Publications

See Brian's Scholar Profiles Google Scholar Profile Orcid Profile
Links to journal pages are given below. Where allowed by copyright agreements, most of my articles from the pre-open-access era are archived in the University of Michigan Deep Blue system.

Manuscripts in-press/revision/review/advanced preparation

Advisees in Bold Capital Letters

MONDAL, A., A.J. MORTEN, B.K. Arbic, G.R. Flierl, and R.B. Scott, and J. SKITKA (2024), Spatio-temporal spectral transfers in fluid turbulence: Theory and numerical results.

Group Collaborators:

A. MONDAL, A.J. MORTEN, J. SKITKA

MüLLER, M., B.K. Arbic, J.G. Richman, J.F. Shriver, and R.B. Scott (2024), Nonlinearities in westward propagating mesoscale eddies diagnosed from wavenumber-frequency spectra.

Group Collaborators:

M. MüLLER

WETZEL, A.N., B.K. Arbic, I. Cerovecki, M.C. Hendershott, R.H. Karsten, P.D. Miller, and J.F. Molinari (2024), On stratification, large-scale tides, and temporal changes in surface tidal elevations: Two-layer analytical model.

Group Collaborators:

A.N. WETZEL

ANSONG, J.K., B.K. Arbic, D. Menemenlis, A.J. Wallcraft, R. Bourdalle-Badié, J. Chanut, F. Birol, M. Schindelegger, R.D. Ray, E.P. Chassignet, A.J. Adcroft, R.W. Hallberg, L. Carrère, G. Dibarboure, N. Picot, M.C. Buijsman, J.G. Richman, J.F. Shriver, C.N. Hill, M.R. Mazloff, A.T. Nguyen, R.M. Ponte, A. Koch-Larrouy, and F. Lyard (2024), Importance of damping in comparison of internal tides in several hydrodynamical models with altimetry.

Group Collaborators:

J.K. ANSONG

Buijsman, M.C., B.K. Arbic, E.P. Chassignet, L. Hiron, J.F. Shriver, M. Solano, and X. Xu (2024), Variance in baroclinic modes across frequency bands in a global ocean simulation with atmospheric and tidal forcing.

Schönau, M.C., L. Hiron, J. Ragland, K.J. Raja, J. SKITKA, M.S. Solano, X. Xu, B.K. Arbic, M.C. Buijsman, E.P. Chassignet, E. Coelho, R.W. Helber, J.F. Shriver, J.E. Summers, K.L. Verlinden, and A.J. Wallcraft (2024), An overview to modeling, characterizing, and predicting the effects of internal gravity waves on acoustic propagation at basin to global scales.

Group Collaborators:

J. SKITKA

Hiron, L., M.C. Schönau, K.J. Raja, E.P. Chassignet, M.C. Buijsman, B.K. Arbic, A. Bozec, E.M.C. Coelho, and M. Solano (2024), The influence of vertical resolution on internal tide energetics and subsequent effects on acoustic propagation.

Uchida, T., B. YADIDYA, K.E. Lapo, X. Xu, J. Early, B.K. Arbic, D. Menemenlis, L. Hiron, E.P. Chassignet, and J.F. Shriver (2024), Dynamic-mode decomposition of geostrophically balanced motions from SWOT altimetry. 

Group Collaborators:

B. YADIDYA

Momeni, K., W.R. Peltier, J. SKITKA, Y. Ma, B.K. Arbic, D. Menemenlis, and Y. Pan (2024), An alternative buoyancy Reynolds number-based inference of ocean diapycnal diffusivity due to internal wave breaking: Results from a high resolution regional ocean model.

Group Collaborators:

J. SKITKA

Larrañaga, M., L. Renault, A. Wineteer, M. Contreras, B.K. Arbic, M. Bourassa, and E. Rodriguez (2024), Assessing the future ODYSEA satellite mission for the estimation of ocean surface currents, wind stress, energy fluxes, and the mechanical coupling between the ocean and the atmosphere.

 

 

Buchan, P.M, E. Mahu, S. Seeyave, B.K. Arbic, G. Sant, E.d.R. Maure, S. Mahadeo, E. Kostianaia, J. Hermes, R. Sacedon, T.O. Sogbanmu, S. Kidwai,  X. Lin,  and Z. Sun (2024), UN Ocean Decade Challenge 9: forging a pathway for connecting skills, knowledge, technology and participatory decision-making for all.

 

 

Arbic, B.K., J. Adjetey, A. Agyekumhene, M.F. Akinwunmi, L.G. Akita, L. Anderson, J.K. Ansong, K.A. Addo, E.K. Asamoah, O.O. Awe, C. Buckingham, J. Collier, A.J. Cotel, R. Damoah, O.W. Elegbeleye, R. Farneti, M. Foster-Martinez, C. Frank, S. Howden, R.T. Idowu, W.M. Johnson, D. Kaiser, P. Knoop, A.M. Lamptey, A. Lawal-Are, A.J. Lucas, E. Mahu, P. Martin, D. Menemenlis, N.O. Ayoola, E.S. Nyadjro, E. Nyarko, N. Oguguah, A. Oikonomou, M. Oladipo, T. Osborne, R.K. Quarcoo, D.T. Quaye, A.O. Saba, A.C. Simon, T.O. Sogbanmu, S. Tsei, and G. Vagenas (2024), The Coastal Ocean Environment Summer School In Nigeria and Ghana: The value of long-term, sustained capacity sharing.

 

Peer-reviewed Publications

Advisees in Bold Capital Letters

2024

SKITKA, J., B.K. Arbic, Y. Ma, K. Momeni, Y.Pan, W.R. Peltier, D. Menemenlis, and R. THAKUR (2024), Internal-wave dissipation mechanisms and vertical structure in a high-resolution regional ocean model. Geophysical Research Letters, 51, e2023GL108039, https://doi.org/10.1029/2023GL108039

Group Collaborators:

J. SKITKA, R. THAKUR

116

Elipot, S.,  E. Faigle, and B.K. Arbic (2024), An integrated dataset of near-surface Eulerian fields and Lagrangian trajectories from an ocean model. Scientific Data, 11, https://doi.org/10.1038/s41597-024-03813-z.

DATA PAPER

115

Arbic, B.K., B.C. Johnson, and V. Titov (2024), The tsunami triggered by the Chicxulub impact. Physics Today, 129, 54-55, https://doi.org/10.1063/pt.htyz.zmzd

114

Siyanbola, O.Q, M.C. Buijsman, A. Delpech, R. Barkan, Y. Pan, and B.K. Arbic (2024), Interactions of remotely generated internal tides with the U.S. West Coast continental margin. Journal of Geophysical Research Oceans, 129, e2023JC020859, https://doi.org/10.1029/2023JC020859

113

Momeni, K., Y. Ma, W.R. Peltier, D. Menemenlis, R. THAKUR, Y. Pan, B.K. Arbic, J. SKITKA, and M.H. Alford (2024), Breaking internal waves and ocean diapycnal diffusivity in a high-resolution regional ocean model: Evidence of a wave-turbulence cascade. Journal of Geophysical Research Oceans, 129, e2023JC020509, https://doi.org/10.1029/2023JC020509

Group Collaborators:

R. THAKUR, J. SKITKA

112

ANSONG, J.K., B.K. Arbic, A.D. NELSON, M.H. Alford, E. Kunze, D. Menemenlis, A.C SAVAGE, J.F. Shriver, A.J. Wallcraft, and M.C. Buijsman (2024), Surface and sub-surface kinetic energy wavenumber-frequency spectra in global ocean models and observations. Journal of Geophysical Research Oceans, 129, e2023JC020480, https://doi.org/10.1029/2023JC020480

Group Collaborators:

J.K. ANSONG, A.D. NELSON, A.C SAVAGE

111

WANG, H., R. Hallberg, A.J. Wallcraft, B.K. Arbic, and E.P. Chassignet (2024), Improving global barotropic tides with sub-grid scale topography. Journal of Advances in Modeling Earth Systems, 16, e2023MS004056, https://doi.org/10.1029/2023MS004056

Group Collaborators:

H. WANG

110

Delpech, A., R. Barkan, K. Srinivasan, J.C. McWilliams, B.K. Arbic, O.Q. Siyanbola, and M.C. Buijsman (2024), Eddy-internal wave interactions and their contribution to cross-scale energy fluxes: A case study in the California Current. Journal of Physical Oceanography, 54, 741-754, https://doi.org/10.1175/JPO-D-23-0181.1

109

Raja, K.J., M.C. Buijsman, A. Bozec, R.W. Helber, J.F. Shriver, A. Wallcraft, E.P. Chassignet, and B.K. Arbic (2024), Spurious internal wave generation during data assimilation in eddy resolving ocean model simulations. Ocean Modelling, 188, 102340, https://doi.org/10.1016/j.ocemod.2024.102340

108

YADIDYA, B., B.K. Arbic, J.F. Shriver, A.D. Nelson, E.D. Zaron, M.C. Buijsman, and R. THAKUR (2024), Phase-accurate internal tides in a global ocean forecast model: Potential applications for nadir and wide-swath altimetry. Geophysical Research Letters, 51, e2023GL107232, https://doi.org/10.1029/2023GL107232

Group Collaborators:

B. YADIDYA, R. THAKUR

107

SKITKA, J., B.K. Arbic, R. THAKUR, D. Menemenlis, W.R. Peltier, Y. Pan, K. Momeni, and Y. Ma (2024), Probing the nonlinear interactions of supertidal internal waves using a high-resolution regional ocean model. Journal of Physical Oceanography, 54, 399-425, https://doi.org/10.1175/JPO-D-22-0236.1

Group Collaborators:

J. SKITKA, R. THAKUR

106

2023

Solano, M.S., M.C. Buijsman, J.F. Shriver, J. Magalhaes, J. da Silva, C. Jackson, B.K. Arbic, and R. Barkan (2023), Nonlinear internal tides in a realistically forced global ocean simulation. Journal of Geophysical Research Oceans, 128, e2023JC019913, https://doi.org/10.1029/2023JC019913

105

Geoffroy, G., J. Nycander, M.C. Buijsman, J.F. Shriver, and B.K. Arbic (2023), Validating the spatial variability in the semidiurnal internal tide in a realistic global ocean simulation with Argo and mooring data. Ocean Science, 19, 811-835, https://doi.org/10.5194/os-19-811-2023

104

Delpech, A., R. Barkan, L. Renault, J. McWilliams, O.Q. Siyanbola, M.C. Buijsman, and B.K. Arbic (2023), Wind-current feedback is an energy sink for oceanic internal waves. Scientific Reports, 13, 5915, https://doi.org/10.1038/s41598-023-32909-6

103

Pal, N., K.N. BARTON, M.R. Petersen, S.R. Brus, D. Engwirda, B.K. Arbic, A.F. Roberts, J.J. Westerink, and D. Wirasaet (2023), Barotropic tides in MPAS-Ocean (E3SM V2): Impact of ice shelf cavities. Geoscientific Model Development, 16, 1297-1314, https://doi.org/10.5194/gmd-16-1297-2023

Group Collaborators:

K.N. BARTON

102

Brus, S.R., K.N. BARTON, N. Pal, A.F. Roberts, D. Engwirda, M.R. Petersen, B.K. Arbic, D. Wirasaet, J.J. Westerink, and M. Schindelegger (2023), Scalable self attraction and loading calculations for unstructured ocean tide models. Ocean Modelling, 182, 102160, https://doi.org/10.1016/j.ocemod.2023.102160

Group Collaborators:

K.N. BARTON

101

Siyanbola, O.Q., M.C. Buijsman, A. Delpech, L. Renault, R. Barkan, J.F. Shriver, B.K. Arbic, and J.C. McWilliams (2023), Remote internal wave forcing of regional ocean simulations near the U.S. West Coast. Ocean Modelling, 181, 102154, https://doi.org/10.1016/j.ocemod.2022.102154

100

2022

BARTON, K.N., N. Pal, S.R. Brus, M.R. Petersen, B.K. Arbic, D. Engwirda, A.F. Roberts, J.J. Westerink, D. Wirasaet, and M. Schindelegger (2022), Global barotropic tide modeling using inline self-attraction and loading in MPAS-Ocean. Journal of Advances in Modeling Earth Systems, 14, e2022MS003207, https://doi.org/10.1029/2022MS003207

Group Collaborators:

K.N. BARTON

99

Arbic, B.K., S. Elipot, J.M. BRASCH, D. Menemenlis, A.L. Ponte, J.F. Shriver, X. Yu, E.D. Zaron, M.H. Alford, M.C. Buijsman, R. Abernathey, D. GARCIA, L. GUANP.E. MARTIN, and A.D. NELSON (2022), Near-surface oceanic kinetic energy distributions from drifter observations and numerical models. Journal of Geophysical Research: Oceans, 127, e2022JC018551, https://doi.org/10.1029/2022JC018551

Group Collaborators:

J.M. BRASCH, D. GARCIA, L. GUANP.E. MARTIN, A.D. NELSON

98

Xu, X., E.P. Chassignet, A.J. Wallcraft, B.K. Arbic, M.C. Buijsman, and M. Solano (2022), On the spatial variability of the mesoscale sea surface height wavenumber spectra in the Atlantic Ocean. Journal of Geophysical Research: Oceans, 127, e2022JC018769, https://doi.org/10.1029/2022JC018769

97

RANGE, M.M., B.K. Arbic, B.C. Johnson, T.C. Moore, V. Titov, A.J. Adcroft, J.K. ANSONG, C.J. Hollis, J. Ritsema, C.R. Scotese, and H. WANG (2022), The Chicxulub impact produced a powerful global tsunami. AGU Advances, 3, e2021AV000627, https://doi.org/10.1029/2021AV000627

 

Group Collaborators:

M.M. RANGE, J.K. ANSONG, H. WANG

96

CRAWFORD, E.B., B.K. Arbic, N.D. Sheldon, J.K. ANSONG, and P.G. Timko (2022), Investigating the behavior of mid-Archean tides and potential implications for biogeochemical cycling. Precambrian Research, 380, 106799, https://doi.org/10.1016/j.precamres.2022.106799 

Group Collaborators:

E.B. CRAWFORD, J.K. ANSONG

95

THAKUR, R., B.K. Arbic, D. Menemenlis, K. Momeni, Y. Pan, W.R. Peltier, J. SKITKA, M.H. Alford, and Y. Ma (2022), Impact of vertical mixing parameterizations on internal gravity wave spectra in regional ocean models. Geophysical Research Letters, 49, e2022GL099614, https://doi.org/10.1029/2022GL099614

 

Group Collaborators:

R. THAKUR, J. SKITKA

94

Arbic, B.K. (2022), Incorporating tides and internal gravity waves within global ocean general circulation models: A review. Progress in Oceanography, 206, 102824, https://doi.org/10.1016/j.pocean.2022.102824

93

Uchida, T., J. Le Sommer, C. Stern, R.P. Abernathey, C. Holdgraf, A. Albert, L. Brodeau, E.P. Chassignet, X. Xu, J. Gula, G. Roullet, N. Koldunov, S. Danilov, Q. Wang, D. Menemenlis, C. Bricaud, B.K. Arbic, J.F. Shriver, F. Qiao, B. Xiao, A. Biastoch, R. Schubert, B. Fox-Kemper, W.K. Dewar, and A. Wallcraft (2022), Cloud-based framework for inter-comparing submesoscale-permitting realistic ocean models. Geoscientific Model Development, 15, 5829-5856, https://doi.org/10.5194/gmd-15-5829-2022

92

Canavati, A., J. Toweh, A.C. Simon, and B.K. Arbic (2022), The world’s electronic graveyard:  What is the solution to Ghana’s e-waste dilemma? World Development Perspectives, 26, 100433, https://doi.org/10.1016/j.wdp.2022.100433

Based upon research done by the first two authors (both University of Michigan undergraduates) during the 2016 Coastal Environment Summer School in Ghana (https://coessing.org).  Partially funded by, and written up for, the Michigan Sustainability Cases project at the University of Michigan (http://www.teachmsc.org/).

 

91

Eberhard, E.K., J. Hicks, A.C. Simon, and B.K. Arbic (2022), Livelihood considerations in land-use decision making: Cocoa and mining in Ghana. World Development Perspectives, 26, 100417, https://doi.org/10.1016/j.wdp.2022.100417

Based upon research done by the first two authors (both University of Michigan undergraduates) during the 2016 Coastal Environment Summer School in Ghana (https://coessing.org).  Partially funded by, and written up for, the Michigan Sustainability Cases project at the University of Michigan (http://www.teachmsc.org/).

90

Raja, K.J., M.C. Buijsman, J.F. Shriver, B.K. Arbic,  and O. Siyanbola (2022), Near-inertial wave energetics modulated by background flows in a global model simulation. Journal of Physical Oceanography, 52, 823-840, https://doi.org/10.1175/JPO-D-21-0130.1

89

LIGHT, C.X., B.K. Arbic, P.E. MARTIN, L. Brodeau, J.T. Farrar, S.M. Griffies, B.P. Kirtman, L.C. Laurindo, D. Menemenlis, A. Molod, A.D. NELSON, E. Nyadjro, A.K. O’ROURKE, J.F. Shriver, L. Siqueira, R.J. Small, and E. Strobach (2022), Effects of grid spacing on high-frequency precipitation variance in coupled high-resolution global ocean-atmosphere models. Climate Dynamics, 59, 2887–2913, https://doi.org/10.1007/s00382-022-06257-6

Group Collaborators:

C.X. LIGHT, P.E. MARTIN, A.D.NELSON, A.K. O’ROURKE

88

2021

Shakespeare, C.J., B.K. Arbic, and A. McC. Hogg (2021), Dissipating and reflecting internal waves. Journal of Physical Oceanography, 51, 2517-2531, https://doi.org/10.1175/JPO-D-20-0261.1

87

DAHER, H., B.K. Arbic, J.G. Williams, J.K. ANSONG, D.H. Boggs, M. Müller, M. Schindelegger, J. Austermann, B.D. Cornuelle, E.B. CRAWFORD, O.B. Fringer, H.C.P. Lau, S.J. Lock, A.C. Maloof, D. Menemenlis, J.X. Mitrovica, J.A.M. Green, and M. Huber (2021), Long-term Earth-Moon evolution with high-level orbit and ocean tide models.  Journal of Geophysical Research: Planets, 126, e2021JE006875, https://doi.org/10.1029/2021JE006875

Wiley Top Downloaded article. [One of the most downloaded 2021 articles for this journal during its first 12 months of publication.]

Group Collaborators:

H. DAHER, J.K. ANSONG, E.B. CRAWFORD

86

Nazarian, R.H., C.M. Burns, S. Legg, M.C. Buijsman, H. Kaur, and B.K. Arbic (2021), On the magnitude of canyon-induced mixing. Journal of Geophysical Research: Oceans, 126, e2021JC017671, https://doi.org/10.1029/2021JC017671

85

Ray, R.D., J.-P. Boy, B.K. Arbic,  G.D. Egbert, S.Y. Erofeeva, L. Petrov, and J.F. Shriver (2021), The problematic psi1 ocean tide. Geophysical Journal International, 217, 1181-1192, https://doi.org.10.1093/gji/ggab263

84

Klatt, J.M., A. Chennu, B.K. ArbicB.A. Biddanda, and G.J. Dick (2021), Possible link between Earth’s rotation rate and oxygenation. Nature Geoscience, 14, 564-570, https://doi.org/10.1038/s41561-021-00784-3

 

83

Nyadjro, E.S., B.K. Arbic, C.E. Buckingham, P.E. MARTIN, E. Mahu, J.K. ANSONG, J. Adjetey, E. Nyarko, and K. Appeaning Addo (2021), Enhancing satellite oceanography-driven research in West Africa: a case study of capacity development in an underserved region. Remote Sensing in Earth Systems Sciences, 5, https://doi.org/10.1007/s41976-021-00051-4

Group Collaborators:

P.E. MARTIN, J.K. ANSONG

82

Moskel, J.M., E.L. Shroyer, S. Rowe, M.D. Needham, and B.K. Arbic (2021), The Coastal Ocean Environment Summer School in Ghana: Exploring the research capacity building potential of a higher education informal science learning program. Journal of Higher Education Outreach and Engagement, 25, 187-214, https://openjournals.libs.uga.edu/jheoe/article/view/1488

81

International Altimetry Team* (2021), Altimetry for the future: Building on 25 years of progress. Advances in Space Research, 68, 319-363, https://doi.org/10.1016/j.asr.2021.01.022

*Approximately 400 co-authors including B.K. Arbic.

80

Shakespeare, C.J., B.K. Arbic, and A. McC. Hogg (2021), The impact of abyssal hill roughness on the benthic tide. Journal of Advances in Modeling Earth Systems, 13, e2020MS002376, https://doi.org/10.1029/2020MS002376

79

MARTIN, P.E., B.K. Arbic, and A. McC. Hogg (2021), Drivers of atmospheric and oceanic surface temperature variance: a frequency domain approach. Journal of Climate, 34, 3975-3990, https://doi.org/10.1175/JCLI-D-20-0557.1

Group Collaborators:

P.E. MARTIN

78

Carrère, L., B.K. Arbic, B. Dushaw, G. Egbert, S. Erofeeva, F. Lyard, R.D. Ray, C. Ubelmann, E. Zaron, Z. Zhao, J.F. Shriver, M.C. Buijsman, and N. Picot (2021), Accuracy assessment of global internal-tide models using satellite altimetry. Ocean Science, 17, 147-180, https://doi.org/10.5194/os-17-147-2021

77

2020

Shakespeare, C.J., B.K. Arbic, and A. McC. Hogg (2020), The drag on the barotropic tide due to the generation of baroclinic motion. Journal of Physical Oceanography, 50, 3467-3481, https://doi.org/10.1175/JPO-D-19-0167.1

76

Pan, Y., B.K. Arbic, A.D. NELSON, D. Menemenlis, W.R. Peltier, W. Xu, and Y. Li (2020), Numerical investigation of mechanisms underlying oceanic internal gravity wave power-law spectra. Journal of Physical Oceanography, 50, 2713-2733, https://doi.org/10.1175/JPO-D-20-0039.1

Group Collaborators:

A.D. NELSON

75

Buijsman, M.C., G.R. Stephenson, J.K. ANSONG, B.K. Arbic, J.A.M. Green, J.G. Richman, J.F. Shriver, C. Vic, A.J. Wallcraft, and Z. Zhao (2020), On the interplay between horizontal resolution and wave drag and their effect on tidal baroclinic mode waves in realistic global ocean simulations. Ocean Modelling, 152, 101656, https://doi.org/10.1016/j.ocemod.2020.101656

Group Collaborators:

J.K. ANSONG

74

LUECKE, C.A., B.K. Arbic, J.G. Richman, J.F. Shriver, M.H. Alford, J.K. ANSONG, S.L. BASSETTE, M.C. Buijsman, D. Menemenlis, R.B. Scott, P.G. TIMKO, G. Voet, A.J. Wallcraft, and L. Zamudio (2020), Statistical comparisons of temperature variance and kinetic energy in global ocean models and observations: Results from mesoscale to internal wave frequencies. Journal of Geophysical Research Oceans, 125, e2019JC015306, https://doi.org/10.1029/2019JC015306

Group Collaborators:

C.A. LUECKE, J.K. ANSONG, S.L. BASSETTE, P.G. TIMKO

73

NELSON, A.D., B.K. Arbic, D. Menemenlis, W.R. Peltier, M.H. Alford, N. Grisouard, and J.M. Klymak (2020), Improved internal wave spectral continuum in a regional ocean model. Journal of Geophysical Research Oceans, 125, e2019JC015974, https://doi.org/10.1029/2019JC015974

Group Collaborators:

A.D. NELSON

72

Haigh, I.D., M.D. Pickering, J.A.M. Green, B.K. Arbic, A. Arns, S. Dangendorf, D.F. Hill, K. Horsburgh, T. Howard, D. Idier, D.A. Jay, L. Jänicke, S.B. Lee, M. Müller, M. Schindelegger, S.A. Talke, S.-B. Wilmes, and P.L. Woodworth (2020), The tides they are a-changin’: A comprehensive review of past and future non-astronomical changes in tides, their driving mechanisms, and future implications. Reviews of Geophysics, 57, e2018RG00636, https://doi.org/10.1029/2018RG000636

71

MARTIN, P.E., B.K. Arbic, A. McC. Hogg, A.E. Kiss, J.R. Munroe, and J.R. Blundell (2020), Frequency-domain analysis of the energy budget in an idealized coupled ocean-atmosphere model. Journal of Climate, 33, 707-726, https://doi.org/10.1175/JCLI-D-19-0118.1

Group Collaborators:

P.E. MARTIN

70

2019

Sulpis, O., C.O. Dufour, D.S. TROSSMAN, A.J. Fassbender, B.K. Arbic, B.P. Boudreau, J.P. Dunne, and A. Mucci (2019), Reduced CaCO3 flux to the seafloor and weaker bottom current speeds curtail benthic CaCO3 dissolution over the 21st century. Global Biogeochemical Cycles, 33, 1654-1673, https://doi.org/10.1029/2019GB006230

Group Collaborators:

D.S. TROSSMAN

69

Arbic, B.K., O.B. Fringer, J.M. Klymak, F.T. Mayer, D.S. TROSSMAN, and P. Zhu (2019),  Connecting process models of topographic wave drag to global eddying general circulation models. Oceanography, 32, 146-155, https://doi.org/10.5670/oceanog.2019.420

Included in special issue “FLEAT: FLOW ENCOUNTERING ABRUPT TOPOGRAPHY”

Group Collaborators:

D.S. TROSSMAN

68

Johnston, T.M.S., M.C. Schönau, T. Paluszkiewicz, J.A. MacKinnon, B.K. Arbic, P.L. Colin, M.H. Alford, M. Andres, L. Centurioni, H.C. Graber, K.R. Helfrich, V. Hormann, P.F.J. Lermusiaux, R.C. Musgrave, B.S. Powell, B. Qiu, D.L. Rudnick, H.L. Simmons, L. St. Laurent, E.J. Terrill, D.S. TROSSMAN, G. Voet, H.W. Wijesekera, and K.L. Zeiden (2019), Flow Encountering Abrupt Topography (FLEAT): A multiscale observational and modeling program to understand how topography affects flows in the western North Pacific. Oceanography, 32, 10-21, https://doi.org/10.5670/oceanog.2019.407

Included in special issue “FLEAT: FLOW ENCOUNTERING ABRUPT TOPOGRAPHY”

Group Collaborators:

D.S. TROSSMAN

67

NELSON, A.D., B.K. Arbic, E.D. Zaron, A.C. SAVAGE, J.G. Richman, M.C. Buijsman, and J.F. Shriver (2019), Toward realistic nonstationarity of semidiurnal baroclinic tides in a hydrodynamic model. Journal of Geophysical Research Oceans, 124, 6632-6642, https://doi.org/10.1029/2018JC014737

Group Collaborators:

A.D. NELSON, A.C. SAVAGE

66

Howe, B.M., B.K. Arbic, J. Aucan, C.R. Barnes, N. Bayliff, N. Becker, R. Butler, L. Doyle, S. Elipot, G.C. Johnson, F. Landerer, S. Lentz, D.S. Luther, M. Müller, J. Mariano, K. Panayotou, C. Rowe, H. Ota, Y.T. Song, M. Thomas, P.N. Thomas, P. Thompson, F. Tilmann, T. Weber, and S. Weinstein (2019), SMART cables for observing the global ocean: Science and implementation. Frontiers in Marine Science, 6:424, https://doi.org/10.3389/fmars.2019.00424

65

Sprintall, J., A.L. Gordon, S.E. Wijffels, M. Feng, S. Hu, A. Koch-Larrouy, H. Phillips, D. Nugroho, A. Napitu, K. Pujiana, R.D. Susanto, B. Sloyan, D. Yuan, N.F. Riama, S. Siswanto, A. Kuswardani, Z. Arifin, A.J. Wahyudi, H. Zhou, T. Nagai, J.K. Ansong, R. Bourdalle-Badié, J. Chanut, F. Lyard, B.K. Arbic, A. Ramdhani, and A. Setiawan (2019), Detecting change in the Indonesian Seas. Frontiers in Marine Science, 6:257, https://doi.org/10.3389/fmars.2019.00257

64

Jeon, C.-H., M.C. Buijsman, A.J. Wallcraft, J.F. Shriver, B.K. Arbic, J.G. Richman, and P.J. Hogan (2019), Improving surface tidal accuracy through two-way nesting in a global ocean model. Ocean Modelling, 137, 98-113, https://doi.org/10.1016/j.ocemod.2019.03.007

63

Timko, P.G., B.K. Arbic, P. Hyder, J.G. Richman, L. Zamudio, E. O’Dea, A.J. Wallcraft, and J.F. Shriver (2019), Assessment of shelf sea tides and tidal mixing fronts in a global ocean model. Ocean Modelling, 136, 66-84, https://doi.org/10.1016/j.ocemod.2019.02.008

62

2018

Sulpis, O., B.P. Boudreau, A. Mucci, C. Jenkins, D.S. TROSSMANB.K. Arbic, and R.M. Key (2018), Current CaCO3 dissolution at the seafloor caused by anthropogenic CO2. Proceedings of the National Academy of Sciences of the United States of America, 115, 11700-11705, https://doi.org/10.1073/pnas.1811488115

Group Collaborators:

D.S. TROSSMAN

61

ANSONG, J.K., B.K. Arbic, H.L. Simmons, M.H. Alford, M.C. Buijsman, P.G. TIMKO, J.G. Richman, J.F. Shriver, and A.J. Wallcraft (2018), Geographical distribution of diurnal and semidiurnal parametric subharmonic instability in a global ocean circulation model. Journal of Physical Oceanography, 48, 1409-1431, https://doi.org/10.1175/JPO-D-17-0164.1

Group Collaborators:

J.K. ANSONG, P.G. TIMKO

60

Sérazin, G., T. Penduff, B. Barnier, J.-M. Molines, B.K. ArbicM. MüLLER, and L. Terray (2018), Inverse cascades of kinetic energy as a source of intrinsic variability: A global OGCM study. Journal of Physical Oceanography, 48, 1385-1408, https://doi.org/10.1175/JPO-D-17-0136.1

Group Collaborators:

M. MüLLER

59

O’ROURKE, A.K., B.K. Arbic, and S.M. Griffies (2018), Frequency-domain analysis of atmospherically forced versus intrinsic ocean surface kinetic energy variability in GFDL’s CM2-O model hierarchy. Journal of Climate, 31, 1789-1810, https://doi.org/10.1175/JCLI-D-17-0024.1

Group Collaborators:

A.K. O’ROURKE

58

Oliphant, E., M. Finlay, A.C. Simon, and B.K. Arbic (2018), Biofuels: Beneficial or bad?  Should a Ghanaian chief sell his land for biofuel crop cultivation? Sustainability, 11, 16-23, https://doi.org/10.1089/sus.2018.29121.eo

Based upon research done by the first two authors (both University of Michigan undergraduates) during the 2016 Coastal Environment Summer School in Ghana (https://coessing.org).  Partially funded by, and written up for, the Michigan Sustainability Cases project at the University of Michigan (http://www.teachmsc.org/).

57

2017

MacKinnon, J.A., Z. Zhao, C.B. Whalen, A.F. Waterhouse, D.S. TROSSMAN, O.M. Sun, L.C. St. Laurent, H.L. Simmons, K. Polzin, R. Pinkel, A. Pickering, N.J. Norton, J.D. Nash, R. Musgrave, L.M. Merchant, A.V. Melet, B. Mater, S. Legg, W.G. Large, E. Kunze, J.M. Klymak, M. Jochum, S.R. Jayne, R.W. Hallberg, S.M. Griffies, S. Diggs, G. Danabasoglu, E.P. Chassignet, M.C. Buijsman, F.O. Bryan, B.P. Briegleb, A. Barna, B.K. ArbicJ.K. ANSONG, and M.H. Alford (2017), Climate process team on internal-wave driven ocean mixing. Bulletin of the American Meteorological Society, 98, 2429-2454, https://doi.org/10.1175/BAMS-D-16-0030.1

Group Collaborators:

J.K. ANSONG, D.S. TROSSMAN

56

LUECKE, C.A., B.K. ArbicS.L. BASSETTE, J.G. Richman, J.F. Shriver, M.H. Alford, O.M. Smedstad, P.G. TIMKO, D.S. TROSSMAN, and A.J. Wallcraft (2017), The global mesoscale eddy available potential energy field in models and observations. Journal of Geophysical Research Oceans, 122, 9126-9143, https://doi.org/10.1002/2017JC013136

Group Collaborators:

C.A. LUECKE, S.L. BASSETTE, P.G. TIMKO, D.S. TROSSMAN

55

SAVAGE, A.C., B.K. Arbic, M.H. Alford, J.K. ANSONG, J.T. Farrar, D. Menemenlis, A.K. O’ROURKE, J.G. Richman, J.F. Shriver, G. Voet, A.J. Wallcraft, and L. Zamudio (2017), Spectral decomposition of internal gravity wave sea surface height in global models. Journal of Geophysical Research Oceans, 122, 7803-7821, https://doi.org/10.1002/2017JC013009

Group Collaborators:

A.C. SAVAGE, J.K. ANSONG, A.K. O’ROURKE

54

MORTEN, A.J., B.K. Arbic, and G.R. Flierl (2017), Wavenumber-frequency analysis of single-layer shallow-water beta-plane quasi-geostrophic turbulence. Physics of Fluids, 29, 106602, https://doi.org/10.1063/1.5003846

Group Collaborators:

A.J. MORTEN

53

Buijsman, M.C., B.K. Arbic, J.G. Richman, J.F. Shriver, A.J. Wallcraft, and L. Zamudio (2017), Semidiurnal internal tide incoherence in the equatorial Pacific. Journal of Geophysical Research Oceans, 122, 5286-5305, https://doi.org/10.1002/2016JC012590

52

TROSSMAN, D.S., B.K. Arbic, D.N. Straub, J.G. Richman, E.P. Chassignet, A.J. Wallcraft, and X. Xu (2017), The role of rough topography in mediating impacts of bottom drag in eddying ocean circulation models. Journal of Physical Oceanography, 47, 1941-1959, https://doi.org/10.1175/JPO-D-16-0229.1

Group Collaborators:

D.S. TROSSMAN

51

SAVAGE, A.C., B.K. Arbic, J.G. Richman, J.F. Shriver, M.H. Alford, M.C. Buijsman, J.T. Farrar, H. SHARMA, G. Voet, A.J. Wallcraft, and L. Zamudio (2017), Frequency content of sea surface height variability from internal gravity waves to mesoscale eddies. Journal of Geophysical Research Oceans, 122, 2519-2538, https://doi.org/10.1002/2016JC012331

Group Collaborators:

H. SHARMA, A.C. SAVAGE

50

ANSONG, J.K., B.K. Arbic, M.H. Alford, M.C. Buijsman, J.F. Shriver, Z. Zhao, J.G. Richman, H.L. Simmons, P.G. TIMKO, A.J. Wallcraft, and L. Zamudio (2017), Semidiurnal internal tide energy fluxes and their variability in a global ocean model and moored observations. Journal of Geophysical Research Oceans, 122, 1882-1900, https://doi.org/10.1002/2016JC012184

Group Collaborators:

J.K. ANSONG, P.G. TIMKO

49

TIMKO, P.G., B.K. Arbic, J.A. Goff, J.K. ANSONG, W.H.F. Smith, A. Melet, and A.J. Wallcraft (2017), Impact of synthetic abyssal hill roughness on resolved motions in numerical global ocean tide models. Ocean Modelling, 112, 1-16, https://doi.org/10.1016/j.ocemod.2017.02.005

Group Collaborators:

P.G. TIMKO, J.K. ANSONG

48

2016

Buijsman, M.C., J.K. ANSONG, B.K. Arbic, J.G. Richman, J.F. Shriver, P.G. TIMKO, A.J. Wallcraft, C.B. Whalen, and Z. Zhao (2016), Impact of parameterized internal wave drag on the semidiurnal energy balance in a global ocean circulation model. Journal of Physical Oceanography, 46, 1399-1419, https://doi.org/10.1175/JPO-D-15-0074.1

Group Collaborators:

J.K. ANSONG, P.G. TIMKO

47

TROSSMAN, D.S., B.K. Arbic, J.G. Richman, S.T. Garner, S.R. Jayne, and A.J. Wallcraft (2016), Impact of topographic internal lee wave drag on an eddying global ocean model. Ocean Modelling, 97, 109-128, https://doi.org/10.1016/j.ocemod.2015.10.013

Group Collaborators:

D.S. TROSSMAN

46

Ngodock, H.E., I. Souopgui, A.J. Wallcraft, J.G. Richman, J.F. Shriver, and B.K. Arbic (2016), On improving the accuracy of the M2 barotropic tides embedded in a high-resolution global ocean circulation model. Ocean Modelling, 97, 16-26, https://doi.org/10.1016/j.ocemod.2015.10.011

45

2015

TROSSMAN, D.S., S. Waterman, K.L. Polzin, B.K. Arbic, S.T. Garner, A.C. Naveira-Garabato, and K.L. Sheen (2015), Internal lee wave closures: Parameter sensitivity and comparison to observations. Journal of Geophysical Research Oceans, 120, 7997-8019, https://doi.org/10.1002/2015JC010892

Group Collaborators:

D.S. TROSSMAN

44

ANSONG, J.K., B.K. Arbic, M.C. Buijsman, J.G. Richman, J.F. Shriver, and A.J. Wallcraft (2015), Indirect evidence for substantial damping of low-mode internal tides in the open ocean. Journal of Geophysical Research Oceans, 120, 6057-6071, https://doi.org/10.1002/2015JC010998

Group Collaborators:

J.K. ANSONG

43

MüLLER, M., B.K. Arbic, J.G. Richman, J.F. Shriver, E.L. Kunze, R.B. Scott, A.J. Wallcraft, and L. Zamudio (2015), Toward an internal gravity wave spectrum in global ocean models. Geophysical Research Letters, 42, 3474-3481, https://doi.org/10.1002/2015GL063365

Group Collaborators:

M. MüLLER

42

Buijsman, M.C., B.K. Arbic, J.A.M. Green, R.W. Helber, J.G. Richman, J.F. Shriver, P.G. TIMKO, and A. Wallcraft (2015), Optimizing internal wave drag in a forward barotropic model with semidiurnal tides. Ocean Modelling, 85, 42-55, https://doi.org/10.1016/j.ocemod.2014.11.003

Group Collaborators:

P.G. TIMKO

41

2014

Stammer, D., R.D. Ray, O.B. Andersen, B.K. Arbic, W. Bosch, L. Carrère, Y. Cheng, D.S. Chinn, B.D. Dushaw, G.D. Egbert, S.Y. Erofeeva, H.S. Fok, J.A.M. Green, S. Griffiths, M.A. King, V. Lapin, F.G. Lemoine, S.B. Luthcke, F. Lyard, J. Morison, M. Müller, L. Padman, J.G. Richman, J.F. Shriver, C.K. Shum, E. Taguchi, and Y. Yi (2014), Accuracy assessment of global barotropic ocean tide models. Reviews of Geophysics, 52, 243-282, https://doi.org/10.1002/2014RG000450

40

Arbic, B.K.M. MüLLER, J.G. Richman, J.F. Shriver, A.J. MORTEN, R.B. Scott, G. Serazin, and T. Penduff (2014), Geostrophic turbulence in the frequency-wavenumber domain: Eddy-driven low-frequency variability. Journal of Physical Oceanography, 44, 2050-2069, https://doi.org/10.1175/JPO-D-13-054.1

Group Collaborators:

M. MüLLER, A.J. MORTEN

39

Shriver, J.F., J.G. Richman, and B.K. Arbic (2014), How stationary are the internal tides in a high-resolution global ocean circulation model? Journal of Geophysical Research Oceans, 119, 2769-2787, https://doi.org/10.1002/2013JC009423

38

2013

TIMKO, P.G., B.K. Arbic, J.G. Richman, R.B. Scott, E.J. Metzger, and A.J. Wallcraft (2013), Skill testing a three-dimensional global tide model to historical current meter records. Journal of Geophysical Research Oceans, 118, 6914-6933, https://doi.org/10.1002/2013JC009071

Group Collaborators:

P.G. TIMKO

37

Melet, A., M. Nikurashin, C. Muller, S. Falahat, J. Nycander, P.G. TIMKO, B.K. Arbic, and J.A. Goff (2013), Internal tide generation by abyssal hills using analytical theory. Journal of Geophysical Research Oceans, 118, 6303-6318, https://doi.org/10.1002/2013JC009212

Group Collaborators:

P.G. TIMKO

36

TROSSMAN, D.S., B.K. Arbic, S.T. Garner, J.A. Goff, S.R. Jayne, E.J. Metzger, and A.J. Wallcraft (2013), Impact of parameterized lee wave drag on the energy budget of an eddying global ocean model. Ocean Modelling, 72, 119-142, https://doi.org/10.1016/j.ocemod.2013.08.006

Group Collaborators:

D.S. TROSSMAN

35

SKIBA, A.W., L. ZENG, B.K. Arbic, M. Müller, and W.J. GODWIN (2013), On the resonance and shelf/open-ocean coupling of the global diurnal tides. Journal of Physical Oceanography, 43, 1301-1324, https://doi.org/10.1175/JPO-D-12-054.1

Group Collaborators:

A.W. SKIBA, L. ZENG, W.J. GODWIN

34

Arbic, B.K., K.L. Polzin, R.B. Scott, J.G. Richman, and J.F. Shriver (2013), On eddy viscosity, energy cascades, and the horizontal resolution of gridded satellite altimeter products. Journal of Physical Oceanography, 43, 283-300, https://doi.org/10.1175/JPO-D-11-0240.1

33

2012

Richman, J.G., B.K. Arbic, J.F. Shriver, E.J. Metzger, and A.J. Wallcraft (2012), Inferring dynamics from the wavenumber spectra of an eddying global ocean model with embedded tides. Journal of Geophysical Research, 117, C12012, https://doi.org/10.1029/2012JC008364

32

Shriver, J.F., B.K. Arbic, J.G. Richman, R.D. Ray, E.J. Metzger, A.J. Wallcraft, and P.G. TIMKO (2012), An evaluation of the barotropic and internal tides in a high resolution global ocean circulation model. Journal of Geophysical Research, 117, C10024, https://doi.org/10.1029/2012JC008170

Group Collaborators:

P.G. TIMKO

31

Arbic, B.K., R.B. Scott, G.R. Flierl, A.J. MORTEN, J.G. Richman, and J.F. Shriver (2012), Nonlinear cascades of surface oceanic geostrophic kinetic energy in the frequency domain. Journal of Physical Oceanography, 42, 1577-1600, https://doi.org/10.1175/JPO-D-11-0151.1

Group Collaborators:

A.J. MORTEN

30

TIMKO, P.G., B.K. Arbic, J.G. Richman, R.B. Scott, E.J. Metzger, and A.J. Wallcraft (2012), Skill tests of three-dimensional tidal currents in a global ocean model: A look at the North Atlantic. Journal of Geophysical Research, 117, C08014, https://doi.org/10.1029/2011JC007617

Group Collaborators:

P.G. TIMKO

29

Arbic, B.K, J.G. Richman, J.F. Shriver, P.G. TIMKO, E.J. Metzger, and A.J. Wallcraft (2012), Global modeling of internal tides within an eddying ocean general circulation model. Oceanography, 25, 20-29, https://doi.org/10.5670/oceanog.2012.38

Included in “Special issue on Internal Waves”.

Group Collaborators:

P.G. TIMKO

28

Wright, C.J., R.B. Scott, B.K. Arbic, and D.F. Furnival (2012), Bottom dissipation of subinertial currents at the Atlantic zonal boundaries. Journal of Geophysical Research, 117, C03049, https://doi.org/10.1029/2011JC007702

27

Arbic, B.K., R.B. Scott, D.B. Chelton, J.G. Richman, and J.F. Shriver (2012), Effects of stencil width on surface ocean geostrophic velocity and vorticity estimation from gridded satellite altimeter data. Journal of Geophysical Research, 117, C03029, https://doi.org/10.1029/2011JC007367

26

2011

Müller, M., B.K. Arbic, and J.X. Mitrovica (2011), Secular trends in ocean tides: Observations and model results. Journal of Geophysical Research, 116, C05013, https://doi.org/10.1029/2010JC006387

25

2010

Cummins, P.F., R.H. Karsten, and B.K. Arbic (2010), The semi-diurnal tide in Hudson Strait as a resonant channel oscillation. Atmosphere-Ocean, 48, 163-176, https://doi.org/10.3137/OC307.2010

24

Arbic, B.K. and C. Garrett (2010), A coupled oscillator model of shelf and ocean tides. Continental Shelf Research, 30, 564-574, https://doi.org/10.1016/j.csr.2009.07.008

Included in special issue “Tides in Marginal Seas–A special issue in memory of Professor Alexei N. Nekrasov”.

23

Arbic, B.K., A.J. Wallcraft, and E.J. Metzger (2010), Concurrent simulation of the eddying general circulation and tides in a global ocean model. Ocean Modelling, 32, 175-187, https://doi.org/10.1016/j.ocemod.2010.01.007

Included in special issue “The magic of modelling–A special issue commemorating the contributions of Peter D. Killworth–Part II”.

22

Scott, R.B., B.K. Arbic, E.P. Chassignet, A.C. Coward, M. Maltrud, W.J. Merryfield, A. Srinivasan, and A. VARGHESE (2010), Total kinetic energy in four global eddying ocean circulation models and over 5000 current meter records. Ocean Modelling, 32, 157-169, https://doi.org/10.1016/j.ocemod.2010.01.005

Included in special issue “The magic of modelling–A special issue commemorating the contributions of Peter D. Killworth–Part II”.  

Group Collaborators:

A. VARGHESE

21

Goff, J.A., and B.K. Arbic (2010), Global prediction of abyssal hill roughness statistics for use in ocean models from digital maps of paleo-spreading rate, paleo-ridge orientation, and sediment thickness. Ocean Modelling, 32, 36-43, https://doi.org/10.1016/j.ocemod.2009.10.001

Included in special issue “The magic of modelling–A special issue commemorating the contributions of Peter D. Killworth–Part I”.

20

2009

Arbic, B.K., R.H. Karsten, and C. Garrett (2009), On tidal resonance in the global ocean and the back-effect of coastal tides upon open-ocean tides. Atmosphere-Ocean, 47, 239-266, https://doi.org/10.3137/OC311.2009

Included in special issue “The interacting scales of ocean dynamics–A tribute to Chris Garrett”.

19

Arbic, B.K., J.F. Shriver, P.J. Hogan, H.E. Hurlburt, J.L. McClean, E.J. Metzger, R.B. Scott, A. SEN, O.M. Smedstad, and A.J. Wallcraft (2009), Estimates of bottom flows and bottom boundary layer dissipation of the oceanic general circulation from global high-resolution models. Journal of Geophysical Research, 114, C02024, https://doi.org/10.1029/2008JC005072

Group Collaborators:

A. SEN

18

2008

Arbic. B.K., J.X. Mitrovica, D.R. MacAyeal, and G.A. Milne (2008), On the factors behind large Labrador Sea tides during the last glacial cycle and the potential implications for Heinrich events. Paleoceanography, 23, PA3211, https://doi.org/10.1029/2007PA001573

17

Scott, R.B., B.K. Arbic, C.L. Holland, A. SEN, and B. Qiu (2008), Zonal versus meridional velocity variance in satellite observations and realistic and idealized ocean circulation models. Ocean Modelling, 23, 102-112, https://doi.org/10.1016/j.ocemod.2008.04.009

Group Collaborators:

A. SEN

16

SEN, A., R.B. Scott, and B.K. Arbic (2008), Global energy dissipation rate of deep-ocean low-frequency flows by quadratic bottom boundary layer drag: Computations from current meter data. Geophysical Research Letters, 35, L09606, https://doi.org/10.1029/2008GL033407

Group Collaborators:

A. SEN

15

Arbic, B.K., and R.B. Scott (2008), On quadratic bottom drag, geostrophic turbulence, and oceanic mesoscale eddies. Journal of Physical Oceanography, 38, 84-103, https://doi.org/10.1175/2007JPO3653.1

14

2007

Arbic, B.K., P. St-Laurent, G. Sutherland, and C. Garrett (2007), On the resonance and influence of tides in Ungava Bay and Hudson Strait. Geophysical Research Letters, 34, L17606, https://doi.org/10.1029/2007GL030845

13

Arbic, B.K., G.R. Flierl, and R.B. Scott (2007), Cascade inequalities for forced-dissipated geostrophic turbulence. Journal of Physical Oceanography, 37, 1470-1487, https://doi.org/10.1175/JPO3067.1

12

Scott, R.B., and B.K. Arbic (2007), Spectral energy fluxes in geostrophic turbulence: Implications for ocean energetics. Journal of Physical Oceanography, 37, 673-688, https://doi.org/10.1175/JPO3027.1

11

2005

Smith, W.H.F., R. Scharroo, V.V. Titov, D. Arcas, and B.K. Arbic (2005), Satellite altimeters measure tsunami:  Early model estimates confirmed. Oceanography, 18, 11-13, https://doi.org/10.5670/oceanog.2005.62

10

Arbic, B.K. (2005), Atmospheric forcing of the oceanic semidiurnal tide. Geophysical Research Letters, 32, L02610, https://doi.org/10.1029/2004GL021668

9

2004

Arbic, B.K., D.R. MacAyeal, J.X. Mitrovica, and G.A. Milne (2004), Paleoclimate: Ocean tides and Heinrich events. Nature, 432, 460, https://doi.org/10.1038/432460a

8

Arbic, B.K., S.T. Garner, R.W. Hallberg, and H.L. Simmons (2004), The accuracy of surface elevations in forward global barotropic and baroclinic tide models. Deep-Sea Research II, 51, 3069-3101, https://doi.org/10.1016/j.dsr2.2004.09.014

Included in special issue “Small and mesoscale processes and their influence on the large scale.”

7

Simmons, H.L., R.W. Hallberg, and B.K. Arbic (2004), Internal wave generation in a global baroclinic tide model. Deep-Sea Research II, 51, 3043-3068, https://doi.org/10.1016/j.dsr2.2004.09.015

Included in special issue “Small and mesoscale processes and their influence on the large scale.”

6

Arbic, B.K., and G.R. Flierl (2004), Baroclinically unstable geostrophic turbulence in the limits of strong and weak bottom Ekman friction: Application to mid-ocean eddies. Journal of Physical Oceanography, 34, 2257-2273, https://doi.org/10.1175/1520-0485(2004)034<2257:BUGTIT>2.0.CO;2

5

Arbic, B.K., and G.R. Flierl (2004), Effects of mean flow direction on energy, isotropy, and coherence of baroclinically unstable beta-plane geostrophic turbulence. Journal of Physical Oceanography, 34, 77-93, https://doi.org/10.1175/1520-0485(2004)034<0077:EOMFDO>2.0.CO;2

4

2003

Arbic, B.K., and G.R. Flierl (2003), Coherent vortices and kinetic energy ribbons in asymptotic, quasi two-dimensional f-plane turbulence. Physics of Fluids, 15, 2177-2189, https://doi.org/10.1063/1.1582183

3

2001

Arbic, B.K., and W.B. Owens (2001), Climatic warming of Atlantic intermediate waters. Journal of Climate, 14, 4091-4108, https://doi.org/10.1175/1520-0442(2001)014<4091:CWOAIW>2.0.CO;2

2

1988

Arbic, B.K., S. Hatamian, M. Skalsey, J. Van House, and W. Zheng (1988), Angular correlation test of CPT in polarized positronium. Physical Review, A37, 3189-3194, https://doi.org/10.1103/PhysRevA.37.3189

1