A comparative study of melting behavior of phase change material with direct fluid contact and container inclination
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Elsevier BV
Reference33 articles.
1. Recent advances on the applications of phase change materials for solar collectors, practical limitations, and challenges: a critical review;Mourad;J. Energy Storage,2022
2. A numerical study on the capacity improvement of cylindrical battery cooling systems using nano-enhanced phase change material and axisymmetric stepped fins;Sazvar;J. Energy Storage,2023
3. Energy, exergy, and economic (3E) analyses of nanoparticle-enriched phase change material in an air–PCM heat exchanger applied for buildings free cooling;Safarzadeh;J. Therm. Anal. Calorim.,2023
4. Design and development of a PCM-based two-phase heat exchanger manufactured additively for spacecraft thermal management systems;Kabir;Int. J. Heat Mass Transf.,2021
5. Thermal efficiency improvement of Brayton cycle in the presence of phase change material;Khademi,2022
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