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Vectorized simulation of groundwater flow and contaminant transport using analytic element method and random walk particle tracking

机译:解析法和随机游动粒子跟踪的地下水流和污染物运移矢量化模拟

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摘要

Groundwater contaminant transport processes are usually simulated by the finite difference (FDM) or finite element methods (FEM). However, they are susceptible to numerical dispersion for advection-dominated transport. In this study, a numerical dispersion-free coupled flow and transport model is developed by combining the analytic element method (AEM) with random walk particle tracking (RWPT). As AEM produces continuous velocity distribution over the entire aquifer domain, it is more suitable for RWPT than FDM/finite element methods. Using the AEM solutions, RWPT tracks all the particles in a vectorized manner, thereby improving the computational efficiency. The present model performs a convolution integral of the response of an impulse contaminant injection to generate concentration distributions due to a permanent contaminant source. The RWPT model is validated with an available analytical solution and compared to an FDM solution, the RWPT model more accurately replicates the analytical solution. Further, the coupled AEM-RWPT model has been applied to simulate the flow and transport in hypothetical and field aquifer problems. The results are compared with the FDM solutions and found to be satisfactory. The results demonstrate the efficacy of the proposed method.
机译:地下水污染物的迁移过程通常通过有限差分法(FDM)或有限元方法(FEM)进行模拟。但是,对于以平流为主的运输,它们容易受到数值色散的影响。在这项研究中,通过将分析元素方法(AEM)与随机游走粒子跟踪(RWPT)相结合,建立了一个无色散数值耦合的流动和传输模型。由于AEM在整个含水层域内产生连续的速度分布,因此它比RWDM /有限元方法更适合RWPT。使用AEM解决方案,RWPT以矢量化方式跟踪所有粒子,从而提高了计算效率。本模型执行脉冲污染物注入的响应的卷积积分,以由于永久性污染源而产生浓度分布。 RWPT模型已通过可用的分析解决方案进行了验证,并且与FDM解决方案相比,RWPT模型可以更准确地复制分析解决方案。此外,耦合的AEM-RWPT模型已被应用于模拟假设含水层和田间含水层问题中的流动和传输。将结果与FDM解决方案进行比较,结果令人满意。结果证明了该方法的有效性。

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