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Numerical methods for improving sensitivity analysis and parameter estimation of virus transport simulated using sorptive-reactive processes

机译:吸附反应过程模拟提高病毒迁移敏感性分析和参数估计的数值方法

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摘要

Using one- and two-dimensional homogeneous simulations, this paper addresses challenges associated with sensitivity analysis and parameter estimation for virus transport simulated using sorptive-reactive processes. Head, flow, and conservative- and virus-transport observations are considered. The paper examines the use of (1) observed-value weighting, (2) breakthrough-curve temporal moment observations, and (3) the significance of changes in the transport time-step size. The results suggest that (1) sensitivities using observed-value weighting are more susceptible to numerical solution variability, (2) temporal moments of the breakthrough curve are a more robust measure of sensitivity than individual conservative-transport observations, and (3) the transport-simulation time step size is more important than the inactivation rate in solution and about as important as at least two other parameters, reflecting the ease with which results can be influenced by numerical issues. The approach presented allows more accurate evaluation of the information provided by observations for estimation of parameters and generally improves the potential for reasonable parameter-estimation results.
机译:本文使用一维和二维均匀模拟,解决了与使用吸附反应过程模拟的病毒运输的敏感性分析和参数估计相关的挑战。考虑水头,水流以及保守和病毒运输的观察结果。本文研究了(1)观测值加权,(2)突破曲线瞬时矩观测以及(3)运输时步大小变化的重要性的使用。结果表明:(1)使用观测值加权的灵敏度更容易受到数值解变化的影响;(2)突破曲线的瞬时矩比单独的保守运输观测值更可靠地度量灵敏度;(3)输运模拟时间步长比溶液中的失活率更重要,并且与至少其他两个参数同样重要,这反映了数值问题容易影响结果。提出的方法可以更准确地评估由观测提供的信息,以进行参数估计,并通常提高合理参数估计结果的可能性。

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