Toward Understanding the Diverse Impacts of Air-Sea Interactions on Madden-Julian oscillation Simulations

Lead Author
Fu, Joshua-Xiouhua
Publisher
Journal of Geophysical Research: Oceans
Full Reference
Fu, J-X., W. Wang, T. Shinoda, H-L. Ren, and X. Jia, 2017: Toward Understanding the Diverse Impacts of Air-Sea Interactions on Madden-Julian oscillation Simulations. Journal of Geophysical Research: Oceans, 122, 8855-8875, doi: 10.1002/2017JC013187.
Publication Type
Publications

Is the Madden-Julian Oscillation a Moisture Mode?

Digital Object Identifier
10.22541/essoar.167590828.80751158/v1
Lead Author
Mayta, V. C.
Publisher
ESS Open Archive
Full Reference
Mayta, V. C., and Á. F. Adames-Corraliza, 2023: Is the Madden-Julian Oscillation a Moisture Mode?. ESS Open Archive, preprint, doi: 10.22541/essoar.167590828.80751158/v1.
Publication Type
Publications

Impacts of Different Cumulus Schemes on the Pathways through which SST Provides Feedback to the Madden–Julian Oscillation

Digital Object Identifier
10.1175/JCLI-D-17-0432.1
Lead Author
Fu, Joshua-Xiouhua
Publisher
Journal of Climate
Full Reference
Fu, J., W. Wang, Y. Zhu, H. Ren, X. Jia, and T. Shinoda, 2018: Impacts of Different Cumulus Schemes on the Pathways through which SST Provides Feedback to the Madden–Julian Oscillation. Journal of Climate, 31, 5559-5579, doi: 10.1175/JCLI-D-17-0432.1.
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Publications

The Role of Large-Scale Moistening by Adiabatic Lifting in the Madden–Julian Oscillation Convective Onset

Digital Object Identifier
10.1175/JCLI-D-21-0322.1
Lead Author
Snide, Chelsea E.
Publisher
Journal of Climate
Full Reference
Snide, C. E., Á. F. Adames, S. W. Powell, and V. C. Mayta, 2022: The Role of Large-Scale Moistening by Adiabatic Lifting in the Madden–Julian Oscillation Convective Onset. J. Climate, 35, 269–284, doi: 10.1175/JCLI-D-21-0322.1.
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Publication Type
Publications

Climate Process Team: Improvement of Ocean Component of NOAA Climate Forecast System Relevant to Madden-Julian Oscillation Simulations

Digital Object Identifier
10.1029/2021MS002658
Lead Author
Shinoda, Toshiaki
Publisher
Journal of Advances in Modeling Earth Systems
Full Reference
Shinoda, T., S. Pei, W. Wang, J. X. Fu, R-C. Lien, H. Seo, and A. Soloviev, 2021: Climate Process Team: Improvement of Ocean Component of NOAA Climate Forecast System Relevant to Madden-Julian Oscillation Simulations. Journal of Advances in Modeling Earth Systems, 13(12), doi: 10.1029/2021MS002658
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Publication Type
Publications

Tropical meteorology

Digital Object Identifier
10.1029/RG013i003p00685
Lead Author
Yanai, M.
Publisher
Rev. Geophys.
Full Reference
Yanai, M., 1975: Tropical meteorology. Rev. Geophys., 13(3), 685–710, doi: 10.1029/RG013i003p00685.
Publication Type
Publications

On meridional circulation and heat budget of the troposphere over the Equatorial Central Pacific

Digital Object Identifier
10.3402/tellusa.v23i1.10294
Lead Author
Hastenrath, S. L.
Publisher
Tellus
Full Reference
Hastenrath, S. L., 1971: On meridional circulation and heat budget of the troposphere over the Equatorial Central Pacific, Tellus, 23:1, 60-73, doi: 10.3402/tellusa.v23i1.10294.
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Publications

Three Early Tropical Field Experiments

Digital Object Identifier
10.1175/BAMS-D-18-0151.1
Lead Author
Garstang, M.
Publisher
Bull. Amer. Meteor. Soc.
Full Reference
Garstang, M., E. Zipser, R. Ellingson, K. Warsh, P. Grose, S. Ulanski, R. Holle, W. Seguin, D. Fitzjarrald, S. Greco, and G. D. Emmitt, 2019: Three Early Tropical Field Experiments. Bull. Amer. Meteor. Soc., 100, 2243–2258, doi: 10.1175/BAMS-D-18-0151.1.
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Publications

The Line Islands Experiment, Its Place in Tropical Meteorology and the Rise of the Fourth School of Thought

Digital Object Identifier
10.1175/1520-0477-51.12.1136
Lead Author
Zipser, E. J.
Publisher
Bull. Amer. Meteor. Soc.
Full Reference
Zipser, E. J., 1970: The Line Islands Experiment, Its Place in Tropical Meteorology and the Rise of the Fourth School of Thought. Bull. Amer. Meteor. Soc., 51, 1136–1147, doi: 10.1175/1520-0477-51.12.1136.
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Publications

Microphysical properties within regions of enhanced dual-frequency ratio during the IMPACTS field campaign

Lead Author
Finlon, J.
Full Reference
Finlon, J. and L. McMurdie, 2023: Microphysical properties within regions of enhanced dual-frequency ratio during the IMPACTS field campaign. IUGG/IAMAS, Berlin, Germany, July 2023.
Publication Type
Conference Proceedings