Page 36 - 《高原气象》2025年第5期
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                 of Climate, 30(23): 9607-9620.                    Mountain Research (4): 239-249.
             Trenberth K E, 1991. Climate diagnostics from global analyses conser‐  解承莹, 李敏姣, 张雪芹, 等, 2015. 青藏高原南缘关键区夏季水汽
                 vation  of  mass  in  ECMWF  analyses[J]. Journal  of  Climate,  4  输送特征及其与高原降水的关系[J]. 高原气象, 34(2): 327-
                (7): 707-722.                                      337. DOI:  10. 7522/j. issn. 1000-0534. 2014. 00034. Xie  C  Y,
             Wang Z Q, Duan A M, Yang S, et al, 2017. Atmospheric moisture   Li M J, Zhang X Q, et al, 2015. Moisture transport features in
                 budget and its regulation on the variability of summer precipita‐  summer and its rainfall effects over key region in southern margin
                 tion  over  the  Tibetan  Plateau[J]. Journal  of  Geophysical  Re‐  of  Qinghai-Xizang  Plateau[J]. Plateau  Meteorology,  34(2):
                 search: Atmospheres, 122(2): 614-630.             327-337. DOI: 10. 7522/j. issn. 1000-0534. 2014. 00034.
             Xu X D, Lu C G, Shi X H, et al, 2008. World water tower: an atmo‐  李生辰, 李栋梁, 赵平, 等, 2009. 青藏高原“三江源地区”雨季水汽
                 spheric perspective[J]. Geophysical Research Letters, 35(20):   输 送 特 征[J]. 气 象 学 报 , 67(4): 591-598. DOI: 10. 11676/
                 525-530.                                          qxxb2009. 059. Li S C, Li D L, Zhao P, et al, 2009. The climat‐
             Xu K P, Zhong L, Ma Y M, et al, 2020. A study on the water vapor   ic characteristics of vapor transportation in rainy season of the ori‐
                 transport trend and water vapor source of the Tibetan Plateau[J].  gin area of Three Rivers in Qinghai-Xizang Plateau[J]. Acta Me‐
                 Theoretical and Applied Climatology, 140(3/4): 1031-1042.  teorologica  Sinica,  67 (4) :  591-598. DOI:  10. 11676/
             Yan H R, Huang J P, He Y L, et al, 2020. Atmospheric water vapor   qxxb2009. 059.
                 budget and its long‐term trend over the Tibetan Plateau[J]. Jour‐  齐冬梅, 李跃清, 白莹莹, 等, 2009. 高原夏季风指数的定义及其特
                 nal  of  Geophysical  Research:  Atmospheres,  125,  e2020JD03  征分析[J]. 高原山地气象研究, 29(4): 1-9. DOI: 10. 3969/j.
                 3297.                                             issn. 1674-2184. 2009. 04. 001. Qi  D  M,  Li Y  Q,  Bai Y Y,  et
             Zhang G Q, Yao T D, Xie H J, et al, 2013. Increased mass over the   al,  2009. The  definition  of  plateau  summer  monsoon  index  and
                 Tibetan  Plateau:  from  lakes  or  glaciers?[J]. Geophysical  Re‐  analysis on its characteristics[J]. Plateau and Mountain in Meteo‐
                 search Letters, 40(10): 2125-2130.                rology Research, 29(4): 1-9. DOI: 10. 3969/j. issn. 1674-2184.
             Zhang S B, Meng L X, Zhao Y, et al, 2022. The influence of the Ti‐  2009. 04. 001.
                 betan  Plateau  monsoon  on  summer  precipitation  in  Central Asia  齐冬梅, 李跃清, 周长艳, 等, 2023. 1979-2016 年青藏高原水汽收
                [J]. Frontiers in Earth Science, 10: 771104        支的气候变化特征及其成因[J]. 冰川冻土, 45(03): 846-864.
             Zhao Y, Yu X J, Yao J Q, et al, 2019. The concurrent effects of the   DOI: 10. 7522/j. issn. 1000-0240. 2023. 0065. QI D M, LI Y Q,
                 South Asian monsoon and the plateau monsoon over the Tibetan   Zhou  C  Y,  et  al,  2023. Climate  variation  characteristics  and
                 Plateau on summer rainfall in the Tarim Basin of China[J]. Inter‐  causes  of  water  vapor  budget  over  the  Tibetan  Plateau  during
                 national Journal of Climatology, 39(1): 74-88.    1979-2016[J]. Journal of Glaciology and Geocryology, 45(03):
             Zhou J, Wen J, Wang X, et al, 2016. Analysis of the Qinghai-Xizang   846-864. DOI: 10. 7522/j. issn. 1000-0240. 2023. 0065.
                 Plateau monsoon evolution and its linkages with soil moisture[J].  齐玉磊, 冯松, 黄建平, 等, 2015. 高原夏季风对中东亚干旱半干旱
                 Remote sensing (Basel, Switzerland), 8(6): 493.   区夏季降水的影响[J]. 高原气象, 34(6): 1566-1574. DOI:
             陈亚玲, 文军, 刘蓉, 等, 2022. 江河源区水汽输送与收支的时空演                 10. 7522/j. issn. 1000-0534. 2014. 00088. Qi  Y  L,  Feng  S,
                 变特征分析[J]. 高原气象, 41(1): 167-176. DOI: 10. 7522/j.  Huang J P, et al, 2015. Influence of plateau summer monsoon on
                 issn. 1000-0534. 2021. 00049. Chen Y L, Wen J, Liu R, et al,   summer precipitation in the arid and semi-arid regions of the Cen‐
                 2022. Analysis on the temporal and spatial evolution characteris‐  tral and East Asia[J]. Plateau Meteorology, 34(6): 1566-1574.
                 tics of water vapor transport and budget over the source region of   DOI: 10. 7522/j. issn. 1000-0534. 2014. 00088.
                 the  Three-River[J]. Plateau  Meteorology,  41(1):  167-176.  任国强, 赵勇, 2022. 副热带西风急流与中亚夏季降水的关系[J].
                 DOI: 10. 7522/j. issn. 1000-0534. 2021. 00049.    高 原 气 象 ,  41(6):  1425-1434. DOI:  10. 7522/j. issn. 1000-
             程国栋, 赵林, 李韧, 等, 2019. 青藏高原多年冻土特征、 变化及影                0534. 2021. 00082. Ren  G  Q,  Zhao  Y,  2022. Relationship  be‐
                 响[J]. 科学通报, 64(27): 2783-2795. Cheng G D, Zhao L, Li   tween the subtropical westerly jet and summer rainfall over Cen‐
                 R, et al, 2019. Characteristic, changes and impacts of permafrost   tral Asia  from  1961  to  2016[J]. Plateau  Meteorology,  41(6):
                 on Qinghai-Tibet Plateau[J]. Chinese Science Bulletin, 64(27):   1425-1434. DOI: 10. 7522/j. issn. 1000-0534. 2021. 00082.
                 2783-2795.                                     施小英, 施晓晖, 2008. 夏季青藏高原东南部水汽收支气候特征及
             樊威伟, 胡泽勇, 荀学义, 等, 2021. 青藏高原季风演变及其气候效                 其影响[J]. 应用气象学报, 19(1): 41-46. DOI: 10. 3969/j.
                 应综述[J]. 高原气象, 40(6): 1294-1303. DOI: 10. 7522/j.  issn. 1001-7313. 2008. 01. 006. Shi X Y, Shi X H, 2008. Clima‐
                 issn. 1000-0534. 2020. zk013. Fan W W, Hu Z Y, Xun X Y, et   tological characteristics of summertime moisture budget over the
                 al,  2021. Review  of  Qinghai-Xizang  Plateau  monsoon’s  evolu‐  southeast part of Tibetan Plateau with their impacts[J]. Journal of
                 tion and climatic effects[J]. Plateau Meteorology, 40(6): 1294-  Applied Meteorological Science, 19(1): 41-46. DOI: 10. 3969/
                 1303. DOI: 10. 7522/j. issn. 1000-0534. 2020. zk013.  j. issn. 1001-7313. 2008. 01. 006.
             高登义, 邹捍, 王维, 1985. 雅鲁藏布江水汽通道对降水的影响[J].             汤懋苍, 1998. 青藏高原季风的形成、 演化及振荡特性[J]. 甘肃气
                 山地研究 (4): 239-249. Gao D Y, 1985. Influence of water va‐  象 (01). Tang M C, 1998. Formation, evolution and oscillation
                 por  pass  along  the  Yarlungzangbo  River  on  precipitation[J].  characteristics  of  the  monsoon  on  the  Qinghai-Tibetan  Plateau
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