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Interannual summer streamflow variability over Romania and its connection to large-scale atmospheric circulation

机译:罗马尼亚年际夏季流量变化及其与大规模大气环流的联系

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摘要

In this study, the spatial and temporal variability of summer (June-July-August, JJA) streamflow over Romania, as recorded at 46 hydrological stations over the period 1935-2010 is analysed. An empirical orthogonal function analysis and a canonical correlation analysis (CCA) were used to characterize the spatial and temporal variability of summer streamflow and its relationship with large-scale atmospheric factors. The dominant summer mode captures in-phase variability of river flow anomalies over the entire country, while the second mode of variability is characterized by a northwest-southeast dipole, emphasizing the influence of topography over the streamflow variability. Based on a CCA analysis, more than 50% of the summer streamflow variability is shown to be influenced by cloud cover and summer temperatures, via the modulation of precipitation and potential evapotranspiration. In general, positive (negative) streamflow anomalies, at country level, are associated with cyclonic (anticyclonic) circulation, the advection of moist (warm and dry) air, enhanced (reduced) precipitation and positive (negative) cloud cover anomalies.
机译:在这项研究中,分析了罗马尼亚(1935年至2010年)46个水文站记录的夏季(6月至7月至8月,JJA)河流的时空变化。利用经验正交函数分析和典范相关分析(CCA)来表征夏季水流的时空变化及其与大尺度大气因素的关系。夏季占主导地位的模式捕获了整个国家河流流量异常的同相变化,而第二种变化模式的特征是西北-东南偶极子,强调了地形对流量变化的影响。根据CCA分析,夏季降水流量变化的50%以上受降雨和潜在蒸发蒸腾的影响,受云量和夏季温度的影响。通常,在国家一级,正(负)流量异常与气旋(反气旋)循环,潮湿(温暖和干燥)空气的平流,增强(减少)的降水以及正(负)云层异常有关。

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