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Riparian soil temperature modification of the relationship between flow and dissolved organic carbon concentration in a boreal stream

机译:河岸土壤温度变化对北方河流水流与溶解有机碳浓度之间关系的影响

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摘要

Discharge is often strongly correlated to the temporal variability of dissolved organic carbon concentrations ([DOC]) in watercourses. One recently proposed way to model this is the riparian flow-concentration integration model (RIM) concept mat accounts for the role of flow pathway control on [DOC] dynamics in streams. However, in boreal systems, there is also commonly a seasonal pattern, which cannot be explained by variability in discharge alone. The objectives with this study were to (1) demonstrate RIM as a tool for studying variability in stream water chemistry, (2) investigate factors related to stream water DOC variability, and (3) modify RIM to account for these factors. RIM was used with 14 years of daily discharge and almost 500 stream measurements of [DOC] from a forested boreal headwater stream. We used the calibrated RIM to account for discharge influences and then investigated variables that could be related to DOC variability (air and soil temperature, soil moisture, precipitation, antecedent flow and stream sulfate). Five alternative formulations of RIM, with temporally varying soil concentration profiles based on the variability in soil temperature and/or antecedent flow, were evaluated. The model where only the effects of riparian soil temperature on dynamics in DOC depth profiles were included performed best overall. This dynamic RIM improved the Nash-Sutcliffe to 0.58 compared to 0.42 for the flow-only formulation and reduced the median absolute error from 3.0 to 2.1 mg L~(-1). This study demonstrates that RIM is a simple way of modeling stream DOC and exploring controls on stream water chemistry.
机译:排放通常与河道中溶解有机碳浓度(DOC)的时间变化密切相关。最近提出的一种对此建模的方法是河岸流量-浓度集成模型(RIM)概念,它说明了流路控制对流中[DOC]动力学的作用。但是,在寒带系统中,通常也存在季节性模式,这不能仅通过排放量的变化来解释。这项研究的目的是(1)证明RIM是研究流水化学变化性的工具,(2)研究与流水DOC变异性相关的因素,以及(3)修改RIM以解决这些因素。使用RIM的日排放量为14年,并且从森林中的北方源头水流中测量了近500次[DOC]的流量。我们使用校准的RIM来考虑排放影响,然后研究可能与DOC可变性相关的变量(空气和土壤温度,土壤湿度,降水,前期流量和硫酸盐流)。评估了RIM的五种替代配方,这些配方具有随土壤温度和/或先前流量的变化而随时间变化的土壤浓度曲线。总体上,仅包括河岸土壤温度对DOC深度剖面动力学的影响的模型。该动态RIM将Nash-Sutcliffe改进为0.58,而仅流动制剂则为0.42,并且将中位绝对误差从3.0降至2.1 mg L〜(-1)。这项研究表明,RIM是一种简单的方式来对流DOC建模并探索对流水化学的控制。

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  • 来源
    《Water resources research》 |2011年第8期|p.W08532.1-W08532.17|共17页
  • 作者单位

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Uppsala, Sweden;

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Uppsala, Sweden;

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Uppsala, Sweden;

    Department of Forest Ecology and Management, Swedish University of Agricultural Sciences, Umea, Sweden;

    Department of Geography, University of Zurich, Zurich, Switzerland,Department of Earth Sciences, Uppsala University, Uppsala, Sweden;

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Uppsala, Sweden,Department of Earth Sciences, Uppsala University, Uppsala, Sweden;

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