锂离子电池热管理文献计量分析综述

IF 4.9 2区 工程技术 Q1 ENGINEERING, MECHANICAL
Jiaxing Li, Shaohong Zeng, Weixiong Wu
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引用次数: 0

摘要

电池热管理(BTM)对锂离子电池储能技术的发展起着至关重要的推动作用,对于保持锂离子电池的适当温度、提高电池的能效和防止热失控(TR)至关重要。先前的研究只关注技术解决方案,本研究通过将文献计量学分析与信息可视化技术相结合,从宏观角度进行了全面、全面和定量的研究。共编制了16个检索公式,从Web of Science核心数据库中检索了2004 - 2023年间2363篇文献。前所未有地收集了各种BTM技术(包括单一冷却技术和混合冷却技术)的参考文献,并进行了分类分析。结果从年度出版物、国家、机构、作者、期刊和出版商等方面进行分析。根据发展趋势,BTM领域可分为萌芽期(2004-2011年)、巩固稳定期(2012-2017年)和快速发展期(2018-2023年)三个阶段。对于共被引文献,提出了聚类网络、突发检测和新颖性分析等方法来显示作者或文献对BTM发展的贡献。随后,根据高频关键词的共现情况和所在时区进行动态研究热点和趋势分析。值得注意的是,混合冷却技术近年来获得了最多的出版物,并预计将成为主要的研究方向。最后,研究强调了未来的发展问题,并提出了应对BTM挑战的策略。这种方法上的创新不仅填补了文献中的一个关键空白,而且为研究人员和行业专业人士提供了一个理解BTM技术动态景观的强大框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comprehensive review of lithium-ion battery thermal management with bibliometric analysis
Battery thermal management (BTM) plays a pivotal role in driving the development of energy storage technologies of Lithium-ion battery (LiB), being crucial in maintaining appropriate temperature, enhancing energy efficiency and preventing thermal runaway (TR). Prior researches that focused solely on technical solutions, this study pioneers a holistic, comprehensive and quantitative examination from a macro perspective by integrating bibliometric analysis with information visualization techniques. A total of 16 search formulas were formulated and 2363 references were collected from the Web of Science core database spanning from 2004 to 2023. Unprecedentedly, the references on various BTM technologies (including both single cooling techniques and hybrid cooling techniques) were gathered and analyzed by categorization. The results are analyzed from the perspective of the annual publications, countries, institutions, authors, journals and publishers. Based on the development trend, the BTM field can be divided into three stages: primary germination stage (2004–2011), consolidation and stabilization stage (2012–2017), and the rapid development stage (2018–2023). For co-cited references, cluster network, burst detection and novelty analysis methods were proposed to display the authors or literature’ contributions to the development of BTM. Subsequently, the dynamic research hotspots and trends were performed according to the co-occurrence and time zone of high-frequency keywords. Notably, hybrid cooling technology garnered the most publications in recent years and is projected to be the primary research direction. Finally, the study emphasizes future development issues and proposes strategies to address challenges in BTM. This methodological innovation not only fills a critical gap in the literature but also offers researchers and industry professionals a robust framework for understanding the dynamic landscape of BTM technologies.
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来源期刊
International Journal of Thermal Sciences
International Journal of Thermal Sciences 工程技术-工程:机械
CiteScore
8.10
自引率
11.10%
发文量
531
审稿时长
55 days
期刊介绍: The International Journal of Thermal Sciences is a journal devoted to the publication of fundamental studies on the physics of transfer processes in general, with an emphasis on thermal aspects and also applied research on various processes, energy systems and the environment. Articles are published in English and French, and are subject to peer review. The fundamental subjects considered within the scope of the journal are: * Heat and relevant mass transfer at all scales (nano, micro and macro) and in all types of material (heterogeneous, composites, biological,...) and fluid flow * Forced, natural or mixed convection in reactive or non-reactive media * Single or multi–phase fluid flow with or without phase change * Near–and far–field radiative heat transfer * Combined modes of heat transfer in complex systems (for example, plasmas, biological, geological,...) * Multiscale modelling The applied research topics include: * Heat exchangers, heat pipes, cooling processes * Transport phenomena taking place in industrial processes (chemical, food and agricultural, metallurgical, space and aeronautical, automobile industries) * Nano–and micro–technology for energy, space, biosystems and devices * Heat transport analysis in advanced systems * Impact of energy–related processes on environment, and emerging energy systems The study of thermophysical properties of materials and fluids, thermal measurement techniques, inverse methods, and the developments of experimental methods are within the scope of the International Journal of Thermal Sciences which also covers the modelling, and numerical methods applied to thermal transfer.
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