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首页> 外文期刊>Journal of Hydrology >Long-term data set analysis of stable isotopic composition in German rivers
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Long-term data set analysis of stable isotopic composition in German rivers

机译:德国河流稳定同位素组成的长期数据集分析

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Highlights ? Time-series of water stable isotopes in major catchments in Germany were analyzed. ? Spatial and temporal patterns in river isotopes were found similar to precipitation. ? In complex river catchments, deviations from precipitation signals were observed. ? Isotopic long-term averages are correlated with altitude and latitude. ? Averages of d-excess were inversely related to flow length and catchment size. Abstract Stable isotopes oxygen-18 (18O) and deuterium (2H) are commonly used to investigate hydrological processes in catchments. However, only a few isotope studies have been conducted on a large scale and rarely over long time periods. The objective of this study was to identify the spatial and seasonal variability of isotopic composition in river water and how it is affected by geographical and hydrological factors. The stable isotopic composition of river water has been measured in nine large river catchments in Germany for a time period of 12years or 26years. We conducted time series and correlation analyses to identify spatial and temporal patterns of the isotopic composition in the rivers. Further, we compared it to isotopic composition in local precipitation and catchments characteristics. In the majority of the rivers, the spatial and temporal patterns of precipitation were directly reflected in river water. The isotopic signals of the river water were time shifted and show attenuated amplitudes. Further deviations from isotopic compositions in local precipitation were observed in catchments with complex flow systems. These deviations were attributed to catchment processes and influences like evaporation, damming and storage. The seasonality of the isotopic composition was mainly determined by the discharge regimes of the rivers. We found correlations between isotopic long-term averages and catchment altitude as well as latitude and longitude, resulting in a northwest-southeast gradient. Furthermore, it was shown that long-term averages of d-excess were inversely related to flow length and catchment size, which indicates that evaporation enrichment has an impact on the isotopic composition even in catchments of humid climates. This study showed that isotopic composition in riv
机译:<![cdata [ 亮点 德国主要集水区的水稳定同位素的时间系列。 < / ce:list-item> 空间和时间模式发现在河同位素中被发现类似于降水。 在复杂的河流集水区中,观察到降水信号的偏差。 同位素长 - 术语平均值与高度和纬度相关。 D-fords的平均值与流量长度和集水区大小相反。 抽象< / ce:section-title> 稳定同位素Oxygen-18( 18> 18 o)和氘( 2 h),通常用于研究流域的水文过程。然而,只有少数同位素研究已经在大规模上进行,并且很少在很长的时间内进行。本研究的目的是确定河水中同位素组成的空间和季节性变异,以及它如何受到地理和水文因素的影响。河水的稳定同位素组成已在德国的九个大型河流集水区中测量为12 岁或26个年。我们进行了时间序列和相关分析,以识别河流中同位素组成的空间和时间模式。此外,我们将其与当地沉淀和集水区的同位素组成进行比较。在大多数河流中,沉淀的空间和时间模式直接反映在河水中。河水的同位素信号是时移和显示衰减幅度。在具有复杂流动系统的流域中观察到与本地沉淀中的同位素组合物的进一步偏离。这些偏差归因于集水过程和蒸发,坝和储存等影响。同位素组合物的季节性主要由河流的排放制度决定。我们发现同位素长期平均值和集水高度以及纬度和经度之间的相关性,从而导致西北部东南梯度。此外,结果表明,D-过量的长期平均值与流动长度和集水量均有关,表明蒸发富集甚至在潮湿气候的集水区内对同位素组合物产生影响。本研究表明,RIV中的同位素组成

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