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Predicting dense nonaqueous phase liquid dissolution using a simplified source depletion model parameterized with partitioning tracers

机译:使用分配示踪剂参数化的简化源耗竭模型预测稠密非水相液体溶解

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Simulations of nonpartitioning and partitioning tracer tests were used to parameterize the equilibrium stream tube model (ESM) that predicts the dissolution dynamics of dense nonaqueous phase liquids (DNAPLs) as a function of the Lagrangian properties of DNAPL source zones. Lagrangian, or stream-tube-based, approaches characterize source zones with as few as two trajectory-integrated parameters, in contrast to the potentially thousands of parameters required to describe the point-by-point variability in permeability and DNAPL in traditional Eulerian modeling approaches. The spill and subsequent dissolution of DNAPLs were simulated in two-dimensional domains having different hydrologic characteristics (variance of the log conductivity field = 0.2, 1, and 3) using the multiphase flow and transport simulator UTCHEM. Nonpartitioning and partitioning tracers were used to characterize the Lagrangian properties (travel time and trajectory-integrated DNAPL content statistics) of DNAPL source zones, which were in turn shown to be sufficient for accurate prediction of source dissolution behavior using the ESM throughout the relatively broad range of hydraulic conductivity variances tested here. The results were found to be relatively insensitive to travel time variability, suggesting that dissolution could be accurately predicted even if the travel time variance was only coarsely estimated. Estimation of the ESM parameters was also demonstrated using an approximate technique based on Eulerian data in the absence of tracer data; however, determining the minimum amount of such data required remains for future work. Finally, the stream tube model was shown to be a more unique predictor of dissolution behavior than approaches based on the ganglia-to-pool model for source zone characterization.
机译:非分区和分区示踪剂测试的模拟用于参数化平衡流管模型(ESM),该模型预测致密非水相液体(DNAPLs)的溶解动力学是DNAPL源区的拉格朗日特性的函数。拉格朗日方法或基于流管的方法仅用两个轨迹积分参数来表征源区,这与描述传统欧拉建模方法中渗透率和DNAPL逐点变化所需的可能成千上万个参数形成对比。使用多相流和运输模拟器UTCHEM在具有不同水文特性(对数电导率场的差异= 0.2、1,和3)的二维域中模拟DNAPL的溢出和随后的溶解。使用非分区示踪剂和分区示踪剂表征DNAPL源区的拉格朗日特性(行进时间和与轨迹集成的DNAPL含量统计),这反过来又足以使用ESM在相对较宽的范围内准确预测源的溶解行为。此处测试的水力传导率差异。发现结果对行程时间可变性相对不敏感,这表明即使仅粗略估计行程时间变化也可以准确预测溶出度。在没有示踪剂数据的情况下,还使用基于欧拉数据的近似技术证明了ESM参数的估计。但是,仍然需要确定此类数据的最低数量,以供将来进行工作。最后,与基于神经节池模型进行源区特征分析的方法相比,流管模型显示出更独特的溶解行为预测指标。

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