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首页> 外文期刊>Journal of Thermal Engineering >Optimum Parametric Analysis Based on Thermodynamic Modeling of a Compression Absorption Cascade Refrigeration System
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Optimum Parametric Analysis Based on Thermodynamic Modeling of a Compression Absorption Cascade Refrigeration System

机译:基于压缩吸收级联制冷系统热力学建模的最佳参数分析

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In the present study a cascade refrigeration system (CRS) comprising of a vapor compression refrigeration (VCR) system in the low temperature (LT) stage and a single stage vapor absorption refrigeration (VAR) system in high temperature (HT) stage is analyzed. The scope of this work focuses on the effect of different parameters on the performance of the CRS with the help of a mathematical model. The energy and exergy analysis of the CRS is carried out with CO2 and NH3 as refrigerants in the VCR stage and the pair of H2O-LiBr fluids in the VAR stage. It is observed that COP and exergetic efficiency of the CRS reduce with increase in cascade condenser temperature with CO2 as a refrigerant in VCR stage whereas with NH3 as a refrigerant in VCR stage, the COP increases with increase in cascade condenser temperature, it attains a maximum value and then decreases.
机译:在本研究中,分析了一种级联制冷系统(CRS),其在高温(LT)阶段中的蒸汽压缩制冷(VCR)系统和在高温(HT)阶段的单级蒸汽吸收制冷(VAR)系统中。这项工作的范围侧重于不同参数在数学模型的帮助下对CRS性能的影响。 CRS的能量和漏胀分析用CO2和NH3作为VCR阶段中的制冷剂和var阶段中的一对H2O-LIBL流体进行。观察到CRS的COP和Exergetic效率随着级联冷凝器温度的增加而减少了CO2作为VCR阶段的制冷剂,而在VCR阶段中的制冷剂中,COP随着级联冷凝器温度的增加而增加,它达到最大值值然后减少。

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