4.7 Article

A level-set immersed boundary method for reactive transport in complex topologies with moving interfaces

期刊

JOURNAL OF COMPUTATIONAL PHYSICS
卷 478, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcp.2023.111958

关键词

Immersed boundary method; Fluid -solid interaction; Level set; Reactive transport; Velocity extrapolation

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A simulation framework based on the level-set and the immersed boundary methods (LS-IBM) is developed for accurately modeling reactive transport problems with moving solid-fluid interface in porous media. The level-set method tracks interface movement, while the immersed boundary method captures momentum and mass transport at the interface. The proposed method guarantees second order accuracy in space and includes an interface velocity propagation method.
A simulation framework based on the level-set and the immersed boundary methods (LS -IBM) has been developed for reactive transport problems in porous media involving a moving solid-fluid interface. The interface movement due to surface reactions is tracked by the level-set method, while the immersed boundary method captures the momentum and mass transport at the interface. The proposed method is capable of accurately modeling transport near evolving boundaries in Cartesian grids. The framework formulation guarantees second order accuracy in space. Since the interface velocity is only defined at the moving boundary, an interface velocity propagation method is also proposed. The method can be applied to other moving interface problems of the Stefan type. Here, we validate the proposed LS-IBM both for flow and transport close to an immersed object with reactive boundaries as well as for crystal growth. The proposed method provides a powerful tool to model more realistic problems involving moving reactive interfaces in complex domains.(c) 2023 Published by Elsevier Inc.

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