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Rapid development of arctic cyclone in June 2008 simulated by the cloud resolving global model NICAM

机译:云解析的全球模式NICAM模拟了2008年6月北极气旋的快速发展。

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摘要

In this study, we conducted a numerical simulation of a rapid development of an arctic cyclone (AC) that appeared in June 2008 using a cloud resolving global model, Nonhydrostatic ICosahedral Atmospheric Model (NICAM). We investigated the three dimensional structure and intensification mechanism of the simulated AC that developed to the minimum sea level pressure of 971 hPa in the model. According to the result, the AC indicates a barotropic structure with a warm core in the lower stratosphere and a cold core in the troposphere. The development of the AC is accompanied by an intense mesoscale cyclone (MC) showing baroclinic structure with a marked local arctic front. The upper level warm core of the AC is formed by an adiabatic heating associated with the downdraft in the lower stratosphere. The rapid development of the AC is caused by the combination of the intensification of the upper level warm core and the merging with the baroclinically growing MC in the lower level. The merging of the AC and MC and the vertical vortex coupling with the upper air polar vortex are the most important mechanisms for the rapid development of the arctic cyclone.
机译:在这项研究中,我们进行了一个数值模拟,显示了使用旋云解析全球模型非静力二十面体大气模型(NICAM)于2008年6月出现的北极旋风(AC)的快速发展。我们研究了模拟AC的三维结构和增强机制,该模型在模型中发展到最小海平面压力971 hPa。根据结果​​,AC表示正压结构,其平流层下部为暖核,对流层为冷核。 AC的发展伴随着强烈的中尺度气旋(MC),其表现出斜压构造和明显的局部北极锋面。 AC的上层暖芯是由与下部平流层向下气流相关的绝热加热形成的。 AC的快速发展是由于上层暖芯的强化和下层中斜压增长的MC的结合所致。 AC和MC的合并以及垂直涡旋与高空极地涡旋的耦合是快速发展北极旋风的最重要机制。

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