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3 期 王智敏等:基于GPM观测的山谷风对伊犁河谷地形降水的影响研究 731
Sichuan Basin[J]. Plateau Meteorology, 43(1): 28-41. DOI: 的影响[J]. 中国环境科学, 42(1): 61-67. DOI: 10. 19674/j.
10. 7522/j. issn. 1000-0534. 2023. 00033. cnki. issn1000-6923. 20210824. 004. Wu J, Li C, Ma Z Q, et
沈程锋, 李国平, 2022. 基于 GPM 资料的四川盆地及周边地区夏季 al, 2022. The impact of valley winds on PM_(2. 5) concentration
地形降水垂直结构研究[J]. 高原气象, 41(6): 1532-1543. in the Yanqing region[J]. Chinese Environmental Science, 42(1):
DOI: 10. 7522/j. issn. 1000-0534. 2021. 0116. Shen C F, Li G 61-67. DOI: 10. 19674/j. cnki. issn1000-6923. 20210824. 004.
P, 2022. Study on the vertical structure of summer topographic 乌日柴胡, 王建捷, 孙靖, 等, 2019. 北京山区与平原冬季近地面风
precipitation in Sichuan Basin and surrounding areas based on 的精细观测特征[J]. 气象学报, 77(6): 1107-1123. DOI: 10.
GPM data[J]. Plateau Meteorology, 41(6): 1532-1543. DOI: 11676/qxxb2019. 059. Wu R C H, Wang J J, Sun J, et al, 2019.
10. 7522/j. issn. 1000-0534. 2021. 0116. Fine observation characteristics of near-surface winds in winter in
王思懿, 隆霄, 李超, 等, 2022. 祁连山夏季两类地形降水过程的环 the mountainous and plain areas of Beijing[J]. Acta Meteorologi‐
流特征及成因分析[J]. 高原气象, 41(3): 593-603. DOI: 10. ca Sinica, 77(6): 1107-1123. DOI: 10. 11676/qxxb2019. 059.
7522/j. issn. 1000-0534. 2021. 00102. Wang S Y, Long X, Li 李嗣源, 郭学良, 唐洁, 等, 2023. 青藏高原东南局地山谷风环流在
C, et al, 2022. Circulation characteristics and genesis analysis of 一次地形云和降水形成中的作用[J]. 大气科学, 47(5): 1576-
precipitation processes in two types of terrain in the Qilian Moun‐ 1592. DOI: 10. 3878/j. issn. 1006-9895. 2202. 21257. Li S Y,
tains in summer[J]. Plateau Meteorology, 41(3): 593-603. Guo X L, Tang J, et al, 2023. The role of local valley wind circu‐
DOI: 10. 7522/j. issn. 1000-0534. 2021. 00102. lation in the formation of primary topographic clouds and precipi‐
王倩倩, 权建农, 程志刚, 等, 2022. 2019 年冬季北京海陀山局地 tation in the southeast of the Qinghai-Tibet Plateau[J]. Chinese
环流特征及机理分析[J]. 气象学报, 80(1): 93-107. DOI: Journal of Atmospheric Sciences, 47(5): 1576-1592. DOI: 10.
10. 11676/qxxb2022. 005. Wang Q Q, Quan J N, Cheng Z G, et 3878/j. issn. 1006-9895. 2202. 21257.
al, 2022. Analysis of local circulation characteristics and mecha‐ 钟水新, 2020. 地形对降水的影响机理及预报方法研究进展[J]. 高
nisms of Mount Haituo in Beijing during the Winter of 2019[J]. 原 气 象 , 39(5): 1122-1132. DOI: 10. 7522/j. issn. 1000-
Acta Meteorologica Sinica, 80 (1): 93-107. DOI: 10. 11676/ 0534. 2019. 00083. Zhong S X, 2020. Research progress on the
qxxb2022. 005. influence mechanism and forecasting method of topography on
魏栋, 刘丽伟, 田文寿, 等, 2021. 基于卫星资料的西北地区高原涡 precipitation[J]. Plateau Meteorology, 39(5): 1122-1132. DOI:
强降水分析[J]. 高原气象, 40(4): 829-839. DOI: 10. 7522/j. 10. 7522/j. issn. 1000-0534. 2019. 00083.
issn. 1000-0534. 2021. 000021. Wei D, Liu L W, Tian W S, et 郑祚芳, 任国玉, 高华, 2018. 北京地区局地环流观测分析[J]. 气象,
al, 2021. Analysis of plateau vortex heavy precipitation in North‐ 44(3): 425-433. DOI: 10. 7519/j. issn. 1000-0526. 2018. 03.
west China based on satellite data[J]. Plateau Meteorology, 40 009. Zheng Z F, Ren G Y, Gao H, 2018. Observation and analy‐
(4): 829-839. DOI: 10. 7522/j. issn. 1000-0534. 2021. 000021. sis of local circulation in Beijing[J]. Meteorology Monthly, 44
吴进, 李琛, 马志强, 等, 2022. 延庆地区山谷风对 PM_(2. 5)浓度 (3): 425-433. DOI: 10. 7519/j. issn. 1000-0526. 2018. 03. 009.