Assume the liquid film in Example 5.9 is horizontal (i.e., θ = 0) and that the flow is driven by a constant shear stress on the top surface ðy=hÞ, τyx =C. Assume that the liquid film is thin enough...


Assume the liquid film in Example 5.9 is horizontal (i.e., θ = 0) and that the flow is driven by a constant shear stress on the top surface ðy=hÞ, τyx =C. Assume that the liquid film is thin enough and flat and that the flow is fully developed with zero net flow rate (flow rate Q = 0). Determine the velocity profile uðyÞ and the pressure gradient dp=dx.


Nov 11, 2021
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