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Considering the utility of backward-in-time simulations of multi-component reactive transport in porous media

机译:考虑到多孔介质中多组分反应输运的实时模拟的效用

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Indirect inversion has been the predominant method for matching models and data in geochemical systems, typically using observations of chemical concentrations as calibration targets. This reserves the data with the highest confidence (observed concentrations) for the final comparison but does little to constrain the initial state of the system on which the indirect inversion is based. An alternative approach to inverse modeling is to start with the observations to reconstruct a concentration field, but it is unclear if this is feasible for reactive transport in heterogeneous systems. The purpose of this article is to consider the applicability of backward-in-time (BIT) techniques as tools for simulating reactive transport in porous media. A multi-component reaction system is considered in a variety of systems of increasing complexity and we show that complex, non-linear systems can be simulated backward in time, given a sufficiently robust integration scheme. Recent advances in reactive random walk particle tracking are employed to investigate simple flow systems with spatially variable reactions, as well as 2-d heterogeneous flows, and we show that some level of time reversibility exists in both cases. Under a uniform injection scheme, the total masses generated in forward and backward simulations of the 2-d models were all within 3.5% of each other for all the species considered, indicating good overall agreement between the models. This suggests that BIT techniques may have yet unrealized applications to inverse modeling; however, further research on the sensitivity of the approach to measurement errors and on how to efficiently apply BIT methods to transient problems is needed.
机译:间接反演是匹配地球化学系统中的模型和数据的主要方法,通常使用化学浓度的观测值作为校准目标。这为最终比较保留了具有最高置信度(观察到的浓度)的数据,但几乎没有限制间接反演所基于的系统的初始状态。逆向建模的另一种方法是从观察开始以重建浓度场,但是尚不清楚这对于异质系统中的反应性运输是否可行。本文的目的是考虑将逆时(BIT)技术用作模拟多孔介质中反应性传输的工具的适用性。在越来越复杂的各种系统中都考虑了多组分反应系统,并且我们展示了在给定足够健壮的集成方案的情况下,可以及时向后仿真复杂的非线性系统。反应随机游动粒子跟踪的最新进展用于研究具有空间可变反应的简单流系统以及二维异质流,并且我们表明两种情况下都存在一定程度的时间可逆性。在均匀注入方案下,对于所考虑的所有物种,在二维模型的前向和后向模拟中生成的总质量彼此之间都在3.5%以内,表明模型之间的总体一致性良好。这表明BIT技术可能尚未在逆建模中实现。但是,需要进一步研究该方法对测量误差的敏感性以及如何有效地将BIT方法应用于瞬态问题。

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