JAMSTEC > JAMSTEC研究者総覧 > 馬場 雄也

JAMSTEC研究者総覧

  • 馬場 雄也
  • ババ ユウヤ
所属
付加価値情報創生部門 アプリケーションラボ 環境変動予測情報創生グループ
キャリア
主任研究員

プロフィール

専門

研究業績

査読有り(JAMSTECでの成果)

  • Yuya Baba, Masashi Ujiie, Yukinari Ota, Hitoshi Yonehara. Implementation and evaluation of a spectral cumulus parametrization for simulating tropical cyclones in JMA-GSM. QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 2024, doi: 10.1002/qj.4689
  • Yuya Baba. Improvements in SINTEX-F2 seasonal prediction by implementing an atmospheric nudging scheme. INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2023, doi: 10.1002/joc.8242
  • Yuya Baba. Impact of convection scheme on ENSO prediction of SINTEX-F2. DYNAMICS OF ATMOSPHERES AND OCEANS, 2023, 103, p. 101385, doi: 10.1016/j.dynatmoce.2023.101385
  • Yuya Baba. The merits of ocean prediction for the prediction of 2010, 2016, and 2021 summer heavy rainfall events in Japan. TELLUS SERIES A-DYNAMIC METEOROLOGY AND OCEANOGRAPHY, 2023, 75, 1, p. 50-68, doi: 10.16993/tellusa.1147
  • Yuya Baba. Importance of ocean prediction for heavy rainfall prediction over Japan in July 2020. Atmospheric Science Letters, 2022, p. e1099, doi: 10.1002/asl.1099
  • 馬場雄也, 尾形友道. Resolution dependence of tropical cyclones simulated by a spectral cumulus parameterization. DYNAMICS OF ATMOSPHERES AND OCEANS, 2022, 97, doi: 10.1016/j.dynatmoce.2022.101283
  • TOMOMICHI OGATA, YUYA BABA. Variability of Tropical Cyclone Frequency Over the Western North Pacific in 2018–2020. Frontiers in Climate, 2021, doi: 10.3389/fclim.2021.770785
  • Yuya Baba. Improved intraseasonal variability in the initialization of SINTEX-F2 using a spectral cumulus parameterization. INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2021, doi: 10.1002/joc.7220
  • Yuya Baba. Influence of a spectral cumulus parametrization on simulating global tropical cyclone activity in an AGCM. QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 2021, p. 1-19, doi: 10.1002/qj.3965
  • yuya baba. Diurnal cycle of precipitation over the Maritime Continent simulated by a spectral cumulus parameterization. DYNAMICS OF ATMOSPHERES AND OCEANS, 2020, 91, doi: 10.1016/j.dynatmoce.2020.101160
  • Yuya Baba, Marco A. Giorgetta. Tropical variability simulated in ICON-A with a spectral cumulus parameterization. Journal of Advances in Modeling Earth Systems, 2019, 12, 1, doi: 10.1029/2019MS001732
  • yuya baba. Roles of atmospheric variabilities in the formation of the Indian Ocean Dipole. OCEAN DYNAMICS, 2019, 70, p. 21-39, doi: 10.1007/s10236-019-01318-7
  • Yuya Baba. Shallow convective closure in a spectral cumulus parameterization. ATMOSPHERIC RESEARCH, 2019, 233, doi: 10.1016/j.atmosres.2019.104707
  • Yuya Baba. Spectral cumulus parameterization based on cloud-resolving model. CLIMATE DYNAMICS, 2018, doi: 10.1007/s00382-018-4137-z
  • YUYA BABA. Response of rainfall to land surface properties under weak wind shear conditions. Atmospheric Research, 2016, 182, p. 335-345, doi: 10.1016/j.atmosres.2016.08.010
  • Yuya Baba. Sensitivity of the atmospheric energy budget to two-moment representation of cloudmicrophysics in idealized simulations of convective radiative quasi-equilibrium. Quarterly Journal of the RoyalMeteorological Society, 2015, 141, p. 114-127, doi: DOI:10.1002/qj.2342
  • Naohisa Takagaki, Ryoichi Kurose, Yuya Baba, Yuichiro Nakajima, Satoru Komori. Relationship between momentum of an impinging drop and intensities of vortex rings generated below free surface. International Journal of Multiphase Flow, 2014, 65, p. 1-10, doi: 10.1016/j.ijmultiphaseflow.2014
  • Yuya Baba, Keiko Takahashi. Dependency of stratiform precipitation on a two-moment cloud microphysical scheme in mid-latitude squall line. Atmospheric Research, 2014, 138, p. 394-413, doi: 10.1016/j.atmosres.2013.12.009
  • K. Takahashi, R. Onishi, Y. Baba, S. Kida, K. Matsuda, K. Goto and H. Fuchigami. Challenge toward the prediction of typhoon behavior and down pour. Journal of Physics: Conference Series(2013), 2013, 454
  • yuya baba, keiko takahashi. Weighted essentially non-oscillatory scheme for cloud edge problem. Quarterly Journal of the Royal Meteorological Society, 2012, doi: DOI: 10.1002/qj.2030
  • 馬場 雄也,高橋桂子(地球シミュレータセンター). Structure variation dependence of tropical squall line on the tracer advection scheme in cloud-resolving model. Gas Transfer at Water Surfaces 2010 (GTWS6-book) , 2011, p. 571-581
  • 馬場 雄也,高橋桂子(地球シミュレータセンター). Large-eddy simulation of convective boundary layer with density stratification. Journal of the Meteorological Society of Japan, 2011, 89, 2, p. 105-117
  • 大西 領,馬場 雄也,高橋 桂子. 等方性乱流中での慣性粒子の衝突現象に対する高効率並列計算法. 日本機械学会論文集(B 編), 2011, 77, 782, p. 1879-1891
  • Yuya Baba, Keiko Takahashi. Response of squall-line to tracer advection schemes. GTWS-6 book, 2011, p. 571-581
  • 黒瀬 良一,道岡 武信(電中研) , 河野 直紀(京都大学) , 小森 悟(京都大学) , 馬場 雄也(海洋研究開発機構、地球シミュレータセンター). Application of flamelet model to LES of turbulent reacting liquid flows. AIChE Journal , 2010
  • 高垣 直尚,中島 裕一郎(京都大学工学研究科) , 黒瀬 良一(京都大学工学研究科) , 小森 悟(京都大学工学研究科) , 馬場 雄也(地球シミュレータセンター). 単一液滴衝突時における自由界面下液側流動場およびスカラ場の直接数値シミュレーション. 日本機械学会論文集B編, 2010, 76, 772, p. 2065-2074
  • 馬場 雄也,高橋桂子(地球シミュレータセンター) , 杉村剛(地球シミュレータセンター) , 後藤浩二(NEC). Dynamical core of an atmospheric general circulation model on a Yin-Yang grid. Monthly Weather Review, 2010, 138, p. 3988-4005
  • Ryoichi Kurose, Satoru Komori, Takenobu Michioka, Yuya Baba,. Application of flamelet model to LES of turbulence reacting liquid flows. AIChE Journal, 2010, doi: 10.1002/aic.12328
  • 大西 領,Yuya Baba , Keiko Takahashi. Large-Scale Forcing with Less Communication in Finite-Difference Simulations of Stationary Isotropic Turbulence. Journal of Computational Physics, 2010, 230, p. 4088-4099, doi: doi:10.1016/j.jcp.2011.02.034
  • 河野 直紀,黒瀬 良一(京都大学) , 小森 悟(京都大学) , 馬場 雄也(地球シミュレータセンター). Large-eddy simulation of a turbulent reacting liquid flow using flamelet model. Transactions of the Japan Society of Mechanical Engineers, 2009, 75B, p. 1967-1974
  • 馬場 雄也,黒瀬 良一. Analysis and flamelet modelling for spray combustion. Journal of Fluid Mechanics, 2008
  • 馬場 雄也,黒瀬良一(京都大学). Flamelet Characteristics of Gaseous and Spray Lifted Flames on Two-Dimensional Direct Numerical Simulations. Journal of Fluid Science and Technology, 2008, 3, 7, p. 846-856