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全球变暖背景下西北太平洋冬季热带气旋的活动
作者姓名:HE Jie-Lin  GUAN Zhao-Yong  QIAN Dai-Li  WAN Qi-Lin  WANG Li-Juan
作者单位:南京信息工程大学,,,,
基金项目:Acknowledgements. We are very thankful to two anonymous reviewers lbr their helpful comments. This work is jointly supported by the National Basic Research Program of China (973 Program) (2009CB421505) and the National Key Technology R&D Program in the 11th Five-year Plan of China (2006BAC02B01). All figures in the present article are plotted using the software Grads.
摘    要:Using tropical cyclone (TC) observations over a 58-yr period (1949-2006) from the China Meteorological Administration, the 40-year ECMWF Reanalysis (ERA-40), NCEP-NCAR reanalysis, and the Hadley Centre sea ice and sea surface temperature (HadISST) datasets, the authors have examined the behaviors of tropical cyclones (TCs) in the western north Pacific (WNP) in boreal winter (November-December-January-February). The results demonstrate that the occurrences of wintertime TCs, including super typhoons, have decreased over the 58 years. More TCs are found to move westward than northeastward, and the annual total number of parabolic-track-type TCs is found to be decreasing. It is shown that negative sea surface temperature anomalies (SSTAs) related to La Nifia events in the equatorial central Pacific facilitate more TC genesis in the WNP region. Large-scale anomalous cyclonic circulations in the tropical WNP in the lower troposphere are observed to be favorable for cyclogenesis in this area. On the contrary, the positive SSTAs and anomalous anticyclonic circulations that related to E1 Nifio events responsible for fewer TC genesis. Under the background of global warming, the western Pacific subtropical high tends to intensify and to expand more westward in the WNP, and the SSTAs display an increasing trend in the equatorial eastern-central Pacific. These climate trends of both atmospheric circulation and SSTAs affect wintertime TCs, inducing fewer TC occurrences and causing more TCs to move westward.

关 键 词:西北太平洋  热带气旋  全球变暖  海表温度异常  西太平洋副热带高压  赤道东太平洋  冬天  中期天气预报

Occurrences of Wintertime Tropical Cyclones in the Western North Pacific under the Background of Global Warming
HE Jie-Lin,GUAN Zhao-Yong,QIAN Dai-Li,WAN Qi-Lin,WANG Li-Juan.Occurrences of Wintertime Tropical Cyclones in the Western North Pacific under the Background of Global Warming[J].Atmospheric and Oceanic Science Letters,2009,2(6):333-338.
Authors:HE Jie-Lin  GUAN Zhao-Yong  QIAN Dai-Li  WAN Qi-Lin and WANG Li-Juan
Institution:[1]Key Laboratory of Meteorological Disaster of Ministry of Education, Nanjing University of Information Science &Technology, Nanjing 210044, China; [2]Yulin City Meteorological Bureau of Guangxi, Yulin 537000, China; [3]Guangzhou Institute of Tropical and Oceanic Meteorology, CMA, Guangzhou 510080, China
Abstract:Using tropical cyclone (TC) observations over a 58-yr period (19492006) from the China Meteorological Administration, the 40-year ECMWF Reanalysis (ERA-40), NCEP-NCAR reanalysis, and the Hadley Centre sea ice and sea surface temperature (HadISST) datasets, the authors have examined the behaviors of tropical cyclones (TCs) in the western north Pacific (WNP) in boreal winter (November-December-January-February). The results demonstrate that the occurrences of wintertime TCs, including super typhoons, have decreased over the 58 years. More TCs are found to move westward than northeastward, and the annual total number of parabolic-track-type TCs is found to be decreasing. It is shown that negative sea surface temperature anomalies (SSTAs) related to La Niña events in the equatorial central Pacific facilitate more TC genesis in the WNP region. Large-scale anomalous cyclonic circulations in the tropical WNP in the lower troposphere are observed to be favorable for cyclogenesis in this area. On the contrary, the positive SSTAs and anomalous anticyclonic circulations that related to El Niño events responsible for fewer TC genesis. Under the background of global warming, the western Pacific subtropical high tends to intensify and to expand more westward in the WNP, and the SSTAs display an increasing trend in the equatorial eastern-central Pacific. These climate trends of both atmospheric circulation and SSTAs affect wintertime TCs, inducing fewer TC occurrences and causing more TCs to move westward.
Keywords:tropical cyclone  frequency  track  boreal winter  global warming
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