长沙理工大学学报(自然科学版)
超声速涡流管能量分离效能分析
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作者单位:

(1.长沙理工大学 能源与动力工程学院,湖南 长沙 410114;2.国防科技大学 空天科学学院,湖南 长沙 410073)

作者简介:

通讯作者:

王前程(1989—)(ORCID:0000-0001-7896-983X),男,副研究员,主要从事高速飞行器进排气系统设计和高超声速边界层方面的研究。E-mail:wangqiancheng@nudt.edu.cn

中图分类号:

U463;TB61+91

基金项目:

国家自然科学基金资助项目(11802336)


Analysis of energy separation efficiency of a supersonic vortex tube
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Affiliation:

(1. College of Energy and Power Engineering, Changsha University of Science & Technology, Changsha 410114, China; 2. College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China)

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    摘要:

    【目的】涡流管被广泛应用于各种定点或小范围制冷的工业环节,但因受制于效率低、制冷量小等缺陷而难以进一步推广应用。本文通过对超声速涡流管进行能量分离效能分析,研究涡流管效能优化方法。【方法】用Laval喷嘴替换传统涡流管中的渐缩喷嘴,设计了一种超声速涡流管。通过数值模拟和试验,研究了该涡流管的能量分离效能随结构参数和操作参数的变化规律。对较高入口压力下的工况进行了数值计算,并在较低入口压力下开展了试验,得到了长径比、马赫数和入口压力对超声速涡流管能量分离效能的影响规律。【结果】超声速涡流管效能曲线的数值模拟结果的变化趋势与试验结果的大致相同。当入口压力为12 MPa时,长径比为25的超声速涡流管最佳制冷效应可达57.01 K。【结论】超声速涡流管的制冷、制热效应较好,但其最佳制冷效率远比传统涡流管的低。在一定范围内,增大长径比、喷嘴出口气流马赫数和入口压力可以提高超声速涡流管能量分离效能。

    Abstract:

    [Purposes] Vortex tubes are widely applied in various industrial sectors of fixed-point or small-scale refrigeration. However, the low efficiency and small cooling capacity restrict their large-scale application. The energy separation efficiency of a supersonic vortex tube was analyzed to study methods for optimizing the efficiency of vortex tubes. [Methods] A supersonic vortex tube was designed by replacing the convergent nozzle in the traditional vortex tube with a Laval nozzle. The energy separation efficiency of the supersonic vortex tube was investigated under varying structural and operational parameters through numerical simulation and experiments. The working conditions under high inlet pressure were calculated, and experiments were conducted at low pressure. The effects of length-to-diameter ratio, Mach number, and inlet pressure on the energy separation efficiency of the supersonic vortex tube were obtained. [Findings] The variation trends of the efficiency curves of the supersonic vortex tube in the numerical simulation results are roughly the same as those in the experimental results. When the inlet pressure is 12 MPa, the optimal cooling effect of the supersonic vortex tube with the length-to-diameter ratio of 25 can reach 57.01 K. [Conclusions] The cooling and heating effects of the supersonic vortex tube are good, but its optimal cooling efficiency is lower than that of the traditional vortex tube. Within a specific range, increasing the length-to-diameter ratio, Mach number of the nozzle outlet flow, and inlet pressure can enhance the energy separation efficiency of the supersonic vortex tube.

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引用本文

李乐,赵斌,王前程,等.超声速涡流管能量分离效能分析[J].长沙理工大学学报(自然科学版),2024,21(6):120-129.
LI Le, ZHAO Bin, WANG Qiancheng, et al. Analysis of energy separation efficiency of a supersonic vortex tube[J]. Journal of Changsha University of Science & Technology (Natural Science),2024,21(6):120-129.

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  • 收稿日期:2022-08-14
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  • 在线发布日期: 2025-01-15
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