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Transport between two fluids across their mutual flow interface: the streakline approach

机译:两种流体在它们的相互流动界面之间的传输:条纹方法

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摘要

Mixing between two different fluids with a mutual interface must be initiated by fluid transporting across this fluid interface, caused, for example, by applying an unsteady velocity agitation. In general, there is no necessity for this physical flow barrier between the fluids to be associated with extremal or exponential attraction, as might be revealed by applying Lagrangian coherent structures, finite-time Lyapunov exponents, or other methods on the fluid velocity. It is shown that streaklines are key to understanding the breaking of the interface under velocity agitations, and a theory for locating the relevant streaklines is presented. Simulations of streaklines in a cross-channel mixer and a perturbed Kirchhoff elliptic vortex are quantitatively compared to the theoretical results. Additionally, a methodology for quantifying the unsteady advective transport between the two fluids using streaklines is presented and verified numerically for the same two examples.
机译:具有相互接口的两种不同流体之间的混合必须通过跨此流体接口的流体传输来启动,例如,通过施加不稳定的速度搅拌而引起。通常,流体之间的这种物理流动障碍没有必要与极值或指数吸引相关联,这可以通过对流体速度应用拉格朗日相干结构,有限时间李雅普诺夫指数或其他方法来揭示。结果表明,条纹是理解速度搅拌下界面断裂的关键,提出了一种确定相关条纹的理论。将跨通道混合器和扰动的Kirchhoff椭圆形涡旋中的条纹线模拟与理论结果进行了定量比较。另外,提出了一种用于使用条痕线量化两种流体之间的不稳定对流传输的方法,并针对相同的两个示例进行了数值验证。

著录项

  • 作者

    Balasuriya, S.;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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