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Sensitivity analysis of conservative and reactive stream transient storage models applied to field data from multiple-reach experiments

机译:保守和反应性流瞬态存储模型应用于多范围实验的现场数据的敏感性分析

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The transient storage model (TSM) has been widely used in studies of stream solute transport and fate, with an increasing emphasis on reactive solute transport. In this study we perform sensitivity analyses of a conservative TSM and two different reactive solute transport models (RSTM), one that includes first-order decay in the stream and the storage zone, and a second that considers sorp-tion of a reactive solute on streambed sediments. Two previously analyzed data sets are examined with a focus on the reliability of these RSTMs in characterizing stream and storage zone solute reactions. Sensitivities of simulations to parameters within and among reaches, parameter coefficients of variation, and correlation coefficients are computed and analyzed. Our results indicate that (1) simulated values have the greatest sensitivity to parameters within the same reach, (2) simulated values are also sensitive to parameters in reaches immediately upstream and downstream (inter-reach sensitivity), (3) simulated values have decreasing sensitivity to parameters in reaches farther downstream, and (4) in-stream reactive solute data provide adequate data to resolve effective storage zone reaction parameters, given the model formulations. Simulations of reactive solutes are shown to be equally sensitive to transport parameters and effective reaction parameters of the model, evidence of the control of physical transport on reactive solute dynamics. Similar to conservative transport analysis, reactive solute simulations appear to be most sensitive to data collected during the rising and falling limb of the concentration breakthrough curve.
机译:瞬态存储模型(TSM)已广泛用于研究流中溶质的运移和归宿,并越来越重视反应性溶质的运移。在这项研究中,我们对保守的TSM和两种不同的反应性溶质运移模型(RSTM)进行了敏感性分析,一种包括流和存储区中的一阶衰减,另一种考虑了反应性溶质在溶液中的吸附。河床沉积物。检查了两个先前分析的数据集,重点是这些RSTM在表征流和存储区溶质反应中的可靠性。计算并分析了仿真对范围内和范围内参数,参数变异系数和相关系数的敏感性。我们的结果表明(1)模拟值对同一范围内的参数具有最大的敏感性;(2)模拟值对紧接上游和下游范围内的参数也具有敏感性(跨域敏感性);(3)模拟值的降低对模型参数的敏感性,以及对下游参数的敏感性,(4)入流反应性溶质数据提供了足够的数据来解析有效的存储区反应参数。结果表明,反应性溶质的模拟对模型的输运参数和有效反应参数同样敏感,这是对反应性溶质动力学进行物理输运控制的证据。与保守的运移分析相似,反应性溶质模拟对浓度突破曲线上升和下降沿期间收集的数据似乎最敏感。

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