36 Luo D H, Zhou W, Wei K. Dynamics of eddy-driven North Atlantic Oscillations in a localized shifting jet: Zonal structure and downstream blocking. Clim Dyn, 2010, 34: 73-100
[2]
37 Cui X D, Gao Y Q, Gong D Y, et al. Teleconnection between winter Arctic Oscillation and Southeast Asian summer monsoon in the pre-industry simulation of a coupled climate model. Atmos Oceanic Sci Lett, 2013, 6: 349-354
[3]
38 Furevik T, Bentsen M, Drange H, et al. Description and evaluation of the Bergen climate model: ARPEGE coupled with MICOM. Clim Dyn, 2003, 21: 27-51
[4]
39 Wang B, Wu R G, Fu X H. Pacific-east Asian teleconnection: How does ENSO affect east Asian climate? J Clim, 2000, 13: 1517-1536
[5]
40 Gong D Y, Yang J, Kim S J, et al. Spring Arctic Oscillation-East Asian summer monsoon connection through circulation changes over the western North Pacific. Clim Dyn, 2011, 37: 2199-2216
[6]
41 Chen S F, Yu B, Chen W. An interdecadal change in the influence of the spring Arctic Oscillation on the subsequent ENSO around the early 1970s. Clim Dyn, 2014, 44: 1109-1126
[7]
42 Nakamura T, Tachibana Y, Honda M, et al. Influence of the northern hemisphere annular mode on ENSO by modulating westerly wind bursts. Geophys Res Lett, 2007, 33: 197-200
[8]
43 Chen W, Lan X Q, Wang L, et al. The combined effects of the ENSO and the Arctic Oscillation on the winter climate anomalies in East Asia. Chin Sci Bull, 2013, 58: 1355-1362 [陈文, 兰晓青, 王林, 等. ENSO和北极涛动对东亚冬季气候异常的综合影响. 科学通报, 2013, 58: 634-
[9]
1 Tao S Y, Chen L X. A review of recent research on the East Asian summer monsoon in China. In: Chang C P, Krishramurti T N, eds. Monsoon Meteorology. Oxford: Oxford University Press, 1987. 60-92
[10]
2 Zhao Y P, Chen Y L. The seasional and inter-annual variability of the South China Sea warm pool and its relation to the South China Sea Monsoon onset (in Chinese). J Trop Meteorol, 2000, 16: 202-211 [赵永平, 陈永利. 南海暖池的季节和年际变化及其与南海季风爆发的关系. 热带气象学报, 2000, 16: 202-
[11]
3 Lai Z J, Peng S Q, Li Y N, et al. Relationship between summer monsoon outbreak and upper-ocean heat content anomalies over the South China Sea (in Chinese). J Trop Oceanogr, 2011, 30: 47-56 [赖志娟, 彭世球, 李毅能, 等. 南海夏季风爆发与南海热含量异常特征的相关分析. 热带海洋学报, 2011, 30: 47-
[12]
4 Jiang J, Qian Y F. Numerical experiments of impacts of sea surface temperature in South China Sea on South China Sea Monsoon (in Chinese). J Nanjing Univ, 2002, 38: 556-564 [江静, 钱永甫. 南海表面海温异常对南海季风影响的数值模拟. 南京大学学报, 2002, 38: 556-
[13]
5 Liang J Y, Yang S, Li C H, et al. Long-term changes in the South China Sea summer monsoon revealed by station observations of the Xisha Islands. J Geophys Res, 2007, 112: 104-115
[14]
6 Huang R H, Gu L, Zhou L T, et al. Impact of the thermal state of the tropical western Pacific on onset date and process of the South China Sea summer monsoon. Adv Atmos Sci, 2006, 23: 909-924
[15]
7 Zhang Y S, Li T, Wang B, et al. Onset of the summer monsoon over the Indochina Peninsula: Climatology and interannual variations. J Clim, 2002, 15: 3206-3221
[16]
8 Wu R G, Wang B. Interannual variability of summer monsoon onset over the western North Pacific and the underlying processes. J Clim, 2000, 13: 2483-2500
[17]
9 Wang B, Huang F, Wu Z W, et al. Multi-scale climate variability of the South China Sea monsoon: A review. Dyn Atmos Oceans, 2009, 47: 15-37
[18]
10 Chen Z S, Wen Z P, Wu R G, et al. Influence of two types of El Ni?os on the East Asian climate during boreal summer: A numerical study. Clim Dyn, 2013: 1-13
[19]
11 Yuan Y, Li C Y. Possible Impacts of the tropical Indian Ocean SST anomaly modes on the South China Sea Summer Monsoon onset (in Chinese). Chin J Atmos Sci, 2009, 33: 325-336 [袁媛, 李崇银. 热带印度洋海温异常不同模态对南海夏季风爆发的可能影响. 大气科学, 2009, 33: 325-
[20]
12 Zhou T J, Yu R C, Zhang J, et al. Why the western Pacific subtropical high has extended westward since the late 1970s. J Clim, 2009, 22: 2199-2215
[21]
13 Li C Y, Mu M Q. The dipole in the equatorial Indian Ocean and its impacts on climate (in Chinese). Chin J Atmos Sci, 2001, 25: 433-443 [李崇银, 穆明权. 赤道印度洋海温偶极子型振荡及其气候影响. 大气科学, 2001, 25: 433-
[22]
14 Xie A, Liu X, Ye Q. Equatorial vortex and the onset of summer monsoon over South China Sea (in Chinese). Acta Meteorol Sin, 1997, 55: 611-619 [谢安, 刘霞, Ye Q. 赤道涡旋与南海夏季风爆发. 气象学报, 1997, 55: 611-
[23]
15 Gao H, Xue F. Seasonal variation of the cross-equatorial flows and their influences on the onset of South China Sea Summer Monsoon. (in Chinese). Clim Environ Res, 2006, 11: 57-68 [高辉, 薛峰. 越赤道气流的季节变化及其对南海夏季风爆发的影响. 气候与环境研究, 2006, 11: 57-
[24]
16 Wu G X, Zhang Y S. Tibetan Plateau forcing and the timing of the monsoon onset over South Asia and the South China Sea. Mon Weather Rev, 1998, 126: 913-927
[25]
17 Qian Y F, Zhang Y, Huang Y Y, et al. The effects of the thermal anomalies over the Tibetan Plateau and its vicinities on climate variability in China. Adv Atmos Sci, 2004, 21: 369-381
[26]
18 Chen J, Sun S Q. Eastern Asian Winter Monsoon anomaly and variation of global circulation. Part I: A comparison study on strong and weak winter monsoon (in Chinese). Chin J Atmos Sci, 1999, 23: 101-111 [陈隽, 孙淑清. 东亚冬季风异常与全球大气环流变化. 大气科学, 1999, 23: 101-
[27]
19 Mao R, Gong D Y, Yang J, et al. Linkage between the Arctic Oscillation and winter extreme precipitation over central-southern China. Clim Res, 2012, 50: 187
[28]
20 Gong D Y, Gao Y Q, Guo D, et al. Interannual linkage between Arctic/North Atlantic Oscillation and tropical Indian Ocean precipitation during boreal winter. Clim Dyn, 2014, 42: 1007-1027
[29]
21 Hu M, Gong D Y, Mao R. Possible influence of February-April Arctic Oscillation on the ITCZ activity of Western-Central Pacific (in Chinese). J Trop Meteorol, 2013, 29: 55-65 [胡淼, 龚道溢, 毛睿. 2~4月北极涛动对中西太平洋ITCZ活动的可能影响. 热带气象学报, 2013, 29: 55-
[30]
22 Choi K S, Wu C C, Byun H R. Possible connection between summer tropical cyclone frequency and spring Arctic Oscillation over East Asia. Clim Dyn, 2012, 38: 2613-2629
[31]
23 Hu M, Gong D Y, Wang L, et al. Possible influence of January March Arctic Oscillation on the convection of tropical North Pacific and North Atlantic (in Chinese). Acta Meteorol Sin, 2012, 70: 479-491 [胡淼, 龚道溢, 王璐, 等. 1~3月AO对北半球热带太平洋和大西洋对流活动的可能影响. 气象学报, 2012, 70: 479-
[32]
24 Li C Y, Wang J T, Lin S Z, et al. The relationship between East Asian Summer Monsoon activity and northward jump of the upper westerly jet location (in Chinese). Chin J Atmos Sci, 2004, 28: 641-658 [李崇银, 王作台, 林士哲, 等. 东亚夏季风活动与东亚高空西风急流位置北跳关系的研究. 大气科学, 2004, 25: 641-
[33]
25 Wang B. The vertical structure and development of the ENSO anomaly mode during 1979-1989. J Atmos Sci, 1992, 49: 698-712
[34]
26 Baldwin M P, Dunkerton T J. Propagation of the Arctic Oscillation from the stratosphere to the troposphere. J Geophys Res, 1999, 104: 30937-30946
[35]
27 Thompson D W J, Wallace J M. Annular modes in the extratropical circulation. Part I: Month-to-month variability. J Clim, 2000, 13: 1000-1015
[36]
28 Gong D Y, Kim S J, Ho C H. Arctic and Antarctic Oscillation signatures in tropical coral proxies over the South China Sea. Ann Geophys, 2009, 27: 1979-1988
[37]
29 Gao M N, Yang J, Gong D Y, et al. Unstable relationship between spring Arctic Oscillation and East Asian summer monsoon. Int J Climatol, 2013, 34: 2522-2528
[38]
30 Jing Y, Gong D Y, Wang W S, et al. Extreme drought event of 2009/2010 over southwestern China. Meteorol Atmos Phys, 2012, 115: 173-174
[39]
31 Gong D Y, Wang S W, Zhu J H. East Asian winter monsoon and Arctic Oscillation. Geophys Res Lett, 2001, 28: 2073-2076
[40]
32 Chen L T. Effect of zonal difference of sea surface temperature anomalies in the Arabian Sea and the South China Sea on summer rainfall over the Yangtze River (in Chinese). Chin J Atmos Sci, 1991, 15: 33-42 [陈烈庭. 阿拉伯海-南海海温距平纬向差异对长江中下游降水的影响. 大气科学, 1991, 15: 33-
[41]
33 Branstator G. Circumglobal teleconnections, the jet stream waveguide, and the North Atlantic Oscillation. J Clim, 2002, 15: 1893-1910
[42]
34 Takaya K, Nakamura H. A formulation of a phase-independent wave-activity flux for stationary quasigeostrophic eddies on a zonally varying basic flow. J Atmos Sci, 2001, 58: 608-627
[43]
35 Gong D Y, Yang J, Kim S J, et al. Spring Arctic Oscillation-East Asian summer monsoon connection through circulation changes over the western North Pacific. Clim Dyn, 2011, 37: 2199-2216