TECHNICAL NOTES
Jan 16, 2004

Experiments on Unsteady Turbulent Pipe Flow

Publication: Journal of Engineering Mechanics
Volume 130, Issue 2

Abstract

The paper explores the time-wise evolution of selected turbulence parameters during gravity-driven flow establishment of incompressible fluids in rigid circular pipes. Two initial conditions are considered: flow starting from rest, passing through laminar-to-turbulent transition, and terminating in a turbulent steady state; and transient flow between two turbulent steady states. It is found that, in the second case, the properties considered, i.e., local temporal mean velocity and its transverse distribution, axial turbulence intensity, and wall shear stress, are monotonically increasing with time. However, for flow starting from rest, all properties are strongly affected by the development of turbulence. In particular, at the critical moment when laminar-to-turbulent transition is complete, the wall shear stress changes abruptly from one to the other, identifying wall shear stress as a very sensitive indicator of criticality.

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References

Hinze, J. O. (1975). Turbulence, 2nd Ed., McGraw-Hill, New York.
Lam, K. W., and Leutheusser, H. J.(2002). “Flow establishment in elastic pipes.” J. Eng. Mech., 128(11), 1169–1173.
Viola, J. P. (1985). “Experiments on unsteady turbulent flow in long smooth pipes.” MA Sc, thesis, Dept. of Mechanical Eng., Univ. of Toronto, Toronto.
White, F. M. (1974). Viscous fluid flow, McGraw-Hill, New York.

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Information

Published In

Go to Journal of Engineering Mechanics
Journal of Engineering Mechanics
Volume 130Issue 2February 2004
Pages: 240 - 244

History

Received: Aug 13, 2002
Accepted: Apr 22, 2003
Published online: Jan 16, 2004
Published in print: Feb 2004

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John P. Viola
Graduate Student, Dept. of Mechanical and Industrial Engineering, Univ. of Toronto, Toronto ON, Canada M5S 3G8.
Hans J. Leutheusser, M.ASCE
Deceased June 26, 2003; formerly, Professor Emeritus, Dept. of Mechanical and Industrial Engineering, Univ. of Toronto, Toronto ON, Canada M5S 3G8.

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