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Analysis of Fluid Flow in Redox Flow Batteries

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Analysis of Fluid Flow in Redox Flow Batteries ( analysis-fluid-flow-redox-flow-batteries )

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fluid dynamics: Mathematical and modelling aspects of porous media, Front. Chem. Sci. Eng. (2020) 1–11. https://doi.org/10.1007/s11705-020-1934-9. [80] D. Zhang, A. Forner-Cuenca, O.O. Taiwo, V. Yufit, F.R. Brushett, N.P. Brandon, S. Gu, Q. Cai, Understanding the role of the porous electrode microstructure in redox flow battery performance using an experimentally validated 3D pore-scale lattice Boltzmann model, J. Power Sources. 447 (2020) 227249. https://doi.org/10.1016/j.jpowsour.2019.227249. [81] W.W. Yang, Y.L. He, Y.S. Li, Performance Modeling of a Vanadium Redox Flow Battery during Discharging, Electrochim. Acta. 155 (2015) 279–287. https://doi.org/10.1016/j.electacta.2014.12.138. [82] M. MacDonald, R.M. Darling, Modeling flow distribution and pressure drop in redox flow batteries, AIChE J. 64 (2018) 3746–3755. https://doi.org/10.1002/aic.16330. [83] M. Macdonald, R.M. Darling, Comparing velocities and pressures in redox flow batteries with interdigitated and serpentine channels, AIChE J. 65 (2019) 1–11. https://doi.org/10.1002/aic.16553. [84] R. Badrinarayanan, K.J. Tseng, B.H. Soong, Z. Wei, Modelling and control of vanadium redox flow battery for profile based charging applications, Energy. 141 (2017) 1479– 1488. https://doi.org/10.1016/j.energy.2017.11.082. [85] Z. Wei, J. Zhao, M. Skyllas-Kazacos, B. Xiong, Dynamic thermal-hydraulic modeling and stack flow pattern analysis for all-vanadium redox flow battery, J. Power Sources. 260 (2014) 89–99. https://doi.org/10.1016/j.jpowsour.2014.02.108. 83

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