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Schlgle模型与随机介质场中气体相变研究 被引量:1
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作者 陈代珣 翁移山 《电子科技大学学报》 EI CAS CSCD 北大核心 1997年第S1期198-202,共5页
文中借鉴Schlogle反应动力学模型,建立了在多孔介质随机场中气体状态演化才程.得出由于随机介质场的作用,将影响流体系统内部的宏观动力学行为.改变其相变特性。
关键词 Schlgle模型 随机介质场 气体相变
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恒压压缩空气储能技术研究 被引量:2
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作者 张遥 张依伦 +1 位作者 苏传奇 刘展 《热力发电》 CAS CSCD 北大核心 2024年第9期19-28,共10页
加速能源结构转型,促进可再生能源发电并网,是应对气候变化和可再生能源发展的重要举措。储能技术可以解决可再生能源发电并网的不稳定性,提高可再生能源的利用率。其中,压缩空气储能因其效率高,投资成本低,对环境友好被广泛研究。与传... 加速能源结构转型,促进可再生能源发电并网,是应对气候变化和可再生能源发展的重要举措。储能技术可以解决可再生能源发电并网的不稳定性,提高可再生能源的利用率。其中,压缩空气储能因其效率高,投资成本低,对环境友好被广泛研究。与传统恒容压缩空气储能技术相比,恒压压缩空气储能避免了恒容压缩空气储能系统中不可避免的缓冲空气,使压缩机和膨胀机能够在恒定排放压力下高效运行,消除了膨胀机组前的节流损失。介绍恒压压缩空气储能技术的优势,并将其分为水下压缩空气储能、抽水补偿式压缩空气储能、固体补偿式压缩空气储能和气体相变补偿式压缩空气储能4种;论述了4种恒压压缩空气储能技术的基本原理、研究进展及面临的挑战;最后,对恒压压缩空气储能技术的发展进行展望。 展开更多
关键词 恒压压缩空气储能 水下压缩空气储能 抽水补偿 固体补偿 气体相变
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Research Progress on Thermal Management of Lithium-Ion Batteries
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作者 Hong-Da Li Qiu-Wan Shen +3 位作者 Zhao-Yang Zhang Xin-Yue Zhao Yuan Wei Shi-An Li 《电化学(中英文)》 2025年第7期1-17,共17页
Nowadays,new energy technologies are developing rapidly,energy storage systems are widely used,and lithium-ion batteries occupy a dominant position among them.Therefore,it is also very important to ensure their perfor... Nowadays,new energy technologies are developing rapidly,energy storage systems are widely used,and lithium-ion batteries occupy a dominant position among them.Therefore,it is also very important to ensure their performance,safety and service life through thermal management technology.In this paper,the causes of thermal runaway of lithium batteries are reviewed firstly,and three commonly used thermal management technologies,namely,air cooling,liquid cooling and phase change material cooling,are compared according to relevant literature in recent years.Air cooling technology has been widely studied because of its simple structure and low cost,but its temperature control effect is poor.Liquid cooling technology takes away heat through the circulation of liquid medium,which has a good cooling effect,but the system is relatively complex.Phase change material(PCM)cooling technology uses the high latent heat of PCM to absorb and re-lease heat,which can effectively reduce the peak temperature of a battery and improve the temperature uniformity,but the low thermal conductivity and liquid leakage are its main problems.To sum up,lithium-ion battery thermal management technology is moving towards a more efficient,safer and cost-effective direction.Coupled cooling systems,such as those combining liquid cooling and phase change material cooling,show great potential.Future research will continue to explore new materials and technologies to meet the growing demands of society and the market for lithium-ion battery perfor-mance and safety. 展开更多
关键词 Lithium-ion battery Thermal runaway Thermal management system Phase change material Air cooling Liquid cooling
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