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Predictability of the East Asian Winter Monsoon Interannual Variability as Indicated by the DEMETER CGCMS

机译:DEMETER CGCMS指出的东亚冬季风年际变化的可预测性

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摘要

The interannual variability of East Asian winter monsoon (EAWM) circulation from the Development of a European Multi-Model Ensemble (MME) System for Seasonal to Inter-Annual Prediction (DEMETER)hindcasts was evaluated against observation reanalysis data.We evaluated the DEMETER coupled general circulation models (CGCMs)' retrospective prediction of the typical EAWM and its associated atmospheric circulation.Results show that the EAWM can be reasonably predicted with statistically significant accuracy,yet the major bias of the hindcast models is the underestimation of the related anomalies.The temporal correlation coefficient (TCC) of the MME-produced EAWM index,defined as the first EOF mode of 850-hPa air temperature within the EAWM domain (20°-60°N,90° 150°E),was 0.595.This coefficient was higher than those of the corresponding individual models (range:0.39-0.51) for the period 1969-2001; this result indicates the advantage of the super-ensemble approach.This study also showed that the ensemble models can reasonably reproduce the major modes and their interannual variabilities for sea level pressure,geopotential height,surface air temperature,and wind fields in Eurasia.Therefore,the prediction of EAWM interannual variability is feasible using multimodel ensemble systems and that they may also reveal the associated mechanisms of the EAWM interannual variability.
机译:根据对观测资料的重新分析数据,评估了从欧洲季节预报至年际预报(MME)后预报的欧洲多模式合奏(MME)系统的发展,东亚冬季风(EAWM)环流的年际变化。循环模型(CGCMs)对典型EAWM及其相关大气环流的回顾性预测。结果表明,可以合理地预测EAWM并具有统计学上的显着准确性,但后播模型的主要偏差是对相关异常的低估。 MME产生的EAWM指数的相关系数(TCC)为0.595,定义为EAWM域(20°-60°N,90°150°E)内850hPa空气的第一个EOF模式。高于1969-2001年期间相应模型的范围(范围:0.39-0.51);该研究结果还表明,该集成模型可以合理地再现欧亚大陆海平面压力,地势高度,地表气温和风场的主要模式及其年际变化。使用多模型集成系统预测EAWM年际变异性是可行的,并且它们也可能揭示EAWM年际变异性的相关机制。

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  • 来源
    《大气科学进展(英文版)》 |2012年第3期|441-454|共14页
  • 作者

    LI Fei; WANG Huijun;

  • 作者单位

    Nansen-Zhu International Research Center, Institute of Atmospheric Physics,Chinese Academy of Sciences, Beijing 100029;

    Graduate University of Chinese Academy of Sciences, Beijing 100049;

    Nansen-Zhu International Research Center, Institute of Atmospheric Physics,Chinese Academy of Sciences, Beijing 100029;

    Climate Change Research Center, Chinese Academy of Sciences, Beijing 100029;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
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