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首页> 外文期刊>Journal of earth system science >Characteristics of water isotopes and hydrograph separation during the spring flood period in Yushugou River basin, Eastern Tianshans, China
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Characteristics of water isotopes and hydrograph separation during the spring flood period in Yushugou River basin, Eastern Tianshans, China

机译:东天山玉树沟河流域春汛期水同位素特征与水文分离

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摘要

Many of the river basins in northwest China receive water from melting glaciers and snow in addition to groundwater. This region has experienced a significant change in glacier and snowpack volume over the past decade altering hydrology. Quantifying changes in water resources is vital for developing sustainable strategies in the region. During 2013, a water-isotope source apportionment study was conducted during the spring flood in the Yushugou River basin, northwestern China. The study found significant differences in water isotopes between river water, snowmelt water, and groundwater. During the study period, the isotopic composition of groundwater remained relatively stable. This stability suggests that the groundwater recharge rate has not been significantly impacted by recent hydro-climatic variability. The river water flow rate and water e???18O displayed an inverse relationship. This relationship is indicative of snowmelt water injection. The relative contribution of the two sources was estimated using a two-component isotope hydrograph separation. The contribution of snowmelt water and groundwater to Yushugou River were a??63% and a??37%, respectively. From the study, we conclude that snowmelt water is the dominant water source to the basin during the spring melt period.
机译:中国西北部的许多流域除地下水外,还从融化的冰川和积雪中获取水。在过去的十年中,该地区的冰川和积雪量发生了重大变化,改变了水文学。量化水资源变化对于制定该地区的可持续战略至关重要。 2013年,在中国西北地区玉树沟河流域春季洪水期间进行了水同位素分配研究。该研究发现河水,融雪水和地下水之间的水同位素存在显着差异。在研究期间,地下水的同位素组成保持相对稳定。这种稳定性表明,近期的水文气候变化并没有显着影响地下水的补给率。河流水流量与水e ^ 18O呈反比关系。这种关系表明融雪注水。这两种来源的相对贡献是通过两组分同位素水文法分离估算的。融雪水和地下水对玉树沟河的贡献分别为63%和37%。通过研究,我们得出结论,融雪水是春季融化期流域的主要水源。

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