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revision 1.13 by heimbach, Mon Mar 30 15:55:50 2015 UTC revision 1.15 by heimbach, Wed Jun 3 09:50:48 2015 UTC
# Line 15  submitted. Line 15  submitted.
15  <ul><li>  <ul><li>
16  M. Buckley, R. Ponte, G. Forget, and P. Heimbach, 2015: Determining the  M. Buckley, R. Ponte, G. Forget, and P. Heimbach, 2015: Determining the
17  origins of advective heat transport variability in the North Atlantic. J.  origins of advective heat transport variability in the North Atlantic. J.
18  Clim., in press, doi:10.1175/JCLI-D-14-00579.1.  Clim., 18(10), 3943-3956, doi:10.1175/JCLI-D-14-00579.1.
19    </li></ul>
20    
21    <ul><li>
22    Chen, R., Flierl, G. R., & Wunsch, C., 2015: Quantifying and Interpreting Striations in a Subtropical Gyre: A Spectral Perspective. J. Phys. Oceanogr., 45(2), 387–406. doi:10.1175/JPO-D-14-0038.1.
23  </li></ul>  </li></ul>
24    
25  <ul><li>  <ul><li>
# Line 41  Weddell-Scotia Confluence.</a> J. Geophy Line 45  Weddell-Scotia Confluence.</a> J. Geophy
45    
46  <ul><li>  <ul><li>
47  G. Forget and R.M. Ponte, 2015: The partition of regional sea level  G. Forget and R.M. Ponte, 2015: The partition of regional sea level
48  variability.  Prog. Oceanogr., submitted.  variability.  Prog. Oceanogr., n revision.
49    </ul></li>
50    
51    <ul><li>
52    Forget, G., J.M. Campin, P. Heimbach, C.N. Hill, R.M. Ponte, and C. Wunsch, 2015: ECCO version 4: an integrated framework for non-linear inverse modeling and global ocean state estimation. Geosci. Model Dev. Discuss., 8, 3653-3743, doi:10.5194/gmdd-8-3653-2015.
53  </ul></li>  </ul></li>
54    
55  <ul><li>  <ul><li>
56  Forget, G., J.M. Campin, P. Heimbach, C.N. Hill, R.M. Ponte, and C. Wunsch, 2015:  Fukumori, I., Wang, O., Llovel, W., Fenty, I., and Forget, G., 2015:
57  ECCO version 4: an integrated framework for non-linear inverse modeling and global ocean state estimation.  A near-uniform fluctuation of ocean bottom pressure and sea level across the deep ocean basins of the Arctic Ocean and the Nordic Seas.
58  Geoscientific Model Development, submitted.  Prog. Oceanogr., 134(C), 152–172. doi:10.1016/j.pocean.2015.01.013.
59  </ul></li>  </ul></li>
60    
61  <ul><li>  <ul><li>
# Line 74  Dagstuhl Reports, 4(9), 14-16, doi:10.42 Line 82  Dagstuhl Reports, 4(9), 14-16, doi:10.42
82    
83  <ul><li>  <ul><li>
84  X. Liang, C. Wunsch, P. Heimbach, and G. Forget, 2015:  X. Liang, C. Wunsch, P. Heimbach, and G. Forget, 2015:
85  Vertical redistribution of oceanic heat. in press,  Vertical redistribution of oceanic heat. 28(9), 3821-3833,
86  in press, doi:10.1175/JCLI-D-14-00550.1.  doi:10.1175/JCLI-D-14-00550.1.
87  </ul></li>  </ul></li>
88    
89  <ul><li>  <ul><li>
# Line 100  sensing data. J. Geophys. Res., submitte Line 108  sensing data. J. Geophys. Res., submitte
108  </li></ul>  </li></ul>
109    
110  <ul><li>  <ul><li>
111  N. Vinogradova, R. Ponte, K. Quinn, M. Tamisiea, J. Campin,  Storto, A., and 36 others, 2015: Steric sea level variability (1993-2010) in an ensemble of ocean reanalyses and objective analyses. Clim. Dyn., in press, doi:10.1007/s00382-015-2554-9
112  and J. Davis, 2015: Dynamic adjustment of the ocean circulation to  </li></ul>
113  self-attraction and loading effects, J. Phys. Oceanogr., in press.  
114    <ul><li>
115    Toyoda, T., and 32 others, 2015:
116    Intercomparison and validation of the mixed layer depth fields of global ocean syntheses/reanalyses. Clim. Dyn., in press, doi:10.1007/s00382-015-2637-7.
117    </li></ul>
118    
119    <ul><li>
120    Vinogradova, N. T., Ponte, R. M., Quinn, K. J., Tamisiea, M. E., Campin, J.-M., and Davis, J. L., 2015:
121    Dynamic Adjustment of the Ocean Circulation to Self-Attraction and Loading Effects.
122    J. Phys. Oceanogr., 45(3), 678–689, doi:10.1175/JPO-D-14-0150.1
123  </li></ul>  </li></ul>
124    
125  <ul><li>  <ul><li>

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