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Evolution of Severe and Nonsevere Convection Inferred from GOES-Derived Cloud Properties

机译:从GOES派生的云特性推断强对流和非强对流的演变

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Geostationary satellites [e.g., the Geostationary Operational Environmental Satellite (GOES)] provide high temporal resolution of cloud development and motion, which is essential to the study of many mesoscale phenomena, including thunderstorms. Initial research on thunderstorm growth with geostationary imagery focused on the mature stages of storm evolution, whereas more recent research on satellite-observed storm growth has concentrated on convective initiation, often defined arbitrarily as the presence of a given radar echo threshold. This paper seeks to link the temporal trends in robust GOES-derived cloud properties with the future occurrence of severe-weather radar signatures during the development phase of thunderstorm evolution, which includes convective initiation. Two classes of storms (severe and nonsevere) are identified and tracked over time in satellite imagery, providing distributions of satellite growth rates for each class. The relationship between the temporal trends in satellite-derived cloud properties and Next Generation Weather Radar (NEXRAD)-derived storm attributes is used to show that this satellite-based approach can potentially be used to extend severe-weather-warning lead times (with respect to radar-derived signatures), without a substantial increase in false alarms. In addition, the effect of varying temporal sampling is investigated on several storms during a period of GOES super-rapid-scan operations (SRSOR). It is found that, from a satellite perspective, storms evolve significantly on time scales shorter than the current GOES operational scan strategies.
机译:对地静止卫星[例如,对地静止作战环境卫星(GOES)]提供了云发展和运动的高时间分辨率,这对于研究许多中尺度现象(包括雷暴)至关重要。利用对地静止图像对雷暴增长进行的初步研究集中在风暴演化的成熟阶段,而对卫星观测的风暴增长的最新研究则集中在对流引发,通常将其任意定义为存在给定的雷达回波阈值。本文力求将强大的GOES派生的云特征的时间趋势与雷暴演变发展阶段(包括对流启动)中未来出现的强天气雷达信号联系起来。在卫星图像中识别并跟踪了两类风暴(严重和非严重),并提供了每个类别的卫星增长率分布。卫星云特性的时空趋势与下一代气象雷达(NEXRAD)风暴属性之间的关系用于表明,这种基于卫星的方法可潜在地用于延长恶劣天气预警的提前期(相对于雷达衍生的签名),而不会大幅增加误报。此外,在GOES超快速扫描操作(SRSOR)期间,研究了几种时间风暴对不同时间采样的影响。从卫星的角度来看,发现风暴发生的时间尺度明显短于当前的GOES作战扫描策略。

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