Consider a steady, incompressible flow between two parallel plates. The top plate at a temperature T1 (in K) is moved to the right at U1 and the bottom plate at temperature T2 is kept at rest. Assuming that temperature distribution between the two plates is approximated by a linear relation, and that coefficient of viscosity u = C T/2, calculate how the velocity varies between the plates. Assume there are no gradients in the x direction.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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O Consider a steady, incompressible flow between two parallel plates. The top plate at a
temperature T1 (in K) is moved to the right at U1 and the bottom plate at temperature T, is kept at
rest. Assuming that temperature distribution between the two plates is approximated by a linear
relation, and that coefficient of viscosity µ = C T/2, calculate how the velocity varies between
the plates. Assume there are no gradients in the x direction.
Transcribed Image Text:O Consider a steady, incompressible flow between two parallel plates. The top plate at a temperature T1 (in K) is moved to the right at U1 and the bottom plate at temperature T, is kept at rest. Assuming that temperature distribution between the two plates is approximated by a linear relation, and that coefficient of viscosity µ = C T/2, calculate how the velocity varies between the plates. Assume there are no gradients in the x direction.
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