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                 mawari-8 radiance data on the prediction of a severe storm over   DOI:  10. 3969/j. issn. 1004-9045. 2016. 04. 008. Wang  Y  H,
                 Sichuan-Chongqing  Region[J]. Plateau  Meteorology,  42(6):   Chen C J, Zhao Y C, et al, 2016. Statistics and comparative exper‐
                 1478-1491. DOI: 10. 7522j. issn. 1000-0534. 2022. 00112.  iments for summer background error covariance in 3DVAR of cen‐
             马旭林, 薛纪善, 陆维松, 2008. GRAPES全球集合预报的集合卡尔                tral  China  regional  model[J]. Torrential  Rain  and  Disasters,  35
                 曼变换初始扰动方案初步研究[J]. 气象学报, 66(4): 526-              (4): 359-370. DOI: 10. 3969/j. issn. 1004-9045. 2016. 04. 008.
                 536. DOI:  10. 11676/qxxb2008. 050. Ma  X  L,  Xue  J  S,  Lu W   王叶红, 赵玉春, 2018. 不同背景场误差样本模拟方案对数值预报
                 S, 2008. Preliminary study on ensemble transforms Kalman filter-  的影响——以“苏迪罗”台风为例[J]. 气象与环境学报, 34
                 based  initial  perturbation  scheme  in  GRAPES  global  ensemble   (6): 11-23. Wang Y H, Zhao Y C, 2018. Impacts of different
                 prediction[J]. Acta  Meteorologica  Sinica,  66(4):  526-536.  background error samples simulation schemes on numerical fore‐
                 DOI: 10. 11676/qxxb2008. 050.                     cast-taking typhoon "Soudelor" as an example[J]. Journal of Me‐
             邱崇践, 2001. 变分同化中使用背景场时尺度匹配的数值研究[J].                   teorology and Environment, 34(6): 11-23.
                 大气科学, 25(1): 103-110. DOI: 10. 3878/j. issn. 1006-9895.    薛建军, 贾朋群, 肖子牛, 2022. 集合、 同化思想在大气科学中的渗
                 2001. 01. 10. Qiu C J, 2001. Matching scales of the retrieved vari‐  透[J]. 气象科技进展, 12(6): 64-72. DOI: 10. 3969/j. issn.
                 ables with background scale in variational assimilation: a numeri‐  2095-1973. 2022. 06. 007. Xue J J, Jia P Q, Xiao Z N, 2022.
                 cal study[J]. Chinese Journal of Atmospheric Sciences, 25(1):   Application and progress of ensemble and assimilation for the at‐
                 103-110. DOI: 10. 3878/j. issn. 1006-9895. 2001. 01. 10.  mospheric  science[J]. Advances  in  Meteorological  Science  and
             王元兵, 陈耀登, 闵锦忠, 等, 2016. ETKF协方差膨胀方案对 WRF‐             Technology, 12(6): 64-72. DOI: 10. 3969/j. issn. 2095-1973.
                 DA 混合同化及预报的影响[J]. 高原气象, 35(2): 397-405.           2022. 06. 007.
                 DOI:  10. 7522/j. issn. 1000-0534. 2014. 00147. Wang  Y  B,   张明阳, 张立凤, 张斌, 等, 2015. 集合变分混合同化背景误差协方
                 Chen Y D, Min J Z, et al, 2016. Impact of different covariance   差流依赖性分析[J]. 气象科学, 35(6): 728-736. DOI: 10.
                 inflation  schemes  of  ETKF  on WRFDA  hybrid  assimilation  and   3969/2015jms. 0069. Zhang M Y, Zhang L F, Zhang B, et al,
                 forecast[J]. Plateau  Meteorology,  35(2):  397-405. DOI:  10.  2015. Flow-dependent characteristics of background error covari‐
                 7522/j. issn. 1000-0534. 2014. 00147.             ance in hybrid variational-ensemble data assimilation[J]. Journal
             王叶红, 陈超君, 赵玉春, 等, 2016. 华中区域模式三维变分中夏季背                of the Meteorological Sciences, 35(6): 728-736. DOI: 10. 3969/
                 景误差协方差统计与对比试验[J]. 暴雨灾害, 35(4): 359-370.           2015jms. 0069.
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