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首页> 外文期刊>Arabian journal of geosciences >Two-dimensional numerical finite volume modeling of processes controlling distribution and natural attenuation of BTX in the saturated zone of a simulated semi-confined aquifer
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Two-dimensional numerical finite volume modeling of processes controlling distribution and natural attenuation of BTX in the saturated zone of a simulated semi-confined aquifer

机译:控制半饱和含水层饱和区中BTX分布和自然衰减的过程的二维数值有限体积建模

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摘要

This paper presents a two-dimensional finite volume model to predict multi-species reactive transport processes in the saturated zone of a simulated semi-confined aquifer. A multipurpose commercial software called PHOENICS was used to solve model equations numerically. Capability of the present model was first confirmed using experimental data and the results obtained by a published one-dimensional finite element reactive transport model by other researchers taking different scenarios into consideration. The model was then expanded to a two-dimensional case to simulate reactive transport of BTX compounds with discontinuous source in the saturated zone of the groundwater flow system. In addition to the physical transport processes, the two-dimensional model also incorporates linear and nonlinear adsorption isotherms, first order and Monod kinetics. The two-dimensional model considers both static and dynamics modes into account. The results show that considering chemical reactions during reactive transport of contaminants could successfully predict the contaminated zone. The results of such studies can be used for monitoring of contaminated areas, designing methods to control pollution transport, and minimize its harmful effects on aquifer systems.
机译:本文提出了一个二维有限体积模型,以预测模拟半承压含水层饱和区内的多种反应性输运过程。使用称为PHOENICS的多功能商业软件来数值求解模型方程。首先使用实验数据确认了本模型的能力,并由其他研究人员在考虑了不同情况的情况下,通过已发布的一维有限元反应运输模型获得了结果。然后将模型扩展到二维情况,以模拟BTX化合物在地下水流系统的饱和区内具有不连续源的反应性运输。除物理传输过程外,二维模型还包含线性和非线性吸附等温线,一阶和Monod动力学。二维模型将静态和动态模式都考虑在内。结果表明,在污染物反应性传输过程中考虑化学反应可以成功预测污染区域。这些研究的结果可用于监测受污染区域,设计控制污染传输的方法,并将其对含水层系统的有害影响降至最低。

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