Water flows over a heated plate as shown below. The plate length is 0.17 m and its boundary condition is set as constant heat flux. Water flow velocity is 2 m/s and uniformly distributed heat flux is 75000 W/m². Thermophysical properties of water may be approximated as: k = 0.620 W/mK, Pr = 5.2, v = 0.96x106 m²/s water V m/s 20°C Calculate the plate temperature at the trailing edge in "C If the boundary layer is "tripped' and the flow over the plate is completely turbulent calculate the plate temperature at the trailing edge in "C 34.9 42.1 51.0 59.2 64.0 75.8 82.3 21.2 24.5 27.329.8 34.0 37.1 39.0

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Water flows over a heated plate as shown below. The plate length is 0.17 m and its boundary condition is set as constant heat flux.
Water flow velocity is 2 m/s and uniformly distributed heat flux is 75000 W/m². Thermophysical properties of water may be
approximated as:
k = 0.620 W/mK, Pr = 5.2, v = 0.96x10-6 m²/s
water
V m/s
20°C
Calculate the plate temperature at the trailing edge in "C
If the boundary layer is 'tripped' and the flow over the plate is completely turbulent; calculate the plate temperature at the trailing
edge in "C
34.9 42.1 51.0 59.2| 64.0 75.8| 82.3
21.224.5 27.3 | 29.8 | 34.0 37.1 39.0
Transcribed Image Text:Water flows over a heated plate as shown below. The plate length is 0.17 m and its boundary condition is set as constant heat flux. Water flow velocity is 2 m/s and uniformly distributed heat flux is 75000 W/m². Thermophysical properties of water may be approximated as: k = 0.620 W/mK, Pr = 5.2, v = 0.96x10-6 m²/s water V m/s 20°C Calculate the plate temperature at the trailing edge in "C If the boundary layer is 'tripped' and the flow over the plate is completely turbulent; calculate the plate temperature at the trailing edge in "C 34.9 42.1 51.0 59.2| 64.0 75.8| 82.3 21.224.5 27.3 | 29.8 | 34.0 37.1 39.0
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