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Exergy analysis of an ionic-liquid absorption refrigeration system utilizing waste-heat from datacenters

机译:利用数据中心的废热对离子液体吸收式制冷系统进行火用分析

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Ionic-liquid (IL) was introduced as an absorbent of an absorption refrigeration system designed for high power electronics cooling. IL is a salt in liquid-state, which is nonvolatile, thermally-stable, nonflammable, and environmentally-benign. It provides an alternative to the normally toxic working fluids, such as ammonia, also eliminates crystallization and metal-compatibility issues of the water/LiBr system. The performance of IL absorption refrigeration system was theoretically examined using exergy analysis. Various combinations of refrigerant and imidazolium-based ILs were chosen as working fluid pairs. The thermodynamic properties of ILs were evaluated using the correlations based on group contribution methods. A non-random two-liquid (NRTL) model was built and used to predict the solubility of the mixtures. Both the coefficient of performance (COP) and the exergetic coefficient of performance (ECOP) were evaluated. The effects of operating conditions on ECOP were explored. Also, the exergy destruction of each component was evaluated and discussed as a means to identify the critical component(s) of the system that would require optimization. (C) 2014 Elsevier Ltd and IIR. All rights reserved.
机译:引入离子液体(IL)作为吸收制冷系统的吸收剂,该吸收制冷系统设计用于大功率电子设备冷却。 IL是液态的盐,不挥发,热稳定,不可燃且对环境有益。它提供了通常有毒的工作液(如氨水)的替代品,还消除了水/溴化锂系统的结晶和金属相容性问题。 IL吸收式制冷系统的性能在理论上使用了火用分析法进行了检验。选择了制冷剂和咪唑类IL的各种组合作为工作流体对。使用基于组贡献法的相关性评估IL的热力学性质。建立了非随机两液(NRTL)模型,并将其用于预测混合物的溶解度。评估了性能系数(COP)和精力充沛的性能系数(ECOP)。探索了操作条件对ECOP的影响。此外,评估并讨论了每个组件的火用破坏,以此作为确定需要优化的系统关键组件的一种手段。 (C)2014 Elsevier Ltd和IIR。版权所有。

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