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Investigation of the Effect of R134a/Al 2O 3 –Nanofluid on the Performance of a Domestic Vapour Compression Refrigeration System

机译:R134a / Al 2O 3-纳米流体对家用蒸汽压缩制冷系统性能影响的研究

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The quest for the conservation of energy resources and production of energy systems that are more efficient have introduced the use of nanoparticles in heat transfer fluids. The study investigated the effect of Al2O3nanoparticles on the working fluids of a vapour compression refrigeration system (VCRS) when used with refrigerant R134a. The nanorefrigerant was used in the vapour compression system without system retrofit. The system’s performance analyses were carried out via the freeze capacity tests and energy consumption analysis. The outcome showed that the performance of the Al2O3-dispersed nano-working fluid outperformed that of the conventional working fluid mixture. Specifically, the outcome demonstrated that the system with the nanorefrigerant achieved faster cooling, better performance and improved energy consumption. Thus, using Al2O3nanoparticles in combination with the working fluids of domestic refrigerators was shown to be feasible. Further to this, based on the performance results, it was necessary to find out the very reason behind the improved thermal performance of the nanoparticle dispersed working fluid. This led to the determination of the thermophysical property of the nanolubricant. The results indicate better thermal conductivity and salinity, implying that the nanolubricant has better heat transfer ability than the base oil (Capella D). In addition to this, the results of the viscosity test showed that the presence of the nanoparticles caused a reduction in the lubricant’s viscosity thus portraying a reduction in the energy consumption. However, the pH test results indicate that there may be the need for an improved compressor material selection if the nanorefrigerant will be employed for vapour compression refrigeration purposes in the future.
机译:为了节约能源和更有效地生产能源系统,人们引入了在传热流体中使用纳米颗粒的方法。该研究调查了Al2O3纳米颗粒与制冷剂R134a一起使用对蒸气压缩制冷系统(VCRS)的工作流体的影响。该纳米制冷剂无需系统改造即可用于蒸汽压缩系统。该系统的性能分析是通过冻结能力测试和能耗分析进行的。结果表明,Al2O3分散的纳米工作液的性能优于常规工作液混合物。具体而言,结果表明,具有纳米制冷剂的系统可实现更快的冷却,更好的性能和更低的能耗。因此,将Al 2 O 3纳米颗粒与家用冰箱的工作流体结合使用是可行的。除此之外,基于性能结果,有必要找出改善纳米颗粒分散的工作流体的热性能背后的原因。这导致确定了纳米润滑剂的热物理性质。结果表明更好的导热率和盐度,这意味着纳米润滑剂比基础油(Capella D)具有更好的传热能力。除此之外,粘度测试的结果表明,纳米颗粒的存在导致润滑剂粘度的降低,从而降低了能耗。但是,pH测试结果表明,如果将来将纳米制冷剂用于蒸汽压缩制冷,则可能需要改进压缩机材料的选择。

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