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2  <ul><li>  <ul><li>
3  Baehr, J., S. Cunningham, H. Haak, P. Heimbach, T. Kanzow and J. Marotzke, 2009:  J. Baehr, S. Cunningham, H. Haak, P. Heimbach, T. Kanzow and
4  Observed and simulated daily variability of the meridional overturning  J. Marotzke, submitted: Observed and simulated daily variability of the
5  circulation at 26.5°N in the Atlantic. J. Phys. Oceanogr., submitted.  meridional overturning circulation at 26.5N in the
6    Atlantic. J. Phys. Oceanogr.
7  </li></ul>  </li></ul>
8    
9  <ul><li> A. Condron, P. Winsor, C. Hill, and D. Menemenlis, 2009: <a  <ul><li>
10    A. Condron, P. Winsor, C. Hill, and D. Menemenlis, 2009: <a
11  href="http://ecco2.org/manuscripts/2009/CondronJCL09.pdf"> Response of  href="http://ecco2.org/manuscripts/2009/CondronJCL09.pdf"> Response of
12  the Arctic freshwater budget to extreme NAO forcing.</a> J. Climate,  the Arctic freshwater budget to extreme NAO forcing.</a> J. Climate,
13  in press.  </li></ul>  22, 2422-2437.
14    </li></ul>
15    
16    <ul><li>
17    B. Dushaw, P. Worcester, W. Munk, R. Spindel, J. Mercer, B. Howe,
18    K. Metzger, T. Birdsall, R. Andrew, M. Dzieciuch, B. Cornuelle, and
19    D. Menemenlis, in press: <a
20    href="http://ecco2.org/manuscripts/2009/DushawJGR09.pdf"> A decade of
21    acoustic thermometry in the North Pacific Ocean.</a> J. Geophys. Res.
22    </li></ul>
23    
24  <ul><li>  <ul><li>
25  B. Dushaw, P. Worcester, R. Andrew, B. Howe, J. Mercer, R. Spindel,  G. Forget, G. Maze, M. Buckley, and J. Marshall, submitted:
26  B. Cornuelle, M. Dzieciuch, W. Munk, T. Birdsall, K. Metzger,  Quantitative and dynamical analysis of EDW formation using a
27  D. Menemenlis, and C. Wunsch, 2009: A decade of acoustic thermometry  model-data synthesis. J. Phys. Oceanogr.
 in the North Pacific Ocean: using long-range acoustic travel times to  
 test gyre-scale temperature variability derived from other  
 observations and ocean models. J. Geophys. Res., submitted.  
28  </li></ul>  </li></ul>
29    
30  <ul><li>  <ul><li>
31  G. Forget, G. Maze, M. Buckley, and J. Marshall, 2008: Quantitative and  P. Heimbach, D. Menemenlis, M. Losch, J. Campin, and C. Hill,
32  dynamical analysis of EDW formation using a model-data  submitted: <a
33  synthesis. J. Phys. Oceanogr., submitted.  href="http://ecco2.org/manuscripts/2009/ceaice_part2.pdf"> On the
34    formulation of sea-ice models. Part 2: Lessons from multi-year adjoint
35    sea ice export sensitivities through the Canadian Arctic
36    Archipelago.</a> Ocean Modelling.
37  </li></ul>  </li></ul>
38    
39  <ul><li>  <ul><li>
40  N. Gruber, M. Gloor, S. Fletcher, S. Doney, S. Dutkiewicz,  N. Gruber, M. Gloor, S. Fletcher, S. Doney, S. Dutkiewicz, M. Follows,
41  M. Follows, M. Gerber, A. Jacobson, F. Joos, K. Lindsay, D. Menemenlis,  M. Gerber, A. Jacobson, F. Joos, K. Lindsay, D. Menemenlis,
42  A. Mouchet, J. Sarmiento, and T. Takahashi, 2009: <a  A. Mouchet, S. M&uuml;ller, J. Sarmiento, and T. Takahashi, 2009: <a
43  href="http://quercus.igpp.ucla.edu/publication/pdf_files/co2_source-sink_galley.pdf">  href="http://ecco2.org/manuscripts/2009/GruberGBC09.pdf">
44  Oceanic sources and sinks of atmospheric CO2.</a> Global Biogeochem. Cycles, in press.  Oceanic sources, sinks, and transport of atmospheric CO2.</a> Global
45    Biogeochem. Cycles, 23, GB1005.
46  </li></ul>  </li></ul>
47    
48  <ul><li>  <ul><li>
49  E. H. Hill III, D. Enderton, P. Heimbach, and C. Hill, 2009: SPGrid: A  E. Hill, D. Enderton, P. Heimbach, and C. Hill, in press: SPGrid: A
50  numerical grid generation program for domain decomposed geophysical  numerical grid generation program for domain decomposed geophysical
51  fluid dynamics models. Mon. Weather Rev., in press.  fluid dynamics models. Mon. Weather Rev.
52  </li></ul>  </li></ul>
53    
54  <ul><li>  <ul><li>
55  Hoteit, I., B. Cornuelle, and P. Heimbach, 2009:  I. Hoteit, B. Cornuelle, and P. Heimbach, submitted: An
56  An eddy-permitting, dynamically consistent hindcast of the Tropical Pacific in  eddy-permitting, dynamically consistent hindcast of the Tropical
57  2000 using an adjoint-based assimilation system. J. Geophys. Res., submitted.  Pacific in 2000 using an adjoint-based assimilation
58    system. J. Geophys. Res.
59    </li></ul>
60    
61    <ul><li>
62    M. Losch, D. Menemenlis, P. Heimbach, J. Campin, and C. Hill,
63    submitted: <a
64    href="http://ecco2.org/manuscripts/2009/ceaice_part1.pdf"> On the
65    formulation of sea-ice models. Part 1: Effects of different solver
66    implementations and parameterizations.</a> Ocean Modelling.
67  </li></ul>  </li></ul>
68    
69  <ul><li>  <ul><li>
70  M. Manizza, M. Follows, S. Dutckiewicz, J. McClelland, D. Menemenlis,  M. Manizza, M. Follows, S. Dutckiewicz, J. McClelland, D. Menemenlis,
71  C. Hill, A. Townsend-Small, and J. Peterson, 2009: <a  C. Hill, A. Townsend-Small, and J. Peterson, submitted: <a
72  href="http://ecco2.org/manuscripts/2009/ManizzaGBC09.pdf"> Modeling  href="http://ecco2.org/manuscripts/2009/ManizzaGBC09.pdf"> Modeling
73  transport, fate, and lifetime of riverine DOC in the Arctic Ocean.</a>  transport, fate, and lifetime of riverine DOC in the Arctic Ocean.</a>
74  Global Biogeochem. Cycles, submitted.  Global Biogeochem. Cycles.
75  </li></ul>  </li></ul>
76    
77  <ul><li>  <ul><li>
78  G. Maze, G. Forget, M. Buckley and J. Marshall, 2009: Using  G. Maze, G. Forget, M. Buckley and J. Marshall, submitted: Using
79  transformation and formation maps to study water mass transformation:  transformation and formation maps to study water mass transformation:
80  a case study of North Atlantic Eighteen Degree water. J. Phys.  a case study of North Atlantic Eighteen Degree water. J. Phys.
81  Oceanogr., submitted.  Oceanogr.
82  </li></ul>  </li></ul>
83    
84  <ul><li>  <ul><li>
85  A. Nguyen, D. Menemenlis, and R. Kwok, 2008: Improved modeling of the Arctic  A. Nguyen, D. Menemenlis, and R. Kwok, in press: <a
86  halocline with a sub-grid-scale brine rejection parameterization.  href="http://ecco2.org/manuscripts/2009/NguyenJGR09.pdf"> Improved
87  J. Geophys. Res., submitted.  modeling of the Arctic halocline with a sub-grid-scale brine rejection
88    parameterization.</a> J. Geophys. Res.
89  </li></ul>  </li></ul>
90    
91  <ul><li>  <ul><li>
92  Wunsch, C., P. Heimbach, R. Ponte, I. Fukumori and the ECCO-GODAE Consortium members, 2009:  C. Wunsch, P. Heimbach, R. Ponte, I. Fukumori, and the ECCO-GODAE
93  The global general circulation of the ocean estimated by the ECCO Consortium.  Consortium members, submitted: The global general circulation of the
94  Oceanography, submitted.  ocean estimated by the ECCO Consortium.  Oceanography.
95  </li></ul>  </li></ul>
96    
97  <ul><li>  <ul><li>
98  Zanna L., P. Heimbach, A.M. Moore and E. Tziperman, 2009.  L. Zanna, P. Heimbach, A. Moore, and E. Tziperman, submitted.
99  Optimal growth of Atlantic SST anomalies in an idealized ocean GCM.  Optimal growth of Atlantic SST anomalies in an idealized ocean GCM.
100  J. Phys. Oceanogr., submitted.  J. Phys. Oceanogr.
101    </li></ul>
102    
103    <ul><li>
104    C. Wunsch, P. Heimbach, R. Ponte, and I. Fukumori, 2009: <a
105    href="http://ecco2.org/manuscripts/2009/WunschOceanog09.pdf">The
106    global general circulation of the ocean estimated by the
107    ECCO-consortium.</a> Oceanography, 22, 88-103.
108  </li></ul>  </li></ul>
109    
110  <ul><li>  <ul><li>
111  Wunsch, C. and P. Heimbach, 2009:  C. Wunsch and P. Heimbach, in press: The globally integrated ocean
112  The globally integrated ocean circulation (MOC), 1992-2006: seasonal and decadal variability.  circulation (MOC), 1992-2006: seasonal and decadal variability.
113  J. Phys. Oceanogr., in press.  J. Phys. Oceanogr.
114  </li></ul>  </li></ul>

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