流量(数学)
死区
机械
电流密度
补偿(心理学)
氧化还原
领域(数学)
材料科学
电流(流体)
计算机科学
生物系统
控制理论(社会学)
化学
地质学
电气工程
工程类
物理
数学
冶金
心理学
海洋学
量子力学
精神分析
纯数学
生物
控制(管理)
人工智能
作者
Lyuming Pan,Jing Sun,Honghao Qi,Meisheng Han,Qiuxia Dai,Junhui Xu,Shengxin Yao,Quanlong Li,Lei Wei,T.S. Zhao
标识
DOI:10.1073/pnas.2305572120
摘要
One essential element of redox flow batteries (RFBs) is the flow field. Certain dead zones that cause local overpotentials and side effects are present in all conventional designs. To lessen the detrimental effects, a dead-zone-compensated design of flow field optimization is proposed. The proposed architecture allows for the detection of dead zones and their compensation on existing flow fields. Higher reactant concentrations and uniformity factors can be revealed in the 3D multiphysical simulation. The experiments also demonstrate that at an energy efficiency (EE) of 80%, the maximum current density of the novel flow field is 205 mA cm −2 , which is much higher than the values for the previous ones (165 mA cm −2 ) and typical serpentine flow field (153 mA cm −2 ). Extensions of the design have successfully increased system EE (2.7 to 4.3%) for a variety of flow patterns. As a result, the proposed design is demonstrated to be a general method to support the functionality and application of RFBs.
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