Guo Zhilin, Brusseau Mark L
Soil, Water and Environmental Science Department, School of Earth and Environmental Sciences, University of Arizona, 429 Shantz Bldg. Tucson, AZ 85721.
Hydrology and Water Resources Department, School of Earth and Environmental Sciences, University of Arizona, 429 Shantz Bldg. Tucson, AZ 85721.
Hydrol Process. 2017 Dec 30;31(26):4748-4756. doi: 10.1002/hyp.11393. Epub 2017 Nov 7.
A three-dimensional numerical model was used to simulate the impact of different well-field configurations on pump-and-treat mass removal efficiency for large groundwater contaminant plumes residing in homogeneous and layered domains. Four well-field configurations were tested, Longitudinal, Distributed, Downgradient, and natural gradient (with no extraction wells). The reductions in contaminant mass discharge (CMDR) as a function of mass removal (MR) were characterized to assess remediation efficiency. Systems whose CDMR-MR profiles are below the 1:1 relationship curve are associated with more efficient well-field configurations. For simulations conducted with the homogeneous domain, the CMDR-MR curves shift leftward, from convex-downward profiles for natural gradient and Longitudinal to first-order behaviour for Distributed, and further leftward to a sigmoidal profile for the Downgradient well-field configuration. These results reveal the maximum potential impacts of well-field configuration on mass-removal behaviour, which is attributed to mass-transfer constraints associated with regions of low flow. In contrast, for the simulations conducted with the layered domain, the CMDR-MR relationships for the different well-field configurations exhibit convex-upward profiles. The nonideal mass-removal behaviour in this case is influenced by both well-field configuration and back diffusion associated with low-permeability units.
使用三维数值模型来模拟不同井场配置对位于均质和分层区域的大型地下水污染物羽状体的抽提-处理质量去除效率的影响。测试了四种井场配置,即纵向、分布式、下游和自然梯度(无抽水井)。表征了污染物质量排放减少量(CMDR)作为质量去除量(MR)的函数,以评估修复效率。CMDR-MR曲线低于1:1关系曲线的系统与更高效的井场配置相关。对于在均质区域进行的模拟,CMDR-MR曲线向左移动,从自然梯度和纵向的凸向下轮廓到分布式的一阶行为,再进一步向左到下游井场配置的S形轮廓。这些结果揭示了井场配置对质量去除行为的最大潜在影响,这归因于与低流量区域相关的传质限制。相比之下,对于在分层区域进行的模拟,不同井场配置的CMDR-MR关系呈现出凸向上的轮廓。在这种情况下,非理想的质量去除行为受到井场配置和与低渗透单元相关的反向扩散的影响。