QLCS龙卷风和高冲击直线风事件前兆信号评估

IF 0.8 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Operational Meteorology Pub Date : 2021-09-03 DOI:10.15191/nwajom.2021.0905
J. Gibbs
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引用次数: 4

摘要

准线性对流系统(QLCS)产生的龙卷风对国家气象局的预警工作提出了重大挑战。考虑到它们发展的速度和规模,与传统上用于超级单体风暴的方法相比,需要不同的龙卷风预警决策方法。这项研究评估了其中一种技术的技巧——所谓的三成分法——并产生了新的方法。三成分方法被发现在较短的交货时间内相当熟练,特别是对于明显是线性的系统。从三要素法的概念和科学中,出现了几种环境和雷达参数的新组合,这些组合看起来更加熟练,并且可能更容易实时执行。新兴方法之间的类似技能为预测者提供了在任何给定情况下可能最有效的选择。一些雷达和环境变量也确定了与总风速的中度正相关。此外,在QLCS中尺度对流涡旋和超级单体状特征被发现以比纯线性系统高得多的速率产生龙卷风。
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Evaluating Precursor Signals for QLCS Tornado and Higher Impact Straight-Line Wind Events
Tornadoes produced by quasi-linear convective systems (QLCS) present a significant challenge to National Weather Service warning operations. Given the speed and scale at which they develop, different methods for tornado warning decision making are required than what traditionally are used for supercell storms. This study evaluates the skill of one of those techniques—the so-called three-ingredients method—and produces new approaches. The three-ingredients method is found to be reasonably skillful at short lead times, particularly for systems that are clearly linear. From the concepts and science of the three-ingredients method, several new combinations of environmental and radar parameters emerge that appear slightly more skillful, and may prove easier to execute in real time. Similar skill between the emerging methods provides the forecaster with options for what might work best in any given scenario. A moderate positive correlation with overall wind speed with some radar and environmental variables also is identified. Additionally, mesoscale convective vortices and supercell-like features in QLCS are found to produce tornadoes at a much higher rate than purely linear systems.
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来源期刊
Journal of Operational Meteorology
Journal of Operational Meteorology METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
2.40
自引率
0.00%
发文量
4
期刊最新文献
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