New URL for NEMO forge!   http://forge.nemo-ocean.eu

Since March 2022 along with NEMO 4.2 release, the code development moved to a self-hosted GitLab.
This present forge is now archived and remained online for history.
NEMO_manual.bib in NEMO/branches/2018/dev_r10164_HPC09_ESIWACE_PREP_MERGE/doc/latex/NEMO/main – NEMO

source: NEMO/branches/2018/dev_r10164_HPC09_ESIWACE_PREP_MERGE/doc/latex/NEMO/main/NEMO_manual.bib @ 10377

Last change on this file since 10377 was 10377, checked in by smasson, 5 years ago

dev_r10164_HPC09_ESIWACE_PREP_MERGE: merge with trunk@10376, see #2133

File size: 104.2 KB
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5
6@STRING{AREPS = {Annual Review of Earth Planetary Science}}
7
8@STRING{ARFM = {Annual Review of Fluid Mechanics}}
9
10@STRING{ASL = {Atmospheric Science Letters}}
11
12@STRING{AW = {Addison-Wesley}}
13
14@STRING{CP = {Clarendon Press}}
15
16@STRING{CD = {Clim. Dyn.}}
17
18@STRING{CUP = {Cambridge University Press}}
19
20@STRING{CSR = {Cont. Shelf Res.}}
21
22@STRING{D = {Dover Publications}}
23
24@STRING{DAO = {Dyn. Atmos. Ocean}}
25
26@STRING{DSR = {Deep-Sea Res.}}
27
28@STRING{E = {Eyrolles}}
29
30@STRING{EFM ={Environ. Fluid Mech.}}
31
32@STRING{GRL = {Geophys. Res. Let.}}
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34@STRING{I = {Interscience}}
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36@STRING{JAOT = {J. Atmos. Ocean Tech.}}
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38@STRING{JAS = {J. Atmos. Sc.}}
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44@STRING{JFM = {J. Fluid Mech.}}
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46@STRING{JGR = {J. Geophys. Res}}
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48@STRING{JHUP = {The Johns Hopkins University Press}}
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63
64@STRING{MGH = {McGraw-Hill}}
65
66@STRING{MWR = {Mon. Wea. Rev.}}
67
68@STRING{Nature = {Nat.}}
69
70@STRING{NH = {North-Holland}}
71
72@STRING{Ocean = {Oceanology}}
73
74@STRING{OD = {Ocean Dyn.}}
75
76@STRING{OM = {Ocean Modelling}}
77
78@STRING{OS = {Ocean Sc.}}
79
80@STRING{OUP = {Oxford University Press}}
81
82@STRING{PH = {Prentice-Hall}}
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84@STRING{PO = {Prog. Oceangr.}}
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95
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98@STRING{SV = {Springer-Verlag}}
99
100@STRING{Tellus = {Tellus}}
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700 year = {2005},
701 institution = {European Union: Marine Environment and Security for the European Area (MERSEA) Integrated Project},
702note = {MERSEA-WP09-MERCA-TASK-9.1.1}
703}
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705@ARTICLE{Chassignet_al_JPO03,
706  author = {Eric P. Chassignet and Linda T. Smith and George R. Halliwell},
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829@article{de_lavergne_JPO2016_mixing,
830   author = {C. de Lavergne and G. Madec and J. Le Sommer and A. J. G. Nurser and A. C. Naveira Garabato },
831   title = {On Antarctic Bottom Water consumption in the abyssal ocean},
832   issn = {0022-3670},
833   doi= {10.1175/JPO-D-14-0201.1},
834   abstract = {In studies of ocean mixing, it is generally assumed that small-scale turbulent overturns lose 15-20 \% of their energy in eroding the background stratification. Accumulating evidence that this energy fraction, or mixing efficiency Rf, significantly varies depending on flow properties challenges this assumption, however. Here, we examine the implications of a varying mixing efficiency for ocean energetics and deep water mass transformation. Combining current parameterizations of internal wave-driven mixing with a recent model expressing Rf as a function of a turbulence intensity parameter Reb = εν/νN2, we show that accounting for reduced mixing efficiencies in regions of weak stratification or energetic turbulence (high Reb) strongly limits the ability of breaking internal waves to supply oceanic potential energy and drive abyssal upwelling. Moving from a fixed Rf = 1/6 to a variable efficiency Rf(Reb) causes Antarctic Bottom Water upwelling induced by locally-dissipating internal tides and lee waves to fall from 9 to 4 Sv, and the corresponding potential energy source to plunge from 97 to 44 GW. When adding the contribution of remotely-dissipating internal tides under idealized distributions of energy dissipation, the total rate of Antarctic Bottom Water upwelling is reduced by about a factor of 2, reaching 5-15 Sv compared to 10-33 Sv for a fixed efficiency. Our results suggest that distributed mixing, overflow-related boundary processes and geothermal heating are more effective in consuming abyssal waters than topographically-enhanced mixing by breaking internal waves. Our calculations also point to the importance of accurately constraining Rf(Reb) and including the effect in ocean models.},
835   journal = {Journal of Physical Oceanography},
836   year = {2016},
837   volume = {46},  pages = {635-–661}
838}
839
840@article{de_lavergne_JPO2016_efficiency,
841   author = {C. de Lavergne and G. Madec and J. Le Sommer and A. J. G. Nurser and A. C. Naveira Garabato },
842   title = {The impact of a variable mixing efficiency on the abyssal overturning},
843   issn = {0022-3670},
844   doi = {10.1175/JPO-D-14-0259.1},
845   abstract = {In studies of ocean mixing, it is generally assumed that small-scale turbulent overturns lose 15-20 \% of their energy in eroding the background stratification. Accumulating evidence that this energy fraction, or mixing efficiency Rf, significantly varies depending on flow properties challenges this assumption, however. Here, we examine the implications of a varying mixing efficiency for ocean energetics and deep water mass transformation. Combining current parameterizations of internal wave-driven mixing with a recent model expressing Rf as a function of a turbulence intensity parameter Reb = εν/νN2, we show that accounting for reduced mixing efficiencies in regions of weak stratification or energetic turbulence (high Reb) strongly limits the ability of breaking internal waves to supply oceanic potential energy and drive abyssal upwelling. Moving from a fixed Rf = 1/6 to a variable efficiency Rf(Reb) causes Antarctic Bottom Water upwelling induced by locally-dissipating internal tides and lee waves to fall from 9 to 4 Sv, and the corresponding potential energy source to plunge from 97 to 44 GW. When adding the contribution of remotely-dissipating internal tides under idealized distributions of energy dissipation, the total rate of Antarctic Bottom Water upwelling is reduced by about a factor of 2, reaching 5-15 Sv compared to 10-33 Sv for a fixed efficiency. Our results suggest that distributed mixing, overflow-related boundary processes and geothermal heating are more effective in consuming abyssal waters than topographically-enhanced mixing by breaking internal waves. Our calculations also point to the importance of accurately constraining Rf(Reb) and including the effect in ocean models.},
846   journal = {Journal of Physical Oceanography},
847   year = {2016},
848   volume = {46},  pages = {663-–681}
849}
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1059   C. Herbaut, G. Madec, S. Speich, J. Nihoul, J. M. Beckers, P. Brasseur,
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1065   the circulation of the Western Mediterranean Sea. Oceanologica Acta,
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1067  title = {EUROMODEL Group (P.M. Lehucher, L. Beautier, M. Chartier, F. Martel,
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1102 author = {R.A. Flather},
1103 year = {1976},
1104 title = {A tidal model of the north-west European continental shelf},
1105 journal = {Memoires de la Societ\'{e} Royale des Sciences de Li\`{e}ge},
1106 volume = {6},
1107 pages = {141--164}
1108}
1109
1110@ARTICLE{Flather_JPO94,
1111 author = {R.A. Flather},
1112 year = {1994},
1113 title = {A storm surge prediction model for the northern Bay of Bengal with application to the cyclone disaster in April 1991},
1114 journal = JPO,
1115 volume = {24},
1116 pages = {172--190}
1117}
1118
1119@ARTICLE{Fujio1991,
1120  author = {S. Fujio and N. Imasato},
1121  title = {Diagnostic calculation for circulation and water mass movement in
1122   the deep Pacific},
1123  journal = JGR,
1124  year = {1991},
1125  volume = {96},
1126  pages = {759--774}
1127}
1128
1129@ARTICLE{Galperin_al_JAS88,
1130  author = {B. Galperin and L. H. Kantha and S. Hassid and A. Rosati},
1131  title = {A quasi-equilibrium turbulent energy model for geophysical flows},
1132  journal = JAS,
1133  year = {1988},
1134  volume = {45},
1135  pages = {55--62}
1136}
1137
1138@ARTICLE{Gargett1984,
1139  author = {A. E. Gargett},
1140  title = {Vertical eddy diffusivity in the ocean interior},
1141  journal = JMR,
1142  year = {1984},
1143  volume = {42}
1144}
1145
1146@ARTICLE{Gaspar1990,
1147  author = {P. Gaspar and Y. Gr{\'e}goris and J.-M. Lefevre},
1148  title = {A simple eddy kinetic energy model for simulations of the oceanic vertical mixing\:
1149    Tests at Station Papa and long-term upper ocean study site},
1150  journal = JGR,
1151  year = {1990},
1152  volume = {95},  number = {C9}
1153}
1154
1155@ARTICLE{Gent1990,
1156  author = {P. R. Gent and J. C. Mcwilliams},
1157  title = {Isopycnal Mixing in Ocean Circulation Models},
1158  journal = JPO,
1159  year = {1990},
1160  volume = {20},  number = {1},
1161  pages = {150--155},
1162}
1163
1164@Article{Gentemann_al_JGR09,
1165  author =   {C. L. Gentemann  and P. J. Minnett and B. Ward},
1166  title =        {Profiles of Ocean Surface heating ({POSH}): A new model
1167                  of upper ocean diurnal warming},
1168  journal =     JGR,
1169  year =     {2009},
1170  Volume =   {114},
1171  Pages =    {C07017},
1172  doi =   {10.1029/2008JC004825},
1173  OPTannote =   {}
1174}
1175
1176@ARTICLE{Gerdes1993a,
1177  author = {R. Gerdes},
1178  title = {A primitive equation ocean circulation model using a general vertical
1179   coordinate transformation 1. Description and testing of the model},
1180  journal = JGR,
1181  year = {1993},
1182  volume = {98}
1183}
1184
1185@ARTICLE{Gerdes1993b,
1186  author = {R. Gerdes},
1187  title = {A primitive equation ocean circulation model using a general vertical
1188   coordinate transformation 2. Application to an overflow problem},
1189  journal = JGR,
1190  year = {1993},
1191  volume = {98},
1192  pages = {14703--14726}
1193}
1194
1195@ARTICLE{Gerdes1991,
1196   Author = {Gerdes, R{\"u}diger and K{\"o}berle, Cornelia and Willebrand, J{\"u}rgen},
1197   Doi = {10.1007/BF00210006},
1198   Journal = {Clim. Dynamics},
1199   Number = {4},
1200   Pages = {211--226},
1201   Title = {The influence of numerical advection schemes on the results of ocean general circulation models},
1202   Volume = {5},
1203   Year = {1991},
1204}
1205@TECHREPORT{Gibson_TR86,
1206  author = {J. K. Gibson},
1207  title = {Standard software development and maintenance},
1208  institution = {Operational Dep., ECMWF, Reading, UK.},
1209  year = {1986}
1210}
1211
1212@BOOK{Gill1982,
1213  title = {Atmosphere-Ocean Dynamics},
1214  publisher = {International Geophysics Series, Academic Press, New-York},
1215  year = {1982},
1216  author = {A. E. Gill}
1217}
1218
1219@article{goff_JGR2010,
1220   author = {J. A. Goff},
1221   title = {Global prediction of abyssal hill root-mean-square heights from small-scale altimetric gravity variability},
1222   issn = {2156-2202},
1223   doi = {10.1029/2010JB007867},
1224   abstract = {Abyssal hills, which are pervasive landforms on the seafloor of the Earth's oceans, represent a potential tectonic record of the history of mid-ocean ridge spreading. However, the most detailed global maps of the seafloor, derived from the satellite altimetry-based gravity field, cannot be used to deterministically characterize such small-scale ({\textless}10 km) morphology. Nevertheless, the small-scale variability of the gravity field can be related to the statistical properties of abyssal hill morphology using the upward continuation formulation. In this paper, I construct a global prediction of abyssal hill root-mean-square (rms) heights from the small-scale variability of the altimetric gravity field. The abyssal hill-related component of the gravity field is derived by first masking distinct features, such as seamounts, mid-ocean ridges, and continental margins, and then applying a newly designed adaptive directional filter algorithm to remove fracture zone/discontinuity fabric. A noise field is derived empirically by correlating the rms variability of the small-scale gravity field to the altimetric noise field in regions of very low relief, and the noise variance is subtracted from the small-scale gravity variance. Suites of synthetically derived, abyssal hill formed gravity fields are generated as a function of water depth, basement rms heights, and sediment thickness and used to predict abyssal hill seafloor rms heights from corrected small-scale gravity rms height. The resulting global prediction of abyssal hill rms heights is validated qualitatively by comparing against expected variations in abyssal hill morphology and quantitatively by comparing against actual measurements of rms heights. Although there is scatter, the prediction appears unbiased.},
1225   volume = {115},
1226   number = {B12},
1227   journal = {Journal of Geophysical Research: Solid Earth},
1228   year = {2010},
1229   pages = {B12104},
1230}
1231
1232@ARTICLE{Goosse_al_JGR99,
1233  author = {H. Goosse and E. Deleersnijder and T. Fichefet and M. England},
1234  title = {Sensitivity of a global coupled ocean-sea ice model to the parameterization of vertical mixing},
1235  journal = JGR,
1236  year = {1999},
1237  volume = {104},
1238  pages = {13,681--13,695}
1239}
1240
1241@ARTICLE{Gorgues_al_GRL07,
1242  author = {T. Gorgues and C. Menkes and O. Aumont and K. Rodgers and G. Madec and Y. Dandonneau},
1243  title = {Indonesian Throughflow control of the eastern equatorial Pacific biogeochemistry},
1244  journal = GRL,
1245  year = {2007},
1246  volume = {34},
1247  pages = {L05609},
1248  doi = {10.1029/2006GL028210},
1249}
1250
1251@ARTICLE{Graham_McDougall_JPO13,
1252  author = {F.S. Graham and T.J. McDougall},
1253  title = {Quantifying the nonconservative production of conservative temperature, potential temperature, and entropy},
1254  journal = JPO,
1255  year = {2013},
1256  volume = {43},
1257  pages = {838--862},
1258  doi = {10.1175/JPO-D-11-0188.1}
1259}
1260
1261@ARTICLE{Greatbatch_JGR94,
1262  author = {R. J. Greatbatch},
1263  title = {A note on the representation of steric sea level in models that conserve
1264   volume rather than mass},
1265  journal = JGR,
1266  year = {1994},
1267  volume = {99},  number = {C6},
1268  pages = {12,767--12,771}
1269}
1270
1271@BOOK{Griffies_Bk04,
1272  title = {Fundamentals of ocean climate models},
1273  publisher = {Princeton University Press, 434pp},
1274  year = {2004},
1275  author = {S.M. Griffies}
1276}
1277
1278@ARTICLE{Griffies_JPO98,
1279  author = {S.M. Griffies},
1280  title = {The Gent-McWilliams skew-flux},
1281  journal = JPO,
1282  year = {1998},
1283  volume = {28},
1284  pages = {831--841}
1285}
1286
1287@ARTICLE{Griffies_al_OM09,
1288  author = {S.M. Griffies and A. Biastoch and C. Boning and F. Bryan and G. Danabasoglu
1289   and E. P. Chassignet and M. H. England and R. Gerdes and H. Haak
1290   and R. W. Hallberg and W. Hazeleger and J. Jungclaus and W. G. Large
1291   and G. Madec and A. Pirani and B. L. Samuels and M. Scheinert and
1292   A. Sen Gupta and C. A. Severijns and H. L. Simmons and A.-M. Treguier
1293   and M. Winton and S. Yeager and J. Yin},
1294  title = {Coordinated Ocean-ice Reference Experiments (COREs)},
1295  journal = OM,
1296  year = {2009},
1297  volume = {26},  number = {1-2},
1298  pages = {1--46},
1299  doi = {10.1016/j.ocemod.2008.08.007},
1300}
1301
1302@ARTICLE{Griffies_al_OS05,
1303  author = {S.M. Griffies and A. Gnanadesikan and K.W. Dixon and J.P. Dunne and
1304   R. Gerdes and M.J. Harrison and A. Rosati and J.L. Russell and B.L.
1305   Samuels and M.J. Spelman and M. Winton and R. Zhang},
1306  title = {Formulation of an ocean model for global climate simulations},
1307  journal = OS,
1308  year = {2005},
1309  volume = {1},
1310  pages = {45--79}
1311  }
1312
1313@ARTICLE{Griffies_al_JPO98,
1314  author = {S.M. Griffies and A. Gnanadesikan and R.C. Pacanowski and V.D. Larichev
1315   and J.K. Dukowicz and R.D. Smith},
1316  title = {Isoneutral Diffusion in a z-Coordinate Ocean Model},
1317  journal = JPO,
1318  year = {1998},
1319  volume = {28},  number = {5},
1320  pages = {805--830},
1321}
1322
1323@ARTICLE{Griffies_al_MWR01,
1324  author = {S.M. Griffies and R.C. Pacanowski and M. Schmidt and V. Balaji},
1325  title = {Tracer Conservation with an Explicit Free Surface Method for z-Coordinate
1326   Ocean Models},
1327  journal = MWR,
1328  year = {2001},
1329  volume = {129},  number = {5},
1330  pages = {1081--1098},
1331}
1332
1333@ARTICLE{Griffies_Hallberg_MWR00,
1334  author = {S.M. Griffies and R.W. Hallberg},
1335  title = {Biharmonic friction with a Smagorinsky-like viscosity for use in large-scale eddy-permitting ocean models},
1336  journal = MWR,
1337  year = {2000},
1338  volume = {128}, 
1339  pages = {2935–-2946},
1340  doi = {10.1175/1520-0493(2000)128}
1341}
1342
1343@ARTICLE{Guilyardi_al_JC04,
1344  author = {E. Guilyardi and S. Gualdi and J. M. Slingo and A. Navarra and P. Delecluse
1345    and J. Cole and G. Madec and M. Roberts and M. Latif and L. Terray},
1346  title = {Representing El Ni\~{n}o in coupled ocean-atmosphere GCMs: the dominant role of the atmospheric component},
1347  journal = JC,
1348  year = {2004},
1349  volume = {17},
1350  pages = {4623--4629}
1351}
1352
1353@ARTICLE{Guilyardi_Madec_CD98,
1354  author = {E. Guilyardi and G. Madec},
1355  title = {Performance of the OPA-ARPEGE-T21 global ocean-atmosphere coupled model},
1356  journal = CD,
1357  year = {1997},
1358  volume = {13},
1359  pages = {149--165}
1360}
1361
1362@ARTICLE{Guilyardi_al_CD01,
1363  author = {E. Guilyardi and G. Madec and L. Terray},
1364  title = {The role of lateral ocean physics in the upper ocean thermal balance of a coupled ocean-atmosphere GCM},
1365  journal = CD,
1366  year = {2001},
1367  volume = {17},
1368  pages = {589--599},
1369  number = {8}
1370}
1371
1372@ARTICLE{Guilyardi_al_CRAS95,
1373  author = {E. Guilyardi and G. Madec and L. Terray and M. D\'{e}qu\'{e} and
1374   M. Pontaud and M. Imbard and D. Stephenson and M.-A. Filiberti and
1375   D. Cariolle and P. Delecluse and O. Thual},
1376  title = {Simulation couplée océan-atmosphère de la variabilité du climat},
1377  journal = {C. R. Acad. Sci Paris},
1378  year = {1995},
1379  volume = {320},  number = {s\'{e}rie IIa},
1380  pages = {683--690}
1381}
1382
1383@ARTICLE{Guyon_al_EP99,
1384  author = {M. Guyon and G. Madec and F.-X. Roux and M. Imbard},
1385  title = {A Parallel ocean model for high resolution studies},
1386  journal = {Lecture Notes in Computer Science},
1387  year = {1999},
1388  volume = {Euro-Par'99},
1389  pages = {603--607}
1390}
1391
1392@ARTICLE{Guyon_al_CalPar99,
1393  author = {M. Guyon and G. Madec and F.-X. Roux and M. Imbard and C. Herbaut
1394   and P. Fronier},
1395  title = {Parallelization of the OPA ocean model},
1396  journal = {Calculateurs Paralleles},
1397  year = {1999},
1398  volume = {11},  number = {4},
1399  pages = {499--517}
1400}
1401
1402@BOOK{Haltiner1980,
1403  title = {Numerical prediction and dynamic meteorology},
1404  publisher = {John Wiley {\&} Sons Eds., second edition},
1405  year = {1980},
1406  author = {G. J. Haltiner and R. T. Williams},
1407  pages = {477pp}
1408}
1409
1410@ARTICLE{Haney1991,
1411  author = {R. L. Haney},
1412  title = {On the Pressure Gradient Force over Steep Topography in Sigma Coordinate Ocean Models},
1413  journal = JPO,
1414  year = {1991},
1415  volume = {21},  number = {4},
1416  pages = {610--619},
1417}
1418
1419@ARTICLE{Hazeleger_Drijfhout_JPO98,
1420  author = {W. Hazeleger and S. S. Drijfhout},
1421  title = {Mode water variability in a model of the subtropical gyre: response to anomalous forcing},
1422  journal = JPO,
1423  year = {1998},
1424  volume = {28},
1425  pages = {266--288},
1426}
1427
1428@ARTICLE{Hazeleger_Drijfhout_JPO99,
1429  author = {W. Hazeleger and S. S. Drijfhout},
1430  title = {Stochastically forced mode water variability},
1431  journal = JPO,
1432  year = {1999},
1433  volume = {29},
1434  pages = {1772--1786},
1435}
1436
1437@ARTICLE{Hazeleger_Drijfhout_JGR00,
1438  author = {W. Hazeleger and S. S. Drijfhout},
1439  title = {A model study on internally generated variability in subtropical mode water formation},
1440  journal = JGR,
1441  year = {2000},
1442  volume = {105},
1443  pages = {13,965--13,979},
1444}
1445@ARTICLE{Hazeleger_Drijfhout_JPO00,
1446  author = {W. Hazeleger and S. S. Drijfhout},
1447  title = {Eddy subduction in a model of the subtropical gyre},
1448  journal = JPO,
1449  year = {2000},
1450  volume = {30},
1451  pages = {677--695},
1452}
1453
1454@ARTICLE{Hellerman_Rosenstein_JPO83,
1455  author = {S. Hellerman and  M. Rosenstein },
1456  title = {Normal monthly wind stress over the world ocean with error estimates},
1457  journal = JPO,
1458  year = {1983},
1459  volume = {13},
1460  pages = {1093--1104},
1461}
1462
1463@ARTICLE{He_Ding_JSC01,
1464  author = {Y. He and C. H. Q. Ding},
1465  title = {Using Accurate Arithmetics to Improve Numerical Reproducibility and Stability in Parallel Applications},
1466  journal = JSC,
1467  year = {2001},
1468  volume = {18},
1469  pages = {259--277},
1470}
1471
1472@ARTICLE{Hirt_al_JCP74,
1473  author = {C. W. Hirt and A. A. Amsden and J. L. Cook},
1474  title = {An Arbitrary Lagrangian--Eulerian Computing Method for All Flow Speeds},
1475  journal = JCP,
1476  year = {1974},
1477  volume = {14},
1478  pages = {227--253}
1479}
1480
1481@ARTICLE{Hofmeister_al_OM09,
1482  author = {R. Hofmeister and H. Burchard and J.-M. Beckers},
1483  title = {Non-uniform adaptive vertical grids for 3D numerical ocean models},
1484  journal = OM,
1485  year = {2009},
1486  volume = {33},
1487  pages = {70--86},
1488  doi = {10.1016/j.ocemod.2009.12.003},
1489  issn = {1463-5003},
1490}
1491
1492@ARTICLE{Holland1999,
1493  author = {D. Holland and A. Jenkins},
1494  title = {Modeling Thermodynamic Ice-Ocean Interactions at the Base of an Ice Shelf},
1495  journal = JPO,
1496  year = {1999},
1497  volume = {29}, 
1498  pages = {1787--1800},
1499}
1500
1501@ARTICLE{HollowayOM86,
1502  author = {Greg Holloway},
1503  title = {A Shelf Wave/Topographic Pump Drives Mean Coastal Circulation (part I)},
1504  journal = OM,
1505  year = {1986},
1506  volume = {68}, 
1507}
1508
1509@ARTICLE{HollowayJPO92,
1510  author = {Greg Holloway},
1511  title = {Representing Topographic Stress for Large-Scale Ocean Models},
1512  journal = JPO,
1513  year = {1992},
1514  volume = {22}, 
1515  pages = {1033--1046},
1516}
1517
1518@ARTICLE{HollowayJPO94,
1519  author = {Michael Eby and Greg Holloway},
1520  title = {Sensitivity of a Large-Scale Ocean Model to a Parameterization of Topographic Stress},
1521  journal = JPO,
1522  year = {1994},
1523  volume = {24}, 
1524  pages = {2577--2587},
1525}
1526
1527@ARTICLE{HollowayJGR09,
1528  author = {Greg Holloway and Zeliang Wang},
1529  title = {Representing eddy stress in an Arctic Ocean model},
1530  journal = JGR,
1531  year = {2009},
1532  doi = {10.1029/2008JC005169}, 
1533}
1534
1535@ARTICLE{HollowayOM08,
1536  author = {Mathew Maltrud and Greg Holloway},
1537  title = {Implementing biharmonic neptune in a global eddying ocean model},
1538  journal = OM,
1539  year = {2008},
1540  volume = {21}, 
1541  pages = {22--34},
1542}
1543
1544@ARTICLE{Hordoir_al_CD08,
1545  author = {R. Hordoir and J. Polcher and J.-C. Brun-Cottan and G. Madec},
1546  title = {Towards a parametrization of river discharges into ocean general
1547   circulation models: a closure through energy conservation},
1548  journal = CD,
1549  year = {2008},
1550  volume = {31},  number = {7-8},
1551  pages = {891--908},
1552  doi = {10.1007/s00382-008-0416-4},
1553}
1554
1555@ARTICLE{Hsu1990,
1556  author = {Hsu, Yueh-Jiuan G. and Arakawa, Akio},
1557  title = {Numerical Modeling of the Atmosphere with an Isentropic Vertical Coordinate},
1558  journal = MWR,
1559  year = {1990},
1560  volume = {118},  number = {10},
1561  pages = {1933--1959},
1562}
1563
1564@ARTICLE{Huang_JPO93,
1565  author = {R.X. Huang},
1566  title = {Real freshwater flux as a natural boundary condition for the salinity
1567   balance and thermohaline circulation forced by evaporation and precipitation},
1568  journal = JPO,
1569  year = {1993},
1570  volume = {23},
1571  pages = {2428--2446}
1572}
1573
1574@TECHREPORT{Hunke2008,
1575  author = {E.C. Hunke and W.H. Lipscomb},
1576  title = {CICE: the Los Alamos sea ice model documentation and software user's manual,
1577        Version 4.0},
1578  institution = { Los Alamos National Laboratory, N.M.},
1579  publisher = {LA-CC-06-012, Los Alamos National Laboratory, N.M.},
1580  year = {2008}
1581}
1582
1583@TechReport{Hunter2006,
1584  Title                    = {Specification for Test Models of Ice Shelf Cavities},
1585  Author                   = {J. R. Hunter},
1586  Institution              = {Antarctic Climate \& Ecosystems Cooperative Research Centre Private Bag 80, Hobart, Tasmania 7001},
1587  Year                     = {2006},
1588}
1589
1590@TECHREPORT{TEOS10,
1591  author = {IOC and SCOR and IAPSO},
1592  title = {The international thermodynamic equation of seawater - 2010: Calculation and use of thermodynamic properties},
1593  institution = {Intergovernmental Oceanographic Commission},
1594  publisher = {Manuals and Guides No. 56, UNESCO (English)},
1595  year = {2010},
1596  pages = {196pp},
1597  url = {http://www.teos-10.org/pubs/TEOS-10_Manual.pdf}
1598}
1599
1600@ARTICLE{Iudicone_al_JPO08b,
1601  author = {D. Iudicone and G. Madec and B. Blanke and S. Speich},
1602  title = {The role of Southern Ocean surface forcings and mixing in the global conveyor},
1603  journal = JPO,
1604  year = {2008},
1605  volume = {38},
1606  pages = {1377--1400}
1607}
1608
1609@ARTICLE{Iudicone_al_JPO08a,
1610  author = {D. Iudicone and G. Madec and T. J. McDougall},
1611  title = {Diagnosing water transformations and the key role of light penetration},
1612  journal = JPO,
1613  year = {2008},
1614  volume = {38},
1615  pages = {1357--1376}
1616}
1617
1618@ARTICLE{Iudicone_al_JPO07,
1619  author = {D. Iudicone and K. Rodgers and R. Schopp and G. Madec},
1620  title = {An Exchange window for the Antarctic Intermediate Water Injection into the South Pacific},
1621  journal = JPO,
1622  year = {2007},
1623  volume = {37},
1624  pages = {31--49}
1625}
1626
1627@ARTICLE{Iudicone_al_JPO08c,
1628  author = {D. Iudicone and S. Speich and G. Madec and B. Blanke},
1629  title = {The global Conveyor Belt in a Southern Ocean perspective},
1630  journal = JPO,
1631  year = {2008},
1632  volume = {38},
1633  pages = {1401--1425}
1634}
1635
1636@ARTICLE{Izumo_al_CD10,
1637  author = {T. Izumo and S.Masson and J. Vialard and C. de Boyer Montegut and
1638   S. K. Behera and G. Madec and K. Takahashi and T. Yamagata},
1639  title = {Interannual variations of low-frequency Madden-Julian Oscillation in autral summer: Observations},
1640  journal = CD,
1641  year = {2010},
1642  volume = {35},  number = {4},
1643  pages = {669--683},
1644  doi = {10.1007/s00382-009-0655-z}
1645}
1646
1647@ARTICLE{JackMcD1995,
1648  author = {D. R. Jackett and T. J. McDougall},
1649  title = {Minimal adjustment of hydrographic data to achieve static stability},
1650  journal = JAOT,
1651  year = {1995},
1652  volume = {12},
1653  pages = {381--389}
1654}
1655
1656@article{Jackson_Rehmann_JPO2014,
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2205  school = {Universit\'{e} Pierre et Marie Curie, Paris, France, 194pp.},
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2224  journal = JPO,
2225  year = {1991},
2226  volume = {21},
2227  pages = {1349--1371}
2228}
2229
2230@INBOOK{Madec_Crepon_Bk91,
2231  chapter = {Thermohaline-driven deep water formation in the Northwestern Mediterranean
2232   Sea},
2233  pages = {241--265},
2234  title = {Deep convection and deep water formation in the oceans},
2235  publisher = {Elsevier Oceanographic Series, P.C. Chu and J.C. Gascard (Eds.)},
2236  year = {1991},
2237  author = {G. Madec and M. Cr\'{e}pon}
2238}
2239
2240@ARTICLE{Madec1997,
2241  author = {G. Madec and P. Delecluse},
2242  title = {The OPA/ARPEGE and OPA/LMD Global Ocean-Atmosphere Coupled Model},
2243  journal = {Int. WOCE Newsletter},
2244  year = {1997},
2245  volume = {26},
2246  pages = {12--15}
2247}
2248
2249@TECHREPORT{Madec1998,
2250  author = {G. Madec and P. Delecluse and M. Imbard and C. Levy},
2251  title = {OPA 8 Ocean General Circulation Model - Reference Manual},
2252  institution = {LODYC/IPSL Note 11},
2253  year = {1998}
2254}
2255
2256@ARTICLE{Madec_Imbard_CD96,
2257  author = {G Madec and M Imbard},
2258  title = {A global ocean mesh to overcome the north pole singularity},
2259  journal = CD,
2260  year = {1996},
2261  volume = {12},
2262  pages = {381--388}
2263}
2264
2265@ARTICLE{Madec_al_JPO96,
2266  author = {G. Madec and F. Lott and P. Delecluse and M. Cr\'{e}pon},
2267  title = {Large-Scale Preconditioning of Deep-Water Formation in the Northwestern
2268   Mediterranean Sea},
2269  journal = JPO,
2270  year = {1996},
2271  volume = {26},  number = {8},
2272  pages = {1393--1408},
2273}
2274
2275@ARTICLE{Madec_al_OM88,
2276  author = {G. Madec and C. Rahier and M. Chartier},
2277  title = {A comparison of two-dimensional elliptic solvers for the streamfunction
2278   in a multilevel OGCM},
2279  journal = OM,
2280  year = {1988},
2281  volume = {78},
2282  pages = {1-6}
2283}
2284
2285@ARTICLE{Maes_al_CD98,
2286  author = {C. Maes and P. Delecluse and G. Madec},
2287  title = {Impact of westerly wind bursts on the warm pool of the TOGA-COARE
2288   domain in an OGCM},
2289  journal = CD,
2290  year = {1998},
2291  volume = {14},
2292  pages = {55--70}
2293}
2294
2295@ARTICLE{Maes_al_MWR97,
2296  author = {C. Maes and G. Madec and P. Delecluse},
2297  title = {Sensitivity of an Equatorial Pacific OGCM to the lateral diffusion},
2298  journal = MWR,
2299  year = {1997},
2300  volume = {125},  number = {5},
2301  pages = {958--971}
2302}
2303
2304@ARTICLE{Maggiore_al_PCE98,
2305  author = {A. Maggiore and  M. Zavatarelli and M. G. Angelucci and N. Pinardi},
2306  title = {Surface heat and water fluxes in the Adriatic Sea: seasonal and interannual variability},
2307  journal = {Phys Chem Earth},
2308  year = {1998},
2309  volume = {23},
2310  pages = {561--567}
2311}
2312
2313@ARTICLE{Maltrud1998,
2314  author = {M. E. Maltrud and R. D. Smith and A. J. Semtner and R. C. Malone},
2315  title = {Global eddy-resolving ocean simulations driven by 1985-1995 atmospheric
2316   winds},
2317  journal = JGR,
2318  year = {1998},
2319  volume = {103},  number = {C13},
2320  pages = {30,825--30,854}
2321}
2322
2323@ARTICLE{Marchesiello2001,
2324  author = { P. Marchesiello and J. Mc Williams and A. Shchepetkin },
2325  title = {Open boundary conditions for long-term integrations of Regional Oceanic
2326   Models},
2327  journal = OM,
2328  year = {2001},
2329  volume = {3},
2330  pages = {1--20}
2331}
2332
2333@ARTICLE{Marsaleix_al_OM08,
2334  author = {P. Marsaleix and F. Auclair and J. W. Floor and M. J. Herrmann and
2335   C. Estournel and I. Pairaud and C. Ulses},
2336  title = {Energy conservation issues in sigma-coordinate free-surface ocean
2337   models},
2338  journal = OM,
2339  year = {2008},
2340  volume = {20},  number = {1},
2341  pages = {61--89},
2342  doi = {10.1016/j.ocemod.2007.07.005},
2343}
2344
2345@Article{Marsh_GMD2015,
2346AUTHOR = {R. Marsh and V. O. Ivchenko and N. Skliris and S. Alderson and G. R. Bigg and G. Madec and A. T. Blaker and Y. Aksenov and B. Sinha and A. C. Coward and J. Le Sommer and N. Merino and V. B. Zalesny},
2347TITLE = {NEMO-ICB (v1.0): interactive icebergs in the NEMO ocean model globally configured at eddy-permitting resolution},
2348JOURNAL = {Geoscientific Model Development},
2349VOLUME = {8},
2350YEAR = {2015},
2351NUMBER = {5},
2352PAGES = {1547--1562},
2353DOI = {10.5194/gmd-8-1547-2015}
2354}
2355
2356@article{Martin_Adcroft_OM10,
2357author = {T. Martin and A. Adcroft},
2358title = {Parameterizing the fresh-water flux from land ice to ocean with interactive icebergs in a coupled climate model},
2359journal = OM,
2360year = {2010},
2361volume = {34}, number = {3--4},
2362pages = {111--124},
2363issn = {1463-5003},
2364doi = {10.1016/j.ocemod.2010.05.001},
2365}
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2372   Molod and S. Dutkiewicz and H. Hill and M. Losch and B. Fox-Kemper
2373   and D. Menemenlis and D. Ferreira and E. Hill and M. Follows and
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2379  title = {Etude de l'oc\'{e}an mondial : mod\'{e}lisation de la circulation
2380   et du transport de traceurs anthropog\'{e}niques},
2381  school = {Universit\'{e} Pierre et Marie Curie, Paris, France, 201pp},
2382  year = {1992}
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2388   and F Codron and S. Denvil and L. Fairhead and T. Fichefet and M.-A.
2389   Filiberti and M.-A. Foujols and P. Friedlingstein and H. Goosse and
2390   J.-Y. Grandpeix and E. Guilyardi and F. Hourdin and G. Krinner and
2391   C. L\'{e}vy and G. Madec and J. Mignot and I. Musat and D. Swingedouw
2392   and C. Talandier},
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2394   to atmospheric resolution},
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2399  doi = {10.1007/s00382-009-0640-6},
2400}
2401
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2403  author = {O. Marti and G. Madec and P. Delecluse},
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2419  editor = {Resch M, Roller S, Lammers P, Furui T, Galle M, Bez W},
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2422  doi = {10.1007/978-3-540-74384-2},
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2426  author = {S. Masson and J.-J. Luo and G. Madec and J. Vialard and F. Durand
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2512  title = {Surface pigments, algal biomass profiles, and potential production of the euphotic layer:
2513           Relationships reinvestigated in view of remote-sensing applications},
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2558  title = {Etude de l'activit\'{e} biologique et de la circulation oc\'{e}anique
2559   dans un jet g\'{e}ostrophique: le front Alm\'{e}ria-Oran},
2560  school = {Universit\'{e} Pierre et Marie Curie, Paris, France},
2561  year = {2001}
2562}
2563
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3344@comment{jabref-meta: groupsversion:3;}
3345
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33512 ExplicitGroup:GHG change\;0\;;
33522 ExplicitGroup:in GCMs\;0\;;
33532 ExplicitGroup:in MIPs\;0\;;
33542 ExplicitGroup:momentum balance\;0\;;
33552 ExplicitGroup:Obs analysis\;0\;;
33562 ExplicitGroup:Paleo\;0\;;
33572 ExplicitGroup:Previous events\;0\;;
33582 ExplicitGroup:Reviews\;0\;;
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33622 ExplicitGroup:Low freq\;0\;;
33632 ExplicitGroup:Theory\;0\;;
33642 ExplicitGroup:Energetics\;0\;;
33651 ExplicitGroup:Diurnal in tropics\;0\;;
33661 ExplicitGroup:Indian\;0\;;
33671 ExplicitGroup:Atlantic\;0\;;
33681 ExplicitGroup:MJO, IO, TIW\;2\;;
33692 ExplicitGroup:Obs\;0\;;
33702 ExplicitGroup:GCM\;0\;;
33712 ExplicitGroup:Mechanims\;0\;;
33722 ExplicitGroup:TIW\;0\;;
33731 ExplicitGroup:Observations\;2\;;
33742 ExplicitGroup:ERBE\;0\;;
33752 ExplicitGroup:Tropical\;0\;;
33762 ExplicitGroup:Global\;0\;;
33772 ExplicitGroup:Clouds\;0\;;
33782 ExplicitGroup:Scale interactions\;0\;;
33791 ExplicitGroup:Mechanisms\;2\;;
33802 ExplicitGroup:CRF\;0\;;
33812 ExplicitGroup:Water vapor\;0\;;
33822 ExplicitGroup:Atmos mechanisms\;0\;;
33831 ExplicitGroup:GCMs\;2\;;
33842 ExplicitGroup:Uncertainty\;0\;;
33852 ExplicitGroup:Momentum balance\;0\;;
33861 ExplicitGroup:Climate change\;0\;;
33872 ExplicitGroup:IPCC AR4\;0\;;
33881 ExplicitGroup:Analysis tools\;0\;;
33891 KeywordGroup:EG publis\;0\;author\;guilyardi\;0\;0\;;
3390}
3391
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