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moving in press/submitted to 2015

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 Clim., in revision.
19 </li></ul>
20
21 <ul><li>
22 M.M. Flexas, M. Schodlok, L. Padman, D. Menemenlis, and A. Orsi, 2015:
23 <a href="http://ecco2.org/manuscripts/2015/Flexas2015.pdf">
24 Role of tides on the formation of the Antarctic Slope Front at the
25 Weddell-Scotia Confluence.</a> J. Geophys. Res., submitted.
26 </li></ul>
27
28 <ul><li>
29 G. Forget and R.M. Ponte, 2015: The partition of regional sea level
30 variability. Prog. Oceanogr., submitted.
31 </ul></li>
32
33 <ul><li>
34 D. Halkides, D. Waliser, T. Lee, D. Menemenlis, and B. Guan, 2015:
35 Quantifying the processes controlling intraseasonal mixed-layer
36 temperature variability in the tropical Indian
37 Ocean. J. Geophys. Res., in press.
38 </li></ul>
39
40 <ul><li>
41 D. Halpern, D. Menemenlis, and X. Wang,
42 2015: <a href="http://ecco2.org/manuscripts/2015/Halpern2015.pdf">
43 Impact of data assimilation on ECCO2 Equatorial Undercurrent and North
44 Equatorial Countercurrent in the Pacific Ocean.</a> J. Atmos. Ocean
45 Tech., 32, 131-143.
46 </li></ul>
47
48 <ul><li>
49 X. Liang, C. Wunsch, P. Heimbach, and G. Forget, 2015:
50 Vertical redistribution of oceanic heat. Submitted.
51 </ul></li>
52
53 <ul><li>
54 L. Ott, S. Pawson, J. Collatz, W. Gregg, D. Menemenlis, H. Brix,
55 C. Rousseaux, K. Bowman, J. Liu, A. Eldering, M. Gunson, S. Kawa,
56 2015: Quantifying the observability of CO2 flux uncertainty in
57 atmospheric CO2 records using products from NASA's Carbon Monitoring
58 Flux Pilot Project. J. Geophys. Res., in press.
59 </li></ul>
60
61 <ul><li>
62 C. Piecuch, I. Fukumori, R. Ponte, and O. Wang, 2015: Vertical
63 structure of ocean pressure fluctuations with application
64 to satellite-gravimetric observations. J. Atmos. Oce. Tech., in revision.
65 </li></ul>
66
67 <ul><li>
68 G. Spreen, R. Kwok, D. Menemenlis, and A. Nguyen, 2015: Sea ice
69 deformation in a coupled ocean-sea ice model and in satellite remote
70 sensing data. J. Geophys. Res., submitted.
71 </li></ul>
72
73 <ul><li>
74 N. Vinogradova, R. Ponte, K. Quinn, M. Tamisiea, J. Campin,
75 and J. Davis, 2015: Dynamic adjustment of the ocean circulation to
76 self-attraction and loading effects, J. Phys. Oceanogr., in revision.
77 </li></ul>
78
79 <ul><li>
80 J. Whitefield, P. Winsor, J. McClelland, and D. Menemenlis, 2015: A new river
81 discharge and river temperature data set for the pan-Arctic region. Ocean
82 Modelling, in press.
83 </li></ul>
84
85 <ul><li>
86 S. Zedler, C. Jackson, F. Yao, P. Heimbach, A. Koehl, R. Scott, and
87 I. Hoteit, 2015: Tests of the K-Profile Parameterization of turbulent
88 vertical mixing using seasonally averaged observations from the
89 TOGA/TAO array from 2004 to 2007. Ocean Modelling., in revision.
90 </li></ul>
91
92 <ul><li>
93 V. Zemskova, B. White, and A. Scotti, 2015: Available potential energy
94 and the general circulation: Partitioning wind, buoyancy forcing, and
95 irreversible mixing. J. Phys. Oceanogr., submitted.
96 </li></ul>

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