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Relationships between solar activity and variations in SST and atmospheric circulation in the stratosphere and troposphere

机译:太阳活动与SST变化和平流层和对流层大气环流之间的关系

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Relationships between solar activity and variations in both sea surface temperature (SST) and atmospheric circulation at the time of the solar maximum are presented. The global distribution of correlation coefficients between annual relative sunspot numbers (SSN) and SST from July to December was examined over a 111-year period from 1901 to 2011. Areas with a significant positive correlation accounted for 11.7% of the global sea surface in December, mainly over three regions in the Pacific. The influence of solar activity on global atmospheric pressure variations and circulation in the maximum years was also analyzed from 1979 to 2011. The results indicated that higher geopotential height anomalies tended to appear in the stratosphere and troposphere in the northern hemisphere, centering on around the Hawaiian Islands from November to December, in the second year of the solar maximum. The SST distribution in the Pacific with strong north and south Pacific Highs produced a pattern that resembled teleconnection patterns such as the Pacific Decadal Oscillation (PDO) and the Central-Pacific (CP) El Nino, or El Nino Modoki (ENM). It is suggested that the solar activity had an influence on the troposphere via not only the stratosphere but also the sea surface. (C) 2015 Elsevier Ltd and INQUA. All rights reserved.
机译:提出了太阳活动与太阳最大时海面温度(SST)和大气环流变化之间的关系。在1901年至2011年的111年期间,研究了7月至12月的年度相对太阳黑子数(SSN)和SST之间的相关系数的全球分布。具有显着正相关的区域占12月全球海表的11.7%。 ,主要覆盖太平洋的三个地区。还分析了1979年至2011年在最大年份太阳活动对全球大气压力变化和环流的影响。结果表明,北半球的平流层和对流层倾向于以夏威夷周围为中心出现较高的位势高度异常。 11月至12月是离岛区,是太阳最高的第二年。太平洋SST分布在北太平洋高点和南北太平洋高点很强的情况下,产生了一种类似于遥距连接模式的模式,例如太平洋年代际振荡(PDO)和中太平洋(CP)厄尔尼诺(El Nino)或厄尔尼诺莫多基(EN N)。建议太阳活动不仅通过平流层而且通过海面影响对流层。 (C)2015 Elsevier Ltd和INQUA。版权所有。

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