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首页> 外文期刊>Hydrological Processes >Isotope hydrology of the Oldman River basin, southern Alberta, Canada
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Isotope hydrology of the Oldman River basin, southern Alberta, Canada

机译:加拿大艾伯塔省南部奥尔德曼河流域的同位素水文学

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摘要

The partially semi-arid Oldman River basin (OMRB), located in southern Alberta (Canada), has an area of 28 200 km2, is forested in its western headwater part, and is used for agriculture in its eastern part. Hydrometric measurements indicate that flow in the Oldman River has decreased by ~34% between 1913 and 2003, and it is predicted that water withdrawals will increase in the next 20 years. The objective of this study was to determine whether isotope ratio measurements can provide further insight into the water dynamics of the Oldman River and its tributaries. Surface water samples were collected monthly between December 2000 and March 2003. Groundwater samples were taken from 58 wells during one-time sampling trips. Runoff within the OMRB is currently about 70 mm year~(-1), with a corresponding runoff ratio of 0-18. Seasonal flow characteristics are markedly different upstream and downstream of the Oldman River reservoir. Upstream, sharp increases in flow in late spring and early summer are followed by a rapid decrease to base flow levels. Downstream, a prolonged high flow peak is observed due to the storage effect of the Oldman River reservoir. The seasonal variation in the isotopic composition of surface water from upstream sites is small. This suggests that peak runoff is not predominantly generated by melting snow accumulated during the preceding winter, but mainly by relatively well-mixed young groundwater. A significant increase in the δ~(18)O and δ~2H values in the downstream part of the basin was observed. The increase in the isotopic values is partly due to surface water and groundwater influx with progressively higher δ~(18) and δ~2H values in the eastern part, and partly due to evaporation. Hence, the combination of hydrometric data with isotope measurements yields valuable insights into the water dynamics in the OMRB that may be further refined with more intensive measurement programmes in the future.
机译:位于加拿大艾伯塔省南部的部分半干旱的奥尔德曼河流域(OMRB)的面积为28 200平方公里,其西部水源地森林茂密,东部用于农业。水文测量表明,在1913年至2003年期间,奥尔德曼河的流量减少了约34%,并且预测在未来20年内取水量将增加。这项研究的目的是确定同位素比测量是否可以提供对奥尔德曼河及其支流水动力学的进一步了解。在2000年12月至2003年3月之间每月采集一次地表水样品。在一次采样过程中,从58口井中采集了地下水样品。 OMRB内的径流目前约为70毫米(-1)年,对应的径比为0-18。季节性流量特征在奥尔德曼河水库的上游和下游明显不同。上游,春末和夏初的流量急剧增加,随后基本流量迅速下降。下游,由于奥尔德曼河水库的蓄水作用,观测到延长的高流量峰。来自上游站点的地表水同位素组成的季节性变化很小。这表明高峰径流主要不是由前一个冬季积聚的积雪融化产生的,而是主要由相对混合良好的年轻地下水产生的。观察到盆地下游部分的δ〜(18)O和δ〜2H值显着增加。同位素值的增加部分归因于地表水和地下水涌入,东部地区的δ〜(18)和δ〜2H值逐渐升高,部分归因于蒸发。因此,将水文数据与同位素测量结合起来,可以得出有关OMRB中水动力学的有价值的见解,将来可以通过更密集的测量程序进一步完善。

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