Mugunthan Pradeep, Russell Kevin T, Gong Binglei, Riley Michael J, Chin Arthur, McDonald Blair G, Eastcott Linda J
Anchor QEA, LLC, 290 Elwood Davis Road, Suite 340, Liverpool, NY 13088.
Anchor QEA, LLC, 10 Liberty Square, 6th Floor, Boston, MA 02109.
Ground Water. 2017 May;55(3):302-315. doi: 10.1111/gwat.12475. Epub 2016 Oct 24.
There is an identified need for fully representing groundwater-surface water transition zone (i.e., the sediment zone that connects groundwater and surface water) processes in modeling fate and transport of contaminants to assist with management of contaminated sediments. Most existing groundwater and surface water fate and transport models are not dynamically linked and do not consider transition zone processes such as bioturbation and deposition and erosion of sediments. An interface module is developed herein to holistically simulate the fate and transport by coupling two commonly used models, Environmental Fluid Dynamics Code (EFDC) and SEAWAT, to simulate surface water and groundwater hydrodynamics, while providing an enhanced representation of the processes in the transition zone. Transition zone and surface water contaminant processes were represented through an enhanced version of the EFDC model, AQFATE. AQFATE also includes SEDZLJ, a state-of-the-science surface water sediment transport model. The modeling framework was tested on a published test problem and applied to evaluate field-scale two- and three-dimensional contaminant transport. The model accurately simulated concentrations of salinity from a published test case. For the field-scale applications, the model showed excellent mass balance closure for the transition zone and provided accurate simulations of all transition zone processes represented in the modeling framework. The model predictions for the two-dimensional field case were consistent with site-specific observations of contaminant migration. This modeling framework represents advancement in the simulation of transition zone processes and can help inform risk assessment at sites where contaminant sources from upland areas have the potential to impact sediments and surface water.
在模拟污染物的归宿和迁移以辅助受污染沉积物管理方面,已确认需要全面呈现地下水 - 地表水过渡带(即连接地下水和地表水的沉积物带)过程。大多数现有的地下水和地表水归宿与迁移模型未动态链接,且未考虑诸如生物扰动以及沉积物的沉积和侵蚀等过渡带过程。本文开发了一个接口模块,通过耦合两个常用模型——环境流体动力学代码(EFDC)和SEAWAT,来全面模拟归宿和迁移,以模拟地表水和地下水水动力,同时增强对过渡带过程的呈现。通过EFDC模型的增强版本AQFATE来呈现过渡带和地表水污染物过程。AQFATE还包括SEDZLJ,这是一个先进的地表水沉积物输运模型。该建模框架在一个已发表的测试问题上进行了测试,并应用于评估现场尺度的二维和三维污染物迁移。该模型准确模拟了一个已发表测试案例中的盐度浓度。对于现场尺度应用,该模型在过渡带显示出出色的质量平衡闭合,并对建模框架中呈现的所有过渡带过程提供了准确模拟。二维现场案例的模型预测与污染物迁移的特定场地观测结果一致。这种建模框架代表了过渡带过程模拟的进展,有助于为来自高地地区的污染物源有可能影响沉积物和地表水的场地的风险评估提供信息。