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首页> 外文期刊>Journal of biomechanical engineering. >Separation surfaces for laminar flow in branching tubes -- effect of Reynolds number and geometry
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Separation surfaces for laminar flow in branching tubes -- effect of Reynolds number and geometry

机译:分支管中层流的分离表面-雷诺数和几何形状的影响

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摘要

Flow visualization experiments of Newtonian laminar flow through branching tubes have been performed to identify the shape of the separation surface or flow divider. The influences of Reynolds number, flow fraction into the side branch, and branch geometry on the separation surface shape have been considered. The shapes presented in this paper are formed by the intersection of the separation surface with the cross section of the parent tube. At low Re the separation surfaces are curved in a convexmanner, bulging away from the opening of the side branch. Increasing Re causes the surface to become concave. At Re > 194 the surfaces can become closed for Q*> 0.3. The branch angle has no noticeable effect on the separation surface shape. The side toparent branch diameter ratio, D{sub}b/D{sub}p, has a strong influence at low Re. As Re increases the diameter effect diminishes. Previous studies have shown no difference between the separation surfaces of T and Y type junctions at low Re. At Re = 194there is a marked difference between the separation surfaces of T and Y bifurcations.
机译:已经进行了牛顿层流通过分支管的流动可视化实验,以识别分离表面或分流器的形状。已经考虑了雷诺数,进入支管的流量分数和支管几何形状对分离表面形状的影响。本文提出的形状是由分离表面与母管横截面的相交形成的。在低Re时,分离表面以凸形弯曲,从侧面分支的开口向外凸出。增加Re会导致表面凹入。当Re> 194时,对于Q *> 0.3,表面可以变得闭合。分支角对分离表面形状没有明显影响。边对母分支直径比D {sub} b / D {sub} p在低Re时具有很强的影响力。随着Re的增加,直径效应减弱。先前的研究表明,在低Re下T型和Y型结的分离表面之间没有差异。在Re = 194时,T和Y分叉的分离表面之间存在明显差异。

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