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首页> 外文期刊>Journal of Chemical Engineering of Japan >Flow Properties of Newtonian and Non-Newtonian Fluid Downstream of Stenosis
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Flow Properties of Newtonian and Non-Newtonian Fluid Downstream of Stenosis

机译:狭窄下游的牛顿流体和非牛顿流体的流动特性

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References(23) Cited-By(6) Blood flow behavior around the arteriosclerosis region, which is often recognized as stenosis of the blood vessel, has been paid much attention of late.In this study, the flow properties of Newtonian and non-Newtonian blood analogous fluid are investigated in a straight pipe with sudden construction and expansion, which is a model of arterial stenosis.It is found that introducing pulsation is more effective for the recover of velocity profile downstream of stenosis rather than increasing the Reynolds number in laminar flow range for both fluids.It is distinctive that the velocity profile is not sensitive to Reynolds number for both steady and pulsating flow regimes of non-Newtonian fluid. Since the recovery of velocity profile means momentum transport by convection in the radial direction, mass transport is also expected to be enhanced by pulsation rather than by the increase of Reynolds number. For Newtonian fluid, however, Reynolds number should be higher than for non-Newtonian to achieve sufficient mixing because of the higher sensitivity.Further, it is elucidated by wavelet analysis that the structure of momentum transport is substantially different in spite of the similarity of velocity profile at Reynolds number around 500. This analysis also suggests the superiority of pulsating flow of blood.
机译:参考文献(23)被引用(6)动脉硬化区域周围的血流行为,通常被认为是血管狭窄,已引起人们的广泛关注。在这项研究中,牛顿和非牛顿的流动特性在具有突然构造和膨胀的直管中研究了血液类似液体,这是动脉狭窄的模型。发现引入脉动对狭窄下游的速度分布的恢复比增加层流中的雷诺数更有效对于非牛顿流体的稳态和脉动流态,速度分布对雷诺数不敏感是很明显的。由于速度分布的恢复意味着通过径向对流进行动量传输,因此也期望通过脉动而不是通过雷诺数的增加来增强质量传输。然而,对于牛顿流体,由于具有更高的灵敏度,雷诺数应高于非牛顿流体以实现充分的混合。此外,小波分析表明尽管速度相似,动量传输的结构还是有很大不同。雷诺数为500时的曲线。该分析还表明脉动血流的优越性。

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