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Euro-Mediterranean climate variability in boreal winter: a potential role of the East Asian trough

机译:北方冬季欧洲-地中海气候变化:东亚低谷的潜在作用

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Euro-Mediterranean climate variability has been associated mostly with the upstream atmospheric circulation and teleconnection patterns, the North Atlantic Oscillation and European blocking being the main ones. This study shows, for the first time, that the East Asian trough (EAT), a prominent circulation feature of the mid-troposphere in the downstream side, might exert a strong and significant role on the interannual variability of the Euro-Mediterranean climate during boreal winters. We performed empirical orthogonal function analysis on the regions of the EAT and Mediterranean trough (MedT), an important system modulating the climate of the region, to obtain the respective dominant modes of variability at 500-hPa geopotential heights. It appears that the leading modes, the intensity in the case of the EAT and the zonal displacement in the case of the MedT, are significantly correlated with each other (r=-0.64, p0.001). Consequently, when the EAT is strong (weak), the MedT is observed in the west (east) of its climatological location resulting in a warmer (cooler) Middle East and northeastern Africa, a cooler (warmer) western Europe and northwestern Africa, and wetter (dryer) Italian, Balkan and Anatolian peninsulas. Given the fact that the EAT is also a key determinant of the East Asian winter climate, the identified mid-tropospheric link between East Asia and Mediterranean could help interpret some temperature and precipitation co-variability on the opposite sides of the Eurasian continent. We suggest that studies involving the Euro-Mediterranean climate should also consider the role of the EAT as it seems to be a potential driver of the year-to-year, perhaps longer-term, climate variability in the region.
机译:欧洲-地中海气候变化主要与上游大气环流和遥相关型有关,北大西洋涛动和欧洲阻塞是主要的影响因素。这项研究首次表明,东亚低谷(EAT)是对流层中下游的一个重要环流特征,可能对欧洲-地中海气候在年内的年际变化起着重要的作用。北方的冬天。我们对EAT和地中海低谷(MedT)地区进行了经验正交函数分析,该系统是调节该地区气候的重要系统,以获取500hPa地势高度处的各自主导性变异模式。看起来,前导模式,在EAT情况下的强度和在MedT情况下的区域位移彼此之间显着相关(r = -0.64,p <0.001)。因此,当EAT强(弱)时,在其气候位置的西部(东部)观察到MedT,导致中东和东北非洲较温暖(较凉),西欧和西北非洲较冷(较暖),以及湿(干)意大利,巴尔干和安纳托利亚半岛。鉴于EAT也是东亚冬季气候的关键决定因素,确定的东亚和地中海之间的对流层中部联系可以帮助解释欧亚大陆相对两侧的某些温度和降水协变。我们建议,涉及欧洲-地中海气候的研究也应考虑EAT的作用,因为它似乎是该地区逐年(也许是长期的)气候多变性的潜在驱动因素。

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