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我国冬季气温年代际变化及其与大气环流异常变化的关系

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康丽华[1,2] 陈文[1] 魏科[1,2]

[1]中国科学院大气物理研究所季风系统研究中心,北京100080 [2]中国科学院研究生院,北京100039

气候与环境研究
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国际标准刊号:ISSN 1006-9585
国内统一刊号:CN 11-3693

摘  要:

利用我国160个台站50年(1951-2000年)的月平均温度资料和NCEP/NCAR再分析资料,对我国从1951/1952-1999/2000共49个冬季(11月至次年3月平均)的气温进行经验正交函数(E()F)分解。第1模态表现为全国一致的增温或者降温,20世纪70年代中期以后,我国冬季气温增暖明显,发生了显著的年代际变化;第2模态则表现为南北温度的反相关系,20世纪80和90年代,我国北部地区,特别是东北和西北的温度增加,而我国南部则温度降低。采用频谱分析方法提取我国冬季气温的年代际变化信号更清楚地反映出这些变化。而且这两种模态从20世纪80年代开始的正位相叠加使得我国冬季持续偏暖,在降水场没有显著变化的情况下,加剧了华北地区的干旱程度。对气温的年代际变化与大气环流的回归分析表明,我国冬季气温年代际变化的第1模态与半球尺度上的北极涛动(A0)的变化有密切的关系,它在高度场上表现为一个准正压的南北环状模态;而第2模态则与中高纬大气环流中的一波结构联系密切,它在高度场上表现为一个准正压的太平洋和大西洋上反相的振荡模态。这就表明,我国冬季气温的年代际变化与大气环流中的基本气流及其扰动有密切的关联。作者还讨论了大气环流影响我国冬季气温年代际变化的可能机理,并指出进一步需要研究的问题。[著者文摘]

and perturbations in the atmos—phere.The possible mechanisms of the atmospheric general circulation influencing the winter temperature in China are discussed and the questions needed tO be further studied are presented.Key words East Asian winter monsoon,empirical orthogonal function,interdecadal variation,general circulation l 引言无论从环流、降水或温度来看,季风均表现为一种年循环现象,使得夏季风和冬季风交替盛行,周而复始[1]。我国的降水主要发生在夏季,华北干旱也主要与夏季降水的减少有关。而到了冬季,降水并不是东亚冬季风的......
Climatic and Environmental Research

分 类 号:

P434

文献标识码:

A

文章编号:

1006-9585(2006)03-0330-10

相关文章:

参考文献(25篇) 被引情况(1篇) 耦合文献(284篇)  主题相关

[参考文献]

The Interdecadal Variation of Winter Temperature in China and Its Relation to the Anomalies in Atmospheric General Circulation

KANG Li-Hua, CHEN Wen, WEI Ke(1. Center for Monsoon System Research, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100080; 2. Graduate University of the Chinese Academy of Sciences, Beijing 100039)

Abstract:

By using the monthly temperature in 160 stations of China and the NCEP/NCAR reanalysis data, the winter (November to March) temperature variations from 1951 to 2000 are studied with the empirical orthogonal function (EOF) analysis. The first EOF has an identical signal in whole China and demonstrates that the winter temperature has increased since the middle of 1970s in China. The second EOF has a seesaw pattern between southern and northern China and shows a warming in the 1980s and 1990s in Northwest China and Northeast China. The interdecadal variation with periods longer than 8 years can also be revealed using Fourier harmonics analysis. In addition, the warming superimposition of EOF1 and EOF2 probably causes persistent warming winter in China from the 1980s. This significant warming may intensify the drought in North China, since there are no obvious changes in the regional precipitation. The linear regressions of the atmospheric general circulation upon the winter temperature on interdecadal time scales indicate that the first EOF of temperature is significantly correlated to the Arctic Oscillation (AO), with a quasi-barotropic annular mode in the geopotential height field. However, the second EOF of temperature is closely associated with. height anomalies of wavenumber one in middle-high latitudes, with a quasi-barotropic out-of-phase oscillation between the Pacific Ocean and the Atlantic Ocean. The results show that the interdecadal variations of winter temperature in China are closely related to the basic flows and perturbations in the atmosphere. The possible mechanisms of the atmospheric general circulation influencing the winter temperature in China are discussed and the questions needed to be further studied are presented.[著者文摘]

Key words:

East Asian winter monsoon, empirical orthogonal function, interdecadal variation, general circulation

收稿日期: 2006-02-20
修订日期: 2006-04-02

基金资助:

中国科学院知识创新工程重要方向项目KZCX3-SW-218、国家自然科学基金项目40375021和40231005

作者简介:

康丽华,女,1968年出生,博士研究生,从事气候动力学研究。E-mail:kang-lihua@163.com

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