Q2) Air at 20°C and 1 atm flows over a flat plate at 35 m/s. The plate is 75 cm long and 100 cm depth and is maintained at 60 C. Calculate (a) velocity boundary layer thickness at the leading edge, (b) thermal boundary layer thickness at the distance of 10 cm from the leading edge, and (c) thermal boundary layer thickness at the trailing edge.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q2) Air at 200C and 1 atm flows over a flat plate at 35 m/s. The plate is 75 cm
long and 100 cm depth and is maintained at 60°C. Calculate (a) velocity
boundary layer thickness at the leading edge, (b) thermal boundary layer
thickness at the distance of
cm from the leading edge, and (c) thermal
boundary layer thickness at the trailing edge.
Transcribed Image Text:Q2) Air at 200C and 1 atm flows over a flat plate at 35 m/s. The plate is 75 cm long and 100 cm depth and is maintained at 60°C. Calculate (a) velocity boundary layer thickness at the leading edge, (b) thermal boundary layer thickness at the distance of cm from the leading edge, and (c) thermal boundary layer thickness at the trailing edge.
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