首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Summer night-time temperature trends on the Iberian Peninsula and their connection with large-scale atmospheric circulation patterns
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Summer night-time temperature trends on the Iberian Peninsula and their connection with large-scale atmospheric circulation patterns

机译:伊比利亚半岛夏季夜间温度趋势及其与大规模大气环流模式的联系

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摘要

The present paper studies the variability and trends of Tropical Nights (>20 °C) (TNs) on the Iberian Peninsula (IP) over the 1961-2007 period during the extended summer (defined as June, July, August, and September, JJAS). The analyses were performed with the mean series calculated for the whole IP and for different subregions. We conducted a regionalisation by means of a S-Mode Principal Component Analysis (PCA), which identified three subregions where the variability of TNs behaves similarly: the Mediterranean (M) region, the centre-north of the Peninsula (CN) region, and the Atlantic (A) region. Throughout the entire period, the mean summer TN series for the whole IP shows a significant increase; there are, however, some regional differences, as the CN and M regions present higher rates of warming than the A region. Using Canonical Correlation Analysis (CCA) we detected the large-scale atmospheric circulation patterns controlling the interannual variability of TNs over the IP. The occurrence of TNs in the M and CN subregions is highly dependent on anticyclonic conditions over Western Europe in the mid-troposphere level. The increase in the positive phase of this canonical mode during the last three decades might explain part of the positive trend of the TNs detected in summer on the IP.
机译:本文研究了延长的夏季(定义为6月,7月,8月和9月,JJAS)在1961-2007年期间伊比利亚半岛(IP)上热带夜晚(> 20°C)(TNs)的变化和趋势。 )。使用针对整个IP和不同子区域计算的平均值序列进行分析。我们通过S模式主成分分析(PCA)进行了区域化,该区域化确定了TN的变异性表现相似的三个子区域:地中海(M)地区,半岛(CN)区域的中北部和大西洋(A)地区。在整个期间,整个IP的夏季TN序列均值显着增加;但是,由于CN和M地区的变暖速率高于A地区,因此存在一些地区差异。使用规范相关分析(CCA),我们检测到控制IP上TN的年际变化的大规模大气环流模式。 M和CN子区域中TN的发生高度依赖于对流层中层西欧的反气旋条件。在过去的三十年中,这种规范模式的积极阶段增加可能解释了夏季在IP上检测到的TN的积极趋势的一部分。

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