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Numerical analysis of the paraffin wax–air spiral thermal energy storage unit

✍ Scribed by J. Banaszek; R. Domañski; M. Rebow; F. El-Sagier


Publisher
Elsevier Science
Year
2000
Tongue
English
Weight
543 KB
Volume
20
Category
Article
ISSN
1359-4311

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✦ Synopsis


A two-dimensional computer simulation is presented for conjugate heat transfer and solid±liquid phase change, concurrently occurring within a domain of the paran wax±air spiral thermal energy storage unit during its charging and discharging. The numerical model is based on local energy balances in a set of curvilinear control-volumes (the domain of the unit is divided into), and on the enthalpy approach to account for the latent heat eect. The results obtained are compared with the experimental data, reported in the authors' earlier paper (Banaszek J., DomanÄ ski R., Rebow M. and El-Sagier F., Experimental study of solid±liquid phase change in a spiral thermal energy storage unit, Applied Thermal Engineering 19 (1999) 1253±1277), to ®nd out that the proposed numerical model is a reliable and suciently accurate calculation tool, although some incongruity between calculated and measured temperature of the paran wax exists. The reasons for this discrepancy are thoroughly analyzed and discussed in the paper.


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