178
M.-H. Rio
Hunegnaw A, Siegismund F, Hipkin R, Mork KA (2009) Absolute flow field estimation for
the Nordic seas from combined gravimetric, altimetric, and in situ data. J Geophys Res
114:C02022, doi:10.1029/2008JC004797
Jayne SR (2006) Circulation of the North Atlantic Ocean from altimetry and the gravity recovery
and climate experiment geoid. J Geophys Res 111:C03005, doi:10.1029/2005JC003128
Larnicol G, Guinehut S, Rio MH, Drevillon M, Faugere Y, Nicolas G (2006) The global observed
ocean products of the French Mercator project. Proceedings of the “15 Years of Progress in
Radar Altimetry” ESA symposium, Venice, March 2006
LeGrand P, Schrama EJO, Tournadre J (2003) An inverse estimate of the dynamic topography of
the ocean. Geophys Res Lett 30:1062, doi:10.1029/2002GL014917
Maximenko NA, Melnichenko OV, Niiler PP, Sasaki H (2008) Stationary mesoscale jet-like
features in the ocean. Geophys Res Lett 35:L08603, doi:10.1029/2008GL033267
Maximenko NA, Niiler PP (2005) Hybrid decade-mean global sea level with mesoscale resolution. In: Saxena N (ed.) Recent Advances in Marine Science and Technology (2004), PACON
International 2005, Honolulu, pp. 55–59
Maximenko NA, Niiler P, Rio MH, Melnichenko OV, Centurioni L, Chambers D, Zlotnicki
V, Galepin B (2009) Mean dynamic topography of the ocean derived from satellite and
drifting buoy data using three different techniques. J Atmos Ocean Tech 26(9):1910,
doi:10.1175/2009JTECHO672.1
Niiler PP, Maximenko NA, McWilliams JC (2003) Dynamically balanced absolute sea level of the
global ocean derived from near-surface velocity observations. Geophys Res Lett 30(22):2164,
doi:10.1029/2003GL018628
Pavlis N, Holmes SA, Kenyon SC, Factor JK (2008) An Earh Gravitational Model to Degree 2160:
EGM2008. Presented EGU-2008, Vienna, Austria, April 2008
Qiu B, Chen S (2010) Eddy-mean flow interaction in the decadally-modulating kuroshio extension
system. Deep Sea Res 57, doi:10.1016/j.dsr2.2008.11.036
Rio MH, Hernandez F (2004) A mean dynamic topography computed over the world ocean
from altimetry, in situ measurements and a geoid model. J Geophys Res 109:C12032,
doi:10.1029/2003JC002226
Rio MH, Poulain PM et al. (2007) A mean dynamic topography of the Mediterranean sea computed
from altimetric data, in situ measurements and a general circulation model. J Mar Syst 65:
484–508
Rio MH, Schaeffer P, Hernandez F, Lemoine JM (2006) From the altimetric sea level measurement
to the ocean absolute dynamic topography: mean sea surface, geoid, mean dynamic topography,
a three-component challenge. Proceedings of the “15 years of progress in Radar altimetry” ESA
symposium, Venice, March
Rio MH, Schaeffer P, Moreaux G, Lemoine JM (2010). A new mean dynamic topography computed over the global ocean from GRACE data, altimetry and in situ measurements (in
preparation)
Rio MH, Schaeffer P et al. (2005) The estimation of the ocean mean dynamic topography through the combination of altimetric data, in situ measurements and GRACE geoid:
from global to regional studies. Proceedings of the GOCINA International Workshop,
Luxembourg
Saraceno M, Provost C, Zajaczkovski U (2009) Long-term variation in the anticyclonic ocean circulation over the Zapiola Rise as observed by satellite altimetry: evidence of possible collapses.
Deep Sea Res Part I Oceanogr Res Pap 56(7):1077–1092
Stammer D, Köhl A, Wunsch C (2007) Impact of accurate geoid fields on estimates of the ocean
circulation. J Atmos Ocean Tech 24:1464–1478
Stammer D, Wunsch C, Fukumori I, Marshall J (2002) State estimation improves prospects for
ocean research. EOS Trans Amer Geophys Union 83(289):294–295
Sudre J, Morrow RA (2008) Global surface currents: a high-resolution product for investigating
ocean dynamics. Ocean Dyn 58:101–118
M.-H. Rio
Hunegnaw A, Siegismund F, Hipkin R, Mork KA (2009) Absolute flow field estimation for
the Nordic seas from combined gravimetric, altimetric, and in situ data. J Geophys Res
114:C02022, doi:10.1029/2008JC004797
Jayne SR (2006) Circulation of the North Atlantic Ocean from altimetry and the gravity recovery
and climate experiment geoid. J Geophys Res 111:C03005, doi:10.1029/2005JC003128
Larnicol G, Guinehut S, Rio MH, Drevillon M, Faugere Y, Nicolas G (2006) The global observed
ocean products of the French Mercator project. Proceedings of the “15 Years of Progress in
Radar Altimetry” ESA symposium, Venice, March 2006
LeGrand P, Schrama EJO, Tournadre J (2003) An inverse estimate of the dynamic topography of
the ocean. Geophys Res Lett 30:1062, doi:10.1029/2002GL014917
Maximenko NA, Melnichenko OV, Niiler PP, Sasaki H (2008) Stationary mesoscale jet-like
features in the ocean. Geophys Res Lett 35:L08603, doi:10.1029/2008GL033267
Maximenko NA, Niiler PP (2005) Hybrid decade-mean global sea level with mesoscale resolution. In: Saxena N (ed.) Recent Advances in Marine Science and Technology (2004), PACON
International 2005, Honolulu, pp. 55–59
Maximenko NA, Niiler P, Rio MH, Melnichenko OV, Centurioni L, Chambers D, Zlotnicki
V, Galepin B (2009) Mean dynamic topography of the ocean derived from satellite and
drifting buoy data using three different techniques. J Atmos Ocean Tech 26(9):1910,
doi:10.1175/2009JTECHO672.1
Niiler PP, Maximenko NA, McWilliams JC (2003) Dynamically balanced absolute sea level of the
global ocean derived from near-surface velocity observations. Geophys Res Lett 30(22):2164,
doi:10.1029/2003GL018628
Pavlis N, Holmes SA, Kenyon SC, Factor JK (2008) An Earh Gravitational Model to Degree 2160:
EGM2008. Presented EGU-2008, Vienna, Austria, April 2008
Qiu B, Chen S (2010) Eddy-mean flow interaction in the decadally-modulating kuroshio extension
system. Deep Sea Res 57, doi:10.1016/j.dsr2.2008.11.036
Rio MH, Hernandez F (2004) A mean dynamic topography computed over the world ocean
from altimetry, in situ measurements and a geoid model. J Geophys Res 109:C12032,
doi:10.1029/2003JC002226
Rio MH, Poulain PM et al. (2007) A mean dynamic topography of the Mediterranean sea computed
from altimetric data, in situ measurements and a general circulation model. J Mar Syst 65:
484–508
Rio MH, Schaeffer P, Hernandez F, Lemoine JM (2006) From the altimetric sea level measurement
to the ocean absolute dynamic topography: mean sea surface, geoid, mean dynamic topography,
a three-component challenge. Proceedings of the “15 years of progress in Radar altimetry” ESA
symposium, Venice, March
Rio MH, Schaeffer P, Moreaux G, Lemoine JM (2010). A new mean dynamic topography computed over the global ocean from GRACE data, altimetry and in situ measurements (in
preparation)
Rio MH, Schaeffer P et al. (2005) The estimation of the ocean mean dynamic topography through the combination of altimetric data, in situ measurements and GRACE geoid:
from global to regional studies. Proceedings of the GOCINA International Workshop,
Luxembourg
Saraceno M, Provost C, Zajaczkovski U (2009) Long-term variation in the anticyclonic ocean circulation over the Zapiola Rise as observed by satellite altimetry: evidence of possible collapses.
Deep Sea Res Part I Oceanogr Res Pap 56(7):1077–1092
Stammer D, Köhl A, Wunsch C (2007) Impact of accurate geoid fields on estimates of the ocean
circulation. J Atmos Ocean Tech 24:1464–1478
Stammer D, Wunsch C, Fukumori I, Marshall J (2002) State estimation improves prospects for
ocean research. EOS Trans Amer Geophys Union 83(289):294–295
Sudre J, Morrow RA (2008) Global surface currents: a high-resolution product for investigating
ocean dynamics. Ocean Dyn 58:101–118
