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for. therefore, it cannot predict correlations and trends between dependent and independent parameters in the system. Multiple parameter adjustments and recalculations are needed to do so, which results in more time-consuming measures. The flexibility of a model to parameter tuning is important to studying the target phenomena when stacking or scaling up the system. Therefore, the focus of this study is to use analytical approaches to model fluid dynamics and pressure distribution in RFBs. A couple of studies have utilized analytical approaches to study fluid dynamics in RFB cells, as Table 1. 1 suggests. However, these studies lack sufficient explanations on fundamental fluid dynamics. Hence, analytical approaches require more investigation. In this study, a novel analytical model has been developed to model fluid dynamics in RFBs. Its accuracy is tested with experimental data and other similar models. Table 1. 1. List of articles modeling fluid dynamics in RFBs or similar liquid-phase electrochemical devices. Reference Studied Phenomena [38] The effect of geometrical parameters in IFFs on VRFB cell performance [43] The performance comparison between SSFF and IFF designs, flow and state of charge distribution in VRFB cells Modeling approaches 2-D coupled fluid dynamic, kinetics and mass transport simulation, 3-D CFD model, 1-D fluid dynamics model Coupled 3-D CFD and mass transport model 12PDF Image | Analysis of Fluid Flow in Redox Flow Batteries
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