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A thermodynamic evaluation on high pressure condenser of double effect absorption refrigeration system

机译:双效吸收式制冷系统高压冷凝器的热力学评估

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摘要

One of the parameters affecting the COP of the absorption system can be considered as the thermal balance between the high pressure condenser (HPC) and the low pressure generator (LPG) since heat rejected from the HPC is utilized as an energy source by the LPG. Condensation of the water vapor in the HPC depends on the heat removal via the LPG. This circumstance is significant for making an appropriate design and a controllable system with high performance in practical applications. For this reason, a thermodynamic analysis for the HPC of a double effect series flow water/lithium bromide absorption refrigeration system was emphasized in this study. A simulation was developed to investigate the energy transfer between the HPC and LPG. The results show that the proper designation of the HPC temperature improves the COP and ECOP due its significant impact, and its value necessarily has to be higher than the outlet temperature of the LPG based on the operating scheme. Furthermore, the COP and ECOP of the absorption system can be raised in the range of 9.72-35.09% in case of 2 degrees C-temperature increment in the HPC under the described conditions to be applied. (C) 2016 Elsevier Ltd. All rights reserved.
机译:可以将影响吸收系统COP的参数之一视为高压冷凝器(HPC)和低压发生器(LPG)之间的热平衡,因为LPG将从HPC排出的热量用作能源。 HPC中水蒸气的冷凝取决于通过LPG排出的热量。这种情况对于在实际应用中进行适当的设计和具有高性能的可控系统具有重要意义。因此,本研究着重研究了双效串联流水/溴化锂吸收式制冷系统的HPC热力学分析。开发了一个模拟来研究HPC和LPG之间的能量转移。结果表明,适当地指定HPC温度可显着改善COP和ECOP,并且根据操作方案,其值必须高于LPG的出口温度。此外,在所应用的条件下,在HPC中温度升高2℃的情况下,吸收系统的COP和ECOP可以提高到9.72-35.09%的范围内。 (C)2016 Elsevier Ltd.保留所有权利。

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