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Analysis of the unsteady heat and mass transfer processes in a Ranque-Hilsch vortex tube: Tube optimization criteria

机译:Ranque-Hilsch涡流管中不稳定的传热和传质过程分析:管子优化准则

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Although numerous experiments and numerical calculations have been carried out in order to study, with different parameters, the relationship between the flow structure and energy separation performance in a vortex tube, there has been less progress on its design optimization, which is due to the lack of a systematic analysis of the flow structure inside the vortex tube. According to the evidence, the large-scale vortex structures resulting from the vortex breakdown and vortex core precession determine the heat and mass transfer processes and flow structure in the vortex tube, and they are sensitive to the operation conditions. To study the vortex structure, attention can be paid to the shape of the reverse flow boundary and the location of the stagnation point, because they are the bond between the hot and cold streams. Based on the understanding of the energy separation mechanism and different flow structures inside a vortex tube, this study proposed a flow structure inside the main tube that bears the best energy separation performance as the optimization criteria for the main tube design. Based on a basic description of the counter flow structure in a confined slender tube, a preliminary quantitative tube design procedure can be realized to achieve the key parameters of the main tube, such as length, diameter, and diameter of the cold exit. (C) 2018 Elsevier Ltd. All rights reserved.
机译:尽管已经进行了许多实验和数值计算以研究具有不同参数的涡流管中的流动结构和能量分离性能之间的关系,但是由于缺乏涡流管,其设计优化方面的进展较少。涡流管内部流动结构的系统分析根据证据,由旋涡破裂和旋涡芯进动产生的大规模旋涡结构决定了旋涡管中的传热传质过程和流动结构,并且它们对运行条件敏感。要研究涡流结构,应注意逆流边界的形状和停滞点的位置,因为它们是冷热气流之间的结合。基于对涡流管内能量分离机理和不同流动结构的理解,本研究提出了一种具有最佳能量分离性能的主管内流动结构作为优化设计的标准。基于对细长管中逆流结构的基本描述,可以实现初步的定量管设计程序,以实现主管的关键参数,例如长度,直径和冷出口直径。 (C)2018 Elsevier Ltd.保留所有权利。

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