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Modified Well-Field Configurations for Improved Performance of Contaminant Elution and Tracer Tests

机译:改进的井场配置可提高污染物洗脱和示踪剂测试的性能

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摘要

Contaminant elution and tracer (CET) tests are one method for characterizing the impact of mass transfer, transformation, and other attenuation processes on contaminant transport and mass removal for subsurface systems. The purpose of the work reported herein is to explore specific well-field configurations for improving CET tests by reducing the influence of preferential flow and surrounding-plume effects. Three injection-extraction well configurations were tested for different domain conditions using a three-dimensional numerical model. The three configurations were the traditional configuration with a single pair of injection-extraction wells, modified configuration I with one extraction well located between two injection wells, and modified configuration II with two pairs of injection-extraction couplets (one nested within the other). Elution curves for resident contaminant and breakthrough curves from simulated tracer tests were examined for specific landmarks such as the presence and extent of steady-state (relatively high concentrations) and asymptotic (asymptotic decrease to low concentrations) phases, as well as distinct changes in slope. Temporal-moment analysis of the breakthrough curves was conducted to evaluate mass recovery. Effective diffusion coefficients were obtained by fitting selected functions to the elution curves. Based on simulation results for a homogeneous domain, full isolation of the inner extraction well from the surrounding plume was obtained for the modified configuration II, whereas the extraction wells are impacted by the surrounding plume for the other two configurations. Therefore, configuration II was used for additional simulations conducted with layered and heterogeneous domains. Tracer-test simulations for homogeneous and layered domains indicate 100% mass recovery for the inner extraction well. For the heterogeneous domain, decreasing the distance between the inner injection-extraction well couplet and adjusting the pumping-rate distribution between the two extraction wells increased the mass recovery from 69% to 99%.
机译:污染物洗脱和示踪剂(CET)测试是表征传质,转化和其他衰减过程对地下系统污染物迁移和去除质量的影响的一种方法。本文报道的工作目的是探索特定的井场配置,以通过减少优先流动和周围泡沫效应来改善CET测试。使用三维数值模型,针对不同的区域条件测试了三种注入萃取井配置。这三种配置是传统配置,其中具有一对注射抽油井,修改后的配置I,其中一个抽油井位于两个注射井之间,以及修改后的配置II,其中有两对注射-抽油烟嘴(一个嵌套在另一对内)。检查了居民污染物的洗脱曲线和模拟示踪剂测试的突破曲线是否具有特定的标志性特征,例如稳态(相对高浓度)和渐近(渐进降低至低浓度)相的存在和程度,以及斜率的明显变化。对穿透曲线进行时间矩分析以评估质量回收率。通过将选定的函数拟合到洗脱曲线获得有效的扩散系数。根据同质域的模拟结果,对于修改后的配置II,内部抽出井与周围羽流完全隔离,而对于其他两种配置,提取井则受到周围羽流的影响。因此,配置II用于对分层和异构域进行的其他模拟。均质和分层区域的示踪剂测试模拟表明内部提取井的质量回收率为100%。对于非均质域,减小内部注入-萃取井耦合之间的距离并调整两个萃取井之间的泵送速率分布将质量回收率从69%提高到99%。

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