|
|
Data analysis and research on groundbased remote sensing vertical observation system and sounding radar |
Li Jun1, Li Li1, Zhou Yunxiang1, Zhang Ming2, Chen Xing2, Sun Xiaoyun3, Rao Chuanxin2 |
1. Hubei Meteorological Information and Technical Support Center,Wuhan 430074; 2. Yichang Meteorological Bureau,Yichang 443000; 3. Anhui Institute of Meteorological Sciences,Hefei 230031 |
|
|
Abstract The ground-based remote sensing vertical observation system will construct multiple active and passive ground-based remote sensing detection devices on the same site,and use multi-device collaboration to achieve continuous observation of five atmospheric vertical profiles:temperature,humidity,wind,water condensation,and aerosols.Using the Yichang ground-based remote sensing vertical observation system and Yichang sounding radar data,a study was conducted on the comparison and error analysis of meteorological element data such as temperature,humidity,and wind field at multiple altitude levels ranging from 0 km to 10 km above the ground.Research has shown that vertical observation systems can significantly increase the time density of vertical observations and enhance the application capability of numerical forecasting in vertical observation data regions.Comparative analysis of the observation effects of vertical observation systems under different weather conditions provides a theoretical basis for equipment improvement and localized applications,as well as richer observation methods for short-term forecasting in the near future.
|
Received: 06 August 2024
|
|
|
|
|
[1] |
刘玉莲,任国玉,于宏敏,等.我国强降雪气候特征及其变化[J].应用气象学报,2013,24(3):304-313.
|
[2] |
王鹏,郭振华,张宁馨,等.山东冬季地面气象观测中的问题分析[J].农业与技术,2016,36(24):223.
|
[3] |
李力,彭军,蓝天飞,等.基于FPGA的三维闪电探测仪电路系统设计[J].吉林大学学报(理学版),2022,60(4):977-984.
|
[4] |
林群星.新型自动气象站低温降雪天气加密观测探析[J].安徽农学通报,2016,22(5):110-112.
|
[5] |
李力,蓝天飞,郭越凡,等.基于C++的三维闪电回击数据再处理系统设计[J].湖北大学学报(自然科学版),2024,46(2):289-296.
|
[6] |
张晋茹,杨莲梅.基于毫米波云雷达的伊犁河谷两次强降雪过程云特征观测分析[J].沙漠与绿洲气象,2019,13(5):41-48.
|
[7] |
刘亚男,王洪祥.降水天气现象仪对一次降雪过程观测分析[J].科学技术创新,2021(24):79-80.
|
[8] |
尹佳莉,常晨,李林,等.北京一次降雪过程雨滴谱仪的现象识别[J].气象水文海洋仪器,2018,35(3):16-19.
|
[9] |
李力,饶传新,周云祥,等.地基遥感垂直观测系统数据质量评估与产品融合分析[J].湖北大学学报(自然科学版),2024,46(6):872-885.
|
[10] |
李力,李俊,陈星,等.三维雷电探测数据接收处理软件设计与实现[J].吉林大学学报(信息科学版),2022,40(2):260-268.
|
[11] |
荆浩,于波,张琳娜,等.北京及周边地区冬季降水相态的判别指标研究[J].气象,2022,48(6):746-759.
|
[12] |
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.
|
[13] |
毛宇清,李力,姜有山,等.一次春季雨雪天气的降水相态演变特征分析[J].暴雨灾害,2022,41(3):290-297.
|
[14] |
王志诚,张雪芬,茆佳佳,等.地基遥感大气温湿风垂直廓线观测方法综述[J].气象水文海洋仪器,2018,35(2):109-116.
|
[15] |
李力,陈城,周云祥,等.宜昌地基遥感垂直观测系统探测精度分析研究[J].华中师范大学学报(自然科学版),2024,58(5):589-598.
|
[16] |
胡树贞,陶法,张雪芬,等.基于毫米波云雷达的融化层亮带识别算法研究[J].气象水文海洋仪器,2020,37(3):1-5.
|
[17] |
李力,周峰,陈星,等.基于ArcGIS的三维闪电数据图形显示系统[J].吉林大学学报(信息科学版),2023,41(2):338-345.
|
[18] |
张雪芬,王志诚,茆佳佳,等.微波辐射计温湿廓线反演方法改进试验[J].应用气象学报,2020,31(4):385-396.
|
|
|
|