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Volume 3 Issue 2

Apr.  1986

Article Contents

AN ANALYSIS OF THE CAUSES OF MEANDERING TRACKS OF TYPHOONS


doi: 10.1007/BF02682559

  • Criteria of the free meandering tracks of typhoons are derived from the general solutions of typhoon motion equations. It is suggested that the meandering motion of a typhoon is caused by the combination of the internal force, the initial speed of the typhoon and the average pressure gradient force of the typhoon volume affected by the environmental pressure field. It is also revealed that under specified circumstances, the meandering may be caused only by the typhoon's internal force. Finally two examples of fitting cal-culation are given for illustration.
  • [1] Chen Shanmin, 1987: PRELIMINARY ANALYSIS ON THE STRUCTURE AND INTENSITY OF CONCENTRIC DOUBLE-EYE TYPHOONS, ADVANCES IN ATMOSPHERIC SCIENCES, 4, 113-118.  doi: 10.1007/BF02656667
    [2] Shuang LUO, Yunfei FU, Shengnan ZHOU, Xiaofeng WANG, Dongyong WANG, 2020: Analysis of the Relationship between the Cloud Water Path and Precipitation Intensity of Mature Typhoons in the Northwest Pacific Ocean, ADVANCES IN ATMOSPHERIC SCIENCES, 37, 359-376.  doi: 10.1007/s00376-020-9204-9
    [3] Feifei SHEN, Aiqing SHU, Zhiquan LIU, Hong LI, Lipeng JIANG, Tao ZHANG, Dongmei XU, 2024: Assimilating FY-4A AGRI Radiances with a Channel-Sensitive Cloud Detection Scheme for the Analysis and Forecasting of Multiple Typhoons, ADVANCES IN ATMOSPHERIC SCIENCES, 41, 937-958.  doi: 10.1007/s00376-023-3072-z
    [4] Xu Qun, 1995: Analysis of Causes and Seasonal Prediction of the Severe Floods in Yangtze / Huaihe Basins during Summer 1991, ADVANCES IN ATMOSPHERIC SCIENCES, 12, 215-224.  doi: 10.1007/BF02656834
    [5] Tianju WANG, Zhong ZHONG, Ju WANG, 2018: Vortex Rossby Waves in Asymmetric Basic Flow of Typhoons, ADVANCES IN ATMOSPHERIC SCIENCES, 35, 531-539.  doi: 10.1007/s00376-017-7126-y
    [6] Wang Zhilie, 1985: TEN YEARS' ADVANCES OF RESEARCH ON KNOTTY TYPHOONS IN CHINA, ADVANCES IN ATMOSPHERIC SCIENCES, 2, 415-425.  doi: 10.1007/BF02678741
    [7] Keon-Tae SOHN, H. Joe KWON, Ae-Sook SUH, 2003: Prediction of Typhoon Tracks Using Dynamic Linear Models, ADVANCES IN ATMOSPHERIC SCIENCES, 20, 379-384.  doi: 10.1007/BF02690796
    [8] PAN Lunxiang, QIE Xiushu, WANG Dongfang, , 2014: Lightning Activity and Its Relation to the Intensity of Typhoons over the Northwest Pacific Ocean, ADVANCES IN ATMOSPHERIC SCIENCES, 31, 581-592.  doi: 10.1007/s00376-013-3115-y
    [9] Bao Chenglan, Ruan Junshi, Zhu Yaojian, 1986: A STUDY ON THE RELATIONSHIP BETWEEN THE ROTATION OF BINARY TYPHOONS AND STEERING CURRENT, ADVANCES IN ATMOSPHERIC SCIENCES, 3, 115-124.  doi: 10.1007/BF02680050
    [10] Chen Lianshou, Luo Zhexian, 1995: Effect of the Interaction of Different Scale Vortices on the Structure and Motion of Typhoons, ADVANCES IN ATMOSPHERIC SCIENCES, 12, 207-214.  doi: 10.1007/BF02656833
    [11] Zuohao CAO, Da-Lin ZHANG, 2005: Sensitivity of Cyclone Tracks to the Initial Moisture Distribution: A Moist Potential Vorticity Perspective, ADVANCES IN ATMOSPHERIC SCIENCES, 22, 807-820.  doi: 10.1007/BF02918681
    [12] Peng Yongqing, Yan Shaojin, 1994: Seasonal Variation Features of Western North Pacific Tropical Cyclone Tracks with Their Predictability, ADVANCES IN ATMOSPHERIC SCIENCES, 11, 463-469.  doi: 10.1007/BF02658167
    [13] ZHAO Haikun, WU Liguang, ZHOU Weican, 2010: Assessing the Influence of the ENSO on Tropical Cyclone Prevailing Tracks in the Western North Pacific, ADVANCES IN ATMOSPHERIC SCIENCES, 27, 1361-1371.  doi: 10.1007/s00376-010-9161-9
    [14] Hailong LIU, Pingxiang Chu, Yao Meng, Mengrong DING, Pengfei LIN, Ruiqiang Ding, Pengfei Wang, Weipeng ZHENG, 2024: The Predictability Limit of Oceanic Mesoscale Eddy Tracks in the South China Sea, ADVANCES IN ATMOSPHERIC SCIENCES.  doi: 10.1007/s00376-024-3250-7
    [15] LIU Run, LIU Shaw Chen, Ralph J. CICERONE, SHIU Chein-Jung, LI Jun, WANG Jingli, ZHANG Yuanhang, 2015: Trends of Extreme Precipitation in Eastern China and Their Possible Causes, ADVANCES IN ATMOSPHERIC SCIENCES, 32, 1027-1037.  doi: 10.1007/s00376-015- 5002-1
    [16] Li Chongyin, 1988: ACTIONS OF TYPHOONS OVER THE WESTERN PACIFIC (INCLUDING THE SOUTH CHINA SEA) AND EL NINO, ADVANCES IN ATMOSPHERIC SCIENCES, 5, 107-116.  doi: 10.1007/BF02657352
    [17] ZHAO Xia, LI Jianping, 2009: Possible Causes for the Persistence Barrier of SSTA in the South China Sea and the Vicinity of Indonesia, ADVANCES IN ATMOSPHERIC SCIENCES, 26, 1125-1136.  doi: 10.1007/s00376-009-8165-9
    [18] HUANG Ronghui, ZHOU Liantong, CHEN Wen, 2003: The Progresses of Recent Studies on the Variabilities of the East Asian Monsoon and Their Causes, ADVANCES IN ATMOSPHERIC SCIENCES, 20, 55-69.  doi: 10.1007/BF03342050
    [19] Tianbao ZHAO, Aiguo DAI, Jianping HUANG, Lixia ZHANG, 2024: Preface to the Special Issue on Causes, Impacts, and Predictability of Droughts for the Past, Present, and Future, ADVANCES IN ATMOSPHERIC SCIENCES, 41, 191-192.  doi: 10.1007/s00376-023-3017-6
    [20] Yunyun LIU, Zeng-Zhen HU, Renguang WU, Xing YUAN, 2022: Causes and Predictability of the 2021 Spring Southwestern China Severe Drought, ADVANCES IN ATMOSPHERIC SCIENCES, 39, 1766-1776.  doi: 10.1007/s00376-022-1428-4

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Manuscript History

Manuscript received: 10 April 1986
Manuscript revised: 10 April 1986
通讯作者: 陈斌, bchen63@163.com
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AN ANALYSIS OF THE CAUSES OF MEANDERING TRACKS OF TYPHOONS

  • 1. Shanghai Weather Center, Shanghai,Shanghai Weather Center, Shanghai

Abstract: Criteria of the free meandering tracks of typhoons are derived from the general solutions of typhoon motion equations. It is suggested that the meandering motion of a typhoon is caused by the combination of the internal force, the initial speed of the typhoon and the average pressure gradient force of the typhoon volume affected by the environmental pressure field. It is also revealed that under specified circumstances, the meandering may be caused only by the typhoon's internal force. Finally two examples of fitting cal-culation are given for illustration.

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