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Performance assessment of an ice rink refrigeration system through advanced exergoeconomic analysis method

机译:通过先进的人体经济分析方法评估溜冰场制冷系统的性能

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Advanced exergy analysis has gained great importance as a comprehensive evaluation tool for energy conversion systems in recent years. In this regard, splitting the exergy destruction into avoidable/unavoidable parts has enabled us to identify the improvement potential of component while endogenous/exogenous parts of the exergy destruction have been detailed studied to get more information about interactions among the components. An ice rink refrigeration system was investigated using both conventional and advanced exergoeconomic analyses in this paper. The ice rink refrigeration system has a cooling load of 300 kW and ammonia was chosen as refrigerant. Exergy destruction, investment cost rates and exergy destruction cost rates based on these two analyses were calculated first. Endogenous/exogenous and avoidable/unavoidable parts of the exergy destruction, investment cost rates and exergy destruction cost rate for each system component were then presented. Finally, possible solutions to reducing inefficiencies were discussed. It was determined that 47.15% of the total exergy destruction of the system was avoidable while 22.89% of the total exergy destruction of the system was exogenous. The evaporator with 18% endogenous available investment cost rate and the condenser with 64.3% endogenous available exergy destruction cost rate were the two most important components in the ice rink refrigeration system. (C) 2016 Elsevier B.V. All rights reserved.
机译:近年来,作为用于能量转换系统的综合评估工具,高级火用分析已变得非常重要。在这方面,将火用破坏分为可避免/不可避免的部分,使我们能够确定组件的改进潜力,而对火用破坏的内源/外源部分进行了详细研究,以获得有关组件之间相互作用的更多信息。本文使用常规和先进的能效分析方法研究了溜冰场制冷系统。溜冰场制冷系统的制冷负荷为300 kW,氨被选作制冷剂。首先基于这两个分析计算出了火用破坏,投资成本率和火用破坏成本率。然后介绍了每个系统组成部分的内源性/外源性和本能破坏的可避免部分,投资成本率和本能破坏成本率。最后,讨论了降低效率的可能解决方案。可以确定的是,该系统总火用破坏的47.15%是可以避免的,而该系统总火用破坏的22.89%是外生的。溜冰场制冷系统中两个最重要的组成部分是:蒸发器的内生可用投资成本率为18%,冷凝器的内生可用燃烧成本为64.3%。 (C)2016 Elsevier B.V.保留所有权利。

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