- Matsuta, T., H. Mitsudera, Y. Masumoto, H. Sasaki, R. Furue, and T. Ogata (2024), Enhanced eddy activity along the Subantarctic Front under intensified westerly winds, Ocean Dynam., 74, 967–986, doi:10.1007/s10236-024-01644-5.
- Terada Y., and Y. Masumoto (2023), Energy transmission pathways of equatorial waves within the Maritime Continent: a view with the wave energy flux, J. Oceanogr., 79, 517-536, doi:10.1007/s10872-023-00695-4.
- Wahyudi, A.J., K. Triana, Y. Masumoto, A. Rachman, M.R. Firdaus, I. Iskandar, and H. Meirinawati (2023), Carbon and nutrient enrichment potential of South Java upwelling area as detected using hindcast biogeochemistry variables. Reg. Stud. Mar. Sci., 59, 102802, doi:10.1016/j.rsma.2022.102802.
- Matsuta, T.and Y. Masumoto (2023), Energetics of the Antarctic Circumpolar Current. Part I: The Lorenz energy cycle and the vertical energy redistribution, J. Phys. Oceanogr., 1467–1484, doi: 10.1175/JPO-D-22-0133.1.
- Kusumi, T.and Y. Masumoto (2023), Possible Mechanisms of Interannual Variations in Surface Mixed-layer Temperatures off Somalia in Boreal Summer, J. Climate., 3625–3646, doi: 10.1175/JCLI-D-22-0082.1.
- Jiang, S., F. Hashihama, Y. Masumoto, H. Liu, H. Ogawa, and H. Saito (2022), Phytoplankton dynamics as a response to physical events in the oligotrophic Eastern Indian Ocean, Prog. Oceanogra., 203, 102784, doi: 10.1016/j.pocean.2022.102784.
- Iskandar I., D.O. Lestari and, and Y. Masumoto (2022), La Nina Modoki enhanced summer – autumn precipitation over the Indonesian region, Asia-Pac. J. Atmos. Sci., 94(2021),58, 507-517, doi:
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- Iskandar I., Lestari D.O., Y. Masumoto (2022), La Nina Modoki enhanced summer – autumn precipitation over the Indonesian region, Asia-Pac. J. Atmos. Sci., 58, 507-517, doi:10.1007/s13143-022-00271-8.
- Vinayachandran, P. N. M, Y. Masumoto, M. J. Roberts, J. A. Huggett, I. Halo, A. Chatterjee, P. Amol, G. V. M. Gupta, A. Singh, A. Mukherjee, S. Prakash, L. E. Beckley, E. J. Raes, and R. Hood (2021), Reviews and syntheses: Physical and biogeochemical processes associated with upwelling in the Indian Ocean, Biogeosciences, 18, 5967-6029, doi:
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- Aoki, K. and Y. Masumoto (2021), Interpreting Reynolds stress from perspective of eddy geometryn, Dyn. Atmos. Oceans, 94(2021),101223, doi:
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- Matsuta, T. and Y. Masumoto (2021), Modified View of Energy Budget Diagram and Its Application to the Kuroshio Extension Region, J. Phys. Oceanogr., 51(4), 1163-1175, doi: 10.1175/JPO-D-20-0124.1.
- Beal, L. M., J. Vialard, M.K. Roxy, J. Li, M. Andres, H. Annamalai, M. Feng, W. Han, R. Hood, T. Lee, M. Lengaigne, R. Lumpkin, Y. Masumoto, M.J. McPhaden, M. Ravichandran, T. Shinoda, B.M. Sloyan, P.G. Strutton, A.C. Subramanian, T.
Tozuka, C.C. Ummenhofer, A.S. Unnikrishnan, J. Wiggert, L. Yu, L. Cheng, D.G. Desbruyères, and V. Parvathi (2020), A roadmap to IndOOS-2: Better observations of the rapidly-warming Indian Ocean. Bull. Amer. Meteor. Soc., doi:10.1175/BAMS-D-19-0209.1.
- Sasaki, H., S. Kida, R. Furue, H. Aiki, N. Komori, Y. Masumoto, T. Miyama, M. Nonaka,
Y. Sasai, and B. Taguchi (2020), A global eddying hindcast ocean simulation with OFES2,
Geosci. Model Dev., 13, 3319–3336, doi:10.5194/gmd-13-3319-2020.
- Taufiqurrahman, E., A. J. Wahyudi, and Y. Masumoto (2020), The Indonesian Throughflow and its Impact on Biogeochemistry in the Indonesian Seas, ASEAN J. Sci. Technol. Dev., 37(1), doi:10.29037/ajstd.596 (Review article).
- Iskandar, I., W. Mardiansyah, D. O. Lestari, and Y. Masumoto (2020), What did determine the warming trend in the Indonesian sea?, Prog. Earth Planet. Sci., 7:20, doi:
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- Hermes, J. C., Y. Masumoto, L. M. Beal, et al. (2019), A Sustained Ocean Observing System in the Indian Ocean for Climate Related Scientific Knowledge and Societal Needs, Front. Mar. Sci., 6, 355, doi: 10.3389/fmars.2019.00355.
- Kumamoto, Y., M. Yamada, M. Aoyama, Y. Hamajima, H. Kaeriyama, H. Nagai, T. Yamagata, A. Murata, and Y. Masumoto (2019), Radiocesium in North Pacific coastal and offshore areas of Japan within several months after the Fukushima
accident, J. Environ. Radioact., 198, 79-88, doi: 10.1016/j.jenvrad.2018.12.015.
- Sasaki, H., S. Kida, R. Furue, M. Nonaka, and Y. Masumoto (2018), An Increase of the Indonesian Throughflow by Internal Tidal Mixing in a High-Resolution Quasi-Global Ocean Simulation, Geophys. Res. Lett., 45(16), 8416-8424, doi: 10.1029/2018gl078040.
- Yuan, D. L., X. Y. Hu, P. Xu, X. Zhao, Y. Masumoto, and W. Q. Han (2018), The IOD-ENSO precursory teleconnection over the tropical Indo-Pacific Ocean: dynamics and long-term trends under global warming, J. Oceanol. Limnol., 36(1), 4-19,
doi: 10.1007/s00343-018-6252-4.
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Oceans, J. Oceanogr., 73(4), 403-426, doi: 10.1007/s10872-017-0414-4.
- Ogata, T., M. Nagura, and Y. Masumoto (2017), Mean Subsurface Upwelling Induced by Intraseasonal Variability over the Equatorial Indian Ocean, J. Phys. Oceanogr., 47(6), 1347-1365, doi: 10.1175/jpo-d-16-0257.1.
- Rao, R. R., T. Horii, Y. Masumoto, and K. Mizuno (2016), Observed variability in the upper layers at the Equator, 90°E in the Indian Ocean during 2001-2008, 1: Zonal currents, Clim. Dyn., 49, 1077-1105, doi: 10.1007/s00382-016-3234-0.
- Rao, R. R., T. Horii, Y. Masumoto, and K. Mizuno (2016), Observed variability in the upper layers at the Equator, 90°E in the India Ocean during 2001-2008, 2: meridional currents, Clim. Dyn.,49, 1031-1048, doi: 10.1007/s00382-016-2979-9.
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and Predictability", Eds. S. K. Behera and T. Yamagata, World Scientific Series on Asia-Pacific Weather and Climate: Volume 7, World Scientific, ISBN: 978-981-4696-61-6.
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Variability and Predictability (eds. Yamagata, T. and S. Behera), World Scientific Series on Asia-Pacific Weather and Climate, Vol 7, the World Scientific Publisher, pp 63-107.
- Nagura, M., and Y. Masumoto (2015), A wake due to the Maldives in the eastward Wyrtki jet, J. Phys. Oceanogr., 45(7), 1858-1876, doi: 10.1175/JPO-D-14-0191.1.
- Sasaki, W., T. Doi, K. J. Richards, and Y. Masumoto (2015), The influence of ENSO on the equatorial Atlantic precipitation through the Walker circulation in a CGCM, Clim. Dyn., 44(1-2), 191-202, doi: 10.1007/s00382-014-2133-5.
- Morioka, Y., K. Takaya, S. K. Behera, and Y. Masumoto (2014), Local SST impacts on the summertime Mascarene High variability, J. Clim., 28, 678-694, doi:
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- Richter, I., S. K. Behera, T. Doi, B. Taguchi, Y. Masumoto, and S.-P. Xie (2014), What controls equatorial Atlantic winds in boreal spring?, Clim. Dyn., 43(11), 3091-3104, doi: 10.1007/s00382-014-2170-0.
- Sasaki, W., T. Doi, K. J. Richards, and Y. Masumoto (2014), Impact of the equatorial Atlantic sea surface temperature on the tropical Pacific in a CGCM, Clim. Dyn., 43(9-10), 2539-2552, doi: 10.1007/s00382-014-2072-1.
- Han, W., J. Vialard, M. J. McPhaden, T. Lee, Y. Masumoto, M. Feng, and W. P. M. de Ruijter (2014), Indian Ocean Decadal Variability: A Review, Bull. Am. Meteorol. Soc., 95(11), 1679-1703, doi: 10.1175/BAMS-D-13-00028.1.
- Cai, W., A. Santoso, G. Wang, E. Weller, L. Wu, K. Ashok, Y. Masumoto, and T. Yamagata (2014), Increased frequency of extreme Indian Ocean Dipole events due to greenhouse warming, Nature, 510, 254-258, doi: 10.1038/nature13327.
- Morioka, Y., S. Masson, P. Terray, C. Prodhomme, S. K. Behera, and Y. Masumoto (2014), Role of tropical SST variability on the formation of subtropical dipoles, J. Clim., 27(12), 4486-4507, doi: 10.1175/JCLI-D-13-00506.1.
- Ratnam, J. V., S. K. Behera, Y. Masumoto, and T. Yamagata (2014), Remote effects of El Niño and Modoki events on the Austral Summer Precipitation of Southern Africa, J. Clim., 27(10), 3802-3815, doi: 10.1175/JCLI-D-13-00431.1.
- Iskandar, I., Y. Masumoto, K. Mizuno, H. Sasaki, A. Affandi , D. Setiabudidaya , and F. Syamsudin (2014), Coherent intraseasonal oceanic variations in the eastern equatorial Indian Ocean and in the Lombok and Ombai Straits from
observations and a high-resolution OGCM, J. Geophys. Res., 119(2), 615–630, doi: 10.1002/2013JC009592.
- Nagura, M., Y. Masumoto, and T. Horii (2014), Meridional heat advection due to mixed Rossby gravity waves in the equatorial Indian Ocean, J. Phys. Oceanogr., 44(1), 343-358, doi: 10.1175/JPO-D-13-0141.1.
- Richter, I., S.-P. Xie, S.K. Behera, T. Doi, and Y. Masumoto (2014), Equatorial Atlantic variability and its relation to mean state biases in CMIP5, Clim. Dyn., 42(1-2), 171-188, doi: 10.1007/s00382-012-1624-5.
- Sasaki, H., B. Taguchi, N. Komori, and Y. Masumoto (2014), Influence of Local Dynamical Air–Sea Feedback Process on the Hawaiian Lee Countercurrent, J. Clim., 26(18), 7267-7279, doi: 10.1175/JCLI-D-12-00586.1.
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Coupled Model, J. Clim., 26(16), 6015-6032, doi: 10.1175/JCLI-D-12-00645.1.
- Morioka, Y., J. V. Ratnam, W. Sasaki, and Y. Masumoto (2013), Generation mechanism of the South Pacific subtropical dipole, J. Clim., 26(16), 6033-6045, doi:
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- Liu, P., T. Li, B. Wang, M. Zhang, J.-J. Luo, Y. Masumoto, X.-C. Wang, and E. Roeckner (2013), MJO change with A1B global warming estimated by the 40-km ECHAM5, Clim. Dyn., 41(3-4), 1009-1023, doi: 10.1007/s00382-012-1532-8.
- Miyazawa, Y., Y. Masumoto, S. M. Varlamov, T. Miyama, M. Takigawa, M. Honda, and T. Saino (2013), Inverse estimation of source parameters of oceanic radioactivity dispersion models associated with the Fukushima accident, Biogeosci., 10,
2349-2363, doi: 10.5194/bg-10-2349-2013.
- Behera, S. K., J. V. Ratnam, Y. Masumoto, and T. Yamagata (2012), Origin of Extreme Summers in Europe: The Indo-Pacific Connection, Clim. Dyn., 41(3-4), 663-676, doi:
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- Richter, I., S.K. Behera, Y. Masumoto, B. Taguchi, H. Sasaki, and T. Yamagata (2012), Multiple causes of interannual sea surface temperature variability in the equatorial Atlantic Ocean, Nat. Geosci. 6(1), 43-47, doi: 10.1038/ngeo1660.
- Miyazawa, Y, Y. Masumoto, S. M. Varlamov, and T. Miyama (2012), Transport simulation of the radionuclide from the shelf to open ocean around Fukushima, Continental Shelf Res., 50–51(15), 16-29.
- Luo, J.-J., W. Sasaki, and Y. Masumoto (2012), Indian Ocean warming modulates Pacific climate change, PNAS, 109, 18701-18706, doi: 10.1073/pnas.1210239109.
- Ratnam, J. V., S. K. Behera, Y. Masumoto, and T. Yamagata (2012), Role of Rossby waves in the remote effects of the north Indian Ocean tropical disturbances, Mon. Wea. Rev., 140, 3620-3633, doi: 10.1175/MWR-D-12-00027.1.
- Prasanna Kumar, S., T. D. David, P. Byju, J. Narvekar, K. Yoneyama, N. Nakatani, A. Ishida, T. Horii, Y. Masumato, and K. Mizuno (2012), Bio-physical coupling and ocean dynamics in the central equatorial Indian Ocean during 2006 Indian
Ocean Dipole, Geophys. Res. Lett., 39, L14601, doi: 10.1029/2012GL052609.
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Power Plant, ELEMENTS, 8, 207-212, doi: 10.2113/gselements.8.3.207.
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accident, Geochem. J., 46, e1-e9.
- Sasaki, H., S.-P. Xie, B. Taguchi, M. Nonaka, S. Hosoda, and Y. Masumoto (2012), Interannual variations of the Hawaiian Lee Countercurrent induced by potential vorticity variability in the subsurface, J. Oceanogr., 68, 93-111, doi: 10.1007/s10872-011-0074-8.
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Johnson, B. Wang, and T. Yasunari, pp.525-534, World Scientific Publishing Co. Pte. Ltd., Singapore, ISBN-13: 978-9814343404.
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Res. Lett., 38, L11604, doi: 10.1029/2011GL047291.
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- Richter, I., S. K. Behera, Y. Masumoto, B. Taguchi, N. Komori, and T. Yamagata (2010), On the triggering of Benguela Niños – remote equatorial vs. local influences, Geophys. Res. Lett., 37, L20604, doi: 10.1029/2010GL044461.
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- Sasaki, H., M. Nonaka, Y. Masumoto, Y. Sasai, H. Uehara, and H. Sakuma (2008), An eddy-resolving hindcast simulation of the quasiglobal ocean from 1950 to 2003 on the Earth Simulator. In “High Resolution Numerical Modelling of the
Atmosphere and Ocean”, K. Hamilton and W. Ohfuchi (eds.), chapter 10, pp. 157–185, Springer, New York.
- Horii, T., H. Hase, I. Ueki, and Y. Masumoto (2008), Oceanic precondition and evolution of the 2006 Indian Ocean dipole, Geophys. Res. Lett., 35, L03607, doi:
10.1029/2007GL032464.
- Hase, H., Y. Masumoto, Y. Kuroda, K. Mizuno (2008), Semiannual variability in temperature and salinity observed by Triangle Trans-Ocean Buoy Network (TRITON) buoys in the eastern tropical Indian Ocean, J. Geophys. Res., 113, C01016, doi: 10.1029/2006JC004026.
- Shinoda, T., T. G. Jensen, Z. Lachkar, Y. Masumoto, and H. Seo (2024), Chapter 18 - Modeling the Indian Ocean, In “The Indian Ocean and its Role in the Global Climate System”, Eds. C. C. Ummenhofer and R. R. Hood, Elsevier, 421-443, doi:10.1016/B978-0-12-822698-8.00001-9.
- 松田拓朗、三寺史夫、升本順夫、佐々木英治 (2024), 南極周極流の渦飽和, 月間海洋, 56(1), 17-25.
- 寺田雄亮、升本順夫 (2024), 東部太平洋赤道域の深さ1000mにおける季節内変動の経年変化, 月間海洋, 56(1), 10-16.
- 升本順夫 (2023), 気候変動予測と大気海洋相互作用, 公衆衛生, 87(3), 227-232.
- 升本順夫・津旨大輔・郭新宇・内山雄介・宮澤泰正 (2017), 放射性物質の分散シミュレーションに影響を及ぼす沿海域海況変動過程とその再現性, 沿岸海洋研究, 54, 151-157.
- 宮澤泰正・升本順夫 (2012), 2011年福島第一原子力発電所事故に伴う放射性物質の海中輸送シミュレーション, シミュレーション, 31 (4), 227-233. (シミュレーション学会機関誌)
- Hood, R., W. Yu, Y. Masumoto, J. Wiggert, W. Naqvi, J. McCreary, Z. Yu, and L. Beckley (2012), SIBER and IOP: Joint activities and science results, CLIVAR Exchanges, No.58, Vol.17, No.1, 17-20.
- Gary Meyers, 升本 順夫 (2012), インド洋観測システム(IndOOS), Ship & Ocean Newsletter, 284, 2-3.
- 升本順夫 (2011), 福島第一原子力発電所からの放射性物質の海洋拡散シミュレーション, Ship & Ocean Newsletter, 267, 4-5.
- Masumoto, Y., W. Yu, R. Boscolo, and IOP members (2009), Indian Ocean Panel Activity Report, CLIVAR Exchanges, 14, (No.2/3), 7-8.
- 佐々木英治、笹井義一、川原慎太郎、升本順夫 (2008), 全球渦解像海洋シミュレーションの概要と可視化, 可視化情報学会誌 ,28, 168-173. (Sasaki, H., Y. Sasai, S. Kawahara, and Y. Masumoto, An Eddy-resolving Global Ocean Simulation – Brief Overview and Visualization -).
- You, Y., T. Rossby, W. Zenk, A. Gordon, A.G. Ilahude, N. Suginohara, R. Davis, D. Hu, D. Susanto, P.L. Richardson, C. Villanoy, C.-T. Liu, K. Kim, R. Molcard, M. Fukasawa, W.W. Pandoe, D.J. Baker, M. Koga, T. Qu, R. Fine, A. Gabric, R.
Robertson, Y. Masumoto and S. Riser (2008), PACSWIN: A new international ocean climate program in the Indonesian seas and adjacent regions, CLIVAR Exchanges, 13 (No.2), 30-31.
- 安藤健太郎、升本順夫、根田昌典、轡田邦夫、水野恵介 (2008), 太平洋・インド洋における大気海洋観測研究-表面ブイの役割と今後の課題-, 海の研究, 17 (1), 63-69.