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Analytical Model for Volatile Organic Compound Transport in the Coupled Vadose Zone-Groundwater System

机译:耦合瓦糖区 - 地下水系统中挥发性有机化合物输送的分析模型

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摘要

A 3D mathematical model that describes transport of volatile organic compounds in a coupled vadose-saturated zone system is proposed. The subsurface processes incorporated in the model include advection, dispersion, interphase mass transfer, and diffusive mass exchange between two horizontal porous media formations, as well as the time-dependent mass loading from a source zone. The analytical solutions are derived subject to the specific initial and boundary conditions. The solutions are evaluated by numerical Laplace inverse transform. The model solutions can be used to study the fate and transport in subsurface formations composed of a vadose zone and a water table aquifer, where the volatile organic compound is released from entrapped nonaqueous phase liquid in the vadose zone, or the dissolved volatile organic compound transports with groundwater accompanied by diffusive mass transfer into the overlying soil formations. Mass transfer between two layers is demonstrated to have back-diffusion characteristics, which results in secondary contamination and retains low levels of contaminant concentrations over a prolonged period of time. The model solutions are specifically useful in assessing the vapor intrusion process in a contaminated site where a vadose zone is underlain by a water table aquifer contaminated with volatile organic compounds.
机译:提出了一种描述偶联载体饱和区系统中挥发性有机化合物传输的3D数学模型。掺入模型中的地下方法包括前进,分散,间距和两种水平多孔介质形成之间的漫反射块,以及来自源区的时间依赖性质量加载。通过特定的初始和边界条件来推导分析解决方案。通过数值拉普拉斯逆变换评估解决方案。模型解决方案可用于研究由Vadose区和水表含水层组成的地下地层中的命运和运输,其中挥发性有机化合物从捕获的非水相液中释放在VADOSE区,或溶解的挥发性有机化合物转运地下水伴随着越来越土壤形成的扩散群体。对两层之间的质量转移被证明具有反扩散特性,这导致次要污染,并在长时间内保留低水平的污染物浓度。模型解决方案专门用于评估污染部位中的蒸汽入侵过程,其中通过用挥发性有机化合物污染的水位含水层污染的污染部位。

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