A finite time analysis of combined Carnot driving and cooling cycles optimised for maximum refrigeration effect with applications to absorption refrigeration systems

B. Agnew, A. Alikitiwi, A.A. Anderson, E.H. Fisher, I. Potts
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引用次数: 4

Abstract

A finite time analysis of an ideal refrigeration cycle with the objective of maximising refrigeration effect has been performed. The optimised refrigeration cycle has then been combined with an optimised power cycle to produce a combined cycle. The general matching requirements of the two cycles are discussed. The cycles are then combined in a specific way such that they become a model for an ideal absorption refrigeration cycle. The influence of the design parameters on the performance of the combined cycle is analysed. The performance of an experimental absorption unit is compared with the predictions made by the analysis.

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联合卡诺驱动和冷却循环的有限时间分析优化了最大的制冷效果与应用于吸收式制冷系统
以制冷效果最大化为目标,对理想制冷循环进行了有限时间分析。然后将优化的制冷循环与优化的功率循环相结合以产生联合循环。讨论了两个循环的一般匹配要求。然后以特定的方式组合这些循环,使它们成为理想吸收式制冷循环的模型。分析了设计参数对联合循环性能的影响。并将实验吸收装置的性能与分析预测结果进行了比较。
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