流动电池
钒
螺旋(铁路)
流量(数学)
机械
体积流量
电池(电)
氧化还原
储能
质量流量
传质
材料科学
质量流
电流密度
能量密度
化学
物理
热力学
机械工程
工程物理
工程类
冶金
功率(物理)
量子力学
作者
Zeyu Li,Fuzhen Wang,Zebo Huang
标识
DOI:10.1149/1945-7111/ad5706
摘要
The high safety factor of all-vanadium redox flow batteries (VRFBs) has positioned them as a leading choice for large-scale stationary energy storage. However, their further development is limited by their low energy density and high cost. Flow field performance emerges as a critical factor significantly influencing battery performance. In this paper, we propose a novel spiral flow field (NSFF), which deviates from the commonly serpentine and parallel flow fields. Our research findings demonstrate that, at a flow rate of 180 ml min −1 and a current density of 90 mA cm −2 , the NSFF achieves, respectively, 3.65% and 9.8% higher energy efficiency compared to the serpentine and parallel flow fields. Moreover, the state of health of the NSFF after multiple cycles reaches an impressive level of 72.18%, surpassing that of the serpentine and parallel flow fields by 9.97% and 32.12%, respectively.
科研通智能强力驱动
Strongly Powered by AbleSci AI