S A long, thin metal plate is hung vertically after a heat treating process. The plate, of width W = 0.2 m, ver- tical dimension of 3 m, and an initial temperature of T. = 320°C, is cooled by atmospheric air of velocity V = 4 m/s and T. = 30°C. Determine the initial rate of heat loss from the plate if the air is in parallel flow over the plate. Account for heat loss from both surfaces of the thin plate. Determine the initial rate of heat loss if the

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Chapter5: Analysis Of Convection Heat Transfer
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Problem 5.65P
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A long, thin metal plate is hung vertically after a heat
treating process. The plate, of width W = 0.2 m, ver-
tical dimension of 3 m, and an initial temperature of
T, 320°C, is cooled by atmospheric air of velocity
V = 4 m/s and T = 30°C. Determine the initial rate of
heat loss from the plate if the air is in parallel flow over
the plate. Account for heat loss from both surfaces of the
thin plate. Determine the initial rate of heat loss if the
plate is turned so that its width is perpendicular to
the air flow. Account for heat loss from both the front
surface and the back surface of the plate. Which orien-
tation will maximize the cooling rate?
Transcribed Image Text:= A long, thin metal plate is hung vertically after a heat treating process. The plate, of width W = 0.2 m, ver- tical dimension of 3 m, and an initial temperature of T, 320°C, is cooled by atmospheric air of velocity V = 4 m/s and T = 30°C. Determine the initial rate of heat loss from the plate if the air is in parallel flow over the plate. Account for heat loss from both surfaces of the thin plate. Determine the initial rate of heat loss if the plate is turned so that its width is perpendicular to the air flow. Account for heat loss from both the front surface and the back surface of the plate. Which orien- tation will maximize the cooling rate?
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