Hot water at 85 Degrees Celsius is transferred inside a metal pipe with outer diameter 30mm. A circumferential fin with a rectangular profile is placed on the outer surface of the pipe for cooling. The fin is 80 mm in diameter and 8mm thick. If the heat convection coefficient of the environment outside the pipe- 20 W/m?.°C and the ambient temperature 22 Degree Celsius. Assume that the temperature of the outer surface of the pipe equals the hot water temperature. A. Determine the heat loss by the fin. B. Determine the fin effectiveness. (Thermal conductivity of the fin material 125 w/m.°C)

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter21: Heat And The First Law Of Thermodynamics
Section: Chapter Questions
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Hot water at 85 Degrees Celsius is transferred inside a metal pipe with outer diameter 30mm. A
circumferential fin with a rectangular profile is placed on the outer surface of the pipe for cooling. The fin is 80
mm in diameter and 8mm thick. If the heat convection coefficient of the environment outside the pipe = 20
W/m2.°C and the ambient temperature 22 Degree Celsius. Assume that the temperature of the outer surface
of the pipe equals the hot water temperature.
A. Determine the heat loss by the fin.
B. Determine the fin effectiveness.
(Thermal conductivity of the fin material 125 W/m.°C)
Transcribed Image Text:Hot water at 85 Degrees Celsius is transferred inside a metal pipe with outer diameter 30mm. A circumferential fin with a rectangular profile is placed on the outer surface of the pipe for cooling. The fin is 80 mm in diameter and 8mm thick. If the heat convection coefficient of the environment outside the pipe = 20 W/m2.°C and the ambient temperature 22 Degree Celsius. Assume that the temperature of the outer surface of the pipe equals the hot water temperature. A. Determine the heat loss by the fin. B. Determine the fin effectiveness. (Thermal conductivity of the fin material 125 W/m.°C)
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