Tec Exa Consider the following configuration of fins that are attached to a surface with a thermal conductivity (k) of 311 W/mK and a base temperature of 156 "C. The thermal conductivity of the fins is the same as that of the surface. The temperature of the air surrounding the fins is 25 °C. and the heat transfer coefficient on the air-side is 56 W/m²K. Assume the fin tips are adiabatic. Fin the following: SL D) ii) the heat flowrate per m² of the surface the fin effectiveness Temperature of base=456 C x = Fin center-to-center distance = 15 mm Fin diameter = 5 mm Fin height= 50 mm Fin arrangement details

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8th Edition
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Author:Kreith, Frank; Manglik, Raj M.
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Chapter1: Basic Modes Of Heat Transfer
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Heat transfer 

Pin
Tec
Exa
Consider the following configuration of fins that are attached to a surface with a
thermal conductivity (k) of 311 W/mK and a base temperature of 156 "C. The thermal conductivity of
the fins is the same as that of the surface. The temperature of the air surrounding the fins is 25 °C
and the heat transfer coefficient on the air-side is 56 W/m²K. Assume the fin tips are adiabatic. Fin
the following:
(3)
1)
the heat flowrate per m² of the surface
the fin effectiveness
Temperature of
base=456 C
x = Fin center-to-center
distance = 15 mm
Fin diameter 5 mm
Fin height= 50 mm
Fin arrangement details
X
Transcribed Image Text:Pin Tec Exa Consider the following configuration of fins that are attached to a surface with a thermal conductivity (k) of 311 W/mK and a base temperature of 156 "C. The thermal conductivity of the fins is the same as that of the surface. The temperature of the air surrounding the fins is 25 °C and the heat transfer coefficient on the air-side is 56 W/m²K. Assume the fin tips are adiabatic. Fin the following: (3) 1) the heat flowrate per m² of the surface the fin effectiveness Temperature of base=456 C x = Fin center-to-center distance = 15 mm Fin diameter 5 mm Fin height= 50 mm Fin arrangement details X
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