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An integral model based freezing and melting of a melt material onto a solid additive

โœ Scribed by A. Prasad; R.P. Singh


Publisher
Elsevier Science
Year
2003
Tongue
English
Weight
972 KB
Volume
37
Category
Article
ISSN
0895-7177

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โœฆ Synopsis


An integral model in nondimensional form is developed for freezing and melting of the melt material onto the surface of the additive that resembles a plate. It provides the governing equations coupled and nonlinear and indicates the dependence of this phenomenon on independent parameters-preheat temperatures &, the Stefan number St, the Biot number Bi, the property ratio B, and the bath temperature 13~. The solutions for the growth of the frozen layer and its melting along with instant equilibrium temperature of the surface of the additive and the heat penetration depth within the additive are obtained. Their graphical representation exhibits that with increase in each of Ba, &, Bi, and B, the total time of freezing and melting and the maximum thickness of the frozen layer developed onto the additive decrease. Increasing St does not alter such a total time. The validity of the model is checked.


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