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An improved analysis of mesoscale convective systems in the western Mediterranean using weather radar

机译:使用气象雷达对地中海西部中尺度对流系统的改进分析

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This article studies the life cycle of the well-organised mesoscale convective systems (MCSs) that affect Catalonia and surrounding regions, using a weather radar composite with sophisticated corrections and lightning data over a full period of five years. Nearly 350 MCSs were identified and analysed for the 2012-2016 period after applying size and duration criteria to 438,000 radar composites. MCSs are responsible for the majority of flood events in the region of interest and in many other areas around the world. We have analysed the main radar parameters and lightning properties, looking for differences between the systems depending on the season of the year. Autumn and spring show the highest frequency of MCSs, but there are considerable differences between their properties for the two seasons. More specifically, lightning activity, maximum reflectivity and duration are higher in autumn than in winter, although the total accumulated rainfall may be lower. This higher convective activity is associated with the warmer sea surface temperature of the Mediterranean and a large number of cyclones that affect the region of analysis.
机译:本文使用天气雷达复合材料进行了为期5年的全面研究,研究了结构良好的中尺度对流系统(MCS)的生命周期,该系统影响加泰罗尼亚及周边地区。在将尺寸和持续时间标准应用于438,000个雷达复合材料之后,在2012-2016年期间识别并分析了近350个MCS。 MCS负责关注区域和世界其他许多地区的大多数洪水事件。我们分析了主要的雷达参数和闪电属性,以根据一年中的季节查找系统之间的差异。秋季和春季显示MCS的频率最高,但是在两个季节中它们的属性之间存在相当大的差异。更具体地,尽管总累积降雨量可能较低,但秋季的闪电活动,最大反射率和持续时间比冬季高。较高的对流活动与地中海较暖的海面温度以及影响分析区域的大量旋风有关。

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