首页> 外文期刊>Journal of Heat Transfer >Computational Fluid Dynamic Prediction and Physical Mechanisms Consideration of Thermal Separation and Heat Transfer Processes Inside Divergent, Straight, and Convergent Ranque-Hilsch Vortex Tubes
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Computational Fluid Dynamic Prediction and Physical Mechanisms Consideration of Thermal Separation and Heat Transfer Processes Inside Divergent, Straight, and Convergent Ranque-Hilsch Vortex Tubes

机译:考虑发散,直形和会聚Ranque-Hilsch涡管内部热分离和传热过程的计算流体动力学预测和物理机理

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摘要

The design of Ranque-Hilsch vortex tube (RHVT) seems to be interesting for refrigeration and air conditioning purposes in industry. Improving thermal efficiency of the vortex tubes could increase the operability of these innovative facilities for a wider heat and cooling demand to this end; it is of an interest to understand the physical phenomena of thermal and flow patterns inside a vortex tube. In this work, the flow phenomena and the thermal energy transfer in RHVT are studied for three RHVT: straight, divergent, and convergent vortex tubes. A three-dimensional numerical analysis of swirling or vortex flow is performed, verified, and validated against previous experimental and numerical data reported in literature. The flow field and the temperature separation inside an RHVT for different configuration of straight, five angles of divergent hot tube (1 deg, 2 deg, 3 deg, 4 deg, and 6 deg) and five angle of convergent hot tube (0.5 deg, 0.8 deg, 1 deg, 1.5 deg, and 2 deg) are investigated. The thermal performance for all investigated RHVTs configuration is determined and quantitatively assessed via visualizing the stream lines for all three scenarios.
机译:Ranque-Hilsch涡流管(RHVT)的设计对于工业中的制冷和空调目的似乎很有趣。提高涡流管的热效率可以提高这些创新设施的可操作性,从而达到更广泛的热和冷却需求。了解涡流管内部的热和流动模式的物理现象非常有趣。在这项工作中,研究了三种RHVT的流动现象和热能传递:直管,发散管和会聚涡流管。对涡流或涡流进行了三维数值分析,并根据文献中先前的实验和数值数据进行了验证。 RHVT内部的流场和温度分离,用于不同配置的直管,五个角度的发散热管(1度,2度,3度,4度和6度)和五个角度的会聚热管(0.5度,研究了0.8度,1度,1.5度和2度。通过可视化所有三种情况的流线,确定并定量评估了所有研究的RHVT的热性能。

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