东亚夏季风区的低频振荡对长江中下游旱涝的影响
IMPACTS OF THE LOW FREQUENCY OSCILLATION IN EAST ASIAN SUMMER MONSOON ON THE DROUGHT AND FLOODING IN THE MIDDLE AND LOWER VALLEY OF THE YANGTZE RIVER
-
摘要: 利用相关分析与合成分析的方法,讨论了东亚夏季风区的低频振荡及其与我国长江中下游地区旱涝的关系。研究发现,东亚强季风涌年,准30~60d振荡的影响显著,容易造成长江中下游多雨;东亚弱季风涌年,准30~60d振荡减弱,10~20d低频振荡为主要的振荡周期,容易造成长江中下游干旱。研究结果初步揭示了低频振荡对我国长江中下游地区旱涝的影响。研究表明,东亚夏季风中低频振荡传播规律对长江中下游地区降水的中长期预报有重要的指导意义。Abstract: The relation between the low frequency oscillation in East Asian summer monsoon and the drought and flooding in the middle and lower valley of the Yangtze River is studied in this paper. Our study shows that the low frequency oscillation of 30~60d is the most remarkable in the strong summer monsoon surge years in the South China Sea and easily causes the flooding in the middle and lower valley of the Yangtze River. On the contrary, in the weak summer monsoon surge years in the Southern China Sea, the low frequency oscillation of 10~20d is more active than that of 30~60d and easily causes the drought. The propagation of monsoon surge low frequency oscillation is important to the precipitation's medium and long range prediction in the middle and lower valley of Yangtze River.
-
[1] 张顺利,陶诗言,张庆云,等.长江中下游致洪暴雨的多尺度条件[J].科学通报,2002,47(6): 467-473. [2] HUANG R,ZHOU L,CHEN W.The prograesses of recent studies on the variabilities of the East Asian monsoon and theircauses[J].Advan Atmo Sci,2003,20(1):55-69. [3] 琚建华,钱诚,曹杰.东亚副热带夏季风指数研究[A].新世纪气象科技创新与大气科学发展-气候系统与气候变化[C].北京:气象出版社,2003.17-20. [4] MADDEN R D,JULIAN P.Detection of a 40-50day oscillatio in the zonal wind in the tropical Pacific[J].J Atmos Sci,1971,28(5): 702-708. [5] MADDEN R D,JULIAN J.Description of global scale circulation cells in the tropics with 40-50 day period[J].J Atmos Sci,1972,29(6): 1109-1123. [6] KRISHNAMURTI T N,SUBRAHMANYAM D.The 30-50 day mode at 850 mb during MONEX[J].J Atmos Sci,1982,39(9): 2088-2095. [7] YASUNARI T.A quasi-stationary appearance of 30-40 day period in the cloudiness fluctuations during the summer monsoonover India[J].J Meteor Soc Japan,1980,58: 225-229. [8] MURAKAMI T,NAKAZAWA T,HE J.On the 40-50 day oscillations during the 1979 northern hemisphere summer.Part I:phase propagation[J].J Meteor Soc Japan,1984,62: 440-468. [9] 李崇银.热带大气季节内振荡几个基本问题[J].热带气象学报,1995,11(3):276-288. [10] 徐国强,朱乾根.1998年南海夏季风低频振荡特征分析[J].热带气象学报,2002,18(4): 309-316. [11] 江宁波,罗会邦.亚洲季风区大气热源和水汽汇的季节内变化(I)——大气热源的季节内变化[J].热带气象学报,1993,9(4):299-307. [12] 江宁波,罗会邦.亚洲季风区大气热源和水汽汇的季节内变化(II)——水汽汇的季节内变化[J].热带气象学报,1994,10(1): 1-8. [13] 何金海,MURAKAMI T,NAKAZAWA T.1979年夏季亚洲季风区域40-50天周期振荡的环流及水汽输送场变化[J].南京气象学院学报,1984,2(2):163-175. [14] LAU K M,YANG G J,SHEN S H.Seasonal and intraseasonal climatology of summer monsoon rainfall over East Asia[J].Mon Wea Rev,1988,116(1): 18-37. [15] 金祖辉,村上胜人.东亚季风区对流活动的年际变异及与江淮地区旱涝关系的研究[A].亚洲季风研究的新进展[C].北京:气象出版社,1996.88-97. [16] 李崇银.华北地区汛期降水的一个分析研究[J].气象学报,1992,50(1):41-49. [17] 吴尚森,梁建茵.南海夏季风强度指数及其变化特征[J].热带气象学报,2001,17(4): 337-344. [18] KALNAY E,COAUTHORS.The NCEP/NCAR 40-year reanalysis project[J].Bull Amer Meteor Soc,1996,77:437-471. [19] GRUBER A,KRUEGER A F.The status of the NOAA outgoing longwave radiation data set[J].Bull Amer MeteorSoc,1984,65(9):958-962. [20] 冯明,王保家,熊守权.1998年长江大洪水与大气环流和海温异常分析[J].长江流域资源与环境,2000,1(1):112-117. [21] 琚建华,钱诚,曹杰.东亚夏季风的季节内振荡研究[J].大气科学,2005,29(2):187-194. [22] 黄荣辉,孙凤英.热带西太平洋暖池的热状况及其上空的对流活动对东亚夏季气候异常的影响[J].大气科学,1994,18(2):141-151.
点击查看大图
计量
- 文章访问数: 1302
- HTML全文浏览量: 5
- PDF下载量: 1453
- 被引次数: 0