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Analysis on the fluid flow in vortex tube with vortex periodical oscillation characteristics

机译:具有涡旋周期振荡特性的涡流管内流体流动分析

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摘要

To reveal the energy transferring mechanism in the vortex tube, which is an interesting phenomenon in the area of heat and mass transfer, numerical simulation and analysis of the dynamic fluid flow were employed. In contrast to the previous static study, the focus of this paper is the dynamic process, or the oscillation, of the secondary circulation layer. Based on the fluid flow results derived from the unsteady 3-D computation, the existence of the forced or Rankine vortex was confirmed, which also verified the certainty of reverse flow in the cold end of the vortex tube. Then, the oscillation of the boundary layer of the central recirculation zone was emphasized and the periodical vibrating of the fluid flow within the secondary circulation zone, varying of its boundary, and the typical frequencies of points on a cross section were provided. Based on these results, a novel energy transferring mechanism in the vortex tube was proposed, under the condition that stable oscillation of the boundary layer is the dominant mechanism for the heat and mass transfer process.
机译:为了揭示涡流管中的能量传递机制,这是传热和传质领域中一个有趣的现象,采用了数值模拟和动态流体流动分析。与以前的静态研究相比,本文的重点是二次循环层的动态过程或振荡。根据非定常3-D计算得出的流体流动结果,确定了强迫涡流或朗肯涡流的存在,这也证实了涡流管冷端逆流的确定性。然后,强调了中央再循环区的边界层的振荡,并提供了次级循环区内流体流动的周期性振动,边界的变化以及横截面上点的典型频率。基于这些结果,在边界层的稳定振荡是传热传质的主要机理的条件下,提出了一种新型的涡旋管能量传递机理。

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