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'Untangling hyporheic residence time distributions and whole stream' 'metabolism using a hydrological process model'

机译:使用水文过程模型“使用水文过程模型的”未进行过度高等停留时间分布和整个流“的新陈代谢”

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The interaction of the water residence time (RT) in hyporheic sediments with the sediment metabolic rates is believed to be a key factor controlling whole stream metabolism. However, due to the methodological difficulties, there is little data that investigates this fundamental theory of aquatic ecology. Here, we report on progress made to combine numerical modelling with a series of modification to laboratory flumes overcoming methodological difficulties e.g. by creating steady flow paths for assessment of metabolic rates. To model the biogeochemical performance and to validate the model results, sediment structures were introduced in both, the model and the flumes, leading to differing RT distributions. Furthermore, the DOC supply in the flumes was manipulated to test the whole stream metabolic response with regard to RT distributions. In the flumes, hydraulic conditions were assessed using conservative tracer and heat as tracer. Metabolic activity was assessed using oxygen dynamics as a proxy of community respiration (CR). Residence time and metabolic processes were modelled using a multicomponent reactive transport code called MIN3P and calibrated with regard to the hydraulic conditions using the results obtained from the flume experiments. Monod type expressions were used to implement metabolic activity terms in the model. Using the results of the hydrological process model, a sensitivity analysis of the impact of RT distributions on the metabolic activity could yield supporting proof of an existing link between the two.
机译:在随泥沙代谢率潜流沉积物中的水停留时间(RT)的相互作用被认为是控制整个流新陈代谢的关键因素。但是,由于方法上的困难,很少有数据调查水生生态的这一基本原理。在这里,我们报告进展情况,以数值模拟了一系列修改的实验室水槽克服困难的方法结合例如通过为代谢率的评估源源不断的路径。为了模拟生物地球化学性能和验证模型的结果,沉积物的结构在两个进行了介绍,在模型和水槽,导致不同的RT分布。此外,在水槽的DOC供给被操纵,以测试对于RT分布在整个流代谢反应。在水槽,水力条件,使用保守示踪剂和热作为示踪剂评估。代谢活性使用氧作为动力学群落呼吸(CR)的一个代理评估。停留时间和代谢过程中使用被称为MIN3P并且关于使用从所述水槽实验获得的结果的水力条件校准的多组分反应性传输代码建模。莫诺类型表达式被用来实现模型代谢活动条款。使用水文过程模型中,RT分布在代谢活性的影响的灵敏度分析的结果可能会产生支承两个之间的现有连接的证明。

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