Thermally and electromagnetically driven flow in liquid metal battery and their effects on ionic /atomic transport

IF 0.2 Q4 AREA STUDIES
Chenglian Gao, Kangli Wang, Xianbo Zhou, Kai Jiang, Haomiao Li
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引用次数: 0

Abstract

Liquid metal battery (LMB) is considered a promising grid-level energy storage technology due to its low cost, long lifespan, and feasible amplification. As an all-liquid battery, the mechanisms and effects of its internal flow still need to be further studied. In this work, we establish two-dimensional (2D) axisymmetric models coupling both the thermal field and electromagnetic field based on Li|LiCl-KCl|Bi system. The fluid motions inside the batteries driven by temperature field, electromagnetic field, and coupled field are analyzed contrastively, revealing the dominant role of thermal convection. Moreover, the effects of the flow driven by different physical fields on the electrochemical reaction process are investigated. Those results are of great significance for further understanding the electrochemical process of LMB and other battery systems and optimizing the battery performance.
液态金属电池中的热驱动和电磁驱动流动及其对离子/原子输运的影响
液态金属电池(LMB)具有成本低、寿命长、放大可行等优点,被认为是一种很有前途的电网级储能技术。作为一种全液体电池,其内部流动的机理和影响还有待进一步研究。本文基于Li|LiCl-KCl|Bi体系,建立了热场和电磁场耦合的二维轴对称模型。对比分析了温度场、电磁场和耦合场对电池内部流体运动的影响,揭示了热对流的主导作用。此外,还研究了不同物理场驱动下的流动对电化学反应过程的影响。这些结果对于进一步了解LMB及其他电池体系的电化学过程,优化电池性能具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
8
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