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DOI10.1029/2020WR028679
Random‐walk Modeling of Reactive Transport in Porous Media With a Reduced‐order Chemical Basis of Conservative Components
Guillem Sole‐; Mari; Michael J. Schmidt; Diogo Bolster; Daniel Fernà; ndez‐; Garcia
2021-03-15
发表期刊Water Resources Research
出版年2021
英文摘要

In this work we employ a reduced‐order basis of conservative chemical components to model reactive transport using a Lagrangian (particle tracking) method. While this practice is well‐understood in the Eulerian (grid‐based) context, its adaptation to a Lagrangian context requires a novel reformulation of particle transport properties. Because the number of conservative‐species particles need not change during simulation, spatial resolution stays constant in time, and there is no increase in computational expense due to increasing numbers of product particles. Additionally, this treatment simplifies the interaction between equilibrium and kinetic reactions and allows the use of species‐dependent transport operators at the same time. We apply this method to model a suite of simple test problems that include equilibrium and kinetic reactions, and results exhibit excellent match with base‐case Eulerian results. Finally, we apply the new method to model a 2D problem concerning the mobilisation of cadmium by a CO2 leak, showing the potential applicability of the proposed methodology.

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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/319872
专题资源环境科学
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Guillem Sole‐,Mari,Michael J. Schmidt,等. Random‐walk Modeling of Reactive Transport in Porous Media With a Reduced‐order Chemical Basis of Conservative Components[J]. Water Resources Research,2021.
APA Guillem Sole‐.,Mari.,Michael J. Schmidt.,Diogo Bolster.,Daniel Fernà.,...&Garcia.(2021).Random‐walk Modeling of Reactive Transport in Porous Media With a Reduced‐order Chemical Basis of Conservative Components.Water Resources Research.
MLA Guillem Sole‐,et al."Random‐walk Modeling of Reactive Transport in Porous Media With a Reduced‐order Chemical Basis of Conservative Components".Water Resources Research (2021).
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