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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[61] V. Viswanathan, A. Crawford, D. Stephenson, S. Kim, W. Wang, B. Li, G. Coffey, E. Thomsen, G. Graff, P. Balducci, M. Kintner-Meyer, V. Sprenkle, Cost and performance model for redox flow batteries, J. Power Sources. 247 (2014) 1040–1051. https://doi.org/10.1016/j.jpowsour.2012.12.023. [62] X. Ke, J.M. Prahl, J.I.D. Alexander, R.F. Savinell, Redox flow batteries with serpentine flow fields: Distributions of electrolyte flow reactant penetration into the porous carbon electrodes and effects on performance, J. Power Sources. 384 (2018) 295–302. https://doi.org/10.1016/j.jpowsour.2018.03.001. [63] A.A. Shah, H. Al-Fetlawi, F.C. Walsh, Dynamic modelling of hydrogen evolution effects in the all-vanadium redox flow battery, Electrochim. Acta. 55 (2010) 1125–1139. https://doi.org/10.1016/j.electacta.2009.10.022. [64] Z. Xu, J. Wang, S.C. Yan, Q. Fan, P.D. Lund, Modeling of Zinc Bromine redox flow battery with application to channel design, J. Power Sources. 450 (2020) 227436. https://doi.org/10.1016/j.jpowsour.2019.227436. [65] A. Trovò, P. Alotto, M. Giomo, F. Moro, M. Guarnieri, A validated dynamical model of a kW-class Vanadium Redox Flow Battery, Math. Comput. Simul. (2020). https://doi.org/10.1016/j.matcom.2019.12.011. [66] F.T. Wandschneider, D. Finke, S. Grosjean, P. Fischer, K. Pinkwart, J. Tübke, H. Nirschl, Model of a vanadium redox flow battery with an anion exchange membrane and a Larminie-correction, J. Power Sources. 272 (2014) 436–447. https://doi.org/10.1016/j.jpowsour.2014.08.082. [67] X.L. Zhou, T.S. Zhao, L. An, Y.K. Zeng, L. Wei, Modeling of ion transport through a 80

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