The Macro- and Microphysical Response Characteristics of the Multicell Hailstorm Hail-Suppression Operation: Case Study

IF 2.6 3区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES
Yuan Lu, Yunjun Zhou, Shuping Zou, Zhe Yang, Yong Zeng
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引用次数: 0

Abstract

This study analyzed the macro- and microphysical response characteristics of a typical multicell hailstorm after seeding on 27 April 2019 in Weining, China, using X-band dual-polarization radar (YLD1-D) data. An improved X-pol hydrometeor identification algorithm was employed for hydrometeor identification. According to the diffusion of the seeding agents, the seeded hailstorm was graded into three study regions, and the evolution of the seeded hailstorm was divided into four periods. The response characteristics of the seeded hailstorm in each region and period were compared and analyzed. The results show that 1) macroscopically, the decrease in the reflectivity and the height of strong echo mainly occurred in the seeded period, whereas the decrease in the echo top and the height of the storm was mainly in the postseeded period; the echo height variation of the unseeded hailstorm is obviously different from that of the seeded hailstorm; and 2) from the microscopic perspective, the decrease in low-density graupel and supercooled water and the increase in ice crystals and aggregates in the seeded region mainly occurred in the seeded period, which was consistent with the time required for the “benefit competition” after the silver iodide completed nucleation. When compared with the seeded region, the hydrometeors in the unseeded region had an opposite trend (or an in-phase trend with an obviously lower changing rate), which further indicated the impact of the artificial ice nuclei on microphysical processes in the seeded region. For hailstorms with a high content of supercooled droplets and graupel, the key mechanisms of hail suppression are “cloud water glaciation,” “beneficial competition,” and “early rainout.”
多细胞冰雹降雹行动的宏观和微观物理响应特征:个案研究
利用x波段双偏振雷达(YLD1-D)数据,分析了2019年4月27日威宁一次典型多细胞冰雹降雨后的宏观和微观物理响应特征。采用改进的X-pol水流星识别算法进行水流星识别。根据播种剂的扩散情况,将该次雹暴划分为3个研究区,并将其演变过程划分为4个时期。对比分析了种子雹暴在各区域、各时段的响应特征。结果表明:1)宏观上,反射率和强回波高度的降低主要发生在播种期,而回波顶和风暴高度的降低主要发生在播种后;非种子冰雹的回波高度变化与种子冰雹的回波高度变化有明显差异;2)从微观上看,播种区低密度霰和过冷水的减少以及冰晶和团聚体的增加主要发生在播种期,这与碘化银完成成核后“利益竞争”所需的时间一致。与播种区相比,未播种区水成物呈现相反趋势(或同相趋势,变化率明显较低),进一步说明人工冰核对播种区微物理过程的影响。对于过冷液滴和霰含量高的雹暴,冰雹抑制的关键机制是“云水冰川作用”、“有利竞争”和“早雨”。
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来源期刊
Journal of Applied Meteorology and Climatology
Journal of Applied Meteorology and Climatology 地学-气象与大气科学
CiteScore
5.10
自引率
6.70%
发文量
97
审稿时长
3 months
期刊介绍: The Journal of Applied Meteorology and Climatology (JAMC) (ISSN: 1558-8424; eISSN: 1558-8432) publishes applied research on meteorology and climatology. Examples of meteorological research include topics such as weather modification, satellite meteorology, radar meteorology, boundary layer processes, physical meteorology, air pollution meteorology (including dispersion and chemical processes), agricultural and forest meteorology, mountain meteorology, and applied meteorological numerical models. Examples of climatological research include the use of climate information in impact assessments, dynamical and statistical downscaling, seasonal climate forecast applications and verification, climate risk and vulnerability, development of climate monitoring tools, and urban and local climates.
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