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The Relationships between Tropical Cyclone Tracks and Local SST over the Western North Pacific
  • 期刊名称:Journal of Tropical Meteorology , 热带气象学报(英文版)
  • 时间:0
  • 页码:9534-9536
  • 语言:中文
  • 分类:P435[天文地球—大气科学及气象学]
  • 作者机构:[1]School of Atmospheric Sciences, Nanjing University, Nanjing 210093 China
  • 相关基金:National Natural Science Foundation of China (40775043); National Basic Research Program "973" of China (2006CB403600); Specialized Research Fund for the Doctoral Program of Higher Education (200802840022)
  • 相关项目:西北太平洋热带气旋活动的气候变率及其与大尺度环流背景的关系
中文摘要:

Tropical Cyclone (TC) tracks over the western North Pacific (WNP) during 1949–2007, obtained from China Meteorological Administration/Shanghai Typhoon institute, are classified into three track types. These types are the main pathways by which TCs influence the coast of East Asia. The relationships between local sea surface temperature (SST) in WNP and TC tracks are revealed. Results show that the local SST plays an important role in TC tracks, though the relationships between local SST and the frequencies of different TC tracks are very dissimilar. The local SST has significant positive correlation with northwest-path TCs, and negative correlation with recurving-path TCs. However, the west-path TCs do not have statistically significant relationship with the local SST. The upper sea temperature anomalies which influence TC tracks last about six months before TC occurrence. Further analysis indicates that the ocean conditions influence TC tracks by modifying the atmospheric circulation, and then the modified atmospheric circulation can affect TC’s genesis location and motion.

英文摘要:

Tropical Cyclone (TC) tracks over the western North Pacific (WNP) during 1949–2007, obtained from China Meteorological Administration/Shanghai Typhoon institute, are classified into three track types. These types are the main pathways by which TCs influence the coast of East Asia. The relationships between local sea surface temperature (SST) in WNP and TC tracks are revealed. Results show that the local SST plays an important role in TC tracks, though the relationships between local SST and the frequencies of different TC tracks are very dissimilar. The local SST has significant positive correlation with northwest-path TCs, and negative correlation with recurving-path TCs. However, the west-path TCs do not have statistically significant relationship with the local SST. The upper sea temperature anomalies which influence TC tracks last about six months before TC occurrence. Further analysis indicates that the ocean conditions influence TC tracks by modifying the atmospheric circulation, and then the modified atmospheric circulation can affect TC’s genesis location and motion.

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