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首页> 外文期刊>Geophysical Research Letters >Interception effects on stable isotope driven streamwater transit time estimates
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Interception effects on stable isotope driven streamwater transit time estimates

机译:拦截对稳定同位素驱动的河水渡越时间估计的影响

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摘要

Previous studies of streamwater transit time distributions (TTDs) used isotope tracer information from open precipitation (OP) as inputs to lumped watershed models that simulate the stream isotopic composition to estimate TTD. However, in forested catchments passage of rainfall through the canopy will alter the tracer signature of throughfall (TF) via interception. Here we test the effect of using TF instead of OP on TTD estimates. We sampled a 0.39km(2) catchment (Wustebach, Germany) for a 19month period using weekly precipitation and stream isotope data to evaluate changes in stream isotope simulation and TTDs. We found that TF had different effects on TTDs for O-18 and H-2, with TF leading to up to 4months shorter transit times. TTDs converged for both isotopes only when using TF. TF improved the stream isotope simulations. These results demonstrate the importance of canopy-induced isotope tracer changes in estimating streamwater TTDs in forested catchments.
机译:先前对河水渡越时间分布(TTD)的研究使用来自开放降水(OP)的同位素示踪剂信息作为集总集水区模型的输入,该集水区模型模拟河水同位素组成来估算TTD。但是,在森林集水区,降雨穿过冠层将通过拦截改变穿透(TF)的示踪剂特征。在这里,我们测试了使用TF代替OP对TTD估计的影响。我们使用每周的降水量和流态同位素数据来评估流态同位素模拟和TTD的变化,在19个月的时间段内对0.39 km(2)的集水区(德国Wustebach)进行了采样。我们发现,TF对O-18和H-2的TTD具有不同的影响,TF使运输时间缩短了多达4个月。仅当使用TF时,两种同位素的TTD才会收敛。 TF改进了流同位素模拟。这些结果证明了冠层诱发的同位素示踪剂变化在估算森林流域的溪流TTDs方面的重要性。

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