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issn. 1000-0534. 2022. 00045. different elevations over the Qinghai-Tibetan Plateau and attribu‐
魏凤英, 2022. 现代气候统计诊断与预测技术(第 3 版)[M]. 北京: tion analysis[J]. Plateau Meteorology, 37(5): 1161-1176. DOI:
气象出版社 . Wei F Y, 2022. Statistical diagnosis and prediction 10. 7522/j. issn. 1000-0534. 2018. 00027.
technology of the climate (Ⅲ)[M]. Beijing: China Meteorologi‐ 张璐, 王慧, 石兴东, 等, 2020. 青藏高原中东部地表感热趋势转折
cal Press. 特征及成因分析[J]. 高原气象, 39(5): 912-924. DOI: 10.
吴国雄, 刘屹岷, 何编, 等, 2018. 青藏高原感热气泵影响亚洲夏季 7522/j. issn. 1000-0534. 2020. 00050. Zhang L, Wang H, Shi X
风的机制[J]. 大气科学, 42(3): 488-504. DOI: 10. 3878/j. D, et al, 2020. Characteristics and causes of surface sensible heat
issn. 1006-9895. 1801. 17279. Wu G X, Liu Y M, He B, et al, trend transition in central and Eastern Qinghai-Xizang Plateau[J].
2018. Review of the impact of the Tibetan Plateau sensible heat Plateau Meteorology, 39(5): 912-924. DOI: 10. 7522/j. issn.
driven air-pump on the Asian summer monsoon[J]. Chinese Jour‐ 1000-0534. 2020. 00050.
nal of Atmospheric Sciences, 42 (3): 488-504. DOI: 10. 3878/ 张永莉, 左洪超, 高晓清, 等, 2023. 冬半年青藏高原绕流与中国降
j. issn. 1006-9895. 1801. 17279. 水和气温的关系[J]. 高原气象, 42(3): 529-542. DOI: 10.
徐国昌, 李栋梁, 陈丽萍, 1990. 青藏高原地面加热场强度的气候 7522/j. issn. 1000-0534. 2023. 00018. Zhang Y L, Zuo H C,
特征[J]. 高原气象, 9(1): 32-43. Xu G C, Li D L, Chen L P, Gao X Q, et al, 2023. The Relationship between the Flow
1990. The climatic characteristics of surface heating fields over Around the Qinghai-Xizang Plateau and the Precipitation and
the Qinghai-Xizang Plateau[J]. Plateau Meteorology, 9(1): Temperature in China in Winter Half-year[J]. Plateau Meteorolo‐
32-43. gy, 42(3): 529-542. DOI: 10. 7522/j. issn. 1000-0534. 2023.
叶笃正, 高由禧, 1979. 青藏高原气象学[M]. 北京: 科学出版社 . 00018.
Ye D Z, Gao Y X, 1979. Meteorology of the Qinghai-Tibet Pla‐ 周连童, 黄荣辉, 2008. 中国西北干旱、 半干旱区感热的年代际变
teau[M]. Beijing: Science Press. 化特征及其与中国夏季降水的关系[J]. 大气科学, 32(6):
叶笃正, 罗四维, 朱抱真, 1957. 西藏高原及其附近的流场结构和 1276-1288. DOI: 10. 3878/j. issn. 1006-9895. 2008. 06. 04.
对流层大气的热量平衡[J]. 气象学报, 28(2): 108-121. Yeh T Zhou L T, Huang R H, 2008. Interdecadal variability of sensible
C, Luo S W, Chu P C, 1957. The wind structure and heat bal‐ heat in arid and semi-arid regions of Northwest China and its rela‐
ance in the lower troposphere over Tibetan Plateau and its sur‐ tion to summer precipitation in China[J]. Chinese Journal of At‐
roundings[J]. Acta Meteorological Sinica, 28(2): 108-121. mospheric Sciences, 32(6): 1276-1288. DOI: 10. 3878/j. issn.
于威, 刘屹岷, 杨修群, 等, 2018. 青藏高原不同海拔地表感热的年 1006-9895. 2008. 06. 04.
际和年代际变化特征及其成因分析[J]. 高原气象, 37(5): 朱乾根, 林锦瑞, 寿绍文, 等, 2007. 天气学原理和方法(第 4 版)
1161-1176. DOI: 10. 7522/j. issn. 1000-0534. 2018. 00027. Yu [M]. 北京: 气象出版社 . Zhu Q G, Lin J R, Shou S W, et al,
W, Liu Y M, Yang X Q, et al, 2018. The interannual and 2007. Synoptic principles and methods (Ⅳ)[M]. Beijing: China
decadal variation characteristics of the surface sensible heating at Meteorological Press.

