在 WRF 4D-Var 中通过全流体方案同化降水数据以进行与中国东北冷涡(NCCV)有关的对流降水预报

IF 3.8 2区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Sen Yang, Deqin Li, Yunxia Duan, Yongshen Chen, Zhiquan Liu, Xiang-Yu Huang
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引用次数: 0

摘要

利用气象研究与预报(WRF)模式中基于WRF单矩6级微物理方案(WSM6)的全水流星四维变分(4D-Var)同化方案对降水资料进行同化。重点研究了受东北冷涡影响的短期对流降水预报。设计了4个同化试验,比较了暖雨方案与全水成物方案的同化效果,并考察了同化逐时地面雨量计数据与同化多源综合降水产品的差异。对9例与NCCV有关的强对流降水进行了分析。结果表明,在全水成物4D-Var同化方案下,冰相水成物的初始分析结果令人满意。在WRF 4D-Var中,利用全水流星方案同化降水资料有效地调整了大气热力学性质,减少了模式自旋启动时间,从而改善了降水预报,特别是0-3 hr时段的降水预报。此外,同化雨量计资料或多源综合降水资料已被证明是提高天气预报准确性的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assimilating Precipitation Data via Full-Hydrometeor Scheme in WRF 4D-Var for Convective Precipitation Forecast Associated With the Northeast China Cold Vortex (NCCV)

The full-hydrometeor four-dimensional variational (4D-Var) assimilation scheme in the Weather Research and Forecasting (WRF) model, based on the WRF single-moment 6-class microphysics scheme (WSM6), is utilized to assimilate precipitation data. The focus is on short-term convective precipitation forecasts influenced by the Northeast China cold vortex (NCCV). Four assimilation experiments were designed to compare the warm rain scheme with the full-hydrometeor scheme, as well as to examine the differences between assimilating hourly surface rain gauge data and multi-source integrated precipitation products. Nine cases of intense convective precipitation related to NCCV were analyzed. The results demonstrate that the initial analysis of ice-phase hydrometeors was satisfactory across the three experiments utilizing the full-hydrometeor 4D-Var assimilation scheme. The assimilation of precipitation data using the full-hydrometeor scheme in WRF 4D-Var effectively adjusted atmospheric thermodynamic properties and decreased model spin-up time, leading to improved precipitation forecasts, especially for the 0–3 hr period. Furthermore, the assimilation of rain gauge data or multi-source integrated precipitation data has been demonstrated to be an effective approach for enhancing the accuracy of weather forecasts.

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来源期刊
Journal of Geophysical Research: Atmospheres
Journal of Geophysical Research: Atmospheres Earth and Planetary Sciences-Geophysics
CiteScore
7.30
自引率
11.40%
发文量
684
期刊介绍: JGR: Atmospheres publishes articles that advance and improve understanding of atmospheric properties and processes, including the interaction of the atmosphere with other components of the Earth system.
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