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Liao Fei,Li Wenting,Zhang Ziran, et al. Analysis of rapid changes of tropical cyclones over the South China Sea for 1949–2017[J]. Haiyang Xuebao,2019, 41(9):126–135,doi:10.3969/j.issn.0253−4193.2019.09.012
Citation: Liao Fei,Li Wenting,Zhang Ziran, et al. Analysis of rapid changes of tropical cyclones over the South China Sea for 1949–2017[J]. Haiyang Xuebao,2019, 41(9):126–135,doi:10.3969/j.issn.0253−4193.2019.09.012

Analysis of rapid changes of tropical cyclones over the South China Sea for 1949–2017

doi: 10.3969/j.issn.0253-4193.2019.09.012
  • Received Date: 2018-07-30
  • Rev Recd Date: 2018-10-31
  • Available Online: 2021-04-21
  • Publish Date: 2019-09-25
  • The statistical characteristics of rapid changes of different grade tropical cyclone intensity and path in the South China Sea are analyzed by the best track data set of tropical cyclones for 69 years from 1949 to 2017 compiled by Shanghai Typhoon Institute of China Meteorological Administrator. The results show that: (1) The change from a severe tropical storm to a typhoon, and from a typhoon to a severe typhoon, are the most frequent events of rapid intensity changes. Most tropical cyclones experience intensity change no more than twice. However, most of the rapid intensifying tropical cyclones occur mainly outside the South China Sea in the western Pacific, and the probability of rapid intensifying over the South China Sea is only 9.8%. (2) The duration of intensity maintenance has an important effect on rapid intensity changes for different grade tropical cyclones. It is the highest rapid change stage during the first 24 hours. Rapid intensity change to typhoon or above grade is easily to occur when the decreasing velocity of central pressure exceeds –12.0 hPa/(6 h). Moreover, the rapid intensifying of tropical cyclones is easily to occur in areas with high sea surface temperature. (3) The deflection of the tropical cyclone path in the South China Sea is mainly in the westbound path, in which the deflection of 5°–30° is the most common, accounting for 48.65% of the total number of tropical cyclones. However, According to the defined path mutation criterion, the probability of path sharp turning is only 15.13%. With the increase of tropical cyclone intensity, the frequency of path sharp turning in the South China Sea decreases rapidly, and the path sharp turning occurs mainly in the coastal area and the east-central region of the South China Sea. This work further refines and enriches the understanding of the intensity and path rapid changes of tropical cyclones in the South China Sea.
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