地中海气旋内的对流环境

IF 2 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES
Alice Portal, Andrea Angelidou, Raphael Rousseau-Rizzi, Shira Raveh-Rubin, Yonatan Givon, Jennifer L. Catto, Francesco Battaglioli, Mateusz Taszarek, Emmanouil Flaounas, Olivia Martius
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引用次数: 0

摘要

地中海气旋可引发严重的天气灾害,包括对流降水、闪电和冰雹,对业务预报、保险业风险评估和社会准备工作产生影响。这项工作考察了地中海气旋和有利于强对流的大气条件之间的气候学联系。利用ATDnet的闪电探测,我们发现,从秋季到春季,地中海盆地和邻近陆地地区20%-80%的闪电时数与附近的气旋有关。基于再分析数据,我们证明了强对流环境和相关危害主要发生在地中海气旋的暖区及其中心的东北部。对流过程和危害在气旋中心最低气压前约6小时出现峰值,这与以往的研究结果一致。此外,我们发现气旋内部强对流有很强的季节依赖性。强对流环境通常出现在典型的过渡季节(尤其是秋季)和夏季气旋类型中,而在冬季特征的深斜压气旋中则较少出现。最后,我们提供了关于对流活动对地中海气旋周围动力特征的依赖性的新见解。温暖的传送带以大规模上升和高度热力学不稳定性为特征,是闪电活动最有利的区域,闪电的潜力是气旋冷锋的两倍。这些结果促进了我们对气旋动力学和强对流之间相互作用的理解,为改进地中海地区的灾害预测和制定天气应急战略提供了有价值的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Convective Environments Within Mediterranean Cyclones

Mediterranean cyclones can trigger severe weather hazards, including convective precipitation, lightning and hail, with implications for operational forecasting, risk assessment in the insurance industry, and societal preparedness. This work examines the climatological link between Mediterranean cyclones and atmospheric conditions conducive to severe convection. Using ATDnet lightning detections we find that, from autumn to spring, 20%–80% of lightning hours over the Mediterranean basin and adjacent land regions are associated with nearby cyclones. Based on reanalysis data, we demonstrate that severe convective environments and associated hazards predominantly occur in the warm sector of Mediterranean cyclones and to the north-east of their centres. Convective processes and hazards exhibit a peak approximately 6 h prior to the time of minimum pressure of the cyclone centre, consistent with previous studies. Additionally, we find a strong seasonal dependence of severe convection within cyclones. Severe convective environments are often detected in cyclone types typical of transition seasons (autumn especially) and summer, while they are rarer in deep baroclinic cyclones characteristic of winter. Finally, we provide novel insights regarding the dependence of convective activity on the presence of dynamical features around Mediterranean cyclones. Warm conveyor belts, characterised by large-scale ascent and high thermodynamic instability, emerge as the most favourable regions for lightning activity, with lightning potential being twice as high compared to cyclone cold fronts. These results advance our understanding of the interplay between cyclone dynamics and severe convection, offering valuable guidance for improving hazard prediction and for elaborating weather emergency strategies in the Mediterranean region.

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来源期刊
Atmospheric Science Letters
Atmospheric Science Letters METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
4.90
自引率
3.30%
发文量
73
审稿时长
>12 weeks
期刊介绍: Atmospheric Science Letters (ASL) is a wholly Open Access electronic journal. Its aim is to provide a fully peer reviewed publication route for new shorter contributions in the field of atmospheric and closely related sciences. Through its ability to publish shorter contributions more rapidly than conventional journals, ASL offers a framework that promotes new understanding and creates scientific debate - providing a platform for discussing scientific issues and techniques. We encourage the presentation of multi-disciplinary work and contributions that utilise ideas and techniques from parallel areas. We particularly welcome contributions that maximise the visualisation capabilities offered by a purely on-line journal. ASL welcomes papers in the fields of: Dynamical meteorology; Ocean-atmosphere systems; Climate change, variability and impacts; New or improved observations from instrumentation; Hydrometeorology; Numerical weather prediction; Data assimilation and ensemble forecasting; Physical processes of the atmosphere; Land surface-atmosphere systems.
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