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Accounting for seasonal isotopic patterns of forest canopy intercepted precipitation in streamflow modeling

机译:在流模型中解释林冠截留降水的季节性同位素模式

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摘要

Forest canopy interception alters the isotopic tracer signal of precipitation leading to significant isotopic differences between open precipitation (δOP) and throughfall (δTF). This has important consequences for the tracer-based modeling of streamwater transit times. Some studies have suggested using a simple static correction to δOP by uniformly increasing it because δTF is rarely available for hydrological modeling. Here, we used data from a 38.5 ha spruce forested headwater catchment where three years of δOP and δTF were available to develop a data driven method that accounts for canopy effects on δOP. Changes in isotopic composition, defined as the difference δTF-δOP, varied seasonally with higher values during winter and lower values during summer. We used this pattern to derive a corrected δOP time series and analyzed the impact of using (1) δOP, (2) reference throughfall data (δTFref) and (3) the corrected δOP time series (δOPSine) in estimating the fraction of young water (Fyw), i.e., the percentage of streamflow younger than two to three months. We found that Fyw derived from δOPSine came closer to δTFref in comparison to δOP. Thus, a seasonally-varying correction for δOP can be successfully used to infer δTF where it is not available and is superior to the method of using a fixed correction factor. Seasonal isotopic enrichment patterns should be accounted for when estimating Fyw and more generally in catchment hydrology studies using other tracer methods to reduce uncertainty.
机译:森林冠层截留会改变降水的同位素示踪信号,从而导致开放降水(δOP)和穿透降雨(δTF)之间存在明显的同位素差异。这对基于示踪剂的河水运输时间建模具有重要意义。一些研究建议通过均匀增加δOP来对δOP使用简单的静态校正,因为δTF很少可用于水文模型。在这里,我们使用了38.5公顷的云杉林水源流域的数据,其中三年的δOP和δTF可用于开发一种数据驱动的方法,该方法考虑了冠层对δOP的影响。同位素组成的变化(定义为差δTF-δOP)随季节变化,冬季时较高,夏季时较低。我们使用此模式得出校正后的δOP时间序列,并分析了使用(1)δOP,(2)参考穿透数据(δTFref)和(3)校正后的δOP时间序列(δOPSine)对估算年轻水比例的影响(Fyw),即小于两到三个月的流量百分比。我们发现,与δOP相比,源自δOPSine的Fyw更接近δTFref。因此,δOP的季节性变化校正可以成功地推论δTF,因为它不可用并且优于使用固定校正因子的方法。在估算Fyw时应考虑季节性同位素富集模式,在流域水文学研究中更普遍地使用其他示踪剂方法来减少不确定性。

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