13. Prandtl has suggested that the velocity distribution for turbulent flow in conduits may be approximated by the equation v = vo (2)", where r, is the pipe radius and y is the distance from the pipe...


13. Prandtl has suggested that the velocity distribution for turbulent flow in conduits may be<br>approximated by the equation v = vo (2)

Extracted text: 13. Prandtl has suggested that the velocity distribution for turbulent flow in conduits may be approximated by the equation v = vo (2)", where r, is the pipe radius and y is the distance from the pipe wall. Determine (a) the expression of average velocity in terms of the centerline velocity in the conduits, and (b) the kinetic energy correction factor,

Jun 09, 2022
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