COMBINED FORCED AND FREE CONVECTIVE FLOWS OF COLD WATER OVER A VERTICAL FLAT SURFACE.

Jiin-Yuh Jang, M. H. Chen

Research output: Contribution to conferencePaper

Abstract

The case of aiding forced and free convective flows of cold water adjacent to an isothermal vertical plate is investigated. The nonsimilar equations are solved by using a suitable variable transformation and employing an implicit finite difference method. Numerical results for friction factor and Nusselt number are presented over a wide range of temperature, salinity and pressure condition. The present results may also be applied to the slow melting or freezing of a vertical ice slab. The anomalous cold water density behavior is found to produce large differences form the transport predictions arising from the conventional Boussinesq approximation.

Original languageEnglish
Pages85-89
Number of pages5
Publication statusPublished - 1987 Jan 1

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Nusselt number
Finite difference method
Freezing
Ice
Water
Melting
Friction
Temperature

All Science Journal Classification (ASJC) codes

  • Engineering(all)

Cite this

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abstract = "The case of aiding forced and free convective flows of cold water adjacent to an isothermal vertical plate is investigated. The nonsimilar equations are solved by using a suitable variable transformation and employing an implicit finite difference method. Numerical results for friction factor and Nusselt number are presented over a wide range of temperature, salinity and pressure condition. The present results may also be applied to the slow melting or freezing of a vertical ice slab. The anomalous cold water density behavior is found to produce large differences form the transport predictions arising from the conventional Boussinesq approximation.",
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COMBINED FORCED AND FREE CONVECTIVE FLOWS OF COLD WATER OVER A VERTICAL FLAT SURFACE. / Jang, Jiin-Yuh; Chen, M. H.

1987. 85-89.

Research output: Contribution to conferencePaper

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N2 - The case of aiding forced and free convective flows of cold water adjacent to an isothermal vertical plate is investigated. The nonsimilar equations are solved by using a suitable variable transformation and employing an implicit finite difference method. Numerical results for friction factor and Nusselt number are presented over a wide range of temperature, salinity and pressure condition. The present results may also be applied to the slow melting or freezing of a vertical ice slab. The anomalous cold water density behavior is found to produce large differences form the transport predictions arising from the conventional Boussinesq approximation.

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