首页> 外文期刊>Journal of Energy Resources Technology >Numerical Investigation of the Thermo-Hydraulic Characteristics for Annular Vortex Tube: A Comparison With Ranque-Hilsch Vortex Tube
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Numerical Investigation of the Thermo-Hydraulic Characteristics for Annular Vortex Tube: A Comparison With Ranque-Hilsch Vortex Tube

机译:环形涡管热液压特性的数值研究:与Ranque-Hilsch涡管的比较

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摘要

In this work, a new configuration of the vortex tubes (VTs), called annular VTs, is proposed to improve the temperature separation performance. In the proposed configuration, a compartment has been added on the top of the tube wall that the separated hot outlet is repassed inside it over the hot tube. An axisymmetric swirl model of the Ranque-Hilsch (RH) and annual VTs is numerically simulated, and the thermo-hydraulic characteristics of them are compared for cold mass fractions ranging 0.2-0.8. The results illustrated that a small secondary circulation is created near the cold outlet of the RHVT that is not observed in the annular model. This secondary circulation is a destructive mechanism in VTs that results in more mixing and higher temperature in the cold outlet section. Analyzing the results indicates that using annular VT causes up to 12.51% increment of the hot outlet temperature compared to the RHVT model (which occurs at a mass fraction of 0.23). Also, up to 9.23% reduction of the cold outlet temperature is occurred (which occurs at a mass fraction of 0.37). These explanations prove the improvement of the annular VT compared to that of the conventional VTs.
机译:在这项工作中,提出了一种名为环形VT的涡流管(VTS)的新配置,以提高温度分离性能。在所提出的构造中,在管壁的顶部上添加了隔室,使得分离的热出口在热管内归位。在数值模拟RANQUE-HILSCH(RH)和年度VTS的轴对称旋流模型,并将它们的热液压特性与0.2-0.8的冷质量级分进行比较。结果表明,在环形模型中未观察到的RHVT的冷出口附近产生小的二次循环。这种二次循环是VTS中的破坏性机制,导致冷出口部分中更加混合和更高的温度。分析结果表明,与RHVT模型相比,使用环形VT导致热出口温度的增量高达12.51%(其在0.23的质量分数)。此外,发生了冷出口温度的高达9.23%(其发生在0.37的质量分数)。与传统VTS相比,这些解释证明了环形VT的改善。

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