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Exergy analysis of helium liquefaction systems based on modified Claude cycle with two-expanders

机译:基于带两个膨胀机的改进的克洛德循环的氦液化系统的火用分析

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Large-scale helium liquefaction systems, being energy-intensive, demand judicious selection of process parameters. An effective tool for design and analysis of thermodynamic cycles for these systems is exergy analysis, which is used to study the behavior of a helium liquefaction system based on modified Claude cycle. Parametric evaluation using process simulator Aspen HYSYS~R helps to identify the effects of cycle pressure ratio and expander flow fraction on the exergetic efficiency of the liquefaction cycle. The study computes the distribution of losses at different refrigeration stages of the cycle and helps in selecting optimum cycle pressures, operating temperature levels of expanders and mass flow rates through them. Results from the analysis may help evolving guidelines for designing appropriate thermodynamic cycles for practical helium liquefaction systems.
机译:耗费大量能源的大规模氦液化系统需要明智地选择工艺参数。能效分析是设计和分析这些系统热力循环的有效工具,它用于研究基于改进的克洛德循环的氦液化系统的行为。使用过程仿真器Aspen HYSYS〜R进行参数评估可帮助确定循环压力比和膨胀机流量分数对液化循环能量效率的影响。该研究计算了循环不同制冷阶段的损失分布,并有助于选择最佳循环压力,膨胀机的工作温度水平以及通过膨胀机的质量流量。分析的结果可能有助于发展指导原则,为实际的氦气液化系统设计合适的热力学循环。

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