This paper presents a study of three-dimensional laminar flow in a rotating multiplepass channel connected with 180-deg sharp bends. Fluid-flow fields are calculated for the entire domain via the Navier-Stokes equations through a finite-difference scheme. For closure of this elliptic-type problem, periodical fully developed conditions are employed between the entrance and exit of the two-pass module. Experiments for the stationary two-pass channel are conducted to validate the numerical procedure and data. The emphasis of the present prediction is on the rotating and through-flow rate effects on the fluid-flow and friction characteristics in the straight channel as well as in the turn region. It is found that the rotation-induced Coriolis force significantly raises the wall-friction losses in the straight channel. However, the head loss of the sharp turn is decreased with increasing rotation speed, because the flow discrepancy between the inlet and outlet of the sharp turn is less significant for the higher rotation speed. Moreover, overall pressure-drop penalty across the two-pass channel is found to be enhanced by the rotation speed as well as the duct through-flow rate.
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September 1998
Research Papers
Three-Dimensional Laminar Flow in a Rotating Multiple-Pass Square Channel With Sharp 180-Deg Turns
Jenn-Jiang Hwang,
Jenn-Jiang Hwang
Department of Mechanical Engineering, Chung-Hua University, Hsinchu, Taiwan 300
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Dong-Yuo Lai
Dong-Yuo Lai
Department of Mechanical Engineering, Chung-Hua University, Hsinchu, Taiwan 300
Search for other works by this author on:
Jenn-Jiang Hwang
Department of Mechanical Engineering, Chung-Hua University, Hsinchu, Taiwan 300
Dong-Yuo Lai
Department of Mechanical Engineering, Chung-Hua University, Hsinchu, Taiwan 300
J. Fluids Eng. Sep 1998, 120(3): 488-495 (8 pages)
Published Online: September 1, 1998
Article history
Received:
March 12, 1997
Revised:
May 6, 1998
Online:
January 22, 2008
Citation
Hwang, J., and Lai, D. (September 1, 1998). "Three-Dimensional Laminar Flow in a Rotating Multiple-Pass Square Channel With Sharp 180-Deg Turns." ASME. J. Fluids Eng. September 1998; 120(3): 488–495. https://doi.org/10.1115/1.2820689
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