Bifurcation in steady laminar flow through curved tubes

Author:

Nandakumar K.,Masliyah Jacob H.

Abstract

The occurrence of dual solutions in curved ducts is investigated through a numerical solution of the Navier-Stokes equations in a bipolar-toroidal co-ordinate system. With the shape of duct being the region formed by the natural co-ordinate surfaces, it was possible to alter the duct geometry gradually and preserve the prevailing form of the velocity field, in a manner suggested by Benjamin (1978).In addition to the Dean number Dn = Re/Rc½, a geometrical parameter that defines the shape of the duct was also varied systematically to study the bifurcation of a two-vortex solution into a two- and four-vortex solution. Dual solutions have been found for all geometrical shapes investigated here. Of particular interest are the shapes of a full circle and a semicircle with a curved outer wall.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference23 articles.

1. De Vriend, H. J. 1981 Velocity redistribution in curved rectangular channels.J. Fluid Mech. 107,423–439.

2. Dennis, S. C. R. 1980 Calculation of the steady flow through a curved tube using a new finite-difference method.J. Fluid Mech. 99,449–467.

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

4. Cuming, H. G. 1952 The secondary flow in curved pipes.Aero. Res. Counc. R. & M. no. 2880.

5. Truesdell, L. C. & Adler, R. J. 1970 Numerical treatment of fully developed laminar flow in helically coiled tubes.A.I.Ch.E. J. 16,1010–1015.

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