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Heat Transfer of Natural Convection in a Rectangular Cavity with Vertical Walls of Different Temperatures

N. Seki, Shoichiro FUKUSAKO, Hideo Inaba

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Abstract

In the present study the behavior of heat transfer in a rectangular cavity with one isothermal vertical wall heated and the other cooled is investigated. Heat transfer coefficients on the vertical walls are measured for fluids with Prandtl number Pr of 3 to 40, 000 in case of aspect-ratio H/W from 5 to 47.5 and their correlated results are presented for laminar, transition and turbulent regions, respectively. It is shown that the present arrangement (NuH-RaH) using the height of cavity as a representative length may significantly by useful in the various heat transfer modes accompanied with flow patterns of them.

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In the present study the behavior of heat transfer in a rectangular cavity with one isothermal vertical wall heated and the other cooled is investigated. Heat transfer coefficients on the vertical walls are measured for fluids with Prandtl number Pr of 3 to 40, 000 in case of aspect-ratio H/W from 5 to 47.5 and their correlated results are presented for laminar, transition and turbulent regions, respectively. It is shown that the present arrangement (NuH-RaH) using the height of cavity as a representative length may significantly by useful in the various heat transfer modes accompanied with flow patterns of them.

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Available abstract

In the present study the behavior of heat transfer in a rectangular cavity with one isothermal vertical wall heated and the other cooled is investigated. Heat transfer coefficients on the vertical walls are measured for fluids with Prandtl number Pr of 3 to 40, 000 in case of aspect-ratio H/W from 5 to 47.5 and their correlated results are presented for laminar, transition and turbulent regions, respectively. It is shown that the present arrangement (NuH-RaH) using the height of cavity as a representative length may significantly by useful in the various heat transfer modes accompanied with flow patterns of them.

Key concepts: Prandtl number, Heat transfer, Materials science, Laminar flow, Natural convection, Turbulence, Isothermal process, Thermodynamics

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