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研究生: 蕭育琪
論文名稱: 敏督利颱風伴隨西南氣流之數值研究
指導教授: 簡芳菁
學位類別: 碩士
Master
系所名稱: 地球科學系
Department of Earth Sciences
論文出版年: 2006
畢業學年度: 94
語文別: 中文
論文頁數: 150
中文關鍵詞: 敏督利颱風北行颱風西南氣流降水
論文種類: 學術論文
相關次數: 點閱:248下載:24
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  • 北行颱風敏督利(2004)在離台之後,形成第二波系統性的豪大雨,本文對此波強降水的成因,以WRF模式進行模擬。首先,透過敏感度測試,找出最佳之物理組合為K-F積雲參數法與WSM6雲微物理過程。利用這個組合,我們以NCEP GFS初始場,透過三維資料同化加入觀測資料,進行2004年7月2日12UTC至4日1200UTC的模擬作為控制組。由控制組結果可知,低層西南風持續輸送來自南海地區的潮濕水氣,再加上7月3日1200UTC起,於北緯22至23度間的中層大氣出現西風移入對流胞,成為第二波降水的水氣來源。西南部的低層水氣因形成輻合及受地形抬升,而發生對流降水。
    另外,再使用CWB GFS作為模式初始場,透過觀測及模式結果綜合分析2002年雷馬遜(Rammasun)颱風、2003年柯吉拉(Kujira)颱風及蘇迪勒(Soudelor)颱風,和敏督利颱風在通過北緯30度附近時,台灣西南部之環境差異。研究發現,敏督利颱風能符合所有的西南氣流降水因子,包含低層潮濕的西南氣流、西南氣流內環境不穩定、地形抬升使水氣凝結、強西南風、西南氣流內形成正渦度和準滯留(quasi-stationary)的綜觀系統等,再加上其移動路徑與台灣距離最近,且以最長的時間通過北緯30至35度之間,延長迎風面上東北-西南走向的氣壓分布之滯留時間,因此敏督利颱風於離台後形成強烈的第二波系統性降水。根據四颱風個案模擬降水因子之分析顯示,對未來北行颱風進行西南氣流降水因子的分析,能用以預報颱風離台後引發第二波降水的可能性。

    摘要……………………………...………………...…...................................................i 目錄……………………………………........................................................................ii 表目………………………………iv 圖目............................................…………v 1. 前言.......................................................................................……….…………....1 1.1. 研究背景.............................……….…………………….………….....1 a. 侵襲台灣颱風研究回顧.............................………...…………....1 b. 北行颱風研究回顧.............................……….…………..……....3 1.2. 研究動機與目的.............................……….…………..........................7 2. 個案介紹......................................................................……………………..........9 2.1. 敏督利(Mindulle)颱風................................................………….……..9 2.2. 雷瑪遜(Rammasun)颱風.......................................................................12 2.3. 柯吉拉(Kujira)颱風..............................................................................14 2.4 蘇迪勒(Soudelor)颱風..........................................................................16 2.5 個案綜合比較......................................................................................17 3. 資料來源與研究方法.......................................................…………..………….20 3.1 資料來源.......................................................……………..………….20 3.2 WRF模式簡介.......................................................…………..……....20 3.3 敏感度測試.......................................................…………..………….23 a. 變動物理參數法.......................................................…..……….24 b. 三維資料同化模擬比較.......................................................…...31 4. 敏督利颱風模擬結果........................................………...........…………...........35 4.1 模擬校驗.......................................................…………..…………….35 4.2 第二波系統降水分析.......................................................…………...38 5 類似路徑個案之比較.......................................................…………..………….42 5.1 四個案模擬校驗.......................................................…………..…….43 5.2 引起西南氣流降水原因討論.......................................................…...46 5.3 不同初始場的敏督利颱風模擬.........................................................51 6 結論.......................................................…………..……………………………54 參考文獻.......................................................…………………..................................59

    Betts, A. K., 1986: A new convective adjustment scheme. Part I: Observational and theoretical basis. Quart. J. Roy. Meteor. Soc., 112, 677-691.
    __________, and M. Miller, 1986: A new convective adjustment scheme. Part II: Single column tests using GATE wave, BOMEX and arctic air-mass data sets. Quart. J. Roy. Meteor. Soc., 112, 693-709.
    Lee, Cheng-Shang et. al., 2005: A study on the Heavy Rainfall Event in Taiwan Associated with Typhoon Mindulle (2004) and the Accompanied Southwesterly Flow, 天氣分析與預報研討會論文彙編(94),222-227。
    Wu, Chun-Chieh and Ying-Hwa Kuo, 1999: Typhoons Affecting Taiwan: Current Understanding and Future Challenges. Bulletin of the American Meteorological Society, 80, 67–80.
    ____________ et.al., 2002: Rainfall Simulation Associated with Typhoon Herb (1996) near Taiwan. Part I: The Topographic Effect. Weather and Forecasting, 17, 1001–1015.
    Barker, D. M. et. al., 2004: A Three-Dimensional Variational Data Assimilation System for MM5: Implementation and Initial Results. Mon. Wea. Rev., 132, 897–914.
    Chien, Fang-Ching et. al., 2004: A real-time MM5/WRF forecasting system in Taiwan. WRF workshop 2004 in Taiwan, 53-55.
    Grell, G. A., and D. Devenyi, 2002: A generalized approach to parameterizing convection combining ensemble and data assimilation techniques. Accepted for publication in Geophysical Research Letters.
    Hong, S.-Y., H.-M. H. Juang, and Q. Zhao, 1998: Implementation of prognostic cloud scheme for a regional spectral model, Mon. Wea. Rev., 126, 2621-2639.
    Huang, C.-Y., Y.-H. Kuo, and W. Huang, 2002: Numerical simulations with MM5 3DVAR initialization. Terrestrial, Atmos. and Oceanic Sci., 13, 417-448.
    Janjic, Z. I., 1994: The step-mountain eta coordinate model: Further developments of the convection, vis-cous sublayer, and turbulence closure schemes. Mon. Wea. Rev., 122, 927-945.
    Kain, J. S., and J. M. Fritsch, 1990: A one-dimensional entraining/detraining plume model and its application in convective parameterization. J. Atmos. Sci., 47, 2784-2802.
    ________, and ___________, 1993: Convective parameterization for mesoscale models: The Kain-Fritsch scheme. The Representation of Cumulus Convection in Numerical Models, Meteor. Monogr., 46, Amer. Meteor. Soc., 165-170.
    Kessler, E., 1969: On the distribution and continuity of water substance in atmospheric circula-tion. Meteor. Monogr., 32, Amer. Meteor. Soc., 84.
    Kuo, Y. –H., R. J. Reed, and Y. Liu, 1996: The ERICA IOP 5 Storm. Part Ⅲ: Mesoscale cyclogensis and precipitation parameterization. Mon. Wea. Rev., 124, 1409-1434.
    Chang ,Lisa Tsu-Chi, Wen_Ting Huang, and George Tai-Jen Chen, 2005: Mesosclae Simulation Study of the Heavy Rain Event Associated with the Southwesterly flow Induced by Typhoon Mindulle (2004) over Taiwan, 天氣分析與預報研討會論文彙編(94),522-525。
    Lorenz, E. N., 1963: Deterministic nonperiodic flow, J. Atmos. Sci., 20,130-141.
    Nagata, Masashi, et. al., 2001: meeting summary: Third COMPARE Workshop: A Model Intercomparison Experiment of Tropical Cyclone Intensity and Track Prediction. Bulletin of the American Meteorological Society: 82, 2007–2020.
    Bender, Morris A., Robert E. Tuleya and Yoshio Kurihara. 1987: A Numerical Study of the Effect of Island Terrain on Tropical Cyclones. Mon. Wea. Rev., 115, 130–155.
    Fitzpatrick, Patrick J. 1997: Understanding and Forecasting Tropical Cyclone Intensity Change with the Typhoon Intensity Prediction Scheme (TIPS). Weather and Forecasting, 12, 826–846.
    Xiao, Qingnong et.al., 2005: Assimilation of Doppler Radar Observations with a Regional 3DVAR System: Impact of Doppler Velocities on Forecasts of a Heavy Rainfall Case. Journal of Applied Meteorology, 44, 768–788.
    Jones, Sarah C.et.al., 2003: The Extratropical Transition of Tropical Cyclones: Forecast Challenges, Current Understanding, and Future Directions. Weather and Forecasting,18, 1052–1092.
    Chiao, Sen and Yuh-Lang Lin. 2003: Numerical Modeling of an Orographically Enhanced Precipitation Event Associated with Tropical Storm Rachel over Taiwan. Weather and Forecasting, 18, 325–344.
    Chang, Simon Wei-Jen., 1982: The Orographic Effects Induced by an Island Mountain Range on Propagating Tropical Cyclones. Mon. Wea. Rev., 110, 1255–1270.
    WMO-NO.973, 2005: Saving paradise. Ensuring sustainable development. WMO ISBN 92-63-10973-7. ,1-24.
    Yang, M. -J., F. -C. Chien, and M.-D Cheng, 2000: Precipitation parameterization in a simulated Mei-Yu front. Terrestrial, Atmospheric, and Oceanic Sciences, 11, 393-422.
    Lin, Yuh-Lang et. al., 2001: Some Common Ingredients for Heavy Orographic Rainfall. Weather and Forecasting, 16, 633–660.
    Zhao, Qingyun and Frederick H.Carr., 1997: A prognostic cloud scheme for operational NWP models. Mon. Wea. Rev., 125, 1931–1953.
    李清勝、林慧娟,1999:侵台歐菲莉颱風(1990)之數值模擬。大氣科學,27,頁235-255。
    李紀恩等,2005:敏督利颱風(2004)過後對台灣中南部地區造成豪大雨之個案探討。天氣分析與預報研討會論文彙編(94),頁495-500。
    苟潔予、葉家榮,2003:災害預防與訊息傳遞-以氣象服務之颱風警報為例。天氣分析與預報研討會(92),頁33-36。
    徐文達、林沛練,2005:伴隨敏督利颱風的強烈西南氣流引發豪大雨之個案探討。天氣分析與預報研討會論文彙編(94),頁526-531。
    謝信良等,1998:百年侵台颱風路徑圖集及其應用-台灣地區颱風預報輔助系統建立之研究(二)。中央氣象局專題研究報告CWB86-1M-01,頁1-497。
    ______、簡國基與王時鼎,2003:潭美颱風高雄豪雨事件之天氣分析。大氣科學, 31,頁1-15。
    周根泉,1964:臺灣地區暴雨特性之研究。氣象學報,10,頁52-64。
    周坤炫、吳俊傑、顏自雄,2001:瑞伯颱風(1998)之數值模擬探討。大氣科學,29,頁291-313。
    陳泰然等,1993:豪雨預報技術改進之研究颱風部分研究計畫。交通部中央氣象局 82年委託研究計畫CWB82-2M-10,頁276。
    楊忠權、吳俊傑,2005:2004年侵台颱風敏督利與艾利路徑特徵之位渦診斷分析。天氣分析與預報研討會論文彙編(94),頁516-521。
    吳俊傑、卓瑜甄、王時鼎,1999a:葛拉絲颱風(1994)及其受到台灣地形影響之研究 第一部份:觀測分析。大氣科學,27,頁1-27。
    ______等,2004:「侵台颱風之GPS Dropsonde飛機偵查觀測實驗(追風計畫)」與「颱風及海洋物理及生物地球化學交互作用研究」之研究回顧。大氣科學,32,頁275-292。
    俞家忠,1982:通過台灣北方海上颱風與台灣中南部豪雨之研究。大氣科學,9,頁95-112。

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