利用卫星数据和产品监测2017年8月11日波兰中部的风暴

IF 0.8 Q4 WATER RESOURCES
B. Łapeta, E. Kuligowska, Paulina Murzyn, P. Struzik
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引用次数: 2

摘要

本文介绍了中尺度对流系统在对流前、对流开始和对流成熟各阶段的演变过程。只有当现有数据具有足够的时空分辨率时,才能有效监测任何大气现象的演变。在对流风暴的情况下,分辨率应该是分钟和公里。因此,来自METEOSAT地球静止卫星的数据,每隔5分钟和15分钟被用于业务监测2017年8月11日的风暴;这是一次极具破坏性的风暴,集中在波美拉尼亚、大波兰和库亚维亚-波美拉尼亚省的几个地区。分析表明,一些令人担忧的特征,如冷环或冷U/V形状,可以在单通道卫星图像上看到,甚至没有提到具体的对流产品。然而,对流现象的临近预报需要仔细分析几个专用产品,包括稳定性指数和对流层中的水蒸气含量。研究表明,综合分析不同的卫星图像和卫星衍生产品所提供的信息,可以得出观测到的风暴的严重程度以及极端天气在地面发生的概率的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring the 11 August 2017 storm in central Poland with satellite data and products
This paper presents the evolution of the mesoscale convection system as seen on satellite images during all stages: pre-convection, initiation, and maturity. The evolution of any atmospheric phenomenon can be monitored effectively only when the data available have adequate temporal and spatial resolution. In case of convective storms the resolution should be minutes and kilometers. Therefore, data from the METEOSAT geostationary satellite, with 5-minute and 15-minute intervals were used operationally to monitor the storm of 11 August 2017; this was a most destructive storms, concentrated in several districts of the Pomeranian, Greater Poland, and Kuyavian-Pomeranian voivodeships. Analysis demonstrated that some alarming features, like cold rings or cold U/V shapes, can be visible on the single channel satellite images, without even referring to specific convective products. However, the nowcasting of the convective phenomena requires careful analysis of several dedicated products, including stability indices and water vapor content in the troposphere. It has been shown that with comprehensive analysis of the information provided by the different satellite images and satellite derived products, it is possible to draw conclusions about the severity of the observed storms as well as the probability of the occurrence of the extreme weather at the ground.
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