Using Radar Data to Calibrate a Stochastic Parametrization of Organized Convection

Digital Object Identifier
10.1029/2018MS001537
Lead Author
Cardoso-Biholo, E.
Publisher
Journal of Advances in Modeling Earth Systems
Full Reference
Cardoso-Bihlo, E., B. Khouider, C. Schumacher, and M. De La Chevrotière, 2019: Using Radar Data to Calibrate a Stochastic Parametrization of Organized Convection. Journal of Advances in Modeling Earth Systems, 11(6), 1655-1684, doi: 10.1029/2018MS001537.
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A numerical study of the early stages of a tropical cyclogenesis in relation to the MJO

Digital Object Identifier
10.5194/nhessd-3-4919-2015
Lead Author
Guerbette, Jérémy
Publisher
Natural Hazards and Earth System Sciences Discussions
Full Reference
Guerbette, J., M. Plu, C. Barthe, and J-F. Mahfouf, 2015: A numerical study of the early stages of a tropical cyclogenesis in relation to the MJO. Natural Hazards and Earth System Sciences Discussions, 3(8), 4919-4935, doi: 10.5194/nhessd-3-4919-2015.
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Cloud Radiative Effects on MJO Development in DYNAMO

Digital Object Identifier
10.1175/JCLI-D-21-0882.1
Lead Author
Hu, Qi
Publisher
Journal of Climate
Full Reference
Hu, Q., Z. Han and S. Wang, 2022: Cloud Radiative Effects on MJO Development in DYNAMO. Journal of Climate, 35, 6969-6984, doi: 10.1175/JCLI-D-21-0882.1.
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Forecasts of MJO during DYNAMO in a coupled tropical channel model, Part I: Impact of parameterization schemes

Digital Object Identifier
10.1002/joc.7610
Lead Author
Hu, Yun
Publisher
International Journal of Climatology
Full Reference
Hu, Y., X. Wang, J-J. Luo, D. Wang, H. Yan, C. Yuan, and X. Lin, 2022: Forecasts of MJO during DYNAMO in a coupled tropical channel model, Part I: Impact of parameterization schemes. International Journal of Climatology, 42(13), 6771-6792, doi: 10.1002/joc.7610.
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Forecasts of MJO during DYNAMO in a Coupled Tropical Channel Model: Impact of Planetary Boundary Layer Schemes

Digital Object Identifier
10.3390/atmos13050666
Lead Author
Hu, Yun
Publisher
Atmosphere
Full Reference
Hu, Y., X. Wang, J-J. Luo, D. Wang, H. Yan, C. Yuan, and X. Lin, 2022: Forecasts of MJO during DYNAMO in a Coupled Tropical Channel Model: Impact of Planetary Boundary Layer Schemes. Atmosphere, 13(5), 666, doi: 10.3390/atmos13050666.
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The Influence of Cloud Types on Cloud-Radiative Forcing During DYNAMO/AMIE

Digital Object Identifier
10.1029/2022JD038006
Lead Author
Najarian, H.
Publisher
Atmospheres
Full Reference
Najarian, H., and N. Sakaeda, 2023: The Influence of Cloud Types on Cloud-Radiative Forcing During DYNAMO/AMIE. JGR Atmospheres, 128(8), doi: 10.1029/2022JD038006.
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Evaluation of Mean State in NCEP Climate Forecast System (Version 2) Simulation Using a Stochastic Multicloud Model Calibrated With DYNAMO RADAR Data

Digital Object Identifier
10.1029/2020EA001455
Lead Author
Roy, Kumar
Publisher
Earth and Space Science
Full Reference
Roy, K., P. Jukhopadhyay, R. P. M. Krishna, B. Khouider, and B. B. Goswami, 2021: Evaluation of Mean State in NCEP Climate Forecast System (Version 2) Simulation Using a Stochastic Multicloud Model Calibrated With DYNAMO RADAR Data. Earth and Space Science, 8(8), doi: 10.1029/2020EA001455.
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Retrieval of slant water path, liquid water and rain events using the cloudy sky ratio from K-band brightness temperature measurements

Digital Object Identifier
10.1109/URSIGASS.2014.6929675
Lead Author
Sahoo, Swaroop
Publisher
2014 XXXIth URSI General Assembly and Scientific Symposium (URSI GASS)
Full Reference
Sahoo, S., X. Bosch-Lluis, S. C. Reising, J. Vivekanandan, P. Zuidema, and S. M. Ellis, 2014: Retrieval of slant water path, liquid water and rain events using the cloudy sky ratio from K-band brightness temperature measurements. 2014 XXXIth URSI General Assembly and Scientific Symposium (URSI GASS), Beijing China, 16-23 August 2014, doi: 10.1109/URSIGASS.2014.6929675.
Publication Type
Conference Proceedings

Diurnal Ocean Surface Warming Drives Convective Turbulence and Clouds in the Atmosphere

Digital Object Identifier
10.1029/2020GL091299
Lead Author
de Szoeke, Simon P.
Publisher
Geophysical Research Letters
Full Reference
de Szoeke, S. P., T. Marke, and W. A. Brewer, 2020: Diurnal Ocean Surface Warming Drives Convective Turbulence and Clouds in the Atmosphere. Geophysical Research Letters, 48(4), doi: 10.1029/2020GL091299.
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