Wood A Lynn, Enfield Carl G, Espinoza Felipe P, Annable Michael, Brooks Michael C, Rao P S C, Sabatini David, Knox Robert
National Risk Management Research Laboratory, U. S. Environmental Protection Agency, Ada, OK 74820, USA.
J Contam Hydrol. 2005 Dec;81(1-4):148-66. doi: 10.1016/j.jconhyd.2005.08.004. Epub 2005 Sep 26.
A Lagrangian stochastic model is proposed as a tool that can be utilized in forecasting remedial performance and estimating the benefits (in terms of flux and mass reduction) derived from a source zone remedial effort. The stochastic functional relationships that describe the hydraulic "structure" and non-aqueous phase liquid (NAPL) "architecture" have been described in a companion paper (Enfield, C.G., Wood, A.L., Espinoza, F.P., Brooks, M.C., Annable, M., Rao, P.S.C., this issue. Design of aquifer remediation systems: (1) describing hydraulic structure and NAPL architecture using tracers. J. Contam. Hydrol.). The previously defined functions were used along with the properties of the remedial fluids to describe remedial performance. There are two objectives for this paper. First, is to show that a simple analytic element model can be used to give a reasonable estimate of system performance. This is accomplished by comparing forecast performance to observed performance. The second objective is to display the model output in terms of change in mass flux and mass removal as a function of pore volumes of remedial fluid injected. The modelling results suggest that short term benefits are obtained and related to mass reduction at the sites where the model was tested.
提出了一种拉格朗日随机模型,作为一种可用于预测修复效果和估算源区修复工作所带来的效益(以通量和质量减少来衡量)的工具。描述水力“结构”和非水相液体(NAPL)“架构”的随机函数关系已在一篇配套论文中进行了阐述(恩菲尔德,C.G.,伍德,A.L.,埃斯皮诺萨,F.P.,布鲁克斯,M.C.,安娜布尔,M.,拉奥,P.S.C.,本期。含水层修复系统的设计:(1)使用示踪剂描述水力结构和NAPL架构。《污染水文杂志》)。先前定义的函数与修复流体的特性一起用于描述修复效果。本文有两个目标。首先,是要表明一个简单的解析单元模型可用于对系统性能给出合理估计。这通过将预测性能与观测性能进行比较来实现。第二个目标是以注入的修复流体孔隙体积的函数形式,展示质量通量变化和质量去除方面的模型输出。建模结果表明,在测试该模型的场地获得了短期效益,且与质量减少相关。