Model-based Design Vanadium Redox Flow Batteries

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Model-based Design Vanadium Redox Flow Batteries ( model-based-design-vanadium-redox-flow-batteries )

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Section 8.6  Variable flow rate - Innovative optimization approach Figure 8-5 : Flow rate optimization of a sample operation point with a tank SoC 50 % and a charging current of 50 A. 8.6.2 Simulation results The optimization returns a three-dimensional look-up table, visualized in Figure 8-6 b). For comparison, the corresponding flow rate computed with the conventional variable FRCS with a flow factor of three is shown as well. Figure 8-6: Comparison between the conventional and the innovative variable FRCS for the test system with cell design 2.5. In extreme operation points, namely charging the battery in a high SoC and discharging the battery in a low SoC, the two FRCSs deviate less from each other, compared to the more moderate operation points. In the latter, the innovative variable FRCS applies a substantially larger flow rate than the conventional one. 129 System efficiency in % Flow rate in Lmin-1

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Model-based Design Vanadium Redox Flow Batteries

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