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1    <ul><li>
2    J. Baehr, S. Cunningham, H. Haak, P. Heimbach, T. Kanzow, and
3    J. Marotzke, 2009: Observed and simulated daily variability of the
4    meridional overturning circulation at 26.5N in the Atlantic.  Ocean
5    Sci. 5, 575-589.
6    </li></ul>
7    
8    <ul><li>
9    A. Condron, P. Winsor, C. Hill, and D. Menemenlis,
10    2009: <a href="http://ecco2.org/manuscripts/2009/CondronJCL09.pdf">
11    Simulated response of the Arctic freshwater budget to extreme NAO wind
12    forcing.</a> J. Climate, 22, 2422-2437.
13    </li></ul>
14    
15  <ul><li>  <ul><li>
16  Baehr, J., S. Cunningham, H. Haak, P. Heimbach, T. Kanzow and J. Marotzke, 2009:  B. Dushaw, P. Worcester, W. Munk, R. Spindel, J. Mercer, B. Howe,
17  Observed and simulated daily variability of the meridional overturning  K. Metzger, T. Birdsall, R. Andrew, M. Dzieciuch, B. Cornuelle, and
18  circulation at 26.5°N in the Atlantic. J. Phys. Oceanogr., submitted.  D. Menemenlis,
19    2009: <a href="http://ecco2.org/manuscripts/2009/DushawJGR09.pdf"> A
20    decade of acoustic thermometry in the North Pacific Ocean.</a>
21    J. Geophys. Res., 114, C07021.
22  </li></ul>  </li></ul>
23    
24  <ul><li> A. Condron, P. Winsor, C. Hill, and D. Menemenlis, 2009: <a  <ul><li>
25  href="http://ecco2.org/manuscripts/2009/CondronJCL09.pdf"> Response of  B. Dushaw and 37 others,
26  the Arctic freshwater budget to extreme NAO forcing.</a> J. Climate,  2009: <a href="http://ecco2.org/manuscripts/2009/DushawOceanObs09.pdf">
27  in press.  </li></ul>  A global ocean acoustic observing network.</a>  OceanObs'09 Community White Paper.
28    </li></ul>
29    
30  <ul><li>  <ul><li>
31  B. Dushaw, P. Worcester, R. Andrew, B. Howe, J. Mercer, R. Spindel,  R. Ferrari, and C. Wunsch, 2009:
32  B. Cornuelle, M. Dzieciuch, W. Munk, T. Birdsall, K. Metzger,  Ocean Circulation Kinetic Energy: Reservoirs, Sources, and Sinks.
33  D. Menemenlis, and C. Wunsch, 2009: A decade of acoustic thermometry  Annu. Rev. Fluid Mech., 31, 253-282.
 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.  
34  </li></ul>  </li></ul>
35    
36  <ul><li>  <ul><li>
37  G. Forget, G. Maze, M. Buckley, and J. Marshall, 2008: Quantitative and  L. Fu, 2009:
38  dynamical analysis of EDW formation using a model-data  <a href="http://ecco2.org/manuscripts/2009/FuJGR09.pdf"> Pattern and
39  synthesis. J. Phys. Oceanogr., submitted.  velocity propagation of the global ocean eddy variability.</a>
40    J. Geophys. Res., 114, C11017.
41  </li></ul>  </li></ul>
42    
43  <ul><li>  <ul><li>
44  N. Gruber, M. Gloor, S. Fletcher, S. Doney, S. Dutkiewicz,  N. Gruber, M. Gloor, S. Fletcher, S. Doney, S. Dutkiewicz, M. Follows,
45  M. Follows, M. Gerber, A. Jacobson, F. Joos, K. Lindsay, D. Menemenlis,  M. Gerber, A. Jacobson, F. Joos, K. Lindsay, D. Menemenlis,
46  A. Mouchet, J. Sarmiento, and T. Takahashi, 2009: <a  A. Mouchet, S. M&uuml;ller, J. Sarmiento, and T. Takahashi, 2009: <a
47  href="http://quercus.igpp.ucla.edu/publication/pdf_files/co2_source-sink_galley.pdf">  href="http://ecco2.org/manuscripts/2009/GruberGBC09.pdf">
48  Oceanic sources and sinks of atmospheric CO2.</a> Global Biogeochem. Cycles, in press.  Oceanic sources, sinks, and transport of atmospheric CO2.</a> Global
49    Biogeochem. Cycles, 23, GB1005.
50    </li></ul>
51    
52    <ul><li> D. Halkides and T. Lee, 2009:
53    <a href="http://onlinelibrary.wiley.com/doi/10.1029/2008JC004949/abstract">
54    Mechanisms controlling seasonal-to-interannual mixed layer temperature
55    variability in the southeastern tropical Indian Ocean.</a> J. Geophys. Res.,
56    114, C02012.
57  </li></ul>  </li></ul>
58    
59  <ul><li>  <ul><li>
60  E. H. Hill III, D. Enderton, P. Heimbach, and C. Hill, 2009: SPGrid: A  P. Heimbach and V. Bugnion, 2009: Greenland ice sheet volume
61  numerical grid generation program for domain decomposed geophysical  sensitivity to basal, surface, and initial conditions, derived from an
62  fluid dynamics models. Mon. Weather Rev., in press.  adjoint model. Annals of Glaciology 50(52), 76-80.
63  </li></ul>  </li></ul>
64    
65  <ul><li>  <ul><li>
66  Hoteit, I., B. Cornuelle, and P. Heimbach, 2009:  T. Lee and 26 others,
67  An eddy-permitting, dynamically consistent hindcast of the Tropical Pacific in  2009: <a href="http://ecco2.org/manuscripts/2009/LeeOceanObs09.pdf">
68  2000 using an adjoint-based assimilation system. J. Geophys. Res., submitted.  Ocean state estimation for climate research.</a>  OceanObs'09 Community White Paper.
69  </li></ul>  </li></ul>
70    
71  <ul><li>  <ul><li>
72  M. Manizza, M. Follows, S. Dutckiewicz, J. McClelland, D. Menemenlis,  M. Manizza, M. J. Follows, S. Dutckiewicz, J. W. McClelland, D. Menemenlis,
73  C. Hill, A. Townsend-Small, and J. Peterson, 2009: <a  C. N. Hill, A. Townsend-Small, and B. J. Peterson, 2009: <a
74  href="http://ecco2.org/manuscripts/2009/ManizzaGBC09.pdf"> Modeling  href="http://ecco2.org/manuscripts/2009/ManizzaGBC09.pdf"> Modeling
75  transport, fate, and lifetime of riverine DOC in the Arctic Ocean.</a>  transport and fate of riverine dissolved organic carbon in the Arctic Ocean.</a>
76  Global Biogeochem. Cycles, submitted.  Global Biogeochem. Cycles., 23, GB4006.
77  </li></ul>  </li></ul>
78    
79  <ul><li>  <ul><li>
80  G. Maze, G. Forget, M. Buckley and J. Marshall, 2009: Using  G. Maze, G. Forget, M. Buckley and J. Marshall, 2009: Using
81  transformation and formation maps to study water mass transformation:  transformation and formation maps to study water mass transformation:
82  a case study of North Atlantic Eighteen Degree water. J. Phys.  a case study of North Atlantic Eighteen Degree water. J. Phys.
83  Oceanogr., submitted.  Oceanogr., 39(8), 1818-1835, doi:10.1175/2009JPO3985.1
84  </li></ul>  </li></ul>
85    
86  <ul><li>  <ul><li>
87    D. Menemenlis and 8 others,
88    2009: <a href="http://ecco2.org/manuscripts/2009/MenemenlisOceanObs09.pdf">
89    Global ocean and sea ice state estimation in the presence of
90    eddies.</a>  OceanObs'09 Additional Contribution.
91    </li></ul>
92    
93    <ul><li>
94  A. Nguyen, D. Menemenlis, and R. Kwok, 2009: <a  A. Nguyen, D. Menemenlis, and R. Kwok, 2009: <a
95  href="http://ecco2.org/manuscripts/2009/NguyenJC09.pdf"> Improved  href="http://ecco2.org/manuscripts/2009/NguyenJGR09.pdf"> Improved
96  modeling of the Arctic halocline with a sub-grid-scale brine rejection  modeling of the Arctic halocline with a sub-grid-scale brine rejection
97  parameterization.</a> J. Geophys. Res., submitted.  parameterization.</a> J. Geophys. Res., 114, C11014.
98    </li></ul>
99    
100    <ul><li>
101    Ponte, R.M., 2009. Rate of work done by atmospheric pressure on the ocean general circulation and tides, Journal of Physical Oceanography, 39, 458-464.
102    </li></ul>
103    
104    <ul><li>
105    R.M. Ponte and K.J. Quinn, 2009:
106    <a href="http://www.agu.org/pubs/crossref/2009/2009GL039060.shtml">
107    Bottom pressure changes around Antarctica and wind-driven meridional
108    flows</a>.  Geophys. Res. Lett., 36, L13604.
109    </li></ul>
110    
111    <ul><li>
112    G. Sannino, M. Herrmann, A. Carillo, V. Rupolo, V. Ruggiero, V. Artale and P. Heimbach, 2009:
113    An eddy-permitting model of the Mediterranean Sea with a two-way grid refinement at Gibraltar.
114    Ocean Modelling, 30, 56-72.
115    </li></ul>
116    
117    <ul><li>
118    D. Stammer and 26 others,
119    2009: <a href="http://ecco2.org/manuscripts/2009/StammerOceanObs09.pdf">
120    Ocean information provided through ensemble ocean syntheses.</a>
121    OceanObs'09 Community White Paper.
122    </li></ul>
123    
124    <ul><li>
125    J. Utke, L. Harscoet, P. Heimbach, C. Hill, P. Hovland and U. Naumann, 2009:
126    Toward adjointable MPI.
127    Proceedings of the 10th IEEE International Workshop on Parallel and Distributed Scientific and Engineering,
128    PDSEC-09, Rome, Italy, pp. 1-8.
129    </li></ul>
130    
131    <ul><li>
132    P. van der Werf, 2009:
133    <a href="http://members.casema.nl/p.m.vanderwerf/Site/Oceanography_files/ProefschriftPMvanderWerf.pdf">
134    Variability of the Mozambique Channel Throughflow.</a>
135    Ph.D. thesis, Utrecht University, The Netherlands.
136    </li></ul>
137    
138    <ul><li>
139    P. van der Werf, M. Schouten, P. van Leeuwen, H. Ridderinkhof, and
140    W. de Ruijter, 2009: Observation and origin of an interannual salinity
141    anomaly in the Mozambique Channel, J. Geophys. Res., 114, C03017.
142  </li></ul>  </li></ul>
143    
144  <ul><li>  <ul><li>
145  Wunsch, C., P. Heimbach, R. Ponte, I. Fukumori and the ECCO-GODAE Consortium members, 2009:  C. Wunsch, 2009:
146  The global general circulation of the ocean estimated by the ECCO Consortium.  The Oceanic Variability Spectrum and Transport Trends.
147  Oceanography, submitted.  Atmosphere-Ocean, 47(4), 281-291, doi:10.3137/OC310.2009.
148  </li></ul>  </li></ul>
149    
150  <ul><li>  <ul><li>
151  Zanna L., P. Heimbach, A.M. Moore and E. Tziperman, 2009.  C. Wunsch, P. Heimbach, R. Ponte, and I. Fukumori, 2009: <a
152  Optimal growth of Atlantic SST anomalies in an idealized ocean GCM.  href="http://ecco2.org/manuscripts/2009/WunschOceanog09.pdf">The
153  J. Phys. Oceanogr., submitted.  global general circulation of the ocean estimated by the
154    ECCO-consortium.</a> Oceanography, 22, 88-103.
155  </li></ul>  </li></ul>
156    
157  <ul><li>  <ul><li>
158  Wunsch, C. and P. Heimbach, 2009:  C. Wunsch and P. Heimbach, 2009: The globally integrated ocean
159  The globally integrated ocean circulation (MOC), 1992-2006: seasonal and decadal variability.  circulation (MOC), 1992-2006: seasonal and decadal variability.
160  J. Phys. Oceanogr., in press.  J. Phys. Oceanogr., 39, 351-368, doi:10.1175/2008JPO4012.1.
161  </li></ul>  </li></ul>

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