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Dominant modes of Diurnal Temperature Range variability over Europe and their relationships with large-scale atmospheric circulation and sea surface temperature anomaly patterns

机译:欧洲昼夜温度范围变化的主导模式及其与大尺度大气环流和海表温度异常模式的关系

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摘要

The relationships between the dominant modes of interannual variability of Diurnal Temperature Range (DTR) over Europe and large-scale atmospheric circulation and sea surface temperature anomaly fields are investigated through statistical analysis of observed and reanalysis data. It is shown that the dominant DTR modes as well as their relationship with large-scale atmospheric circulation and sea surface temperature anomaly fields are specific for each season. During winter the first and second modes of interannual DTR variability are strongly related with the North Atlantic Oscillation and the Scandinavian pattern, while the third mode is related with the Atlantic Multidecadal Oscillation. Strong influence of the Atlantic Multidecadal Oscillation and the Arctic Oscillation on spring DTR modes of variability was also detected. During summer the DTR variability is influenced mostly by a blocking-like pattern over Europe, while the autumn DTR variability is associated with a wave-train like pattern, which develops over the Atlantic Ocean and extends up to Siberia. It is also found that the response of DTR to global sea surface temperature is much weaker in spring and summer comparing to winter and autumn. A correlation analysis reveals a strong relationship between DTR modes of variability and the Cloud Cover anomalies during all seasons. The influence of the potential evapotranspiration and precipitation anomalies on DTR modes of variability is strongest during summer, but it is significant also in spring and autumn. It is suggested that a large part of interannual to decadal DTR variability over Europe is induced by the large-scale climate anomaly patterns via modulation of cloud cover, precipitation and potential evapotranspiration anomaly fields.
机译:通过对观测资料和再分析资料的统计分析,研究了欧洲昼夜温度范围(DTR)年际变化的主要模式与大规模大气环流和海面温度异常场之间的关系。结果表明,主要的DTR模式及其与大规模大气环流和海表温度异常场的关系在每个季节都是特定的。在冬季,DTR年际变化的第一和第二模式与北大西洋涛动和斯堪的纳维亚模式密切相关,而第三模式与大西洋多年代际振荡相关。还检测到大西洋多年代际涛动和北极涛动对春季DTR变异性的强烈影响。夏季,DTR的变化主要受欧洲上空的块状模式影响,而秋季的DTR的变化与波状的模式相关,波型在大西洋上空延伸至西伯利亚。还发现,与冬季和秋季相比,春季和夏季DTR对全球海表温度的响应要弱得多。相关分析显示,在所有季节中,DTR变异性模式与云层异常之间都存在很强的关系。在夏季,潜在的蒸散量和降水异常对DTR变异性模式的影响最大,但在春季和秋季也很显着。有人认为,欧洲大部分年际至年代际DTR的变化是由大规模的气候异常模式引起的,这是通过调节云量,降水和潜在蒸散异常场来实现的。

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