Page 62 - 《高原气象》2026年第1期
P. 62

高     原      气     象                                 45 卷
              58
                 tion  of  surface  sensible  heating  over  the  central-eastern  Tibetan   Wang Z Q, Yang S, Duan A M, et al, 2019b. Tibetan Plateau heating
                 Plateau and its relationship with spring rainfall in China[J]. Jour‐  as a driver of monsoon rainfall variability in Pakistan[J]. Climate
                 nal  of  Climate,  36(19):  6917-6936. DOI:  10. 1175/JCLI-D-  Dynamics, 52: 6121-6130. DOI: 10. 1007/s00382-018-4507-6.
                 22-0892. 1.                                    Wen  D  Y,  Yang  Y  L,  Cao  J,  2021. Interdecadal  variation  of  early
             Jia X J, Zhang C, Wu R G, et al, 2021. Influence of Tibetan Plateau   spring  rainfall  over  the  southeastern  edge  of  the Tibetan  Plateau
                 autumn snow cover on interannual variations in spring precipita‐  [J]. Journal  of  Geophysical  Research: Atmospheres,  126(1):
                 tion over southern China[J]. Climate Dynamics, 56: 767-782.  e2020JD033058. DOI: 10. 1029/2020JD033058.
                 DOI: 10. 1007/s00382-020-05497-8.              Wu G X, Duan A M, Liu Y M, et al, 2015. Tibetan Plateau climate
             Kajikawa Y, Wang B, 2012. Interdecadal change of the South China   dynamics: recent research progress and outlook[J]. National Sci‐
                 sea  summer  monsoon  onset[J]. Journal  of  Climate,  25(9):   ence Review, 2(1): 100-116. DOI: 10. 1093/nsr/nwu045.
                 3207-3218. DOI: 10. 1175/JCLI-D-11-00207. 1.   Wu G X, Zhang Y S, 1998. Tibetan plateau forcing and the timing of
             Kueh M T, Lin S C, 2010. A climatological study on the role of the   the monsoon onset over south Asia and the south china sea[J].
                 south  China  sea  monsoon  onset  in  the  development  of  the  East   Monthly  Weather  Review,  126(4):  913-927. DOI:  10. 1175/
                 Asian summer monsoon[J]. Theoretical and Applied Climatolo‐  1520-0493(1998)126<0913: TPFATT>2. 0. CO; 2.
                 gy, 99(1): 163-186. DOI: 10. 1007/s00704-009-0136-7.  Yanai M, Li C F, Song Z S, 1992. Seasonal heating of the tibetan pla‐
             Li Q, Zhang R H, 2012. Seasonal variation of climatological bypass‐  teau and its effects on the evolution of the Asian summer monsoon
                 ing flows around the Tibetan Plateau[J]. Advances in Atmospher‐  [J]. Journal  of  the  Meteorological  Society  of  Japan. Ser. II,  70
                 ic  Sciences,  29(5):  1100-1110. DOI:  10. 1007/s00376-012-  (1B): 319-351. DOI: 10. 2151/jmsj1965. 70. 1B_319.
                 1154-4.                                        Yang K, Guo X F, Wu B Y, 2011. Recent trends in surface sensible
             Liu Y M, Lu M M, Yang H J, et al, 2020. Land-atmosphere-ocean   heat flux on the Tibetan Plateau[J]. Science China Earth Scienc‐
                 coupling  associated  with  the Tibetan  Plateau  and  its  climate  im‐  es, 54(1): 19-28. DOI: 10. 1007/s11430-010-4036-6.
                 pacts[J]. National Science Review, 7(3): 534-552. DOI: 10.    Yang K, Wu H, Qin J, et al, 2014. Recent climate changes over the
                 1093/nsr/nwaa011.                                 Tibetan Plateau and their impacts on energy and water cycle: a re‐
             Qiu  J,  2008. China:  the  third  pole.[J]. Nature,  454(7203):  393-  view[J]. Global  and  Planetary  Change,  112:  79-91. DOI:
                 397. DOI: 10. 1038/454393a.                       10. 1016/j. gloplacha. 2013. 12. 001.
             Tian S F, Yasunari T, 1998. Climatological aspects and mechanism of   Yeh T C, 1982. Some aspects of the thermal influences of the Qinghai-
                 spring persistent rains over central China[J]. Journal of the Mete‐  Tibetan  Plateau  on  the  atmospheric  circulation[J]. Archives  for
                 orological  Society  of  Japan. Ser. II,  76(1):  57-71. DOI:  10.    Meteorology,  Geophysics,  and  Bioclimatology,  Series  A,  31
                 2151/jmsj1965. 76. 1_57.                         (3): 205-220. DOI: 10. 1007/BF02258032.
             Wan  R  J, Wu  G  X,  2007. Mechanism  of  the  spring  persistent  rains   You Y J, Jia X J, 2018. Interannual variations and prediction of spring
                 over southeastern China[J]. Science in China Series D: Earth Sci‐  precipitation  over  China[J]. Journal  of  Climate,  31(2):  655-
                 ences, 50(1): 130-144. DOI: 10. 1007/s11430-007-2069-2.  670. DOI: 10. 1175/JCLI-D-17-0233. 1.
             Wang H, Hu Z Y, Li D L, et al, 2019a. Estimation of the surface heat   Yu W,  Liu Y  M, Yang  X  Q,  et  al,  2021. Impact  of  North Atlantic
                 transfer coefficient over the east-central Tibetan Plateau using sat‐  SST and Tibetan Plateau forcing on seasonal transition of spring‐
                 ellite  remote  sensing  and  field  observation  data[J]. Theoretical   time south Asian monsoon circulation[J]. Climate Dynamics, 56
                 and  Applied  Climatology,  138(1):  169-183. DOI:  10. 1007/  (1): 559-579. DOI: 10. 1007/s00382-020-05491-0.
                 s00704-019-02815-x.                            Zhang H X, Li W P, Li W J, 2019. Influence of late springtime sur‐
             Wang H, Li D L, 2018. Decadal variability in summer precipitation   face sensible heat flux anomalies over the Tibetan and Iranian Pla‐
                 over Eastern China and its response to sensible heat over the Ti‐  teaus on the location of the south Asian high in early summer[J].
                 betan  Plateau  since  the  early  2000s[J]. International  Journal  of   Advances in Atmospheric Sciences, 36(1): 93-103. DOI: 10.
                 Climatology, 39(3): 1604-1617. DOI: 10. 1002/joc. 5903.  1007/s00376-018-7296-2.
             Wang H, Zhang J, Chen L, et al, 2022. Relationship between sum‐  Zhao  P,  Chen  L  X,  2001. Climatic  features  of  atmospheric  heat
                 mer extreme precipitation anomaly in central Asia and surface sen‐  source/sink  over  the  Qinghai-Xizang  Plateau  in  35  years  and  its
                 sible heat variation on the central-eastern Tibetan Plateau[J]. Cli‐  relation to rainfall in China[J]. Science in China Series D: Earth
                 mate Dynamics, 59(3): 685-700. DOI: 10. 1007/s00382-022-  Sciences, 44(9): 858-864. DOI: 10. 1007/BF02907098.
                 06148-w.                                       Zhu L H, Huang G, Fan G Z, et al, 2017. Evolution of surface sensi‐
             Wang J, Liu Y J, Song C Y, et al, 2022. Synergistic impacts of west‐  ble heat over the Tibetan Plateau under the recent global warming
                 erlies and monsoon on interdecadal variations of late spring pre‐  hiatus[J]. Advances  in Atmospheric  Sciences,  34(10):  1249-
                 cipitation  over  the  southeastern  extension  of  the Tibetan  Plateau  1262. DOI: 10. 1007/s00376-017-6298-9.
                [J]. International Journal of Climatology, 42(14): 7342-7361.  Zhu Z W, Wu J T, Huang H J, 2024. The influence of 10-30-day bo‐
                 DOI: 10. 1002/joc. 7648.                          real summer intraseasonal oscillation on the extended-range fore‐
   57   58   59   60   61   62   63   64   65   66   67