首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Investigating the effect of using nanofluids on the performance of a double-effect absorption refrigeration cycle combined with a solar collector
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Investigating the effect of using nanofluids on the performance of a double-effect absorption refrigeration cycle combined with a solar collector

机译:研究使用纳米流体对双效吸收制冷循环性能的影响,与太阳能收集器相结合

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摘要

In this article, the performance of a double-effect LiBr-H2O absorption refrigeration cycle is studied and is improved by applying solar energy and utilizing nanofluids. A trough collector is used to preheat the working fluid before entering the generator of the cycle. In addition, four different nanofluids are considered as the heat transfer fluid of the collector: Al2O3, Ag, Cu, and CuO. The effects of using nanofluids on the outlet temperature of the heat transfer fluid, the temperature of the working fluid entering the generator, the heat produced by the generator, and COP of the cycle are studied. Different concentrations of the nanoparticles from 0 to 2.5% are considered for the nanofluids. The results indicate that in all the concentrations, Ag nanoparticles will have a better performance comparing to the other types. Furthermore, it was concluded that the higher concentrations of the nanoparticles and along with it the higher inlet temperature of the generator will decrease the generator heat production rate up to 4%. Moreover, considering the constant cooling capacity of the cycle, usage of the Ag nanoparticles in the concentration of 2.5% increases the value of COP up to 3.9%, with respect to the pure water.
机译:在本文中,通过应用太阳能和利用纳米流体来研究双效利用LibR-H2O吸收制冷循环的性能。在进入循环的发电机之前,使用槽收集器预热工作流体。此外,四种不同的纳米流体被认为是收集器的传热流体:Al 2 O 3,Ag,Cu和CuO。研究了使用纳米流体对传热流体出口温度的影响,研究了进入发电机的工作流体的温度,发电机产生的热量,以及循环的COP。对于纳米流体,考虑不同浓度为0至2.5%的纳米颗粒。结果表明,在所有浓度中,Ag纳米颗粒将具有更好的性能与其他类型相比。此外,得出结论是,纳米颗粒的较高浓度和随之而来,发电机的较高入口温度将降低发电机热量高达4%。此外,考虑到循环的恒定冷却能力,浓度为2.5%的Ag纳米颗粒的用法增加了纯水的Cop高达3.9%的值。

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