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Journal of Energy Storage 27

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Journal of Energy Storage 27 ( journal-energy-storage-27 )

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M.M. Kenisarin, et al. Journal of Energy Storage 27 (2020) 101082 33 Table 13 (continued) 123456 8 Assis et al. [71] Tan [47] N &E Parrafin wax RT27 Glass Water bath with constant temperature FoSte 13 Gr 14 3 MF=1(11.9)2 The empirical formula allows to calculate mass molten fraction with time and consequently the time of complete melting Not applicable Veerappan et al. [72] Koizumi [73] A N &E NA N-octadecane NA Plastic Analytical correlations The derived correlations can be used Not applicable Archibold et al. [74] N E N N &E N Sodium nitrate Aluminium Pyrex flask NA Glass Nickel alloy Nickel alloy Stainless steel FoSte13Gr14 2 LMF=1(12.9) The empirical correlation can be used for the evaluation of main characteristics of a spherical storage unit The tabular data can be used for validation of the numerical modelling of PCM Rizan et al. [75] N-octadenane Constant heat flux The results of experiments presented in graphical and tabular forms for Hosseinzadeh et al. Paraffin wax RT27 + copper nano particles N-octadenane Constant wall temperature Graphical presentation of the molten fraction variation with time for different content of nano-particles Not applicable [76] Hosseinzadeh et al. Water bath with constant temperature Constant wall temperature MF = 6.64 1.07exp( 22 ) lnGr The empirical correlation can be used for the evaluation of main characteristics of a spherical storage unit The empirical correlation can be used for the evaluation of main characteristics of a spherical storage unit The empirical correlation can be used for the evaluation of main characteristics of a spherical storage unit The empirical correlation can be used for the evaluation of main characteristics of a spherical storage unit [77] Archibold et al. [78] Sodium nitrate MF = 1 MF=1 [1 FoSte0.37Gr0.25]2.35 2.8 Archibold et al. [79] Fan et al. [80] N E Sodium nitrate Parrafin wax RT27 Constant wall temperature FoSte0.33Gr0.27Pr0.37 0.72 R 0.02 1.8 ] E N-octadecane Glass Water bath with constant temperature Constant wall temperature Water bath with constant temperature Constant wall temperature Visual observation. Graphical presentation of variation of the liquid fraction with time for various Stefan number 1-dodecanol 123456 Hariharan [81] C &E Gosh and Guha [82] N &E Gao et al. [83] E Lago et al. [84] E Paraffin NA Air flow with constant temperature Water bath with constant temperature WBCT Graphical presentation of variation of the PCM temperature with time 8 Not applicable Solidification London and Seban [85] A Tao [86] A &N Water NA NA NA Constantwall temperature Constantwall temperature f =FoSte= 1 + 1 6 3Bi The formula can be used for evaluation of the time of complete freesing of water The formula can be used for evaluation of the time of complete freezing of any liquid Parrafin wax RT27 Aluminum Copper, Glass Visual observation. Grafical presentation of variation of the melt fraction for different material of the spherical capsule Not applicable Paraffin Glass Plastic = 0.374Fo0.712Ste0.243Ra0.166Si 0.094 0.192. The empirical correlation can be used for the evaluation of characteristics of a spherical storage unit The empirical correlation can be used for the evaluation of the time of complete melting of ice, ice- polyethylene glycol mixtures Water and water- PEG Thermal bath t complete melting = 4.7 × 105D0.99(1 W)2.34|T |0.033T ini bath 0.53 Constant wall temperature MF = 1.102 1.101exp( FoSte0.33Gr 0.1 ) 0.129 Visual observation. Graphical presentation of variation of the liquid fraction with time for different diameter of the sphere [1 f =FoSte= 1 + 1 6 3Bi 9.5 (continued on next page)

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