2022
DOI: 10.1149/1945-7111/ac4f70
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Flow-Through Design for Enhanced Redox Flow Battery Performance

Abstract: High capital cost, driven by poor performance, still hinders the widespread application of vanadium redox flow batteries. This work compares two different cell designs to demonstrate that the electrolyte flow velocity and pattern is of critical importance to increasing overall battery performance. The oriented-distribution-path (ODP) cell design includes inlet and outlet distribution channels, while the multi-distribution-path (MDP) design does not. The introduction of the distribution channels in the ODP caus… Show more

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Cited by 3 publications
(1 citation statement)
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“…7,8 z E-mail: yangyue@ncepu.edu.cn; yangga@mail.buct.edu.cn Journal of The Electrochemical Society, 2022 169 070529 It is well accepted that the performance of flow battery is influenced by the hydromechanics, transport and the species distribution in the electrode, all of which are dependent on the flow field and electrode design. 9,10 Therefore, the investigations about the multi-species transport process were paid much attention by the researchers in the past decades. 11,12 Wang et al 13 established a non-uniform numerical model of a VRFB and investigated the effect of electrode compression on the battery performance.…”
Section: List Of Symbolsmentioning
confidence: 99%
“…7,8 z E-mail: yangyue@ncepu.edu.cn; yangga@mail.buct.edu.cn Journal of The Electrochemical Society, 2022 169 070529 It is well accepted that the performance of flow battery is influenced by the hydromechanics, transport and the species distribution in the electrode, all of which are dependent on the flow field and electrode design. 9,10 Therefore, the investigations about the multi-species transport process were paid much attention by the researchers in the past decades. 11,12 Wang et al 13 established a non-uniform numerical model of a VRFB and investigated the effect of electrode compression on the battery performance.…”
Section: List Of Symbolsmentioning
confidence: 99%