Heat transfer enhanced by angle-optimized fan-shaped porous medium in phase change thermal energy storage system at pore scale
Author:
Publisher
Elsevier BV
Subject
General Engineering,Condensed Matter Physics
Reference45 articles.
1. Phase change heat transfer enhancement using copper porous foam[J];Siahpush;Journal of Heat Transfer-Transactions of the Asme,2008
2. Investigation of the effect of metal foam characteristics on the PCM melting performance in a latent heat thermal energy storage unit by pore-scale lattice Boltzmann modeling[J];Ren;Numer. Heat Tran. Part a-Applications,2017
3. A critical review on heat transfer augmentation of phase change materials embedded with porous materials/foams[J];Tauseef Ur;Int. J. Heat Mass Tran.,2019
4. Numerical model of the passive thermal management system for high-power lithium ion battery by using porous metal foam saturated with phase change material[J];Qu;Int. J. Hydrogen Energy,2014
5. Lithium-ion battery thermal management using heat pipe and phase change material during discharge-charge cycle: a comprehensive numerical study[J];Jiang;Appl. Energy,2019
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