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  • 标题:Modeling and simulation analysis of solar absorption chiller driven by nanofluid-based parabolic trough collectors (PTC) under hot climatic conditions
  • 本地全文:下载
  • 作者:Oussama Rejeb ; Chaouki Ghenai ; Maamar Bettayeb
  • 期刊名称:Case Studies in Thermal Engineering
  • 印刷版ISSN:2214-157X
  • 电子版ISSN:2214-157X
  • 出版年度:2020
  • 卷号:19
  • 页码:1-10
  • DOI:10.1016/j.csite.2020.100624
  • 出版社:Elsevier B.V.
  • 摘要:The performance of solar air conditioning system (SACS) using Lithium-Bromide/water (Li–Br/H 2 O) solution and nanofluid -based parabolic trough collectors (PTC) under hot and humid climate conditions is presented in this study. The main objectives are to investigate the effects of different types of nanofluid (Al 2 O 3 /H 2 O and Cu/H 2 O) and the concentration of nanoparticle Cu (0.2 and 0.5 wt %) on the coefficient of performance (COP) of SACS system during a winter and summer days in desert regions. Mathematical models of the SACS system including the solar PTC, tank storage and the single-effect Li–Br/H 2 O absorption chiller are developed. The numerical simulation results show a good agreement with the experiment data accessible in literature. The results show that Cu/H 2 O nanofluid has the best performance. For the cold day and at noontime, the COP for pure water, 0.5 vol% Al 2 O 3 /H 2 O nanofluid and 0.5 vol% Cu/H 2 O nanofluid are 0.64, 0.68, and 0.74, respectively. The COP during the cold day increases by 12.5% and 15.5% when the concentration of Cu nanoparticle is 0.2 %vol and 0.5 %vol respectively. For the hot day and between 9:00 a.m. to 3:00 p.m. the maximum COP obtained is 0.77, and the effect of nanofluids is negligible. The single LiBr–H 2 O air absorption system reaches its maximum operation. A double effect of LiBr–H 2 O air absorption is needed to improve the performance of the system..
  • 关键词:Solar ; Absorption chiller ; Li–Br;H 2 O ; Single effect nanofluid
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