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1 heimbach 1.2 <ul><li>
2 dimitri 1.20 C. Borstad, A. Khazendar, E. Larour, M. Morlighem, E. Rignot,
3     M. Schodlok, and H. Seroussi, 2012: A damage mechanics assessment of
4     the Larsen B ice shelf prior to collapse: Toward a physically-based
5     calving law. Geophys. Res. Lett., 39, L18502.
6     </li></ul>
7    
8     <ul><li>
9 dimitri 1.21 A. Condron and I. Renfrew,
10     2012: <a href="http://www.nature.com/ngeo/journal/v6/n1/full/ngeo1661.html">
11     The impact of polar mesoscale storms on northeast Atlantic Ocean
12     circulation.</a> Nature Geoscience, 6, 34-37.
13     </li></ul>
14    
15     <ul><li>
16 dimitri 1.18 A. Condron and P. Winsor,
17     2012: <a href="http://ecco2.org/manuscripts/2012/CondronWinsor2012.pdf">
18     Meltwater routing and the Younger Dryas.</a> PNAS 1207381109.
19     </li></ul>
20    
21     <ul><li>
22 dimitri 1.23 V. Dansereau, 2012: Ice shelf-ocean interactions in a general circulation model:
23     melt-rate modulation due to mean flow and tidal currents. M.Sc. Thesis, MIT-WHOI Joint Program, Cambridge, MA.
24     </li></ul>
25    
26     <ul><li>
27 dimitri 1.19 M. Granskog, C. Stedmon, P. Dodd, R. Amon, A. Pavlov, L. de Steur, and
28     E. Hansen, 2012: Characteristics of colored dissolved organic matter (CDOM) in
29     the Arctic outflow in the Fram Strait: Assessing the changes and fate of
30     terrigenous CDOM in the Arctic Ocean, J. Geophys. Res., 117, C12021.
31 heimbach 1.2 </li></ul>
32    
33 dimitri 1.1 <ul><li>
34 dimitri 1.25 P. Heimbach and M. Losch, 2012:
35     <a href="http://mitgcm.org/~mlosch/heimbach+losch2012.pdf">
36     Adjoint sensitivities of sub-ice shelf melt rates to ocean circulation
37     under Pine Island Ice Shelf, West Antarctica.</a> Annals of
38     Glaciology, 54, 59-69.
39 heimbach 1.14 </li></ul>
40    
41     <ul><li>
42 dimitri 1.25 P. Heimbach and C. Wunsch, 2012: Decadal ocean (and ice) state
43     estimation for climate research: What are the needs? Oberwolfach
44     Reports, 9, 3451-3454.
45 heimbach 1.24 </li></ul>
46    
47     <ul><li>
48 dimitri 1.19 C. Hill, D. Ferreira, J. Campin, J. Marshall, R. Abernathey, and N. Barrier,
49     2012: Controlling spurious diapycnal mixing in eddy-resolving
50     height-coordinate ocean models: Insights from virtual deliberate tracer
51     release experiments, Ocean Modelling 45-46, 1426.
52 heimbach 1.10 </li></ul>
53    
54     <ul><li>
55 dimitri 1.19 M. Mazloff, 2012: <a href="http://journals.ametsoc.org/doi/abs/10.1175/JCLI-D-11-00030.1">
56     On the sensitivity of the Drake Passage transport to air-sea momentum
57     flux.</a> J. Clim., 25, 2279-2290.
58 heimbach 1.10 </li></ul>
59    
60     <ul><li>
61 dimitri 1.16 M. Miller, J. Adkins, D. Menemenlis, and M. Schodlok, 2012:
62     <a href="http://ecco2.org/manuscripts/2012/Miller2012.pdf">
63 dimitri 1.19 The role of ocean cooling in setting glacial southern source bottom water
64     salinity.</a> Paleoceanography, 27, PA3207.
65 dimitri 1.16 </li></ul>
66    
67     <ul><li>
68 dimitri 1.1 A. Nguyen, R. Kwok, and D. Menemenlis, 2012:
69     <a href="http://ecco2.org/manuscripts/2012/NguyenJPO2012.pdf">
70     Source and pathway of the Western Arctic upper halocline in a data-constrained
71 dimitri 1.25 coupled ocean and sea ice model.</a> J. Phys. Oceanogr., 43, 802-823.
72 dimitri 1.1 </li></ul>
73 heimbach 1.2
74     <ul><li>
75 dimitri 1.25 C. Piecuch and R. Ponte, 2012: Importance of Circulation Changes to
76     Atlantic Heat Storage Rates on Seasonal and Interannual Time
77     Scales. J. Climate, 25, 350-362.
78 heimbach 1.2 </li></ul>
79    
80     <ul><li>
81 dimitri 1.26 C. Piecuch, and R. Ponte, 2012: Buoyancy-driven interannual sea level changes
82     in the Southeast Tropical Pacific. Geophys. Res. Lett., 39, L05607.
83     </li></ul>
84    
85     <ul><li>
86 dimitri 1.19 R. Ponte 2012: An assessment of deep steric height variability over the global
87     ocean. Geophys. Res. Lett., 39, L04601.
88 heimbach 1.5 </li></ul>
89    
90     <ul><li>
91 dimitri 1.9 E. Rignot, I. Fenty, D. Menemenlis, and Y. Xu, 2012:
92     <a href="http://ecco2.org/manuscripts/2012/Rignot2012.pdf">
93 dimitri 1.15 Spreading of warm ocean waters around Greenland as a possible cause
94 dimitri 1.16 for glacier acceleration.</a> Annals of Glaciology, 53, 257-266.
95 heimbach 1.8 </li></ul>
96    
97     <ul><li>
98 dimitri 1.6 M. Schodlok, D. Menemenlis, E. Rignot, and M. Studinger, 2012:
99     <a href="http://ecco2.org/manuscripts/2012/Schodlok2012.pdf">
100     Sensitivity of the ice shelf ocean system to the sub-ice shelf cavity
101     shape measured by NASA IceBridge in Pine Island Glacier, West
102 dimitri 1.12 Antarctica.</a> Annals of Glaciology, 53, 156-162.
103 dimitri 1.6 </li></ul>
104    
105     <ul><li>
106 dimitri 1.19 D. Volkov and V. Zlotnicki, 2012: Performance of GOCE and GRACE-derived mean
107     dynamic topographies in resolving Antarctic Circumpolar Current fronts. Ocean
108     Dynamics, 62, 893-905.
109 dimitri 1.3 </li></ul>
110    
111     <ul><li>
112 dimitri 1.19 D. Volkov and M Pujol, 2012: Quality assessment of a satellite
113     altimetry data product in the Nordic, Barents, and Kara Seas,
114     J. Geophys. Res., 117, C03025.
115 heimbach 1.2 </li></ul>
116    
117     <ul><li>
118 dimitri 1.7 Y. Xu, E. Rignot, D. Menemenlis, and M. Koppes, 2012:
119     <a href="http://ecco2.org/manuscripts/2012/Xu2012.pdf">
120     Numerical experiments on subaqueous melting of Greenland tidewater
121     glaciers in response to ocean warming and enhanced subglacial
122 dimitri 1.16 discharge.</a> Annals of Glaciology, 53, 229-234.
123 heimbach 1.2 </li></ul>
124    
125 dimitri 1.7 <ul><li>
126 dimitri 1.19 L. Zanna, P. Heimbach, A. Moore, and E. Tziperman, 2012: Upper-ocean
127 dimitri 1.7 singular vectors of the North Atlantic climate with implications for
128 dimitri 1.19 linear predictability and variability. Quart. J. Roy. Met. Soc., 138,
129 heimbach 1.22 500-513, doi:10.1002/qj.937.
130 dimitri 1.7 </li></ul>

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