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首页> 外文期刊>Journal of Hydrology >Transformation of snow isotopic signature along groundwater recharge pathways in the Canadian Prairies
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Transformation of snow isotopic signature along groundwater recharge pathways in the Canadian Prairies

机译:加拿大大草原地下水充电途径雪同位素签名的转型

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摘要

Application of stable isotope methods to evaluate the contribution of different water sources to groundwater recharge relies on the knowledge about isotopic signatures of these sources. The data collected at study sites in the Canadian Prairies show that snowpack isotopic signatures exhibit a high spatial variability over a small scale (100 m) limiting the usefulness of point samples to estimate an average isotopic composition of snow over a large area. Isotopic signatures of snowmelt runoff can be different from those of pre-melt snowpack, further undermining the applicability of snow isotopic signature to characterisation of snowmelt-driven hydrological processes. Accounting for the actual signature of snow melt runoff has strong effects on its perceived role in recharging groundwater. The data also show that diffuse and depression-focussed components of groundwater recharge have different isotopic signatures, where the latter closely resembles snowmelt runoff. (C) 2017 Elsevier B.V. All rights reserved.
机译:稳定同位素方法在评价不同水源与地下水补给的贡献依赖于对这些来源同位素签名的知识。在加拿大大草原的研究网站上收集的数据表明,积雪同位素签名在小规模(&lt 19 m)上表现出高空间变异性限制点样品的有用性来估计在大面积上的平均同位素组成。雪花径流的同位素签名可以与熔融雪花雪堆的同位素差异不同,进一步破坏了雪同位素签名的适用性与雪花驱动的水文过程的表征。对雪熔融径流的实际签名的核算对其在充电地下水的感知作用具有很强的影响。该数据还表明,地下水补给的弥散和抑郁症焦点组分具有不同的同位素签名,后者与散雪径流相似。 (c)2017年Elsevier B.V.保留所有权利。

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