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季凌潇, 鲍艳松, 温渊, 等. 2024. Aeolus水平径向风速产品资料同化在台风预报中的应用研究[J]. 大气科学, 48(3): 893−905. DOI: 10.3878/j.issn.1006-9895.2211.22049
引用本文: 季凌潇, 鲍艳松, 温渊, 等. 2024. Aeolus水平径向风速产品资料同化在台风预报中的应用研究[J]. 大气科学, 48(3): 893−905. DOI: 10.3878/j.issn.1006-9895.2211.22049
JI Lingxiao, BAO Yansong, WEN Yuan, et al. 2024. Application of Aeolus Horizontal Line-of-Sight Product Data Assimilation in Typhoon Forecasting [J]. Chinese Journal of Atmospheric Sciences (in Chinese), 48(3): 893−905. DOI: 10.3878/j.issn.1006-9895.2211.22049
Citation: JI Lingxiao, BAO Yansong, WEN Yuan, et al. 2024. Application of Aeolus Horizontal Line-of-Sight Product Data Assimilation in Typhoon Forecasting [J]. Chinese Journal of Atmospheric Sciences (in Chinese), 48(3): 893−905. DOI: 10.3878/j.issn.1006-9895.2211.22049

Aeolus水平径向风速产品资料同化在台风预报中的应用研究

Application of Aeolus Horizontal Line-of-Sight Product Data Assimilation in Typhoon Forecasting

  • 摘要: 为评价星载激光测风雷达产品资料同化对台风预报的影响,以2020年台风“黑格比”和2019年台风“利奇马”为例,选用Aeolus卫星的水平径向风速产品,开展星载激光测风雷达资料同化及其对台风预报影响研究。首先基于ERA5再分析资料对Aeolus产品进行统计检验和偏差订正,并统计各高度层观测背景差的均方差作为观测误差用于同化试验。然后通过WRFDA(Weather Research and Forecast Model Data Assimilation)模式同化Aeolus产品并利用WRF(Weather Research and Forecast Model)模式开展预报试验。试验结果表明,Aeolus产品精度较高,统计所得各层观测误差在3~5 m s−1范围且随高度的升高而增大,订正后资料满足三维变分同化无偏假设;在台风“黑格比”和“利奇马”期间同化该产品能使模式具备更加合理的环流形势,能够有效提高对台风“黑格比”和“利奇马”路径及强度的预报效果。

     

    Abstract: To evaluate the impact of spaceborne lidar product data assimilation on typhoon forecasts, this paper studied the assimilation of Aeolus horizontal line-of-sight data and its impact on typhoon forecasts for typhoon Hagupit occurred in 2020 and typhoon Lekima happened in 2019. First, we conducted a statistical test and deviation correction on Aeolus products and used the statistical root mean square error for each height layer as the observation error for the assimilation. Subsequently, Aeolus products were assimilated using the Weather Research and Forecast model data assimilation system (WRFDA), and the prediction test was conducted using the Weather Research and Forecast model (WRF). The experimental results show that Aeolus products are highly accurate, and the observation error for each layer after correction is in the range of 3–5 m/s, with the error increasing with altitude. The corrected data satisfy the unbiased assumption of three-dimensional variational assimilation. Assimilating Aeolus products during Typhoons Hagupit and Lekima can make the model show a more reasonable circulation pattern and effectively improve the typhoons’ track and intensity forecasts.

     

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