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首页> 外文期刊>International Journal of Heat and Mass Transfer >Mass transfer and mixing by pulsatile three-dimensional chaotic flow in alternating curved pipes
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Mass transfer and mixing by pulsatile three-dimensional chaotic flow in alternating curved pipes

机译:交替弯曲管中脉动三维混沌流的传质与混合

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摘要

We present an experimental and numerical study of three-dimensional pulsatile flow in a twisted pipe in order to show the effects of chaotic advection on mixing in this flow configuration. The numerical study is done by CFD code with a pulsatile velocity field imposed as an inlet condition. The experimental setup is composed principally of a "Scotch-yoke" pulsatile flow generator and a twisted duct. The twisted duct consists of six 90° bends of circular cross-section; the plane of curvature of each bend is at 90° to that of its neighbors. The secondary flow, generated by centrifugal force, the pulsating velocity field and also due to the change in curvature plane, leads to irregular fluid particle trajectories. Velocity measurements were made for a range of stationary Reynolds numbers (300 ≤Re_(st)≤ 1200) and frequency parameters (1 ≤ α ≤ 20) and for two velocity-amplitude ratios (0); agreement between the numerical and experimental results is satisfactory. In the first bend, for certain control parameter values, the secondary flow becomes more complex due to the pulsation, and in some cases Lyne instability and a siphon phenomenon appear. However, in the other bends, one passes from four cells (Lyne instability) in the first bend with two cells in the other bends. The numerical and experimental study revealed modifications in the trajectories' evolution due to pulsation. The superposition of an oscillating flow on a stationary curved-pipe flow, in some cases, causes the destruction of the trapping zones (KAM structures). The number of regular zones that disappear with an increase in the number of bends decrease with pulsation frequency and velocity-amplitude ratio. Both these phenomena contribute to the mixing and mass transfer enhancement in the flow.
机译:我们目前在扭曲管中进行三维脉动流动的实验和数值研究,以显示在这种流动形态下混沌对流对混合的影响。通过CFD代码进行数值研究,并以脉动速度场作为入口条件。实验装置主要由“苏格兰轭”脉动气流发生器和扭曲的管道组成。扭曲的风管由六个90°的圆形横截面弯曲组成。每个折弯的曲率平面与其相邻的折角成90°。由离心力,脉动速度场以及还由于曲率平面的变化而产生的二次流导致不规则的流体颗粒轨迹。对一系列固定雷诺数(300≤Re_(st)≤1200)和频率参数(1≤α≤20)以及两个速度-振幅比(0)进行速度测量。数值与实验结果吻合令人满意。在第一个弯道中,对于某些控制参数值,次级流由于脉动而变得更加复杂,并且在某些情况下会出现Lyne不稳定和虹吸现象。但是,在其他折弯中,第一个折弯中的四个像元(莱恩不稳定性)从另一个折弯中的两个像元经过。数值和实验研究表明,由于脉动,轨迹的演变发生了变化。在某些情况下,振荡流与固定弯管流的叠加会导致捕获区域(KAM结构)的破坏。随着弯曲次数的增加而消失的规则区域的数目随着脉动频率和速度-振幅比而减少。这两种现象均有助于流动中的混合和传质的增强。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2011年第18期|p.3933-3950|共18页
  • 作者单位

    Thermofluids, Complex Flows Research Croup, Laboratoire de Thermocinitique, UMR CNRS 6607, Ecole polytechnique - University of Nantes, La Chancrerie, Rue Christian Pauc, BP 50609 44306 Nantes Cedex, France;

    Thermofluids, Complex Flows Research Croup, Laboratoire de Thermocinitique, UMR CNRS 6607, Ecole polytechnique - University of Nantes, La Chancrerie, Rue Christian Pauc, BP 50609 44306 Nantes Cedex, France;

    Thermofluids, Complex Flows Research Croup, Laboratoire de Thermocinitique, UMR CNRS 6607, Ecole polytechnique - University of Nantes, La Chancrerie, Rue Christian Pauc, BP 50609 44306 Nantes Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pulsatile dean flow; lyne flow; chaotic advection; twisted pipe flow; mass transfer enhancement;

    机译:脉动迪安流量;莱恩流量;混沌对流;扭曲管流量;传质增强;

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