Flow Pattern and Wall Shear Stress through Unsymmetrical Branch in Steady Flow

The wall shear stress and the flow pattern in a 45 degree unsymmetrical branch model in steady flow have been studied experimentally. The model, made of Plexiglas, consists of the parent tube (D0=24mm) and the daughter tube (D1=14mm). The curvature of the outer wall in the daughter tube and of the f...

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Veröffentlicht in:Nihon Kikai Gakkai rombunshuu. B hen 1991/07/25, Vol.57(539), pp.2203-2208
Hauptverfasser: YAMAGUCHI, Ryuhei, YANO, Noriyasu, YAMAGUCHI, Takami
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container_end_page 2208
container_issue 539
container_start_page 2203
container_title Nihon Kikai Gakkai rombunshuu. B hen
container_volume 57
creator YAMAGUCHI, Ryuhei
YANO, Noriyasu
YAMAGUCHI, Takami
description The wall shear stress and the flow pattern in a 45 degree unsymmetrical branch model in steady flow have been studied experimentally. The model, made of Plexiglas, consists of the parent tube (D0=24mm) and the daughter tube (D1=14mm). The curvature of the outer wall in the daughter tube and of the flow divider was RD=3.5D0 and Rc=D0/8, respectively. The wall shear stress was measured using an electrochemical method at the Reynolds number of 500, 800 and 1200, and the flow pattern was visualized by dye injection. Approximately 150 electrodes were embedded in the median plane of a branch tube. The ratio of the flow rate in the daughter tube to the total flow rate in the upstream parent tube is about 0.25, which corresponds to the ratio of the cross-sectional area downstream. The flow through this branch was characterized at the outer wall of the daughter tube, at the outer wall of the parent tube and near the flow divider. In particular, at the outer wall of the daughter tube, flow separation did not occur although the helical flow appeared.
doi_str_mv 10.1299/kikaib.57.2203
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title Flow Pattern and Wall Shear Stress through Unsymmetrical Branch in Steady Flow
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