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首页> 外文期刊>Journal of Climate >Interdecadal Weakening of the East Asian Winter Monsoon in the Mid-1980s: The Roles of External Forcings
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Interdecadal Weakening of the East Asian Winter Monsoon in the Mid-1980s: The Roles of External Forcings

机译:20世纪80年代中期东亚冬季季风的Interdecadal弱化:外部强迫的角色

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Observations show that the East Asian winter monsoon (EAWM) experienced an interdecadal weakening in the mid-1980s. This is evident for all members of the EAWM system (i.e., East Asian trough, upper-tropospheric jet stream, and lower-tropospheric monsoon circulation). Here, we investigate the relative contributions of natural (volcanic aerosols and solar variability) and anthropogenic [greenhouse gases (GHGs) and anthropogenic aerosols] forcings to this interdecadal weakening using multiple coupled models within phase 5 of the Coupled Model Intercomparison Project (CMIP5). The results indicate that in the midtroposphere, the increased GHG concentrations play an important role in weakening the East Asian trough (EAT) by increasing the sea surface temperatures (SSTs) over the North Pacific. In the upper troposphere, natural external forcings contribute to the observed weakening of the meridional shear of the East Asian jet stream (EAJS) by regulating the meridional temperature gradient (MTG) over the East Asian region. In the lower troposphere, both anthropogenic and natural forcings can weaken the Siberian high during this period. Overall, based on the present analysis of the CMIP5 output, GHGs and natural forcings play key roles in shaping the observed interdecadal weakening of the EAWM during the mid-1980s. Additionally, contributions from internal variability cannot be neglected and require further investigation.
机译:观察结果表明,东亚冬季季风(EAWM)在20世纪80年代中期经历了跨越式弱化。这对于EAWM系统的所有成员(即东亚槽,上层射流和低层季风循环)很明显。在这里,我们研究了天然(火山气溶胶和太阳能变异性)和人为[温室气体(温室气体)和人为气溶胶的相对贡献,用于使用耦合模型相互比较项目(CMIP5)的第5阶段内的多耦合模型来实现这种跨越弱化。结果表明,在中间层,增加的温室气体浓度在通过增加北太平洋的海面温度(SST)来削弱东亚谷(吃)的重要作用。在对流层的上层,天然外部强迫通过在东亚地区的子午温度梯度(MTG)通过调节了东亚喷射流(EAJS)的经络剪切而有助于观察到的。在对流层较低的情况下,在此期间,人为和天然强迫均可削弱西伯利亚高位。总的来说,基于CMIP5输出的目前分析,GHG和自然迫使在20世纪80年代中期塑造了观察到的eAWM的跨界弱化方面的关键作用。此外,内部变异性的贡献不能被忽视,需要进一步调查。

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