| 4 | @string{blm     = {Bound.~Layer~Meteorol.}} | @string{blm     = {Bound.~Layer~Meteorol.}} | 
| 5 | @string{climd   = {Clim.~Dynamics}} | @string{climd   = {Clim.~Dynamics}} | 
| 6 | @string{cch     = {Clim.\ Change}} | @string{cch     = {Clim.\ Change}} | 
| 7 | @string{jgr     = {J.~Geophys.~Res.}} | @string{cup     = {Cambridge University Press}} | 
| 8 | @string{ijrs    = {Int.~J.~Remote Sensing}} | @string{dao     = {Dyn.~Atmos.~Oceans}} | 
| 9 | @string{jas     = {J.~Atmos.~Sci.}} | @string{dkrz    = {Deutsches Klimarechenzentrum (DKRZ)}} | 
| 10 |  | @string{dnmi    = {The Norwegian Meteorological Institute (DNMI)}} | 
| 11 |  | @string{dsr     = {Deep Sea Res.}} | 
| 12 |  | @string{ecmwf   = {ECMWF}} | 
| 13 |  | @string{eos     = {Eos~Trans.\ AGU}} | 
| 14 |  | @string{esa     = {European Space Agency (ESA)}} | 
| 15 |  | @string{esapub  = {ESA Publications Division, ESTEC, Noordwijk (NL)}} | 
| 16 |  | @string{estec   = {European Space Research and Technology Centre (ESTEC)}} | 
| 17 |  | @string{gaos    = {Global Atmos.~Ocean System}} | 
| 18 |  | @string{grl     = {Geophys.~Res.~Lett.}} | 
| 19 |  | @string{ieee    = {IEEE Trans.~Geosci. Remote Sensing}} | 
| 20 |  | @string{ifremer = {IFREMER/CERSAT}} | 
| 21 |  | @string{igarss  = {IEEE Press, Piscataway, N.J., USA}} | 
| 22 | @string{jam     = {J.~Appl.~Meteor.}} | @string{jam     = {J.~Appl.~Meteor.}} | 
| 23 | @string{jpo     = {J.~Phys.~Oceanogr.}} | @string{jaot    = {J.~Atmos.~Ocean.~Technol.}} | 
| 24 |  | @string{jas     = {J.~Atmos.~Sci.}} | 
| 25 | @string{jclim   = {J.~Clim.}} | @string{jclim   = {J.~Clim.}} | 
| 26 | @string{jcp     = {J.~Comput.~Phys.}} | @string{jcp     = {J.~Comput.~Phys.}} | 
|  | @string{ieee    = {IEEE Trans.~Geosci. Remote Sensing}} |  | 
| 27 | @string{jfm     = {J.~Fluid Mech.}} | @string{jfm     = {J.~Fluid Mech.}} | 
| 28 | @string{jaot    = {J.~Atmos.~Ocean.~Technol.}} | @string{jgr     = {J.~Geophys.~Res.}} | 
| 29 |  | @string{ijrs    = {Int.~J.~Remote Sensing}} | 
| 30 | @string{jms     = {J.~Mar.~Sys.}} | @string{jms     = {J.~Mar.~Sys.}} | 
| 31 | @string{om      = {Ocean Modelling}} | @string{jpo     = {J.~Phys.~Oceanogr.}} | 
| 32 | @string{gaos    = {Global Atmos.~Ocean System}} | @string{mpi     = {MPI f\"ur Meteorologie}} | 
|  | @string{grl     = {Geophys.~Res.~Lett.}} |  | 
|  | @string{dsr     = {Deep Sea Res.}} |  | 
|  | @string{dao     = {Dyn.~Atmos.~Oceans}} |  | 
| 33 | @string{mwr     = {Mon.~Wea.~Rev.}} | @string{mwr     = {Mon.~Wea.~Rev.}} | 
| 34 |  | @string{om      = {Ocean Modelling}} | 
| 35 |  | @string{ptrsl   = {{Phil.~Trans.~R.~Soc.~Lond.}}} | 
| 36 | @string{qjrms   = {{Q.~J.~R.~Meteorol.~Soc.}}} | @string{qjrms   = {{Q.~J.~R.~Meteorol.~Soc.}}} | 
|  | @string{tel     = {Tellus}} |  | 
|  | @string{cup     = {Cambridge University Press}} |  | 
|  | @string{esapub  = {ESA Publications Division, ESTEC, Noordwijk (NL)}} |  | 
|  | @string{ifremer = {IFREMER/CERSAT}} |  | 
|  | @string{igarss  = {IEEE Press, Piscataway, N.J., USA}} |  | 
|  | @string{dnmi    = {The Norwegian Meteorological Institute (DNMI)}} |  | 
|  | @string{dkrz    = {Deutsches Klimarechenzentrum (DKRZ)}} |  | 
|  | @string{mpi     = {MPI f\"ur Meteorologie}} |  | 
|  | @string{ecmwf   = {ECMWF}} |  | 
|  | @string{estec   = {European Space Research and Technology Centre |  | 
|  | (ESTEC)}} |  | 
|  | @string{esa     = {European Space Agency (ESA)}} |  | 
|  | @string{eos     = {Eos~Trans.\ AGU}} |  | 
| 37 | @string{siscicom= {SIAM J.\ Sci.\ Comput.}} | @string{siscicom= {SIAM J.\ Sci.\ Comput.}} | 
| 38 |  | @string{tel     = {Tellus}} | 
| 39 |  |  | 
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| 76 | note           = {http://www.mcs.anl.gov/autodiff/}, | note           = {http://www.mcs.anl.gov/autodiff/}, | 
| 77 | } | } | 
| 78 |  |  | 
| 79 |  | @Article{bouillon13, | 
| 80 |  | author =       {Sylvain Bouillon and Thierry Fichefet and Vincent | 
| 81 |  | Legat and Gurvan Madec}, | 
| 82 |  | title =        {The Elastic-Viscous-Plastic Method Revisited}, | 
| 83 |  | journal =      omg, | 
| 84 |  | volume =       71, | 
| 85 |  | number =       0, | 
| 86 |  | pages =        {2--12}, | 
| 87 |  | year =         2013, | 
| 88 |  | note =         {Arctic Ocean}, | 
| 89 |  | issn =         {1463-5003}, | 
| 90 |  | doi =          {10.1016/j.ocemod.2013.05.013}, | 
| 91 |  | url =          {http://dx.doi.org/10.1016/j.ocemod.2013.05.013}, | 
| 92 |  | } | 
| 93 | @ARTICLE{bryan:84, | @ARTICLE{bryan:84, | 
| 94 | author = {Kirk Bryan}, | author = {Kirk Bryan}, | 
| 95 | title = {Accelerating the convergence to equilibrium of Ocean-Climate Models}, | title = {Accelerating the convergence to equilibrium of Ocean-Climate Models}, | 
| 1993 | volume =       31, | volume =       31, | 
| 1994 | pages =        {285--296}} | pages =        {285--296}} | 
| 1995 |  |  | 
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| 1998 |  | W. Collins and D. Deaven and L. Gandin and | 
| 1999 |  | M. Iredell and S. Saha and G. White and J. Woollen | 
| 2000 |  | and Y. Zhu and M. Chelliah and W. Ebisuzaki and | 
| 2001 |  | W. Higgins and J. Janowiak and K. C. Mo and | 
| 2002 |  | C. Ropelewski and J. Wang and A. Leetmaa and | 
| 2003 |  | R. Reynolds and R. Jenne and D. Joseph}, | 
| 2004 |  | title =        {The {NMC/NCAR} 40-Year Reanalysis Project}, | 
| 2005 |  | journal =      bams, | 
| 2006 |  | year =         1996, | 
| 2007 |  | volume =       77, | 
| 2008 |  | pages =        {437--471} | 
| 2009 |  | } | 
| 2010 |  |  | 
| 2011 |  | @Article{kimmritz15, | 
| 2012 |  | author =       {Madlen Kimmritz and Sergey Danilov and Martin Losch}, | 
| 2013 |  | title =        {On the Convergence of the Modified | 
| 2014 |  | Elastic-Viscous-Plastic Method of Solving for | 
| 2015 |  | Sea-Ice Dynamics}, | 
| 2016 |  | journal =      {submitted}, | 
| 2017 |  | year =         {2015}, | 
| 2018 |  | OPTkey =       {}, | 
| 2019 |  | OPTvolume =    {}, | 
| 2020 |  | OPTnumber =    {}, | 
| 2021 |  | OPTpages =     {}, | 
| 2022 |  | OPTmonth =     {}, | 
| 2023 |  | OPTnote =      {}, | 
| 2024 |  | OPTannote =    {} | 
| 2025 |  | } | 
| 2026 |  |  | 
| 2027 |  | @Article{klymaklegg10, | 
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| 2029 |  | title =        {A simple mixing scheme for models that resolve | 
| 2030 |  | breaking internal waves}, | 
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| 2032 |  | year =         2010, | 
| 2033 |  | volume =       33, | 
| 2034 |  | pages =        {224--234}, | 
| 2035 |  | doi =          {10.1016/j.ocemod.2010.02.005} | 
| 2036 |  | } | 
| 2037 |  |  | 
| 2038 | @Article{losch08, | @Article{losch08, | 
| 2039 | author =       {Martin Losch}, | author =       {Martin Losch}, | 
| 2040 | title =        {Modeling Ice Shelf Cavities in a z-Coordinate Ocean | title =        {Modeling Ice Shelf Cavities in a z-Coordinate Ocean | 
| 2096 | pages =        {2840--2852}, | pages =        {2840--2852}, | 
| 2097 | doi =          {10.1016/j.jcp.2009.12.011c}} | doi =          {10.1016/j.jcp.2009.12.011c}} | 
| 2098 |  |  | 
| 2099 |  | @Article{lemieux12, | 
| 2100 |  | author =       {Jean-Fran{\c{c}}ois Lemieux and Dana Knoll and Bruno | 
| 2101 |  | Tremblay and David M. Holland and Martin Losch}, | 
| 2102 |  | title =        {A Comparison of the {J}acobian-free | 
| 2103 |  | {N}ewton-{K}rylov Method and the {EVP} Model for | 
| 2104 |  | Solving the Sea Ice Momentum Equation with a | 
| 2105 |  | Viscous-Plastic Formulation: a Serial Algorithm | 
| 2106 |  | Study}, | 
| 2107 |  | journal =      jcp, | 
| 2108 |  | year =         2012, | 
| 2109 |  | volume =       231, | 
| 2110 |  | number =       17, | 
| 2111 |  | pages =        {5926--5944}, | 
| 2112 |  | doi =          {10.1016/j.jcp.2012.05.024}} | 
| 2113 |  |  | 
| 2114 | @article{knoll04:_jfnk, | @article{knoll04:_jfnk, | 
| 2115 | Author =       {D.A. Knoll and D.E. Keyes}, | Author =       {D.A. Knoll and D.E. Keyes}, | 
| 2116 | Title =        {{J}acobian-free {N}ewton-{K}rylov Methods: a Survey | Title =        {{J}acobian-free {N}ewton-{K}rylov Methods: a Survey | 
| 2173 | journal =      {Geophys. Astrophys. Fl. Dyn.}, | journal =      {Geophys. Astrophys. Fl. Dyn.}, | 
| 2174 | year =         1990, | year =         1990, | 
| 2175 | volume =       51, | volume =       51, | 
| 2176 | pages =        {103--133}} | pages =        {103--133} | 
| 2177 |  | } | 
| 2178 |  |  | 
| 2179 | @Article{kalnay96, |  | 
| 2180 | author =       {E. Kalnay and M. Kanamitsu and R. Kistler and | @Article{moum96, | 
| 2181 | W. Collins and D. Deaven and L. Gandin and | author        = {Moum, J.N.}, | 
| 2182 | M. Iredell and S. Saha and G. White and J. Woollen | title         = {Energy-containing scales of turbulence in the ocean thermocline}, | 
| 2183 | and Y. Zhu and M. Chelliah and W. Ebisuzaki and | journal       = jgr, | 
| 2184 | W. Higgins and J. Janowiak and K. C. Mo and | year          = 1996, | 
| 2185 | C. Ropelewski and J. Wang and A. Leetmaa and | volume        = {101 (C3)}, | 
| 2186 | R. Reynolds and R. Jenne and D. Joseph}, | pages         = {14095--14109} | 
| 2187 | title =        {The {NMC/NCAR} 40-Year Reanalysis Project}, | } | 
| 2188 | journal =      bams, |  | 
| 2189 | year =         1996, | @Article{seimgregg94, | 
| 2190 | volume =       77, | author        = {Seim, Harvey E. and Michael C. Gregg}, | 
| 2191 | pages =        {437--471} | title         = {Detailed observations of a naturally occurring shear instability}, | 
| 2192 |  | journal       = jgr, | 
| 2193 |  | year          = 1994, | 
| 2194 |  | volume        = {99 (C5)}, | 
| 2195 |  | pages         = {10049--10073}, | 
| 2196 |  | } | 
| 2197 |  |  | 
| 2198 |  | @Article{thorpe77, | 
| 2199 |  | author        = {Thorpe, S.A.}, | 
| 2200 |  | title         = {Turbulence and mixing in a Scottish loch}, | 
| 2201 |  | journal       = ptrsl, | 
| 2202 |  | year          = 1977, | 
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| 2204 |  | pages         = {125--181} | 
| 2205 |  | } | 
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| 2208 |  | author        = {Wesson, J. C. and  Michael C. Gregg}, | 
| 2209 |  | title         = {Mixing at Camarinal Sill in the Strait of Gibraltar}, | 
| 2210 |  | journal       = jgr, | 
| 2211 |  | year          = 1994, | 
| 2212 |  | volume        = {99 (C5)}, | 
| 2213 |  | pages         = { 9847--9878} | 
| 2214 | } | } | 
| 2215 |  |  |