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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Precursors of deep moist convection in a subkilometer global simulation
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Precursors of deep moist convection in a subkilometer global simulation

机译:亚千米整体模拟中的深湿对流前兆

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Deepmoist convection in the atmosphere plays an important role in cloudy weather disturbances, such as hurricanes, and even in the global climate. The convection often causes disastrous heavy rainfall, and predicting such convection is therefore critical for both disaster prevention and climate projection. Although the key parameters for convection have been pointed out, understanding the preprocesses of convection is a challenging issue. Here we identified the precursors of convection by analyzing a global simulated data set with very high resolution in time and space. We found that the mass convergence near the Earth's surface changed significantly several minutes before the initiation of early convection (the formation of cumulus clouds), which occurred with the increase in the convective available potential energy (CAPE). Decomposition of the statistical data revealed that a higher-CAPE environment resulted in stronger convection than in the stronger-convergence case. Furthermore, for the stronger-convergence case, the precursor was detected earlier than the total average (10–15 min before the initiation), whereas the amplitude of maximum velocity was not so strong as the higher-CAPE case. This suggests that the strength of convection is connected with CAPE, and the predictability is sensitive to the convergence.
机译:大气中的深湿对流在飓风等多云天气干扰中,甚至在全球气候中都起着重要作用。对流通常会造成灾难性的大雨,因此预测这种对流对于防灾和气候预测都至关重要。尽管已经指出了对流的关键参数,但是了解对流的预处理是一个具有挑战性的问题。在这里,我们通过分析具有很高时空分辨率的全局模拟数据集来确定对流的前兆。我们发现,在早期对流(积云的形成)开始前几分钟,地球表面附近的质量会聚发生了显着变化,这与对流可用势能(CAPE)的增加有关。统计数据的分解显示,与较高收敛的情况相比,CAPE较高的环境对流效果更强。此外,对于收敛性较强的情况,检测到的前体早于总平均值(起始前10-15分钟),而最大速度的幅度并不像CAPE较高的情况那么强。这表明对流的强度与CAPE有关,并且可预测性对收敛敏感。

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