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| Application of groundbased remote sensing vertical observation system insevere convective weather |
| Wu Yulong1, Fu Yanan1, Liu Xuyang2, Zhen Xi3, Zhang Jinshuo1, Tian Hong1, Shen Qiuyan1, Qiu Haitao1, Mu Wenkui1 |
1. Hohhot Meteorological Bureau,Hohhot 010020; 2. Inner Mongolia Autonomous Region Climate Center,Hohhot 010051; 3. Inner Mongolia Autonomous Region Weather Modification Center,Hohhot 010051 |
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Abstract The article utilizes data from the ground-based remote sensing vertical observation system at the Hohhot National Climate Observatory and applies ground-based remote sensing vertical observation products to analyze the characteristics of a severe convective weather process that occurred in the afternoon of June 19,2023,in Hohhot.The results indicate that the ground-based remote sensing vertical observation products can identify characteristic parameters of severe convective weather processes.These identified parameters can provide a reference for early warning of disastrous weather such as short-term heavy precipitation,hail,and strong winds,and have a positive effect on promoting the widespread application of ground-based remote sensing vertical observation products.
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Received: 16 July 2024
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| [1] |
彭杰,傅新姝,王晓峰.新型地基遥感观测技术进展和省级业务化应用思考:以上海市气象局为例[J].气象科技进展,2022,12 (5):74-79.
|
| [2] |
王小兰,高士禹,焦志敏,等.地基遥感观测设备对北京冬奥会期间一次降雪过程的监测应用[J].气象水文海洋仪器,2023,40 (1):82-85.
|
| [3] |
林晓萌,尉英华,张楠,等.基于地基遥感设备构建遥感探空廓线[J].应用气象学报,2022,33 (5):568-580.
|
| [4] |
傅新姝,顾问,彭杰,等.2020年梅雨期上海一次强降水过程垂直结构的综合观测分析[J].暴雨灾害,2020,39 (6):658-665.
|
| [5] |
明虎.低能见度天气的多地基遥感设备探测及关键问题研究[D].南京:南京信息工程大学,2020.
|
| [6] |
蒋永成,张晗昀,张伟,等.基于地基遥感资料的厦门市污染边界层特征分析[J].环境科学学报,2020,40 (2):450-458.
|
| [7] |
马舒庆,高玉春,张雪芬,等.发展中的地基大气廓线探测[J].气象科技进展,2016,6 (3):83-88.
|
|
|
|