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首页> 外文期刊>Theoretical and applied climatology >Impact of assimilation of INSAT-3D retrieved atmospheric motion vectors on short-range forecast of summer monsoon 2014 over the South Asian region
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Impact of assimilation of INSAT-3D retrieved atmospheric motion vectors on short-range forecast of summer monsoon 2014 over the South Asian region

机译:INSAT-3D检索到的大气运动矢量同化对南亚地区2014年夏季风的短期预报的影响

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摘要

The Weather Research and Forecasting (WRF) model and its three-dimensional variational data assimilation system are used in this study to assimilate the INSAT-3D, a recently launched Indian geostationary meteorological satellite derived from atmospheric motion vectors (AMVs) over the South Asian region during peak Indian summer monsoon month (i.e., July 2014). A total of four experiments were performed daily with and without assimilation of INSAT-3D-derived AMVs and the other AMVs available through Global Telecommunication System (GTS) for the entire month of July 2014. Before assimilating these newly derived INSAT-3D AMVs in the numerical model, a preliminary evaluation of these AMVs is performed with National Centers for Environmental Prediction (NCEP) final model analyses. The preliminary validation results show that root-mean-square vector difference (RMSVD) for INSAT-3D AMVs is similar to 3.95, 6.66, and 5.65 ms(-1) at low, mid, and high levels, respectively, and slightly more RMSVDs are noticed in GTS AMVs (similar to 4.0, 8.01, and 6.43 ms(-1) at low, mid, and high levels, respectively). The assimilation of AMVs has improved the WRF model of produced wind speed, temperature, and moisture analyses as well as subsequent model forecasts over the Indian Ocean, Arabian Sea, Australia, and South Africa. Slightly more improvements are noticed in the experiment where only the INSAT-3D AMVs are assimilated compared to the experiment where only GTS AMVs are assimilated. The results also show improvement in rainfall predictions over the Indian region after AMV assimilation. Overall, the assimilation of INSAT-3D AMVs improved the WRF model short-range predictions over the South Asian region as compared to control experiments.
机译:本研究使用天气研究和预报(WRF)模型及其三维变分数据同化系统来同化INSAT-3D,这是最近发射的印度对地静止气象卫星,是从南亚地区的大气运动矢量(AMV)得出的在印度夏季季风高峰月份(即2014年7月)。每天总共进行四个实验,不带INSAT-3D衍生的AMV和其他可通过全球电信系统(GTS)获得的AMV,在2014年7月的整个月中进行同化。数值模型中,对这些AMV的初步评估是通过国家环境预测中心(NCEP)的最终模型分析进行的。初步验证结果表明,INSAT-3D AMV的均方根矢量差(RMSVD)在低,中和高水平分别类似于3.95、6.66和5.65 ms(-1),而RMSVD略多在GTS AMV中被注意到(分别在低,中和高级别类似于4.0、8.01和6.43 ms(-1))。 AMV的同化改进了对风速,温度和湿度分析的WRF模型,以及对印度洋,阿拉伯海,澳大利亚和南非的后续模型预测。与仅吸收GTS AMV的实验相比,仅吸收INSAT-3D AMV的实验略有改善。结果还表明,AMV同化后印度地区的降雨预报有所改善。总体而言,与对照实验相比,INSAT-3D AMV的同化改善了南亚地区WRF模型的短期预测。

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  • 来源
    《Theoretical and applied climatology》 |2017年第4期|575-586|共12页
  • 作者单位

    ISRO, Atmospher & Ocean Sci Grp, Ctr Space Applicat, Ahmadabad 380015, Gujarat, India;

    ISRO, Atmospher & Ocean Sci Grp, Ctr Space Applicat, Ahmadabad 380015, Gujarat, India;

    ISRO, Atmospher & Ocean Sci Grp, Ctr Space Applicat, Ahmadabad 380015, Gujarat, India;

    ISRO, Atmospher & Ocean Sci Grp, Ctr Space Applicat, Ahmadabad 380015, Gujarat, India;

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