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Evaluating the sensitivity of a subsurface multicomponent reactive transport model with respect to transport and reaction parameters

机译:评估地下多组分反应性输运模型相对于输运和反应参数的敏感性

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The input variables for a numerical model of reactive solute transport in groundwater include both transport parameters, such as hydraulic conductivity and infiltration, and reaction parameters that describe the important chemical and biological processes in the system. These parameters are subject to uncertainty due to measurement error and due to the spatial variability of properties in the subsurface environment. This paper compares the relative effects of uncertainty in the transport and reaction parameters on the results of a solute transport model. This question is addressed by comparing the magnitudes of the local sensitivity coefficients for transport and reaction parameters. General sensitivity equations are presented for transport parameters, reaction parameters, and the initial (background) concentrations in the problem domain. Parameter sensitivity coefficients are then calculated for an example problem in which uranium(VI) hydrolysis species are transported through a two-dimensional domain with a spatially variable pattern of surface complexation sites. In this example, the reaction model includes equilibrium speciation reactions and mass transfer--limited non--electrostatic surface complexation reactions. The set of parameters to which the model is most sensitive includes the initial concentration of one of the surface sites, the formation constant (K_f) of one of the surface complexes and the hydraulic conductivity within the reactive zone. For this example problem, the sensitivity analysis demonstrates that transport and reaction parameters are equally important in terms of how their variability affects the model results.
机译:地下水中反应性溶质运移数值模型的输入变量包括运移参数(例如水力传导率和入渗)以及描述系统中重要化学和生物过程的反应参数。这些参数由于测量误差和地下环境中属性的空间变异性而具有不确定性。本文比较了运输和反应参数不确定性对溶质运输模型结果的相对影响。通过比较运输和反应参数的局部灵敏度系数的大小可以解决此问题。针对运输参数,反应参数和问题域中的初始(背景)浓度,提出了一般灵敏度方程。然后针对示例问题计算参数灵敏度系数,在该示例问题中,铀(VI)水解物质通过具有表面可变位点空间可变模式的二维域传输。在此示例中,反应模型包括平衡形态反应和传质受限的非静电表面络合反应。模型最敏感的参数集包括一个表面部位的初始浓度,一个表面络合物之一的形成常数(K_f)和反应区内的水力传导率。对于此示例问题,敏感性分析表明,就其可变性如何影响模型结果而言,转运和反应参数同等重要。

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