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Modeling the temporal variability of zinc concentrations in zinc roof runoff-experimental study and uncertainty analysis

机译:锌屋顶径流中锌浓度随时间变化的模型研究和不确定性分析

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摘要

This study investigates the temporal variability of zinc concentrations from zinc roof runoff. The influence of rainfall characteristics and dry period duration is evaluated by combining laboratory experiment on small zinc sheets and in situ measurements under real weather conditions from a 1.6-m(2) zinc panel. A reformulation of a commonly used conceptual runoff quality model is introduced and its ability to simulate the evolution of zinc concentrations is evaluated. A systematic and sharp decrease from initially high to relatively low and stable zinc concentrations after 0.5 to 2 mm of rainfall is observed for both experiments, suggesting that highly soluble corrosion products are removed at early stages of runoff. A moderate dependence between antecedent dry period duration and the magnitude of zinc concentrations at the beginning of a rain event is evidenced. Contrariwise, results indicate that concentrations are not significantly influenced by rainfall intensities. Simulated rainfall experiment nonetheless suggests that a slight effect of rainfall intensities may be expected after the initial decrease of concentrations. Finally, this study shows that relatively simple conceptual runoff quality models may be adopted to simulate the variability of zinc concentrations during a rain event and from a rain event to another.
机译:这项研究调查了锌屋顶径流中锌浓度的时间变化。通过结合实验室实验对小的锌片和在真实天气条件下从1.6 m(2)锌面板上进行的原位测量,来评估降雨特征和干旱持续时间的影响。介绍了常用概念性径流质量模型的重新表述,并评估了其模拟锌浓度变化的能力。在这两个实验中,都观察到从0.5至2 mm降雨后锌浓度从最初的高浓度到相对较低的稳定浓度,系统地急剧下降,这表明高溶解性腐蚀产物在径流的早期阶段被去除。可以证明,干旱前期持续时间与降雨开始时锌浓度的大小之间存在适度的相关性。相反,结果表明浓度不受降雨强度的显着影响。尽管如此,模拟降雨实验表明,在浓度最初降低之后,可能会出现降雨强度的轻微影响。最后,这项研究表明,可以采用相对简单的概念性径流质量模型来模拟降雨事件期间以及降雨事件之间锌浓度的变化。

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