Transition to Turbulence in Accelerating Pipe Flow

Author:

Annus Ivar1,Koppel Tiit1

Affiliation:

1. Tallinn University of Technology Department of Mechanics, , Ehitajate tee 5, Tallinn 19086, Estonia,

Abstract

Abstract A uniformly accelerated laminar flow in a pipe, initially at rest, is analyzed. The acceleration increases the critical Reynolds number remarkably. New experimental findings are used to describe the transitional process in accelerating pipe flow. The results are shown to validate the previously suggested transition parameters obtained on the basis of results on small diameter pipes. The influence of the transition process on mean values is studied. The relationships between flow parameters and transition time were derived from the experimental results for data available. The time from the start of the flow to the initiation of turbulence can be predicted by an empirical formula.

Publisher

ASME International

Reference25 articles.

1. The Structure of the Turbulence in Transient Pipe Flows;Maruyama;J. Chem. Eng. Jpn.

2. Experimental Investigation of the Development of Motion of Liquid in Conduits;Koppel;Fluid Dyn.

3. Leutheusser, H. J., and Lam, K. W., 1977, “Flow Instability in Accelerated Fluid Motion,” Proc. Sixth Can. Congr. App. Mech., pp. 679–680.

4. Laminar-to-Turbulent Transition in Accelerated Motion;Leutheusser;Proc. 17th Congr. IAHR

5. Transition to Turbulence in Starting Pipe Flows;Maruyama;J. Chem. Eng. Jpn.

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