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A Lagrangian Transport Eulerian Reaction Spatial (LATERS) Markov Model for Prediction of Effective Bimolecular Reactive Transport

机译:拉格朗日输运欧拉反应空间(LATERS)马尔可夫模型用于预测有效的双分子反应性输运

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摘要

Prediction of effective transport for mixing-driven reactive systems at larger scales, requires accurate representation of mixing at small scales, which poses a significant upscaling challenge. Depending on the problem at hand, there can be benefits to using a Lagrangian framework, while in others an Eulerian might have advantages. Here we propose and test a novel hybrid model which attempts to leverage benefits of each. Specifically, our framework provides a Lagrangian closure required for a volume-averaging procedure of the advection diffusion reaction equation. This hybrid model is a LAgrangian Transport Eulerian Reaction Spatial Markov model (LATERS Markov model), which extends previous implementations of the Lagrangian Spatial Markov model and maps concentrations to an Eulerian grid to quantify closure terms required to calculate the volume-averaged reaction terms. The advantage of this approach is that the Spatial Markov model is known to provide accurate predictions of transport, particularly at preasymptotic early times, when assumptions required by traditional volume-averaging closures are least likely to hold; likewise, the Eulerian reaction method is efficient, because it does not require calculation of distances between particles. This manuscript introduces the LATERS Markov model and demonstrates by example its ability to accurately predict bimolecular reactive transport in a simple benchmark 2-D porous medium.
机译:大型混合动力反应系统的有效传输预测需要小规模混合的精确表示,这构成了巨大的升级挑战。根据当前的问题,使用拉格朗日框架可能会有好处,而在其他情况下,欧拉框架可能会有好处。在这里,我们提出并测试了一种新颖的混合模型,该模型试图利用每种模型的优势。具体而言,我们的框架提供了对流扩散反应方程的体积平均过程所需的拉格朗日封闭。该混合模型是拉格朗日运输欧拉反应空间马尔可夫模型(LATERS Markov模型),它扩展了拉格朗日空间马尔可夫模型的先前实现,并将浓度映射到欧拉网格以量化计算体积平均反应项所需的闭合项。这种方法的优势在于,众所周知,空间马尔可夫模型可以提供准确的运输预测,尤其是在渐近前的早期,这时传统体积平均闭合所需的假设最不可能成立。同样,欧拉反应方法是有效的,因为它不需要计算粒子之间的距离。该手稿介绍了LATERS Markov模型,并通过示例演示了其在简单的基准二维多孔介质中准确预测双分子反应性转运的能力。

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  • 来源
    《Water resources research》 |2017年第11期|9040-9058|共19页
  • 作者单位

    Desert Res Inst, Div Hydrol Sci, Reno, NV 89506 USA;

    Polytech Univ Milan, Dept Civil & Environm Engn, Milan, Italy;

    Univ Notre Dame, Dept Civil & Environm Engn & Earth Sci, Notre Dame, IN 46556 USA;

    Desert Res Inst, Div Hydrol Sci, Reno, NV 89506 USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:38:40

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