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Assessing the seasonality and uncertainty in evapotranspiration partitioning using a tracer-aided model

机译:使用示踪辅助模型评估蒸发散热分区中的季节性和不确定性

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摘要

Evapotranspiration (ET) partitioning is a growing field of research in hydrology due to the significant fraction of watershed water loss it represents. The use of tracer-aided models has improved understanding of watershed processes, and has significant potential for identifying time-variable partitioning of evaporation (E) from ET. A tracer-aided model was used to establish a time-series of E/ET using differences in riverine delta O-18 and delta H-2 in four northern Canadian watersheds (lower Nelson River, Manitoba, Canada). On average E/ET follows a parabolic trend ranging from 0.7 in the spring and autumn to 0.15 (three watersheds) and 0.5 (fourth watershed) during the summer growing season. In the fourth watershed wetlands and shrubs dominate land cover. During the summer, E/ET ratios are highest in wetlands for three watersheds (10% higher than unsaturated soil storage), while lowest for the fourth watershed (20% lower than unsaturated soil storage). Uncertainty of the ET partition parameters is strongly influenced by storage volumes, with large storage volumes increasing partition uncertainty. In addition, higher simulated soil moisture increases estimated E/ET. Although unsaturated soil storage accounts for larger surface areas in these watersheds than wetlands, riverine isotopic composition is more strongly affected by E from wetlands. Comparisons of E/ET to measurement-intensive studies in similar ecoregions indicate that the methodology proposed here adequately partitions ET. (C) 2018 Published by Elsevier B.
机译:蒸散散热(et)分区是由于其代表的分水岭水分损失的显着分数,水文研究所不断增长。使用示踪辅助模型的使用具有改进了对流域过程的理解,并且具有识别来自ET的蒸发(e)的时变分配的显着潜力。示踪辅助模型用于建立使用河滨三角洲O-18的差异和四个加拿大流域(下纳尔逊河,Manitoba,Canada)的差异的时间序列E / ET。平均E / ET在夏季生长季节期间,春季和秋季的抛物线趋势范围为0.7,秋季至0.15(三分水岭)和0.5(第四分水岭)。在第四分水岭湿地和灌木支配陆地覆盖。在夏季,湿地在三个流域(比不饱和土壤储存高10%)的湿地中最高,而第四分水岭的最低(比不饱和土壤储存20%)。 ET分区参数的不确定性受到存储体积的强烈影响,具有大存储体积增加分区不确定性。此外,较高的模拟土壤湿度升高估计E / ET。虽然这些流域的较大表面区域的不饱和土壤储存比湿地,但河流同位素组合物受到湿地的影响更大。 E / ET对类似eCoregions的测量密集型研究的比较表明,该方法在此提出的是et。 (c)2018年由Elsevier B出版。

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