Performance Testing of a Shell-and-Tube Heat Exchanger with Phase Change Material for Hot Air Generator Applications
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Sharma A., Tyagi V.V., Chen C.R. and Buddhi D., 2009. Review on thermal energy storage with phase change materials and applications. Renewable and Sustainable Energy Reviews 13(2): 318–345.
Agyenim L., Hewitt N., Eames P., and Smyth M., 2010. A review of developments in latent heat thermal energy storage for heating applications. Renewable and Sustainable Energy Reviews 14(2): 615–628.
Nomura T., Okinaka N., and Akiyama T., 2010. Waste heat transportation system using phase change material from steelworks to chemical plant. Resources, Conservation and Recycling 54(11): 1000–1006.
Kenisarin M., 2010. High-temperature phase change materials for thermal energy storage: An overview. Renewable and Sustainable Energy Reviews 14(3): 955–970.
Kumar B., Das M.K., and Roy J.N., 2021. Energy storage using NaOH phase change material for solar thermal application at constant heat flux. IOP Conference Series: Materials Science and Engineering 1168(1): Art. no. 012015.
Martinez F.R., Borri E., Ushak S., Mani Kala S., Prieto C., and Cabeza L.F., 2025. Experimental characterization of phase change materials for thermal energy storage in the temperature range between 270°C and 400°C. Energy 314: Art. no. 134243.
Jurczyk M., Spietz T., Czardybon A., Dobras S., Ignasiak K., Bartela Ł., Uchman W., and Ochmann J., 2024. Review of thermal energy storage materials for application in large-scale integrated energy systems – Methodology for matching heat storage solutions for given applications. Energies 17(14): Art. no. 3544.
Hosseini J.M., Rahimi M., and Bahrampoury R., 2014. Experimental and computational evolution of a shell and tube heat exchanger as a PCM thermal storage system. International Communications in Heat and Mass Transfer 50: 128–136.
Maldonado J.M., Verez D., de Gracia A., and Cabeza L.F., 2021. Comparative study between heat pipe and shell-and-tube thermal energy storage. Applied Thermal Engineering 192: Art. no. 116974.
Fan K., Zong S., Gao H., and Duan Z., 2025. Experimental study on thermal performance of PCM in an inclined shell-and-tube latent heat thermal energy storage unit. Processes 13(5): Art. no. 1557.
Wołoszyn J. and K. Szopa. 2024. A periodic horizontal shell-and-tube structure as an efficient latent heat thermal energy storage unit. Energies 17(22): Art. no. 5760.
Zainal Z.A., Rifau A., Quadir G.A., and Seetharamu K.N., 2002. Experimental investigation of a downdraft biomass gasifier. Biomass and Bioenergy 23(4): 283–289.
Osei I., Kemausuor F., Commeh M.K., Akowuah J.O., and Owusu-Takyi L., 2020. Design, fabrication and evaluation of a non-continuous inverted downdraft gasifier stove utilizing rice husk as feedstock. Scientific African 8: Art. no. e00415.
DOI: https://doi.org/10.64289/iej.25.03A11.5944659
