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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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[86] X. Ke, J.I.D. Alexander, J.M. Prahl, R.F. Savinell, A simple analytical model of coupled single flow channel over porous electrode in vanadium redox flow battery with serpentine flow channel, J. Power Sources. 288 (2015) 308–313. https://doi.org/10.1016/j.jpowsour.2015.04.138. [87] P.A. Ramachandran, Advanced Transport Phenomena, Cambridge University Press, 2014. https://doi.org/10.1017/CBO9780511980527. [88] J. Bear, Dynamics of Fluids in Porous Media, Dover Publications, New York, 1973. [89] D. Ruth, H. Ma, On the Derivation of the Forchheimer Equation by Means of the Averaging Theorem, Kluwer Academic Publishers, 1992. [90] D.A. Nield, A. Bejan, Convection in porous media, 3rd ed., Springer, 2006. [91] H. Ma, D.W. Ruth, The microscopic analysis of high forchheimer number flow in porous media, Transp. Porous Media. 13 (1993) 139–160. https://doi.org/10.1007/BF00654407. [92] S. Whitaker, The Forchheimer equation: A theoretical development, Transp. Porous Media. 25 (1996) 27–61. https://doi.org/10.1007/BF00141261. [93] D.D. Joseph, D.A. Nield, G. Papanicolaou, Nonlinear equation governing flow in a saturated porous medium, Water Resour. Res. 18 (1982) 1049–1052. https://doi.org/10.1029/WR018i004p01049. [94] H.C. Brinkman, A calculation of the viscous force exerted by a flowing fluid on a dense swarm of particles, Flow, Turbul. Combust. 1 (1949) 27. https://doi.org/10.1007/BF02120313. [95] F.J. Valdes-Parada, J.A. Ochoa-Tapia, J. Alvarez-Ramirez, On the effective viscosity for 84

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