Physical mechanisms controlling self-aggregation of convection in idealized numerical modeling simulations

被引:243
作者
Wing, Allison A. [1 ]
Emanuel, Kerry A. [1 ]
机构
[1] MIT, Dept Earth Atmospher & Planetary Sci, Program Atmospheres Oceans & Climate, Cambridge, MA 02139 USA
基金
美国国家科学基金会;
关键词
self-aggregation; convection; TROPICAL CYCLOGENESIS; RADIATIVE-TRANSFER; CLOUD-ENSEMBLE; WIND; EQUILIBRIUM; EVOLUTION; CLUSTERS; SYSTEMS;
D O I
10.1002/2013MS000269
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
We elucidate the physics of self-aggregation by applying a new diagnostic technique to the output of a cloud resolving model. Specifically, the System for Atmospheric Modeling is used to perform 3- D cloud system resolving simulations of radiative-convective equilibrium in a nonrotating framework, with interactive radiation and surface fluxes and fixed sea surface temperature (SST). We note that self-aggregation begins as a dry patch that expands, eventually forcing all the convection into a single clump. Thus, when examining the initiation of self-aggregation, we focus on processes that can amplify this initial dry patch. We introduce a novel method to quantify the magnitudes of the various feedbacks that control self-aggregation within the framework of the budget for the spatial variance of column-integrated frozen moist static energy. The absorption of shortwave radiation by atmospheric water vapor is found to be a key positive feedback in the evolution of aggregation. In addition, we find a positive wind speed-surface flux feedback whose role is to counteract a negative feedback due to the effect of air-sea enthalpy disequilibrium on surface fluxes. The longwave radiation feedback can be either positive or negative in the early and intermediate stages of aggregation; however, it is the dominant positive feedback that maintains the aggregated state once it develops. Importantly, the mechanisms that maintain the aggregate state are distinct from those that instigate the evolution of self-aggregation.
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页码:59 / 74
页数:16
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