Page 69 - 2020臺灣極端氣候與天氣-事件回顧與分析
P. 69
Chen, J. M., P. H. Tan, C. F. Shih, and H. S. Chen, 2016: Largescale Processes Associated with Interdecadal and Interannual variability of Early-spring Rainfall in Taiwan, Terr. Atmos. Ocean. Sci., 27, 87-98, 2016. Chen, J., B., A. D. Del Genio, B. E. Carlson, and M. G. Bosilovich, 2008: The spatiotemporal structure of twentieth-century climate variations in observations and reanalyses. Part I: Long-term trend. J. Clim., 21, 2611–2633.0 Chen, T.-C., S.-P. Weng, N. Yamazaki, and S. Kiehne, 1998: Interannual Variation in the Tropical Cyclone Formation over the Western North Pacific. Mon. Wea. Rev., 126, 1080–1090. Cherchi, A., T. Ambrizzi, and S. Behera, 2018: The Response of Subtropical Highs to Climate Change. Curr Clim Change Rep., 4, 371–382. Chia, H. H., and C. F. Ropelewski, 2002: The Interannual Variability in the Genesis Location of Tropical Cyclones in the Northwest Pacific. J. Clim., 15, 2934–2944. Dong, K., 1988: El Nino and tropical cyclone frequency in the Australian region and the northwest Pacific. Aust. Meteor. Mag., 36, 219-225. Ding, Y. H, Y. Y. Liu, and Z. Z. Hu, 2021: The Record-breaking Meiyu in 2020 and Associated Atmospheric Circulation and Tropical SST Anomalies. Adv Atm Sci. 2021, 1-14. Du, Y., I. Yang, and S. P. Xie, 2011: Tropical Indian Ocean influence on Northwest Pacific tropical cyclones in summer following strong El Nino. J Clim., 24, 315–22. Duan, A, R. Sun, and J. He, 2017: Impact of surface sensible heating over the Tibetan Plateau on the western Pacific subtropical high: a land-air sea interaction perspective. Adv Atm Sci., 34, 157–168. He, C, T. Zhou, A. Lin, B. Wu, D. Gu, C. Li, et al., 2015: Enhanced or weakened western North Pacific subtropical high under global warming? Sci Rep., 5, 16771. Hsu, H.-H. and S.-M. Lin, 2007: Asymmetry of the Tripole Rainfall Pattern during the East Asian Summer., J. Climate., 20, 4443- 4458. Hsu, H.,-H., and X. Liu, 2003: Relationship between the Tibetan Plateau heating and East Asian Summer Monsoon Rainfall. Geophys. Res. Lett., 30, 2066. Kitoh, A., 2017: The Asia Monsoon and Its Future Change in Climate Models: A Review. J. Meteor. Soc. Japan, 95, 1, 7-33. Kosaka, Y., J. S. Chowdary, S. P. Xie, Y. M. Min, and J. Y. Lee, 2012: Limitations of seasonal predictability for summer climate over East Asia and the northwestern Pacific. J Clim., 25, 7574–7589. Lander, M. A., 1994: An Exploratory Analysis of the Relationship between Tropical Storm Formation in the Western North Pacific and ENSO. Mon. Wea. Rev., 122, 636–651. Lau, K.-M., 1992: East Asian Summer Monsoon Rainfall Variability and Climate Teleconnection., J. Meteor. Soc. Japan, 70, 211-241. Li, T., B. Wang, B. Wu, T. Zhou, C. P. Chang, and R. Zhang, 2017: Theories on formation of an anomalous anticyclone in western North Pacific during El Nino: a review. J Meteor Res., 31, 987– 1006. Lin, C.-C., Y.-J Liou, and S.-J. Huang, 2015: Impacts of two-type ENSO on rainfall over Taiwan., Adv. Meteorol., 658347, 1-7 Liu, K. S., and Johnny C. L. Chan, 2003: Climatological Characteristics and Seasonal Forecasting of Tropical Cyclones Making Landfall along the South China Coast. Bull. Amer. Meteor. Soc., 131, 1650-1662. Lyu K, Yu JY, Paek H., 2017: The influences of the Atlantic multidecadal oscillation on the mean strength of the North Pacific subtropical high during boreal winter. J. Clim., 30, 411-424. Matsumura, S. and Horinouchi, T., 2016: Pacific Ocean decadal forcing of long-term changes in the western Pacific subtropical high. Sci. Rep., 6, 37765. Nagata R, and T. Mikami, 2017: Changes in the relationship between summer rainfall over Japan and the North Pacific subtropical high, 1901-2000. Int. J. Climatol., 37, 3291–6. Sui, C. H., P. H. Chung, and T. Li, 2007: Interannual and interdecadal variability of the summertime western North Pacific subtropical high. Geophys. Res. Lett., 34, L11701. Tian, S.F. and T. Yasunari, 1992: Time and Space Structure of Interannual Variations in Summer Rainfall over China. J. Meteor. Soc. Japan, 70, 585-596. Wang, B, B. Q. Xiang, and J. Y. Lee, 2013: Subtropical high predictability establishes a promising way for monsoon and tropical storm predictions. Proc Nat Academy Sci., 110, 2718–2722. Weng B.H., K.-M. Lau and Y.K Xue, 1999: Multi-Scale Summer Rainfall Variability Over China and its Long-Term Link to Global Sea Surface Temperature Variability. J. Meteor. Soc. Japan, 77, 845- 857 Wu, G., and N.-C. Lau, 1992: A GCM Simulation of the Relationship between Tropical-Storm Formation and ENSO. Mon. Wea. Rev., 120, 958–977. Wu, M. C., W. L. Chang, and W. M. Leung, 2004: Impacts of El Niño–Southern Oscillation Events on Tropical Cyclone Landfalling Activity in the Western North Pacific. J. Clim., 17, 1419–1428. Wu, Y. C., J. L. Chu, and Y.-C. Yu, 2020: Climatology and the Interannual Variability of the High Temperature Extremes in Taiwan. Journal of Geophysical Research: Atmospheres, 125, e2019JD030992. Xie, S. P., K. Hu, J. Hafner, H. Tokinaga, Y. Du, G. Huang, and T. Sampe, 2009: Indian Ocean capacitor effect on Indo–western Pacific climate during the summer following El Niño. J. Clim., 22, 730–747. Yang, J., Q. Liu, S. P. Xie, Z. Liu, and L. Wu, 2007: Impact of the Indian Ocean SST basin mode on the Asian summer monsoon. Geo. Res. Letters, 34, L02708. Zhang, I, and T. Zhou, 2015: Drought over East Asia: a review. J Clim., 28, 3375–99. 參考文獻 69