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首页> 外文期刊>Journal of nanotechnology in engineering and medicine. >Numerical Study of Composite Electrode's Particle Size Effect on the Electrochemical and Heat Generation of a Li-Ion Battery
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Numerical Study of Composite Electrode's Particle Size Effect on the Electrochemical and Heat Generation of a Li-Ion Battery

机译:复合电极粒径对锂离子电池电化学和生热影响的数值研究

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摘要

Rechargeable lithium-ion batteries (LIBs) are now playing crucial roles in power supply and energy storage systems. Among all types of rechargeable batteries available nowadays, LIBs are one of the most important ways to store energy because of their high energy density, high operating voltage, and low rate of self-discharge. Nonetheless, the performance of LIBs could be improved by different design parameters, such as the size of solid particles in the battery composite electrodes. Therefore, this study aims to investigate the effect of the composite electrode particles size on the electrochemical and heat generation of an LIB. A Newman's electrochemical pseudo two-dimenisonal model was used to model the LIB cell. Reversible heat produced through electrochemical reactions was calculated as well as irreversible heat originating from internal resistances in the battery cell. Our results show that smaller sizes of electrode solid particles improve the thermal characteristics of the battery, especially in higher charge and discharge currents (C-rate). Furthermore, as the solid particle sizes decrease, the battery capacity increases for various C-rates in charge and discharge cycles.
机译:可充电锂离子电池(LIB)现在在电源和能量存储系统中起着至关重要的作用。在当今可用的所有类型的可充电电池中,LIB由于其高能量密度,高工作电压和低自放电率而成为最重要的能量存储方式之一。但是,可以通过不同的设计参数(例如电池复合电极中固体颗粒的大小)来提高LIB的性能。因此,本研究旨在研究复合电极颗粒尺寸对LIB电化学和生热的影响。使用纽曼的电化学伪二维模型对LIB电池进行建模。计算通过电化学反应产生的可逆热以及源自电池单元内阻的不可逆热。我们的结果表明,较小尺寸的电极固体颗粒可改善电池的热特性,尤其是在较高的充电和放电电流(C速率)下。此外,随着固体粒径的减小,对于各种C速率的充放电循环,电池容量都会增加。

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