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首页> 外文期刊>Meteorological applications >The extensive episode of derecho-producing convective systems in the United States during May and June 1998: A multi-scale analysis and review
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The extensive episode of derecho-producing convective systems in the United States during May and June 1998: A multi-scale analysis and review

机译:1998年5月至6月美国产生回声的对流系统的广泛事件:多尺度分析和回顾

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A multi-scale analysis is presented on widespread and long-lived convectively generated windstorms, known as derechos. Analyses of the derecho-producing environments during 15 May-30 June 1998 indicate that this exceptional episode of derechos and derecho groupings (or series) was supported by ingredients (i.e. moisture, instability, and wind shear) that were supplied by the large-scale setting. In particular, the semi-stagnant subtropical ridge and associated capping inversion across the southern tier of the U.S. were important in supplying amplified moisture and instability to derecho-genesis regions through an underrunning process. Regions of preferred derecho formation appeared to correspond to shifts in the overall strength and position of the ridge, illustrating the importance of the ridge in focusing successive organized convection. Initiating mechanisms varied widely and were not restricted to warm-air advection regimes along quasi-stationary boundaries that forecasters often associate with warm-season derecho environments. In several cases, derecho-producing convective systems were generated by tropospheric features not consistent with common conceptual models of derecho environments such as closed lows and strong vorticity maxima. Further, three distinct series types were identified and classified based on their initiating mechanisms. Copyright (C) 2007 Royal Meteorological Society.
机译:对广泛和长期存在的对流产生的暴风雨进行了多尺度分析,称为强回声。对1998年5月15日至6月30日期间产生重音的环境的分析表明,此重音和重音分组(或系列)的特殊情况是由大规模供应的成分(即水分,不稳定性和风切变)支持的。设置。尤其是,在美国南部地区,半停滞的亚热带海脊和相关的盖顶反转对于通过欠发达过程向退回生区提供放大的水分和不稳定至关重要。优选的去毛刺形成区域似乎对应于脊的整体强度和位置的变化,从而说明了脊在聚焦连续的有组织对流中的重要性。引发机制变化很大,并且不限于沿准平稳边界的暖空气对流机制,预报员经常将其与暖季去噪环境联系在一起。在某些情况下,产生对流层的对流系统是由与对流层特征不符的对流层特征生成的,该对流层特征与对流层环境的常见概念模型(如闭合低点和强涡度最大值)不一致。此外,根据它们的启动机制对三种不同的序列类型进行了识别和分类。版权所有(C)2007皇家气象学会。

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