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revision 1.21 by heimbach, Thu May 26 01:52:38 2011 UTC revision 1.27 by dimitri, Fri Jul 8 23:25:29 2016 UTC
# Line 6  Southern Ocean.</a> J. Phys. Oceanogr., Line 6  Southern Ocean.</a> J. Phys. Oceanogr.,
6  </li></ul>  </li></ul>
7    
8  <ul><li>  <ul><li>
9    L. Borreguero, R. Mottram, and I. Cvijanovic, 2010:
10    <a href="http://www.mit.edu/~heimbach/papers/2010_acdc2010_eos_ocean_icesheet.pdf">
11    Discussing progress in understanding ice sheet-ocean interactions.</a> EOS
12    Trans. AGU, 91, 419 (Advanced Climate Dynamics Course - ACDC 2010,
13    co-organized by P. Heimbach, MIT).
14    </li></ul>
15    
16    <ul><li>
17  M. Durand, L. Fu, D. Lettenmaier, D. Alsdorf, E. Rodriguez, and  M. Durand, L. Fu, D. Lettenmaier, D. Alsdorf, E. Rodriguez, and
18  D. Fernandez, 2010:  D. Fernandez, 2010:
19  <a href="http://ecco2.org/manuscripts/2010/DurandIEEE2010.pdf">  <a href="http://ecco2.org/manuscripts/2010/DurandIEEE2010.pdf">
# Line 15  IEEE, 766. Line 23  IEEE, 766.
23  </li></ul>  </li></ul>
24    
25  <ul><li>  <ul><li>
26    I. Fenty,
27    2010: <a href="http://ecco2.org/manuscripts/2010/FentyThesis.pdf">
28    State estimation of the Labrador Sea with a coupled sea ice-ocean
29    adjoint model.</a> Ph.D. thesis, MIT-WHOI Joint Program, Cambridge,
30    MA.
31    </li></ul>
32    
33    <ul><li>
34  R. Ferrari and C. Wunsch, 2010:  R. Ferrari and C. Wunsch, 2010:
35  The distribution of eddy kinetic and potential energies in the global ocean.  The distribution of eddy kinetic and potential energies in the global ocean.
36  Tellus, 62A, 92-108.  Tellus, 62A, 92-108.
# Line 28  Ocean measurements from space in 2025.</ Line 44  Ocean measurements from space in 2025.</
44  Oceanography, 23, 144-161.  Oceanography, 23, 144-161.
45  </li></ul>  </li></ul>
46    
47  <ul><li>  <ul><li> G. Forget, 2010:
48  G. Forget, 2010:  <a href="http://journals.ametsoc.org/doi/pdf/10.1175/2009JPO4043.1">
49  Mapping ocean observations in a dynamical framework: a 2004-2006 ocean  Mapping ocean observations in a dynamical framework: A 2004-06 Ocean
50  atlas. J. Phys. Oceanogr. 40, 1201-1221.  Atlas.</a> J. Phys. Oceanogr. 40, 1201-1221.
51  </li></ul>  </li></ul>
52    
53  <ul><li>  <ul><li>
# Line 55  P. Heimbach, G. Forget, R. Ponte, and C. Line 71  P. Heimbach, G. Forget, R. Ponte, and C.
71  Observational Requirements for global-scale ocean climate analysis: Lessons  Observational Requirements for global-scale ocean climate analysis: Lessons
72  from ocean state estimation. Community White Paper in Proceedings of  from ocean state estimation. Community White Paper in Proceedings of
73  OceanObs09: sustained ocean observations and information for society, ESA  OceanObs09: sustained ocean observations and information for society, ESA
74  publication WPP-306.  publication WPP-306, doi:10.5270/OceanObs09.cwp.42.
 </li></ul>  
   
 <ul><li>  
 L. Borreguero, R. Mottram, and I. Cvijanovic, 2010:  
 <a href="http://www.mit.edu/~heimbach/papers/2010_acdc2010_eos_ocean_icesheet.pdf">  
 Discussing progress in understanding ice sheet-ocean interactions.</a> EOS  
 Trans. AGU, 91, 419 (Advanced Climate Dynamics Course - ACDC 2010,  
 co-organized by P. Heimbach, MIT).  
75  </li></ul>  </li></ul>
76    
77  <ul><li>  <ul><li>
# Line 99  M. Follows, K. Gurney, J. McClelland, J. Line 107  M. Follows, K. Gurney, J. McClelland, J.
107  R. Prinn, 2010:  R. Prinn, 2010:
108  <a href="http://ecco2.org/manuscripts/2010/McGuireTellus2010.pdf">  <a href="http://ecco2.org/manuscripts/2010/McGuireTellus2010.pdf">
109  An analysis of the carbon balance of the Arctic Basin  An analysis of the carbon balance of the Arctic Basin
110  from 1997 to 2006.</a> Tellus, doi:10.1111/j.1600-0889.2010.00497.x  from 1997 to 2006.</a> Tellus B, 62, 5.
111    </li></ul>
112    
113    <ul><li>
114    D. Menemenlis, H. Zhang, P. Heimbach, C. Hill, J. Campin, G. Forget, M. Losch,
115    A. Nguyen, and M. Schodlok,
116    2010: <a href="http://ecco2.org/manuscripts/2009/MenemenlisOceanObs09.pdf">
117    Global ocean and sea ice state estimation in the presence of eddies.</a>
118    OceanObs'09 Additional Contribution.
119  </li></ul>  </li></ul>
120    
121  <ul><li>  <ul><li>
# Line 121  Mechanisms of the meridional heat transp Line 137  Mechanisms of the meridional heat transp
137  Ocean Dyn., 60, 791-801.  Ocean Dyn., 60, 791-801.
138  </li></ul>  </li></ul>
139    
   
   
140  <ul><li>  <ul><li>
141  D. Volkov and L. Fu, 2010:  D. Volkov and L. Fu, 2010:
142  <a href="http://journals.ametsoc.org/doi/abs/10.1175/2010JPO4326.1">  <a href="http://journals.ametsoc.org/doi/abs/10.1175/2010JPO4326.1">
# Line 161  J. Phys. Oceanogr., 40, 2264-2281. Line 175  J. Phys. Oceanogr., 40, 2264-2281.
175  <ul><li>  <ul><li>
176  C. Wunsch, 2010: Observational network design for climate. Plenary paper in  C. Wunsch, 2010: Observational network design for climate. Plenary paper in
177  Proceedings of OceanObs'09: sustained ocean observations and information for  Proceedings of OceanObs'09: sustained ocean observations and information for
178  society, ESA publication WPP-306.  society, ESA publication WPP-306, doi:10.5270/OceanObs09.pp.41.
179  </li></ul>  </li></ul>
180    
181  <ul><li>  <ul><li>
182  L. Zanna, P. Heimbach, A. Moore, and E. Tziperman, 2010:  L. Zanna, P. Heimbach, A. Moore, and E. Tziperman, 2010:
183  Optimal growth of Atlantic SST anomalies in an idealized ocean GCM.  Optimal growth of Atlantic SST anomalies in an idealized ocean GCM.
184  J. Phys. Oceanogr., 40, 983-1003.  J. Phys. Oceanogr., 40, 983-1003, doi:10.1175/2009JPO4196.1.
185  </li></ul>  </li></ul>

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