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首页> 外文期刊>Journal of Contaminant Hydrology >Effects of domain shapes on the morphological evolution of nonaqueous-phase-liquid dissolution fronts in fluid-saturated porous media
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Effects of domain shapes on the morphological evolution of nonaqueous-phase-liquid dissolution fronts in fluid-saturated porous media

机译:畴形状对流体饱和多孔介质中非水相-液体溶解前沿形态演化的影响

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摘要

The main purpose of this paper is to investigate the effects of different domain shapes in general and trapezoidal domain shape in particular on the morphological evolution of nonaqueous phase liquid (NAPL) dissolution fronts in two-dimensional fluid-saturated porous media. After the governing equations of NAPL dissolution problems are briefly described, the numerical procedure consisting of a combination of the finite element and finite difference methods is used to solve these equations. The related numerical simulation results have demonstrated that: (1) domain shapes have a significant effect on both the propagating speed and the morphological evolution pattern of a NAPL dissolution front in the fluid-saturated porous medium; (2) an increase in the divergent angle of a trapezoidal domain can lead to a decrease in the propagating speed of the NAPL dissolution front; (3) the morphological evolution pattern of the NAPL dissolution front in a rectangular domain is remarkably different from that in a trapezoidal domain of a large divergent angle; (4) for a rectangular domain, the simplified dispersion model, which is commonly used in the theoretical analysis and numerical simulation, is valid for solving NAPL dissolution instability problems in fluid-saturated porous media; and (5) compared with diverging flow (when the trapezoidal domain is inclined outward), converging flow (when the trapezoidal domain is inclined inward) can enhance the growth of NAPL fingers, indicating that pump-and-treat systems by extracting contaminated groundwater might enhance NAPL dissolution fingering and lead to less uniform dissolution fronts.
机译:本文的主要目的是研究一般的和梯形的畴形状的不同畴形状对二维流体饱和多孔介质中非水相液体(NAPL)溶解前沿的形态演化的影响。在简要描述了NAPL溶解问题的控制方程之后,使用由有限元和有限差分法相结合的数值程序来求解这些方程。相关的数值模拟结果表明:(1)畴的形状对流体饱和的多孔介质中NAPL溶解锋面的传播速度和形态演化模式都有重要影响; (2)梯形畴的发散角的增加会导致NAPL溶解前沿的传播速度降低; (3)矩形域中NAPL溶解锋面的形态演化模式与发散角大的梯形域中的形态演化模式明显不同; (4)对于矩形区域,在理论分析和数值模拟中常用的简化色散模型对于解决流体饱和多孔介质中NAPL溶解不稳定性问题是有效的; (5)与扩散流(梯形区域向外倾斜时)相比,会聚流(梯形区域向内倾斜时)可以增强NAPL指状体的生长,表明通过提取受污染的地下水而进行的泵处理系统可能增强NAPL溶解指法并导致较少的均匀溶解前沿。

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