United States Geological Survey, 2730 N. Deer Run Road, Carson City, NV 89701. Department of Civil and Environmental Engineering, Colorado State University, 1372 Campus Delivery, Fort Collins, CO 80523-1372.
Ground Water. 2013 Sep-Oct;51(5):752-61. doi: 10.1111/j.1745-6584.2012.01009.x. Epub 2012 Nov 6.
A numerical model was developed that is capable of simulating multispecies reactive solute transport in variably saturated porous media. This model consists of a modified version of the reactive transport model RT3D (Reactive Transport in 3 Dimensions) that is linked to the Unsaturated-Zone Flow (UZF1) package and MODFLOW. Referred to as UZF-RT3D, the model is tested against published analytical benchmarks as well as other published contaminant transport models, including HYDRUS-1D, VS2DT, and SUTRA, and the coupled flow and transport modeling system of CATHY and TRAN3D. Comparisons in one-dimensional, two-dimensional, and three-dimensional variably saturated systems are explored. While several test cases are included to verify the correct implementation of variably saturated transport in UZF-RT3D, other cases are included to demonstrate the usefulness of the code in terms of model run-time and handling the reaction kinetics of multiple interacting species in variably saturated subsurface systems. As UZF1 relies on a kinematic-wave approximation for unsaturated flow that neglects the diffusive terms in Richards equation, UZF-RT3D can be used for large-scale aquifer systems for which the UZF1 formulation is reasonable, that is, capillary-pressure gradients can be neglected and soil parameters can be treated as homogeneous. Decreased model run-time and the ability to include site-specific chemical species and chemical reactions make UZF-RT3D an attractive model for efficient simulation of multispecies reactive transport in variably saturated large-scale subsurface systems.
开发了一个数值模型,能够模拟多相反应溶质在非饱和多孔介质中的运移。该模型由反应传输模型 RT3D(三维反应传输)的一个修改版本组成,该模型与非饱和带流(UZF1)包和 MODFLOW 相链接。称为 UZF-RT3D,该模型与已发表的分析基准以及其他已发表的污染物运移模型进行了测试,包括 HYDRUS-1D、VS2DT 和 SUTRA,以及 CATHY 和 TRAN3D 的耦合流动和运移模拟系统。在一维、二维和三维非饱和系统中进行了比较。虽然包括了几个测试案例来验证 UZF-RT3D 中可变饱和度传输的正确实现,但其他案例也包括在内,以展示该代码在模型运行时间和处理可变饱和度地下系统中多个相互作用物种的反应动力学方面的有用性。由于 UZF1 依赖于非饱和流的运动波近似,忽略了 Richards 方程中的扩散项,因此 UZF-RT3D 可用于大型含水层系统,在这些系统中,UZF1 公式是合理的,即可以忽略毛细压力梯度,并且可以将土壤参数视为均匀的。减少模型运行时间和能够包括特定于站点的化学物质和化学反应,使 UZF-RT3D 成为在可变饱和度大型地下系统中有效模拟多相反应传输的有吸引力的模型。