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                 satellite observations[J]. Geophysical Research Letters, 50(5):   物理过程和起放电过程影响的数值模拟研究[J]. 高原气象, 43
                 e2022GL102089. DOI:10. 1029/2022GL102089.        (1): 199-216. DOI: 10. 7522/j. issn. 1000-0534. 2023. 00026.
             Zhang C X, Zhang Q H, Wang Y Q, 2008. Climatology of hail in Chi‐  Lu X, Guo F X, Wu Z Y, et al, 2024. Numerical simulation re‐
                 na: 1961-2005[J]. Journal of Applied Meteorology and Climatol‐  search on the effect of hail suppression by agi seeding on micro‐
                 ogy, 47(3): 795-804. DOI:10. 1175/2007JAMC1603. 1.  physical process and the charge and discharge of hail cloud[J].
             陈伟明, 张司琪, 2021. 福建省一次典型的冰雹大风强对流过程分                    Plateau  Meteorology,  43(1):  199-216. DOI:  10. 7522/j. issn.
                 析[J]. 海峡科学, (8): 3-8. DOI: 10. 3969/j. issn. 1673-8683.    1000-0534. 2023. 00026.
                 2021. 08. 002. Chen W M, Zhang S W, 2021. Analysis of a typi‐  马荣君, 李潇斐, 毛彦霖, 等, 2022. 陕西省冰雹气候变化特征及其
                 cal severe convective process with hail and strong winds in Fujian   关键影响因素分析[J]. 干旱区研究, 39(3): 767-773. DOI:
                 province[J]. Strait  Science, (8):  3-8. DOI:  10. 3969/j. issn.    10. 13866/j. azr. 2022. 03. 10. Ma R J, Li X F, Mao Y L, et al,
                 1673-8683. 2021. 08. 002.                         2022. Characteristics and causes of climate change in hail in oc‐
             樊明月, 牛生杰, 雷恒池, 等, 2008. 初始扰动对积云发生发展影响                 currence Shaanxi Province[J]. Arid Zone Research, 39(3): 767-
                 的数值模拟[J]. 气候与环境研究, 13(3): 238-252. DOI: 10.       773. DOI: 10. 13866/j. azr. 2022. 03. 10.
                 3878/j. issn. 1006-9585. 2008. 03. 02. Fan M Y, Niu S J, Lei H   濮文耀, 李红斌, 宋煜, 等, 2015. 0 ℃层高度的变化对冰雹融化影
                 C, et al, 2008. Numerical study on the effects of the initial pertur‐  响的分析和应用[J]. 气象, 41(8): 80-985. DOI: 10. 7519/j.
                 bation  on  the  occurrence  and  development  of  convective  cloud  issn. 1000-0526. 2015. 08. 007. Pu W Y, Li H B, Song Y, et al,
                [J]. Climatic  and  Environmental  Research,  13(3):  238-252.  2015. Analysis and application of the effect of 0 ℃ Layer Height
                 DOI: 10. 3878/j. issn. 1006-9585. 2008. 03. 02.   on melting hail[J]. Meteorological Monthly, 41(8): 980-985.
             郭凤霞, 张义军, 言穆弘, 2010. 雷暴云首次放电前两种非感应起                   DOI: 10. 7519/j. issn. 1000-0526. 2015. 08. 007.
                 电参数化方案的比较[J]. 大气科学, 34(2): 361-373. DOI:       孙安平, 言穆弘, 张义军, 等, 2002a. 三维强风暴动力-电耦合数值
                 10. 3878/j. issn. 1006-9895. 2010. 02. 10. Guo F X, Zhang Y J,   模拟研究Ⅰ: 模式及其电过程参数化方案[J]. 气象学报, 60
                 Yan  M  H,  et  al,  2010. Comparison  of  two  parameterization   (6): 722-731. DOI: 10. 11676/qxxb2002. 086. Sun A P, Yan M
                 schemes for noninductive mechanism before the first discharge in   H,  ZhangY  J,  et  al,  2002a. Numerical  study  of  thunderstorm
                 a simulated single cell storm[J]. Chinese Journal of Atmospheric   electrification with a Three-dimensional dynamics and electrifica‐
                 Sciences, 34(2): 361-373. DOI: 10. 3878/j. issn. 1006-9895.  tion Coupled ModelⅠ: Model description and parameterization of
                 2010. 02. 10.                                     electrical processes[J]. Acta Meteorologica Sinica, 60(6): 722-
             孔凡铀, 黄美元, 徐华英, 1990. 对流云中冰相过程的三维数值模                   731. DOI: 10. 11676/qxxb2002. 086.
                 拟-Ⅰ: 模式建立及冷云参数化[J]. 大气科学, 14(4): 441-453.      孙安平, 言穆弘, 张义军, 等, 2002b. 三维强风暴动力-电耦合数值
                 DOI:  10. 3878/j. issn. 1006-9895. 1990. 04. 07. Kong  F  Y,   模拟研究 II: 电结构形成机制[J]. 气象学报, 60(6): 732-739.
                 Huang M Y, Xu H Y, 1990. Three dimensional numerical simu‐  DOI: 10. 11676/qxxb2002. 087. Sun A P, Yan M H, ZhangY J,
                 lation of ice processes in convective clouds. Ⅰ: Model establish‐  et al, 2002b. Numerical study of thunderstorm electrification with
                 ment and cold cloud parameterization[J]. Chinese Journal of At‐  a Three-dimensional dynamics and electrification Coupled Model
                 mospheric  Sciences,  14(4):  441-453. DOI:  10. 3878/j. issn.  II: Mechanism of electrical structure[J]. Acta Meteorologica Si‐
                 1006-9895. 1990. 04. 07.                          nica, 60(6): 732-739. DOI: 10. 11676/qxxb2002. 087.
             孔凡铀, 黄美元, 徐华英, 1991. 对流云中冰相过程的三维数值模                孙学金, 宫福久, 李子华, 1998. 初始扰动对冰雹云发展影响的数
                 拟Ⅱ: 繁生过程作用[J]. 大气科学, 15(6): 78-88. DOI: 10.       值研究[J]. 气象科学, 18(2): 113-120. Sun X J, Gong F J, Li
                 3878/j. issn. 1006-9895. 1991. 06. 09. Kong  F Y,  Huang  M Y,   Z H, 1998. Numerical study on the influence of initial disturbanc‐
                 Xu  H  Y,  1991. Three-dimensional  numerical  simulation  of  ice   es on the development of hail clouds[J]. Journal of the Meteoro‐
                 phase microphysics in cumulus clouds, Part II: Effects of multi‐  logical Sciences, 18(2): 113-120.
                 plication processes[J]. Chinese Journal of Atmospheric Sciences,   汤兴芝, 俞小鼎, 姚瑶, 等, 2023. 华东一次极端冰雹天气过程雷达
                 15(6): 78-88. DOI: 10. 3878/j. issn. 1006-9895. 1991.  06. 09.  回波特征的比较分析[J]. 高原气象, 42(4): 1078-1092. DOI:
             孔凡铀, 1992. 低层环境风场对积云模拟的作用[J]. 应用气象学                   10. 7522/j. issn. 1000-0534. 2022. 00066. Tang  X  Z,  Yu  X  D,
                 报, 3(1): 20-31. Kong F Y, 1992. The effects of ambient wind   Yao Y, et al, 2023. Comparative analysis of radar echo character‐
                 on simulating convective clouds[J]. Journal of Applied Meteoro‐  istics of an extreme hail storm process in East China[J]. Plateau
                 logical Science, 3(1): 20-31.                     Meteorology, 42(4): 1078-1092. DOI: 10. 7522/j. issn. 1000-
             刘晓莉, 袁超宇, 桑建人, 等, 2020. 中国半干旱地区成雹机制的数                 0534. 2022. 00066.
                 值研究[J]. 大气科学学报, 43(3): 537-546. DOI: 10. 13878/j.  万红莲, 宋海龙, 朱婵婵, 等, 2017. 陕西地区 1368-2013 年冰雹灾
                 cnki. dqkxxb. 20191031001. Liu X L, Yuan C Y, Sang J R, et   害时空分布特征研究[J]. 干旱区资源与环境, 31(2): 123-
                 al, 2020. Study on hail formation mechanism in semi-arid area of   127. DOI: 10. 13448/j. cnki. jalre. 2017. 055.  Wan H L, Song H
                 China[J]. Transactions of Atmospheric Sciences, 43(3): 537-  L, Zhu C C, et al, 2017. Analysis of hail disasters and its spatial
                 546. DOI: 10. 13878/j. cnki. dqkxxb. 20191031001.  and  temporal  distribution  characteristics  in  Shaanxi  region  from
             鲁鲜, 郭凤霞, 吴泽怡, 等, 2024. 播撒碘化银人工消雹对冰雹云微                 1368  to  2013[J]. Journal  of Arid  Land  Resources  and  Environ‐
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