Abstract
The authors analyze the influence of sea surface temperature (SST) and surface wind divergence on atmospheric thermodynamic structure and the resulting effects on the occurrence of deep convection using National Meteorological Center radiosonde data and International Satellite Cloud Climatology Program data for July 1983-July 1985. The onset of deep convection requires not only the existence of positive convective available potential energy (CAPE), but also an unstable planetary boundary layer (PBL). A stable PBL is observed to suppress deep convection even when CAPE is positive. Variations of SST have a major effect on CAPE, but surface wind divergence can also affect deep convection by changing the lapse rate in the lower troposphere and humidity in the PBL. The seasonal cycles of deep convection and surface wind divergence are in phase with the maximum solar radiation and lead SST for one to three months in the central Pacific. -from Authors
Cite
CITATION STYLE
Rong Fu, Del Genio, A. D., & Rossow, W. B. (1994). Influence of ocean surface conditions on atmospheric vertical thermodynamic structure and deep convection. Journal of Climate, 7(7), 1092–1108. https://doi.org/10.1175/1520-0442(1994)007<1092:ioosco>2.0.co;2
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