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Modeling tracers and contaminant flux in heterogeneous aquifers.

机译:对非均质含水层中的示踪剂和污染物通量建模。

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The results of this research have a potential impact on two major areas of current groundwater research and policy. First, a complete methodology is now available for analyzing the accuracy of dense nonaqueous phase liquid (DNAPL) volume derived from partitioning interwell tracer test (PITT) data with more confidence than any other measurement method current available in the field. Second, the benefit to groundwater quality of reducing DNAPL mass in source zones has been shown to be very substantial following high mass removal similar to what has actually been demonstrated in the field with surfactant flooding at two typical sites. It is hoped that this research provides an impetus to the further use of careful and accurate flow and transport simulation both to better understand the key issues such as flux reduction and to promote more widespread cleanup of DNAPL source zones.; The effect of permeability heterogeneity on the tracer response was investigated using the flow and transport simulator UTCHEM. This study shows the important contribution of the geology of the aquifer to inefficient tracer sweep of the DNAPL source zone. Sensitivity of the results was examined for geostatistical parameters such as the standard deviation of the permeability and the correlation length. An investigation was conducted to study the use of multilevel samplers for estimating vertical DNAPL distribution in an aquifer. The limitations of accurately estimating vertical DNAPL saturation profile were presented for a field aquifer in Hill Air Force Base (Hill AFB). The error introduced due to exponential extrapolation of tracer data was investigated as a function of tracer detection limit and the heterogeneity of the aquifer. The error in estimating oil volume increased as the tracer detection limit was increased and the heterogeneity was increased. Alternate approaches to extrapolation of tracer data have been presented and discussed.; A systematic and thorough study to evaluate the benefits of source zone reduction in heterogeneous aquifers was performed. A methodology was developed to quantify the effectiveness of SEAR by calculating downstream contaminant mass flux across a control plane. The results show that partial DNAPL removal is beneficial in improving downstream groundwater quality. Results from modeling a portion of the DNAPL source zone at Hill AFB showed a trichloroethylene (TCE) mass flux reduction of greater than 99.98% for a mass reduction of 94%. Results from modeling of the Camp Lejeune aquifer showed that a 79% perchloroethylene (PCE) mass reduction achieved a 99% mass flux reduction downstream. The effect of contaminant diffusion from a low permeability zone to a high permeability zone at Camp Lejeune was found to be negligible.
机译:这项研究的结果可能对当前的地下水研究和政策两个主要领域产生潜在影响。首先,现在有一种完整的方法可用于比对井间示踪剂测试(PITT)数据进行分区而获得的稠密非水相液体(DNAPL)体积的准确性,其可靠性比本领域中任何其他现有测量方法都高。其次,降低质量后,已证明减少源区DNAPL量对地下水质量的好处非常可观,这与在两个典型位置上使用表面活性剂驱油在田间实际证明的情况类似。希望这项研究为进一步使用仔细,准确的流动和传输模拟提供动力,既可以更好地理解关键问题,例如减少通量,又可以促进对DNAPL源区的更广泛清理。使用流动和运输模拟器UTCHEM研究了渗透率非均质性对示踪剂响应的影响。这项研究表明了含水层地质对DNAPL源区示踪剂扫描效率低下的重要贡献。对结果的敏感性进行了地统计学参数的检验,例如渗透率的标准偏差和相关长度。进行了一项研究,以研究使用多级采样器估算含水层中DNAPL的垂直分布。提出了对希尔空军基地(希尔空军基地)中的一个含水层准确估计垂直DNAPL饱和度剖面的局限性。研究了由于示踪剂数据的指数外推引起的误差,该误差是示踪剂检出限和含水层非均质性的函数。随着示踪剂检测限的增加和异质性的增加,估计油量的误差也随之增加。已经介绍和讨论了跟踪器数据的其他外推方法。进行了系统而彻底的研究,以评估异质含水层中源区减少的好处。通过计算控制平面上下游污染物质量通量,开发了一种方法来量化SEAR的有效性。结果表明,部分去除DNAPL有利于改善下游地下水质量。对Hill AFB的DNAPL源区的一部分进行建模的结果显示,三氯乙烯(TCE)的质量通量减少量大于99.98%,质量减少量为94%。 Camp Lejeune蓄水层的建模结果表明,减少79%的全氯乙烯(PCE)可使下游的通量减少99%。发现污染物在Lejeune营地从低渗透率区扩散到高渗透率区的影响可以忽略不计。

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