Coupled Ocean-Atmosphere Modeling on Icosahedral Grids
Coupled ocean-atmosphere modeling on horizontally icosahedral and vertically hybrid-isentropic/isopycnic grids is a cutting-edge approach to modeling climate variability. The design goals aim to achieve a global domain with no grid mismatch at the ocean-atmosphere interface, with key indicators such
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Understanding Atmosphere-Ocean Coupling in Madden-Julian Oscillation
Atmosphere-ocean coupled processes in the Madden-Julian Oscillation (MJO) play a crucial role in intraseasonal oscillations. This paper review by Shao Yun-Chuan explores how the ocean's Sea Surface Temperature (SST) influences surface fluxes, MJO convection, and energy balance dynamics. It delves in
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Evidence for Hydrometeor Storage and Advection Effects in DYNAMO Budget Analyses of the MJO
Variational constraint analyses (VCA) were conducted for DYNAMO in two regions to compare observed radar rainfall data with conventional budget method results, examining differences and composite analyses of MJO events. The study utilized input data including Gridded Product Level 4 sounding data an
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Conceptual Model for Hydrometeor Structure of Mesoscale Convective Systems during MJO Active Stage
This study presented a conceptual model for characterizing the hydrometeor structure of Mesoscale Convective Systems (MCSs) during the Madden-Julian Oscillation (MJO) active stage. The research focused on the kinematic structure of MCSs and utilized radar data, compositing methodology, and convectiv
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