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Simulation of a simple vapour-compression refrigeration system using R134a

机译:使用R134a模拟简单的蒸汽压缩制冷系统

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摘要

A computerized simulation of a simple single-stage vapour-compression refrigeration system has been made. The steady-state simulation uses the accurate property correlations developed by Cleland for refrigerant R134a. The inputs to the program are: evaporator pressure, condenser pressure, superheating at evaporator outlet, subcooling at condenser outlet and compressor isentropic efficiency. The program outputs are: refrigerating effect, compressor work input, coefficient of performance (COP) and suction vapour flow rate per kW of refrigeration. An increase in the evaporator pressure from 150 to 250 kPa improves the COP by 40%. The COP is decreased by 35% when the condenser pressure is increased from 1000 to 1500 kPa. Increasing the superheat at the evaporator outlet from 0 to 16°C improves the COP by 2.6%. An increase in subcooling at the condenser outlet from 0 to 16°C increases the COP by 20%. The COP is improved by 150% when the compressor isentropic efficiency is increased from 0.4 to 1.
机译:一个简单的单级蒸气压缩制冷系统的计算机仿真已经完成。稳态仿真使用Cleland为制冷剂R134a开发的准确的特性相关性。该程序的输入是:蒸发器压力,冷凝器压力,蒸发器出口处的过热,冷凝器出口处的过冷以及压缩机的等熵效率。程序输出为:制冷效果,压缩机工作输入,性能系数(COP)和每千瓦制冷量的吸入蒸汽流量。蒸发器压力从150 kPa增加到250 kPa可将COP提高40%。当冷凝器压力从1000 kPa增加到1500 kPa时,COP降低35%。将蒸发器出口的过热从0增加到16°C可使COP提高2.6%。冷凝器出口的过冷度从0升高到16°C,使COP增加20%。当压缩机的等熵效率从0.4提高到1.时,COP会提高150%。

著录项

  • 作者

    Senawi M. Y.; Mahmod F. W.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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