DOE OSTI · 3025368
Microphysics Dominates Sub‐Cloud Rain Evaporation in Trade Cumuli Over Barbados
Abstract
This study investigates the microphysical and thermodynamic influences on North Atlantic trade-cumulus rain evaporation in the sub-cloud layer over Barbados from January to November 2020. Using radar observations and a 1-D model, the results reveal that microphysical properties, namely geometric mean diameter (D g ) and raindrop concentration, primarily control evaporation processes under conditions of limited thermodynamic variability. Thermodynamic factors like cloud base height and relative humidity exert a smaller influence due to their narrow observed ranges. Small D g leads to rapid increases in rain evaporation fraction (REF), as small drops evaporate completely, while larger D g yields slower, more gradual REF changes. Frequent weak-rain cases reduce the mean evaporation flux, whereas infrequent intense-rain events substantially enhance it. These findings highlight the pivotal role of microphysical variability in shaping sub-cloud evaporation in this trade cumulus regime, while thermodynamic effects may be more important in other environments.
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Sarkar, M. [Univ. of Houston, TX (United States)] (ORCID:0000000313204726), Vogel, R. [Univ. of Hamburg (Germany)] (ORCID:0000000286665147), Zheng, Y. [Univ. of Houston, TX (United States)]. 2025-10-27. Microphysics Dominates Sub‐Cloud Rain Evaporation in Trade Cumuli Over Barbados. https://doi.org/10.1029/2025gl114885
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