首页> 外文期刊>Journal of hydrometeorology >Interannual Variability of Rhine River Streamflow and Its Relationship with Large-Scale Anomaly Patterns in Spring and Autumn
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Interannual Variability of Rhine River Streamflow and Its Relationship with Large-Scale Anomaly Patterns in Spring and Autumn

机译:春秋两季莱茵河流量的年际变化及其与大尺度异常模式的关系

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摘要

Interannual-to-decadal variability of Rhine River streamflow and their relationship with large-scale climate anomaly patterns for spring [March–May (MAM)] and autumn [September–November (SON)] are investigated through a statistical analysis of observed streamflow data and global climate anomaly fields. A wavelet analysis reveals that spring streamflow variability is nonstationary with enhanced variability in the 8–16-yr band from 1860 to 1900 and in the 2–8 and 16–30 yr after 1960. A composite analysis reveals that streamflow anomalies during spring are related to a sea surface temperature (SST) pattern that resembles the corresponding El Nin o–Southern Oscillation (ENSO) SST pattern. The corresponding atmospheric circulation pattern favors enhanced moisture advection over the Rhine catchment area during positive streamflow anomalies. During autumn, the streamflow variability follows a distribution similar to spring streamflow, but with a strong peak in the 30–60-yr band. Autumn streamflow anomalies are significantly related only with the North Atlantic SST anomalies. The atmospheric circulation pattern associated with high streamflow during autumn, which is more regional than the corresponding spring pattern,shows a deep low pressure system over the British Isles and the northwestern part of Europe and a shift southward of the Atlantic jet axis. The orientation of the axis of the Atlantic and African jets, as well as the advection of the moist air from the ocean, plays a crucial role in the variability of Rhine streamflow both in spring and autumn.
机译:通过对观测到的流量数据进行统计分析,研究了莱茵河流量的年际至年代际变化及其与春季[3月至5月(MAM)]和秋季[9月至11月(SON)]的大规模气候异常模式的关系。和全球气候异常场。小波分析表明,春季水流变化是非平稳的,并且在1860年至1900年的8-16年波段以及1960年之后的2-8年和16-30年变化较大。综合分析表明,春季的水流异常与到类似于对应的厄尔尼诺-南方涛动(ENSO)SST模式的海面温度(SST)模式。在正向流量异常期间,相应的大气环流模式有利于增强莱茵河集水区对流。在秋季,水流的变化遵循与春季水流相似的分布,但在30至60年的波段有一个强烈的峰值。秋季水流异常仅与北大西洋海温异常显着相关。秋季与高流量相关的大气环流模式比相应的春季模式更具区域性,显示了不列颠群岛和欧洲西北部深低压系统以及大西洋喷流轴线向南偏移。大西洋和非洲喷气机轴线的方向,以及来自海洋的潮湿空气的平流,在春季和秋季的莱茵河水流变化中都起着至关重要的作用。

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