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Simulation of flow and solute coupled 2-D problems with velocity-dependent dispersion coefficient based on the network method

机译:基于网络方法的速度依赖弥散系数的流固耦合二维问题的仿真

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摘要

The governing equations of coupled density-driven flow and solute transport problems in porous media, with velocity-dependent dispersion coefficient, are strongly nonlinear and must be solved numerically. This contribution presents a network model, based on the network simulation method, capable of simulating the transient solution to this kind of problem efficiently and with a relatively low computational time. The mathematical model is formulated using the stream function and concentration variables. Simulation of the network model is carried out in the standard electric circuit simulation code, Pspice. The present model is first applied to simulate the original benchmark Henry problem, and the solution is compared with those obtained by other authors. A study of the grid size is also carried out. In addition, the modified version of Simpson and Clement of the Henry problem, as well as the groundwater flow in the closed desert basin of Pilot Valley, is studied using the proposed model. Copyright © 2011 John Wiley & Sons, Ltd.
机译:密度依赖于速度的扩散系数,在多孔介质中耦合的密度驱动的流动和溶质运移问题的控制方程是强烈非线性的,必须用数值​​方法求解。该贡献提出了一种基于网络仿真方法的网络模型,该模型能够高效且以相对较低的计算时间来模拟此类问题的瞬态解。使用流函数和浓度变量制定数学模型。网络模型的仿真是在标准电路仿真代码Pspice中进行的。该模型首先用于模拟原始基准亨利问题,并将该解决方案与其他作者获得的解决方案进行比较。还对网格大小进行了研究。此外,使用提出的模型研究了亨利问题的辛普森和克莱门特的修正版本,以及先导谷封闭沙漠盆地中的地下水流量。版权所有©2011 John Wiley&Sons,Ltd.

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