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Energy and exergy analysis of a double effect absorption refrigeration system based on different heat sources

机译:基于不同热源的双效吸收式制冷系统的能量和火用分析

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Absorption refrigeration systems are environmental friendly since they can utilize industrial waste heat and/or solar energy. In terms of heat source of the systems, researchers prefer one type heat source usually such as hot water or steam. Some studies can be free from environment. In this study, energy and exergy analysis is performed on a double effect series flow absorption refrigeration system with water/lithium bromide as working fluid pair. The refrigeration system runs on various heat sources such as hot water, hot air and steam via High Pressure Generator (HPG) because of hot water/steam and hot air are the most common available heat source for absorption applications but the first law of thermodynamics may not be sufficient analyze the absorption refrigeration system and to show the difference of utilize for different type heat source. On the other hand operation temperatures of the overall system and its components have a major effect on their performance and functionality. In this regard, a parametric study conducted here to investigate this effect on heat capacity and exergy destruction of the HPG, coefficient of performance (COP) of the system, and mass flow rate of heat sources. Also, a comparative analysis is carried out on several heat sources (e.g. hot water, hot air and steam) in terms of exergy destruction and mass flow rate of heat source. From the analyses it is observed that exergy destruction of the HPG increases at higher temperature of the heat sources, condenser and absorber, and lower temperature of the HPG, LPG and evaporator. This destruction is maximized when hot air heat source is used and minimized with utilizing hot water heat source. (C) 2015 Elsevier Ltd. All rights reserved.
机译:吸收式制冷系统对环境友好,因为它们可以利用工业废热和/或太阳能。在系统的热源方面,研究人员更喜欢一种类型的热源,例如热水或蒸汽。一些研究可能不受环境的影响。在这项研究中,在以水/溴化锂为工作液对的双效串联流量吸收式制冷系统上进行了能量和火用分析。制冷系统通过高压发生器(HPG)在各种热源上运行,例如热水,热空气和蒸汽,因为热水/蒸汽和热空气是吸收应用中最常用的热源,但是热力学第一定律可能不足以分析吸收式制冷系统并显示对不同类型热源的利用差异。另一方面,整个系统及其组件的工作温度对其性能和功能有重大影响。在这方面,这里进行了一项参数研究,以研究这种影响对HPG的热容量和火用破坏,系统的性能系数(COP)以及热源的质量流量的影响。此外,就火用的破坏和热源的质量流量而言,对几种热源(例如热水,热水和蒸汽)进行了比较分析。从分析中可以观察到,在较高的热源,冷凝器和吸收器温度以及较低的HPG,LPG和蒸发器温度下,HPG的火用破坏增加。当使用热空气热源时,这种破坏最大,而利用热水热源时,这种破坏最小。 (C)2015 Elsevier Ltd.保留所有权利。

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