36 observations and ocean models. J. Geophys. Res., in preparation.
37 </li></ul>
38
39 <ul><li>
40 G. Forget, G. Maze, M. Buckley, and J. Marshall, 2008: Quantitative
41 and dynamical analysis of EDW formation using a model-data
42 synthesis. J. Phys. Oceanogr., in preparation.
43 </li></ul>
44
45 <ul><li>
46 B. Fox-Kemper and D. Menemenlis, 2008: <a
47 href="http://ecco2.org/manuscripts/2008/FoxKemperMenemenlis08.pdf">
48 Can Large Eddy Simulation Techniques Improve Mesoscale Rich Ocean
49 Models?</a> Eddy-Resolving Ocean Modeling, ed. Matthew Hecht &
50 Hiroyasu Hasumi, in press.
51 </li></ul>
52
53 <ul><li>
54 N. Gruber, M. Gloor, S. Fletcher, S. Doney, S. Dutkiewicz,
55 M. Follows, M. Gerber, A. Jacobson, F. Joos, K. Lindsay, D. Menemenlis,
56 A. Mouchet, J. Sarmiento, and T. Takahashi, 2008: <a
57 href="http://quercus.igpp.ucla.edu/publication/pdf_files/co2_source-sink_galley.pdf">
58 Oceanic sources and sinks of atmospheric CO2.</a> Global Biogeochem. Cycles,
59 submitted.
60 </li></ul>
61
62 <ul><li>
63 P. Heimbach, 2008: The MITgcm/ECCO adjoint modeling infrastructure. CLIVAR
64 Exchanges, January 2008, in press.
65 </li></ul>
66
67 <ul><li>
68 E. H. Hill III, D. Enderton, P. Heimbach, and C. Hill, 2008: SPGrid: A
69 numerical grid generation program for domain decomposed geophysical
70 fluid dynamics models. Mon. Weather Rev., in press.
71 </li></ul>
72
73 <ul><li>
74 R. Kwok, E. Hunke, W. Maslowski, D. Menemenlis, and J. Zhang, 2008: <a
75 href="http://ecco2.org/manuscripts/2008/kwok_etal_JGR08.pdf">Variability
76 of sea ice simulations assessed with RGPS kinematics.</a>
77 J. Geophys. Res., submitted.
78 </li></ul>
79
80 <ul><li>
81 M. Losch, D. Menemenlis, P. Heimbach, J.-M. Campin, and C. Hill, 2007:
82 A dynamicthermodynamic sea ice model for ocean climate estimation on
83 an Arakawa C-grid. J. Geophys. Res., in preparation.
84 </li></ul>
85
86 <ul><li>
87 M. Manizza, M. Follows, S. Dutckiewicz, J. McClelland, D. Menemenlis,
88 C. Hill, and J. Peterson, 2008: Modeling transport, fate, and lifetime
89 of riverine DOC in the Arctic Ocean, Global Biogeochem. Cycles, in
90 preparation.
91 </li></ul>
92
93 <ul><li>
94 G. Maze, G. Forget, M. Buckley and J. Marshall, 2008: Using
95 transformation and formation maps to study water mass transformation:
96 a case study of North Atlantic Eighteen Degree water. J. Phys.
97 Oceanogr., submitted.
98 </li></ul>
99
100 <ul><li>
101 D. Volkov and L.-L. Fu, 2008: The role of vorticity fluxes in the
102 dynamics of the Zapiola Anticyclone. Geophys. Res. Lett., submitted.
103 </li></ul>
104
105 <ul><li>
106 L. White and A. Adcroft, 2008: <a
107 href="http://ecco2.org/manuscripts/2008/white_adcroft_JCP08.pdf">A
108 high-order finite volume remapping scheme for nonuniform grids: the
109 piecewise quartic method (PQM).</a> Journal of Computational Physics,
110 revised.
111 </li></ul>

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