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Impact of sea ice cover changes on the Northern Hemisphere atmospheric winter circulation

机译:海冰覆盖变化对北半球冬季冬季大气环流的影响

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The response of the Arctic atmosphere to low and high sea ice concentration phases based on European Center for Medium-Range Weather Forecast (ECMWF) Re-Analysis Interim (ERA-Interim) atmospheric data and Hadley Centre's sea ice dataset (HadISST1) from 1989 until 2010 has been studied. Time slices of winter atmospheric circulation with high (1990–2000) and low (2001–2010) sea ice concentration in the preceding August/September have been analysed with respect to tropospheric interactions between planetary and baroclinic waves. It is shown that a changed sea ice concentration over the Arctic Ocean impacts differently the development of synoptic and planetary atmospheric circulation systems. During the low ice phase, stronger heat release to the atmosphere over the Arctic Ocean reduces the atmospheric vertical static stability. This leads to an earlier onset of baroclinic instability that further modulates the non-linear interactions between baroclinic wave energy fluxes on time scales of 2.5–6 d and planetary scales of 10–90 d. Our analysis suggests that Arctic sea ice concentration changes exert a remote impact on the large-scale atmospheric circulation during winter, exhibiting a barotropic structure with similar patterns of pressure anomalies at the surface and in the mid-troposphere. These are connected to pronounced planetary wave train changes notably over the North Pacific.
机译:根据欧洲中距离天气预报中心(ECMWF)重新分析中期(ERA-Interim)大气数据和Hadley Center的海冰数据集(HadISST1),北极大气对高低海冰浓度阶段的响应)从1989年到2010年进行了研究。根据行星波和斜压波之间的对流层相互作用,分析了前八月/九月冬季大气环流高(1990– 2000)和低(2001– 2010)的时间片。结果表明,北冰洋海冰浓度的变化对天气和行星大气环流系统的发展有不同的影响。在低冰期期间,北冰洋上更多的热量释放到大气中,降低了大气的垂直静态稳定性。这导致了斜压不稳定的较早发作,进一步调节了斜压波能量通量在时间尺度为2.5、6和2009到90 d之间的非线性相互作用。我们的分析表明,北极海冰浓度变化在冬季会对大规模大气环流产生远程影响,表现出一种正压结构,其表面和对流层中部的压力异常模式相似。这些与明显的行星波列变化有关,特别是在北太平洋。

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