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Exergy Flow in Pulse Tube Refrigerators and Their Performance Evaluation Based on Exergy Analysis

机译:基于Deertgy分析的脉冲管冰箱中的暴力流动及其性能评估

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Exergy flow in Orifice Pulse Tube Refrigerators (OPTR) is investigated. Input power to the compressor provides the source of exergy and the input exergy's magnitude diminishes as working fluid passes through each component. The exergy destruction is due to the irreversibility of each component in the refrigerator. The only product of the system is the exergy associated with the refrigeration power. It is shown that for an ideal OPTR, where the orifice is the only source of irreversibility, the exergy destruction is equivalent to the refrigeration power resulting in a second law efficiency of (T_h – T_c)/ T_h for the system. A model for the effect of different system parameters on the irreversibility of the compressor, regenerator, and orifice is developed and exergy flow in the system is analyzed. A proper definition of the second law efficiency for each component is given and it is shown that exergy analysis is a powerful method for understanding the mechanism, performance evaluation, design, and optimization of the pulse tube refrigerator.
机译:在孔板脉冲管制冷机(OPTR)火用流进行了研究。输入功率给压缩机提供有效能的源极和输入有效能的大小减小通过各成分的工作流体通过。火用的破坏是由于在冰箱的各成分的不可逆性。唯一的系统的产物是与所述制冷功率相关联的有效能。结果表明,对于理想的OPTR,其中所述孔口是不可逆转的唯一来源,有效能破坏相当于导致的第二定律效率制冷功率(T_h - T_C)/ T_h为系统。一种用于不同的系统参数对压缩机,再生器,和喷孔的不可逆性的效果模型开发,并在系统火用流进行了分析。的每个组件的第二定律效率的适当的定义,并给出它表明有效能分析对于理解该机制,性能评估,设计,和优化的脉冲管制冷机的一个有效方法。

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