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THERMAL ENERGY STORAGE USING PARAFFIN WAX

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THERMAL ENERGY STORAGE USING PARAFFIN WAX ( thermal-energy-storage-using-paraffin-wax )

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• The effect of flow direction for a vertical helical coil configuration has not been broadly reported or investigated. The second part of the literature review is dedicated to NEPCM studies. Significant findings are presented as follows: • There seems to be no standard for the preparation of NEPCMs. Although the dispersion of nanoparticles is mainly achieved through mechanical (stirring and sonication) and chemical (surfactants) methods, the duration and intensity of stirring or sonication as well as the selection (type) and the amount of surfactant used vary greatly. Determining these crucial parameters is generally not reasoned. • Carbon-based nanoparticles, particularly GNPs, perform better than metallic nanoparticles in enhancing thermal conductivity. • Thermal conductivity enhancement results were usually obtained when the samples were at the most stable state. Therefore, measurements should be repeated over melting/solidification cycles. But most previous studies did not conduct cyclic measurements. • Some studies evaluated the stability of NEPCMs based on DSC results. DSC analysis is done for only a very small amount of NEPCM which lacks information on how particle agglomeration occurs in bulk. • Maintaining uniform dispersion of nanoparticles in PCMs without any settlement is a great challenge that needs to be studied further. 31

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