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1 期 刘成瀚等:长白山南部暴雨的环流前兆和复杂地形作用研究 161
参考文献(References): 水汽输送特征[J]. 气象与环境科学, 38(3): 13-18. DOI: 10.
16765/j. cnki. 1673-7148. 2015. 03. 002. Hu Y M, Zhai P M,
Gong D Y, Shi P J, Wang J A, 2004. Daily precipitation changes in Chen Y. 2015.“75∙8” persistent heavy precipitation event and the
the semi-arid region over northern China[J]. Journal of Arid Envi‐ characteristics of large-scale water vapor transport[J]. Meteoro‐
ronments, 59(4): 771-784. DOI: 10. 1016/j. jaridenv. 2004. logical and Environmental Sciences, 38 (3): 13-18. DOI: 10.
02. 006. 16765/j. cnki. 1673-7148. 2015. 03. 002
陈联寿, 孟智勇, 2001. 我国热带气旋研究十年进展[J]. 大气科 何博翰, 孙建奇, 于恩涛, 等, 2020. 大兴安岭和长白山地形影响东
学, 25(3): 420-432. DOI: 10. 3878/j. issn. 1006-9895. 2001. 北夏季降水的数值模拟研究[J]. 气候与环境研究, 25(3):
03. 11. Chen L S, Meng Z Y, 2001. An overview on tropical cy‐ 268-280. DOI: 10. 3878/j. issn. 1006-9585. 2020. 19189. He B
clone research progress in China during the past ten years[J]. Chi‐ H, Sun J Q, Yu E T, et al, 2020. Simulation study on the Influ‐
nese Journal of Atmospheric Sciences, 25(3): 420−432. DOI: ence of the great Khingan Strip and Changbai Mountain on sum‐
10. 3878/j. issn. 1006-9895. 2001. 03. 11. mer rainfall in Northeast China[J]. Climatic and Environmental
谌芸, 陈涛, 汪玲瑶, 等, 2019. 中国暖区暴雨的研究进展[J]. 暴雨 Research, 25(3): 268−280. DOI: 10. 3878/j. issn. 1006-9585.
灾害, 38(5): 483-493. DOI: 10. 3969/j. issn. 1004-9045. 2019. 2020. 19189.
05. 010. Chen Y, Chen T, Wang L Y, et al, 2019. A review of 金妍, 李国平, 2021. 爬流和绕流对山地突发性暴雨的影响[J]. 高原
the warm-sector rainstorm·s in China[J]. Torrential Rain and Di‐ 气象, 40(2): 314-323. DOI: 10. 7522/j. issn. 1000-0534. 2020.
sasters, 38(5): 483-493. DOI: 10. 3969/j. issn. 1004-9045. 00041. Jin Y, Li G P, 2021. Impact of flow around and flow over
2019. 05. 010. in sudden rainstorm on mountains[J]. Plateau Meteorology, 40
丁一汇, 2005. 高等天气学[M]. 北京: 气象出版社, 453-457. Ding (2): 314-323. DOI: 10. 7522/j. issn. 1000-0534. 2020. 00041.
Y H, 2005. Advanced synoptic meteorology[M]. Beijing: China 李崇皜, 郑萱凤, 赵魁义, 等, 1982. 松嫩平原的植被[J]. 地理科
Meteorological Press, 453-457. 学 , 2(2): 170-178. LI C H, Zheng X F, Zhao K Y, et al,
方浩, 乔云亭, 2019. 中国东部夏季极端降水时空分布及环流背景 1982. Vegetation of Songnen Plain[J]. Scientia Geographica Sini‐
[J]. 热带气象学报, 35(4): 517-527. DOI: 10. 16032/j. issn. ca, 2(2): 170-178.
1004-4965. 2019. 047. Fang H, Qiao Y T, 2019. Temporal and 李斐, 李建平, 李艳杰, 等, 2012. 青藏高原绕流和爬流的气候学特
spatial distribution of summer extreme precipitation and circula‐ 征[J]. 大气科学, 36(6): 1236-1252. DOI: 10. 3878/j. issn.
tion background over eastern China[J]. Journal of Tropical Mete‐ 1006-9895. 2012. 11214. Li F, Li J P, Li Y J, et al, 2012. Cli‐
orology, 35(4): 517−527. DOI: 10. 16032/j. issn. 1004-4965. matological characteristics of flow around and flow over the Tibet‐
2019. 047. an Plateau[J]. Chinese Journal of Atmospheric Sciences, 36(6):
付双喜, 张洪芬, 杨丽杰, 等, 2021. 地形影响下祁连山北麓不同类型 1236-1252. DOI: 10. 3878/j. issn. 1006-9895. 2012. 11214.
降水特征对比分析[J]. 干旱区研究, 38(5): 1226-1234. DOI: 李栋梁, 邵鹏程, 王慧, 等, 2013. 中国东亚副热带夏季风北边缘带
1226-1234. 10. 13866/j. azr. 2021. 05. 04. Fu S X, Zhang H F, 研究进展[J]. 高原气象, 32(1): 305-314. DOI: 10. 7522/j.
Yang L J, et al, 2021. Comparative analysis of different types of issn. 1000-0534. 2012. 00030. Li D L, Shao P C, Wang H, et
precipitation characteristics in the northern foot of Qilian Mountain al, 2013. The position variations of the north boundary of East
under the influence of topography[J]. Arid Zone Research, 38(5): Asian subtropical summer monsoon in 1951-2009[J]. Plateau
1226-1234. DOI: 1226-1234. 10. 13866/j. azr. 2021. 05. 04. Meteorology, 32(1): 305-314. DOI: 10. 7522/j. issn. 1000-
高守亭, 周玉淑, 冉令坤, 2018. 我国暴雨形成机理及预报方法研 0534. 2012. 00030.
究进展[J]. 大气科学, 42(4): 833-846. DOI: 10. 3878/j. issn. 刘成瀚, 王月, 阎琦, 等, 2023. 超低空急流形成的爬、 绕流对长白
1006-9895. 1802. 17277. Gao S T, Zhou Y S, Ran L K, 2018. A 山地区一次突发性暴雨的影响[J]. 暴雨灾害, 42(3): 273-
review on the formation mechanism·s and forecast methods for 282. DOI: 10. 12406/byzh. 2022-035. Liu C H, Wang Y, Yan
torrential rain in China[J]. Chinese Journal of Atmospheric Sci‐ Q, et al, 2023. Impact of flow over and flow around caused by
ences, 42 (4): 833-846, DOI: 10. 3878/j. issn. 1006-9895. super low-level jet on a sudden rainstorm over the Changbai
1802. 17277. Mountains[J]. Torrential Rain and Disasters, 42(3): 273-282.
黄刚, 周连童, 2004. 青藏高原西侧绕流风系的变化及其与东亚夏 DOI: 10. 12406/byzh. 2022-035.
季风和我国华北地区夏季降水的关系[J]. 气候与环境研究, 9 任丽, 孙磊, 张桂华, 等, 2019. 一次东北暖锋锋生暴雨的中尺度特
(2): 316-330. DOI: 10. 3969/j. issn. 1006-9585. 2004. 02. 008. 征分析及成因初探[J]. 暴雨灾害, 38(4): 311-319. DOI: 10.
Huang G, Zhou L T, 2004. The variability of the wind system cir‐ 3969/j. issn. 1004-9045. 2019. 04. 003. Ren L, Sun L, Zhang G
culating round the west side of the Tibetan Plateau and its relation H, et al, 2019. Preliminary analysis of mesoscale feature and
to the East Asian summer monsoon and summer rainfall in North causes for rainstorm caused by the warm front frontogenesis in
China[J]. Climatic and Environmental Research, 9(2): 316- Northeast China[J]. Torrential Rain and Disasters, 38(4): 311-
330. DOI: 10. 3969/j. issn. 1006-9585. 2004. 02. 008. 319. DOI: 10. 3969/j. issn. 1004-9045. 2019. 04. 003.
胡娅敏, 翟盘茂, 陈阳, 2015.“75·8”持续性强降水事件及其大尺度 孙力, 安刚, 高枞亭, 等, 2002. 1998年夏季嫩江和松花江流域东北

