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publication updates

1 dimitri 1.1 <ul><li>
2 dimitri 1.2 R. Abernathey, D. Ferreira, and A. Klocker, 2014: Diagnostics of eddy
3 dimitri 1.1 mixing in a circumpolar channel. Ocean Modelling, submitted.
4     </li></ul>
5    
6     <ul><li>
7 dimitri 1.14 H. Brix, D. Menemenlis, C. Hill, S. Dutkiewicz, O. Jahn, D. Wang,
8     K. Bowman, and H. Zhang, 2014:
9     <a href="http://ecco2.org/manuscripts/2014/Brix2014.pdf"> Using
10     Green's Functions to initialize and adjust a global, eddying ocean
11     biogeochemistry general circulation model.</a> Ocean Modelling,
12 dimitri 1.1 submitted.
13     </li></ul>
14    
15     <ul><li>
16 dimitri 1.2 M. Buckley, R. Ponte, G. Forget, and P. Heimbach, 2014:
17 dimitri 1.1 Low-frequency SST and upper-ocean heat content variability in the North
18 heimbach 1.4 Atlantic. J. Clim., in revision.
19 dimitri 1.1 </li></ul>
20    
21     <ul><li>
22 dimitri 1.13 A. Chaudhuri, R. Ponte, and A. Nguyen, 2014: A comparison of
23     atmospheric reanalysis products for the Arctic Ocean and implications
24     for uncertainties in air-sea fluxes, Journal of Climate, in revision.
25 heimbach 1.6 </li></ul>
26    
27     <ul><li>
28 dimitri 1.13 G. Danabasoglu, et al., 2014: North Atlantic simulations in
29     Coordinated Ocean-ice Reference Experiments, phase II (CORE-II): Part
30     I: Mean states. Ocean Modelling, 73, 76-107.
31 dimitri 1.1 </li></ul>
32    
33     <ul><li>
34 dimitri 1.13 B. Dushaw, 2014:
35     <a href="http://scitation.aip.org/content/asa/journal/jasa/136/1/10.1121/1.4881928?aemail=author">
36     Assessing the horizontal refraction of ocean acoustic tomography
37     signals using high-resolution ocean state estimates.</a>
38     Acoust. Soc. Am., 136, 122.
39 dimitri 1.12 </li></ul>
40    
41     <ul><li>
42 dimitri 1.2 B. Dushaw and D. Menemenlis, 2014:
43 dimitri 1.3 <a href="http://ecco2.org/manuscripts/2014/Dushaw2014.pdf">
44 dimitri 1.2 Antipodal acoustic thermometry: 1960, 2004.</a>
45 dimitri 1.7 Deep-Sea Res. I, 86, 1-20.
46 dimitri 1.1 </li></ul>
47    
48     <ul><li>
49 dimitri 1.14 M. Flexas, M. Schodlok, L. Padman, D. Menemenlis, and A. Orsi, 2014:
50     <a href="http://ecco2.org/manuscripts/2014/Flexas2014.pdf">
51     Role of tides on the formation of the Antarctic Slope Front at the
52     Weddell-Scotia Confluence.</a> J. Geophys. Res., submitted.
53     </li></ul>
54    
55     <ul><li>
56 dimitri 1.2 A. Kalmikov and P. Heimbach, 2014: A Hessian-based method for Uncertainty
57 dimitri 1.1 Quantification in Global Ocean State Estimation. SIAM J. Scientific Computing
58     (Special Section on Planet Earth and Big Data), submitted.
59     </li></ul>
60    
61     <ul><li>
62 dimitri 1.10 J. Liu, K. Bowman, M. Lee, D. Henze, N. Bousserez, H. Brix,
63 dimitri 1.11 J. Collatz, D. Menemenlis, L. Ott, S. Pawson, D. Jones, and R. Nassar,
64     2014: <a href="http://www.tellusb.net/index.php/tellusb/article/view/22486">
65     Carbon monitoring system flux estimation and attribution: Impact of
66     ACOS-GOSAT XCO2 sampling on the inference of terrestrial biospheric
67     sources and sinks.</a> Tellus B, 66, 22486.
68 dimitri 1.10 </li></ul>
69    
70     <ul><li>
71 dimitri 1.8 M. Losch, V. Strass, B. Cisewski, C. Klaas, and R. Bellerby, 2014:
72     <a href="http://ecco2.org/manuscripts/2014/Losch2014.pdf">
73     Ocean state estimation from hydrography and velocity observations
74     during EIFEX with a regional biogeochemical ocean circulation
75     model.</a> J. Mar. Syst., 129, 437-451.
76     </li></ul>
77    
78     <ul><li>
79 dimitri 1.14 L. Ott, S. Pawson, J. Collatz, W. Gregg, D. Menemenlis, H. Brix,
80     C. Rousseaux, K. Bowman, J. Liu, A. Eldering, M. Gunson, S. Kawa,
81     2014: Quantifying the observability of CO2 flux uncertainty in
82     atmospheric CO2 records using products from NASA's Carbon Monitoring
83     Flux Pilot Project. J. Geophys. Res., submitted.
84 dimitri 1.13 </li></ul>
85    
86     <ul><li>
87 dimitri 1.14 C. Piecuch and R. Ponte, 2014: Mechanisms of global mean steric sea
88     level change. J. Clim., in press.
89 heimbach 1.5 </li></ul>
90    
91     <ul><li>
92 dimitri 1.2 G. Spreen, R. Kwok, D. Menemenlis, and A. Nguyen, 2014: Sea ice
93 dimitri 1.1 deformation in a coupled ocean-sea ice model and in satellite remote
94     sensing data. J. Geophys. Res., submitted.
95     </li></ul>
96    
97     <ul><li>
98 dimitri 1.2 C. Wortham and C. Wunsch, 2014: A multi-dimensional spectral description of
99 dimitri 1.10 ocean variability, J. Phys. Oceanogr., 44, 944-966.
100 dimitri 1.1 </li></ul>
101    
102     <ul><li>
103 dimitri 1.13 C. Wunsch and P. Heimbach, 2014: Bidecadal Thermal Changes in the
104     Abyssal Ocean. J. Phys. Oceanogr., in press.
105 dimitri 1.1 </li></ul>
106 heimbach 1.4
107     <ul><li>
108 dimitri 1.13 S. Zedler, C. Jackson, F. Yao, P. Heimbach, A. Koehl, R. Scott, and
109     I. Hoteit, 2013: Tests of the K-Profile Parameterization of turbulent
110     vertical mixing using seasonally averaged observations from the
111     TOGA/TAO array from 2004 to 2007. Ocean Modelling., in revision.
112 heimbach 1.4 </li></ul>
113    
114 dimitri 1.11 <ul><li>
115     V. Zemskova, B. White, and A. Scotti, 2014: Available potential energy
116     and the general circulation: Partitioning wind, buoyancy forcing, and
117     irreversible mixing. J. Phys. Oceanogr., submitted.
118     </li></ul>

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