On the low-Reynolds-number flow in a helical pipe

Author:

Wang C. Y.

Abstract

A non-orthogonal helical co-ordinate system is introduced to study the effect of curvature and torsion on the flow in a helical pipe. It is found that both curvature and torsion induce non-negligible effects when the Reynolds number is less than about 40. When the Reynolds number is of order unity, torsion induces a secondary flow consisting of one single recirculating cell while curvature causes an increased flow rate. These effects are quite different from the two recirculating cells and decreased flow rate at high Reynolds numbers.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference10 articles.

1. Batchelor, G. K. 1970 An Introduction to Fluid Mechanics , appendix 2.Cambridge University Press.

2. Topakoglu, H. C. 1967 Steady laminar flows of an incompressible viscous fluid in curved pipes.J. Math. Mech. 16,1321–1337.

3. Mubata, S. , Miyake, Y. & Inaba, T. 1976 Laminar flow in a curved pipe with varying curvature.J. Fluid Mech. 73,735–752.

4. Nicholson, J. W. 1910 The effective resistance and inductance of a helical coil.Phil. Mag. 19 (6),77–91.

5. Dean, W. R. 1928 The streamline motion of fluid in a curved pipe.Phil. Mag. 5 (7),673–695.

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