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PMID: 39815432 Published · ppublish English Journal Article

CFD simulation of turbulent mass transfer of H2S and O2 in a stirring tank.

Teuber K, Dixit A, Hinkelmann R

Abstract

This study explores the computational fluid dynamics (CFD) simulation of oxygen (O2) and hydrogen sulfide (H2S) mass transfer in a highly turbulent stirring tank. Using the open-source software OpenFOAM, we extended three-dimensional two-phase flow solvers with a rotating mesh feature to model the mass transfer processes between the water and air phases. The accuracy of these simulations was validated against experimental data, demonstrating a strong agreement in the mass transfer rates of H2S and O2. The investigation highlights the impact of turbulence on mass transfer coefficients, confirming the reliability of the solvers for predicting mass transfer in turbulent conditions. The results suggest that these CFD models can serve as effective tools for understanding and optimizing sewer system designs. Additionally, the study highlights the potential of numerical simulations to reduce the need for extensive and potentially hazardous laboratory experiments.

Keywords
H OpenFOAM computational fluid dynamics (CFD) mass transfer rotating mesh turbulent flow
MeSH 主题词
Hydrogen Sulfide/chemistry Oxygen/chemistry Hydrodynamics Computer Simulation Models, Theoretical
化学物质
Hydrogen Sulfide Oxygen
作者与单位
共 3 位作者,点击展开单位 / ORCID
Teuber Katharina ORCID
Department of Civil Engineering, Geoinformation and Health Technology, Jade University of Applied Sciences, Ofener Str. 16/19, Oldenburg 26121, Germany E-mail: [email protected].
Dixit Abhinav ORCID
Chair of Water Resources Management and Modeling of Hydrosystems, Technische Universität Berlin, Gustav-Meyer-Allee 25, Berlin 13355, Germany.
Hinkelmann Reinhard ORCID
Chair of Water Resources Management and Modeling of Hydrosystems, Technische Universität Berlin, Gustav-Meyer-Allee 25, Berlin 13355, Germany.
Article Info
Journal
Water science and technology : a journal of the International Association on Water Pollution Research
Abbr.
Water Sci Technol
ISSN
0273-1223
Corresponding email
Published
2025-01-00
电子出版
2024-00-26
页码
69-82
Language
English
Country/Region
England
NLM ID
9879497
基金资助
Deutsche Forschungsgemeinschaft · GRK 2032-1/2
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