You've experienced convection cooling if you've ever extended your hand out the window of a moving vehicle or into a flowing water stream. With the surface of your hand at a temperature of 30°C, consider the two following conditions. Condition A: a vehicle speed of 35 km/h in air at -9°C with a convection coefficient of 40 W/m2-K. Condition B: a velocity of 0.2 m/s in a water stream at 10°C with a convection coefficient of 900 W/m2-K. What is the convection heat flux for the following? Condition A: i W/m? Condition B: qwater i W/m2 %3D

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8th Edition
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Author:Kreith, Frank; Manglik, Raj M.
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Chapter5: Analysis Of Convection Heat Transfer
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You've experienced convection cooling if you've ever extended your hand out the window of a moving vehicle or into a flowing water
stream. With the surface of your hand at a temperature of 30°C, consider the two following conditions.
Condition A: a vehicle speed of 35 km/h in air at -9°C with a convection coefficient of 40 W/m2-K.
Condition B: a velocity of 0.2 m/s in a water stream at 10°C with a convection coefficient of 900 W/m2-K.
What is the convection heat flux for the following?
Condition A:
i
W/m?
Condition B:
qwater
i
W/m2
%3D
Transcribed Image Text:You've experienced convection cooling if you've ever extended your hand out the window of a moving vehicle or into a flowing water stream. With the surface of your hand at a temperature of 30°C, consider the two following conditions. Condition A: a vehicle speed of 35 km/h in air at -9°C with a convection coefficient of 40 W/m2-K. Condition B: a velocity of 0.2 m/s in a water stream at 10°C with a convection coefficient of 900 W/m2-K. What is the convection heat flux for the following? Condition A: i W/m? Condition B: qwater i W/m2 %3D
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