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Hydraulic and transport parameter assessment using column infiltration experiments

机译:使用立柱渗透实验评估水力和运输参数

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The quality of statistical calibration of hydraulic and transport soil properties is studied for infiltration experiments in which, over a given period, tracer-contaminated water is injected into an hypothetical column filled with a homogeneous soil. The saturated hydraulic conductivity, the saturated and residual water contents, the Mualem–van Genuchten shape parameters and the longitudinal dispersivity are estimated in a Bayesian framework using the Markov chain Monte Carlo (MCMC) sampler. The impact of the kind of measurement sets (water content, pressure inside the column, cumulative outflow and outlet solute concentration) and that of the solute injection duration is investigated by analyzing the calibrated model parameters and their confidence intervals for different scenarios. The results show that the injection period has a significant effect on the quality of the estimation, in particular, on the posterior uncertainty range of the parameters. All hydraulic and transport parameters of the investigated soil can be well estimated from the experiment using only the outlet concentration and cumulative outflow, which are measured non-intrusively. An improvement of the identifiability of the hydraulic parameters is observed when the pressure data from measurements taken inside the column are also considered in the inversion.
机译:在渗透实验中研究了水力和运输土壤特性的统计校准质量,在一定时期内,被示踪剂污染的水注入到填充有均质土壤的假想柱中。使用马尔可夫链蒙特卡洛(MCMC)采样器在贝叶斯框架中估算饱和的水力传导率,饱和的和残留的水含量,Mualem-van Genuchten形状参数和纵向分散性。通过分析校准后的模型参数及其在不同情况下的置信区间,研究了测量集类型(水含量,塔内压力,累积流出量和出口溶质浓度)以及溶质注入持续时间的影响。结果表明,注入期对估计的质量有重要影响,尤其是对参数的后验不确定性范围。仅使用出口浓度和累积流出量,就可以从实验中很好地估算出被调查土壤的所有水力和运输参数,而这些都是非侵入式测量的。当在反演中也考虑到来自塔内测量值的压力数据时,可以观察到液压参数可识别性的提高。

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