Steam in a heating system flows through tubes whose outer diameter is 5 cm and whose walls are maintained at a temperature of 180 C. Circular aluminum alloy 2024-T6 fins (k =186W/m °C) of outer diameter 6 cm and constant thickness 1 mm are attached to the tube. The space between the fins is 3 mm, and thus there are 250 fins per meter length of the tube. Heat is transferred to the surrounding air at T = 25°C, with a heat transfer coefficient of 40 W/m2.°C. %3D Determine the increase in heat transfer from the tube per meter of its length as a result of adding fins. 25 em 3 cm

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Steam in a heating system flows through tubes whose outer diameter is 5 cm and whose
walls are maintained at a temperature of 180 C. Circular aluminum alloy 2024-T6 fins (k
=186W/m °C) of outer diameter 6 cm and constant thickness 1 mm are attached to the
tube. The space between the fins is 3 mm, and thus there are 250 fins per meter length of
the tube. Heat is transferred to the surrounding air at T = 25°C, with a heat transfer
coefficient of 40 W/m2 °C.
%3D
Determine the increase in heat transfer from the tube per meter of its length as a result of
adding fins.
23em
3em
T-25C
130°C
1 uan
Transcribed Image Text:Steam in a heating system flows through tubes whose outer diameter is 5 cm and whose walls are maintained at a temperature of 180 C. Circular aluminum alloy 2024-T6 fins (k =186W/m °C) of outer diameter 6 cm and constant thickness 1 mm are attached to the tube. The space between the fins is 3 mm, and thus there are 250 fins per meter length of the tube. Heat is transferred to the surrounding air at T = 25°C, with a heat transfer coefficient of 40 W/m2 °C. %3D Determine the increase in heat transfer from the tube per meter of its length as a result of adding fins. 23em 3em T-25C 130°C 1 uan
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