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Analysis of the environments of seven Mediterranean tropical-like storms using an axisymmetric, nonhydrostatic, cloud resolving model

机译:使用轴对称,非水循环模型分析七种地中海热带风暴的环境

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Tropical-like storms on the Mediterranean Sea are occasionally observed on satellite images, often with a clear eye surrounded by an axysimmetric cloud structure. These storms sometimes attain hurricane intensity and can severely affect coastal lands. A deep, cut-off, cold-core low is usually observed at mid-upper tropospheric levels in association with the development of these tropical-like systems. In this study we attempt to apply some tools previously used in studies of tropical hurricanes to characterise the environments in which seven known Mediterranean events developed. In particular, an axisymmetric, nonhydrostatic, cloud resolving model is applied to simulate the tropical-like storm genesis and evolution. Results are compared to surface observations when landfall occurred and with satellite microwave derived wind speed measurements over the sea. Finally, sensitivities of the numerical simulations to different factors (e.g. sea surface temperature, vertical humidity profile and size of the initial precursor of the storm) are examined.
机译:地中海的热带风暴偶尔会在卫星图像上观察到,通常具有透明的眼睛,被分析云结构包围。这些风暴有时会达到飓风强度,并且可以严重影响沿海地区。在中上部对流层水平中通常观察到深度,截止的冷芯低,与这些热带系统的发展相关联。在这项研究中,我们试图应用先前用于热带飓风研究的一些工具,以表征七场所已知的地中海事件的环境。特别地,应用轴对称,非水循环云分辨模型来模拟热带风暴创世历和演化。将结果与卫星微波推导出海面上的卫星微波衍生风速测量。最后,研究了数值模拟对不同因素的敏感性(例如,海表面温度,垂直湿度曲线和风暴初始前体的尺寸)。

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