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1 dimitri 1.1 <ul><li>
2     R. Abernathey, D. Ferreira, and A. Klocker, 2015: Diagnostics of eddy
3     mixing in a circumpolar channel. Ocean Modelling, submitted.
4     </li></ul>
5    
6     <ul><li>
7     H. Brix, D. Menemenlis, C. Hill, S. Dutkiewicz, O. Jahn, D. Wang,
8     K. Bowman, and H. Zhang, 2015:
9     <a href="http://ecco2.org/manuscripts/2015/Brix2015.pdf"> Using
10     Green's Functions to initialize and adjust a global, eddying ocean
11     biogeochemistry general circulation model.</a> Ocean Modelling,
12     submitted.
13     </li></ul>
14    
15     <ul><li>
16     M. Buckley, R. Ponte, G. Forget, and P. Heimbach, 2015: Determining the
17     origins of advective heat transport variability in the North Atlantic. J.
18 heimbach 1.14 Clim., 18(10), 3943-3956, doi:10.1175/JCLI-D-14-00579.1.
19 dimitri 1.1 </li></ul>
20    
21     <ul><li>
22 dimitri 1.5 K. Childers, 2015:
23     <a href="http://ecco2.org/manuscripts/2015/Childers2015.pdf">
24     Circulation and Transport Across the Iceland Faroes Shetland Ridge.</a>
25     Ph.D. Thesis, Marine and Atmospheric Science, Stony Brook University, NY.
26     </li></ul>
27    
28     <ul><li>
29 dimitri 1.4 P. Duarte, P. Assmy, H. Hop, G. Spreen, S. Gerland, and S. Hudson,
30     2015: <a href="http://ecco2.org/manuscripts/2015/Duarte2015.pdf"> The
31     importance of vertical resolution in sea ice algae production models.</a>
32     J. Mar. Syst., 145, 69-90.
33     </li></ul>
34    
35     <ul><li>
36 dimitri 1.1 M.M. Flexas, M. Schodlok, L. Padman, D. Menemenlis, and A. Orsi, 2015:
37     <a href="http://ecco2.org/manuscripts/2015/Flexas2015.pdf">
38     Role of tides on the formation of the Antarctic Slope Front at the
39     Weddell-Scotia Confluence.</a> J. Geophys. Res., submitted.
40     </li></ul>
41    
42     <ul><li>
43     G. Forget and R.M. Ponte, 2015: The partition of regional sea level
44 heimbach 1.14 variability. Prog. Oceanogr., n revision.
45 dimitri 1.1 </ul></li>
46    
47     <ul><li>
48 heimbach 1.14 Forget, G., J.M. Campin, P. Heimbach, C.N. Hill, R.M. Ponte, and C. Wunsch, 2015: ECCO version 4: an integrated framework for non-linear inverse modeling and global ocean state estimation. Geosci. Model Dev. Discuss., 8, 3653-3743, doi:10.5194/gmdd-8-3653-2015.
49 heimbach 1.13 </ul></li>
50    
51     <ul><li>
52 dimitri 1.7 D. Halkides, D. Waliser, T. Lee, D. Menemenlis, and B. Guan,
53     2015: <a href="http://ecco2.org/manuscripts/2015/Halkides2015.pdf">
54     Quantifying the processes controlling intraseasonal mixed-layer temperature
55 dimitri 1.12 variability in the tropical Indian Ocean.</a> J. Geophys. Res., 120, 692-715.
56 dimitri 1.1 </li></ul>
57    
58     <ul><li>
59     D. Halpern, D. Menemenlis, and X. Wang,
60     2015: <a href="http://ecco2.org/manuscripts/2015/Halpern2015.pdf">
61     Impact of data assimilation on ECCO2 Equatorial Undercurrent and North
62     Equatorial Countercurrent in the Pacific Ocean.</a> J. Atmos. Ocean
63     Tech., 32, 131-143.
64     </li></ul>
65    
66     <ul><li>
67 heimbach 1.13 Heimbach, P., 2015: Application of derivative code in climate modeling.
68     in: N. Gauger, M. Giles, M. Gunzburger, and U. Naumann (eds.):
69     Adjoint Methods in Computational Science, Engineering, and Finance.
70     Dagstuhl Reports, 4(9), 14-16, doi:10.4230/DagRep.4.9.1
71 dimitri 1.2 </li></ul>
72    
73     <ul><li>
74 dimitri 1.1 X. Liang, C. Wunsch, P. Heimbach, and G. Forget, 2015:
75 heimbach 1.14 Vertical redistribution of oceanic heat. 28(9), 3821-3833,
76     doi:10.1175/JCLI-D-14-00550.1.
77 dimitri 1.1 </ul></li>
78    
79     <ul><li>
80 dimitri 1.9 L. Ott, S. Pawson, G. Collatz, W. Gregg, D. Menemenlis, H. Brix, C. Rousseaux,
81     K. Bowman, J. Liu, A. Eldering, M. Gunson, and S. Kawa,
82 dimitri 1.6 2015: <a href="http://ecco2.org/manuscripts/2015/Ott2015.pdf"> Assessing the
83 dimitri 1.9 magnitude of CO2 flux uncertainty in atmospheric CO2 records using products
84     from NASA's Carbon Monitoring Flux Pilot Project.</a> J. Geophys. Res., 120,
85 dimitri 1.10 734-765.
86 dimitri 1.1 </li></ul>
87    
88     <ul><li>
89     C. Piecuch, I. Fukumori, R. Ponte, and O. Wang, 2015: Vertical
90 dimitri 1.3 structure of ocean pressure fluctuations with application to
91     satellite-gravimetric observations. J. Atmos. Oce. Tech., in press.
92 dimitri 1.1 </li></ul>
93    
94     <ul><li>
95     G. Spreen, R. Kwok, D. Menemenlis, and A. Nguyen, 2015: Sea ice
96     deformation in a coupled ocean-sea ice model and in satellite remote
97     sensing data. J. Geophys. Res., submitted.
98     </li></ul>
99    
100     <ul><li>
101 heimbach 1.14 Storto, A., and 36 others, 2015: Steric sea level variability (1993-2010) in an ensemble of ocean reanalyses and objective analyses. Clim. Dyn., in press, doi:10.1007/s00382-015-2554-9
102     </li></ul>
103    
104     <ul><li>
105     Vinogradova, N. T., Ponte, R. M., Quinn, K. J., Tamisiea, M. E., Campin, J.-M., and Davis, J. L., 2015:
106     Dynamic Adjustment of the Ocean Circulation to Self-Attraction and Loading Effects.
107     J. Phys. Oceanogr., 45(3), 678–689, doi:10.1175/JPO-D-14-0150.1
108 dimitri 1.1 </li></ul>
109    
110     <ul><li>
111 dimitri 1.6 J. Whitefield, P. Winsor, J. McClelland, and D. Menemenlis,
112     2015: <a href="http://ecco2.org/manuscripts/2015/Whitefield2015.pdf"> A new
113     river discharge and river temperature climatology data set for the
114 dimitri 1.11 pan-Arctic region.</a> Ocean Modelling, 88, 1-15.
115 dimitri 1.1 </li></ul>
116    
117     <ul><li>
118     S. Zedler, C. Jackson, F. Yao, P. Heimbach, A. Koehl, R. Scott, and
119     I. Hoteit, 2015: Tests of the K-Profile Parameterization of turbulent
120     vertical mixing using seasonally averaged observations from the
121     TOGA/TAO array from 2004 to 2007. Ocean Modelling., in revision.
122     </li></ul>
123    
124     <ul><li>
125     V. Zemskova, B. White, and A. Scotti, 2015: Available potential energy
126     and the general circulation: Partitioning wind, buoyancy forcing, and
127     irreversible mixing. J. Phys. Oceanogr., submitted.
128     </li></ul>

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