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Second law based thermodynamic analysis of ammonia-water absorption systems

机译:基于第二定律的氨水吸收系统热力学分析

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The second law of thermodynamics is used to study the performance of single-stage and two-stage ammonia-water absorption refrigeration systems (ARSs) when some input design parameters are varied. The entropy generation of each component and the total entropy generation (S_(tot)) of all the system components as well as the coefficient of performance (COP) of the ARSs are calculated from the thermodynamic properties of the working fluids at various operating conditions. The results show that the two-stage system has a higher S_(tot) and COP, while the single-stage system has a lower S_(tot) and COP. This is a paradox since one would expect that an efficient thermal system should have a higher COP and lower S_(tot). This anomaly is explained with respect to the performance results for both single and two-stage systems. The trend in COP and S_(tot) with the change in heat exchangers effectiveness, absorbers temperatures and condenser and evaporator temperatures for both systems investigated conform with expectation, i.e. an increase in COP corresponds to a decrease in S_(tot).
机译:当某些输入设计参数发生变化时,热力学第二定律用于研究单级和两级氨水吸收式制冷系统(ARS)的性能。根据工作流体在各种工况下的热力学性质,可以计算出每个组分的熵产生和所有系统组分的总熵产生(S_(tot))以及ARS的性能系数(COP)。结果表明,两阶段系统的S_(tot)和COP较高,而单阶段系统的S_(tot)和COP较低。这是自相矛盾的,因为人们期望高效的热力系统应具有较高的COP和较低的S_(tot)。关于单级和两级系统的性能结果说明了这种异常情况。 COP和S_(tot)随换热器效率,吸收器温度以及冷凝器和蒸发器温度的变化的趋势符合预期,即COP的增加对应于S_(tot)的降低。

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