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Comparative evaluation of a two-stage refrigeration system with flash intercooling using different refrigerants

机译:不同制冷剂闪光闪光冷凝的两级制冷系统的比较评价

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摘要

The aim of this study is to investigate the effect of low global warming potential refrigerants on the optimum intermediate pressure (POPT,int) and performance (COP) values of a refrigeration system with flash intercooling. For realize, the optimum operating parameters of system were determined in low temperature applications through a theoretical analysis according to the different refrigerants (R290, R404A, R407C, R507A, and R22). The theoretical modelling of system is done by optimizing the intermediate pressure at given evaporation (TE) and condensation (TC) temperatures for selected refrigerants. After optimization, the maximized values of COP and Second law efficiency are computed from the predicted values of POPT,int . The linear regression method is then used to derive three correlations of POPT,int , maximum values of COP and Second law efficiency according to TE and TC. Hence, the POPT,int values maximizing the system performance are found from various TE and TC values for each refrigerant. Due to calculations, increasing TE and TC cause the increase in POPT,int in low temperature applications. The R507A system has the highest POPT,int values and R22 system has the lowest POPT’int values. Although R22 system has slightly more efficient than R290 system, it is being phased out world¬wide because of the risk of ozone depletion potential and global warming potential considerations. Therefore, it is important to evaluate the R22 replacement options. The R290 was discovered to have better performance than the R404A, R407C and R507A systems in terms of COPmax (1.81), global warming potential (11), and ozone depletion potential (0) when TE and TC are -35°C and 40°C.
机译:本研究的目的是探讨低全球变暖潜在制冷剂对具有闪光渗漏的最佳中间压力(POPT,INT)和性能(COP)值的影响。为了实现,通过根据不同制冷剂的理论分析(R290,R404A,R407C,R507A和R22),在低温应用中确定系统的最佳操作参数。通过优化所选制冷剂的给定蒸发(TE)和冷凝(TC)温度的优化中间压力来完成系统的理论建模。优化后,从POPT,INT的预测值计算COP和第二律效率的最大值。然后使用线性回归方法来导出POPT,INT,COP和第二律效率最大值的三个相关性,根据TE和TC。因此,从每个制冷剂的各种TE和TC值中找到波波特,最大化系统性能的int值。由于计算,增加TE和TC导致POPT,INT的增加在低温应用中。 R507A系统具有最高的POPT,INT值和R22系统具有最低的POPT'INT值。虽然R22系统略高于R290系统,但由于臭氧消耗潜力和全球变暖潜在考虑的风险,它正在全球范围内。因此,评估R22替换选项非常重要。当TE和TC为-35°C和40°时,R290被发现比R404A,R407C和R507A系统具有更好的性能,而不是COPMAX(1.81),全局变暖电位(11)和臭氧耗尽电位(0) C。

著录项

  • 作者

    Ebru Mancuhan;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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