Respuesta :
KNOWN: Long, 30mm-diameter cylinder with embedded electrical heater; power required
to maintain a specified surface temperature for water and air flows.
FIND: Convection coefficients for the water and air flow convection processes, hw and ha, respectively.
ASSUMPTIONS: Flow is cross-wise over cylinder which is very long in the direction normal to flow.
The convection heat rate from the cylinder per unit length of the cylinder has the form
q' = h*(pi*D)*(Ts-Tinf)
and solving for the heat transfer convection coefficient, find
Water
hw = q'/((pi*D)*(Ts-Tinf))
hw = (38*10^3 W/m) / ((pi*(0.030m))*(80-25)C)= 7330.77314 W/m^2K
Air
ha = (400W/m) / ((pi*(0.030m))*(80-25)C)= 77.166033 W/m^2K
COMMENTS: Note that the air velocity is 10 times that of the water flow, yet
hw ≈ 95 × ha.
These values for the convection coefficient are typical for forced convection heat transfer with liquids and gases
Watter is a better convective heat transfer media than air
FIND: Convection coefficients for the water and air flow convection processes, hw and ha, respectively.
ASSUMPTIONS: Flow is cross-wise over cylinder which is very long in the direction normal to flow.
The convection heat rate from the cylinder per unit length of the cylinder has the form
q' = h*(pi*D)*(Ts-Tinf)
and solving for the heat transfer convection coefficient, find
Water
hw = q'/((pi*D)*(Ts-Tinf))
hw = (38*10^3 W/m) / ((pi*(0.030m))*(80-25)C)= 7330.77314 W/m^2K
Air
ha = (400W/m) / ((pi*(0.030m))*(80-25)C)= 77.166033 W/m^2K
COMMENTS: Note that the air velocity is 10 times that of the water flow, yet
hw ≈ 95 × ha.
These values for the convection coefficient are typical for forced convection heat transfer with liquids and gases
Watter is a better convective heat transfer media than air