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The July 2003 Dakota Hailswaths: Creation, Characteristics, and Possible Impacts

机译:2003年7月的达科他州冰雹:创作,特征和可能的影响

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The authors investigate the meteorology associated with two elongated swaths of crop damage produced by severe hailstorms that crossed North Dakota and South Dakota on 4 July and 20 July 2003. These hailswaths, which were observed in a Moderate Resolution Imaging Spectroradiometer (MODIS) Normalized Difference Vegetation Index (NDVI) image time series, each persisted for more than a month and were associated with local temperature increases, presumably owing to the enhanced Bowen ratio over dry, crop-free ground. This paper documents the creation and evolution of the convective storms that produced the hailswaths, and then presents evidence that devegetated hailswaths may impact future convective weather. Idealized numerical simulations including hailswath-like surface anomalies, as well as analogies to the extant literature, suggest that hailswaths may play a part in initiating new convective clouds, especially when the low-level winds are parallel to their long axes. Analyses of conventional operational observations also show that the 4 July hailswath may have played a part in the initiation and intensification of a convective storm on 17 July and in the temporarily deviant motion of a convective storm that crossed it on 20 July. Because devegetated hailswaths are common to the central and northern plains during the summer months, and because they have heretofore received little study, a deeper understanding of hailswaths' impacts upon moist convection may lead to improved short-term weather prediction.
机译:作者调查了与2003年7月4日和7月20日横穿北达科他州和南达科他州的严重冰雹所造成的两次细长的作物损害相关的气象学。这些冰雹是在中等分辨率成像光谱仪(MODIS)归一化差异植被中观察到的指数(NDVI)图像时间序列,每个持续了一个多月,并且与局部温度升高有关,这大概是由于干燥,无农作物的地面上的鲍恩比提高了。本文记录了产生冰雹的对流风暴的形成和演化,然后提供了证据表明植被剥蚀的冰雹可能会影响未来的对流天气。理想的数值模拟包括类似于冰雹的表面异常以及与现有文献的类比,表明冰雹可能在启动新的对流云中起作用,特别是在低风向平行于它们的长轴时。对常规运行观测的分析还表明,7月4日的雹云可能参与了7月17日对流风暴的发起和加剧,以及7月20日越过对流风暴的暂时​​异常运动。由于在夏季月份中北部和北部平原上常有带植被的冰雹,并且由于迄今为止尚未进行研究,因此对冰雹对湿对流影响的更深入的了解可能会改善短期天气预报。

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