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An air-standard cycle and a thermodynamic perspective on operational limits of Ranque-Hilsh or vortex tubes

机译:关于Ranque-Hilsh或涡流管运行极限的空气标准循环和热力学观点

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摘要

A Thermodynamic air-standard cycle was envisaged for Ranque-Hilsh (R-H) or Vortex Tubes to provide relevant Thermodynamic analysis and tools for setting operating limits according to the conservation laws of mass and energy, as well as the constraint of the Second Law of Thermodynamics. The study used an integral or control volume approach and resulted in establishing working equations for evaluating the performance of an R-H tube. The work proved that the coefficient of performance does not depend on the R-H tube operating mode, i.e., the same value is obtained independently if the R-H tube operates either as a heat pump or as a refrigeration device. It was also shown that the isentropic coefficient of performance displays optima values of cold and hot mass fractions for a given operating pressure ratio. Finally, the study was concluded by comparing the present analysis with some experimental data available in the literature for operating pressures ranging 2-11 atm.
机译:设想为Ranque-Hilsh(RH)或涡流管设计一个热力学空气标准循环,以提供相关的热力学分析和工具,以根据质量和能量守恒定律以及《热力学第二定律》的约束条件来设置运行极限。 。该研究使用积分或控制体积方法,并建立了用于评估R-H管性能的工作方程。这项工作证明,性能系数不取决于R-H管的工作模式,即,如果R-H管用作热泵或制冷装置,则可以独立获得相同的值。还表明,在给定的工作压力比下,性能的等熵系数显示冷和热质量分数的最佳值。最后,通过将当前分析结果与文献中针对2-11 atm的工作压力进行比较的一些实验数据进行比较,得出结论。

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