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Comparative energy, exergy and CO_2 emission evaluations of a LS-2 parabolic trough solar collector using Al_2O_3/SiO_2-Syltherm 800 hybrid nanofluid

机译:使用Al_2O_3 / SiO_2-Syltherm 800杂交纳米流体的LS-2抛物线太阳能收集器的比较能量,Deergy和Co_2排放评估

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The use of hybrid nanofluids in parabolic trough solar collectors (PTCs) is a promising way to improve their performance. There have been some studies on utilization of hybrid nanofluids in PTCs, however there has been no study on utilization of Al2O3/SiO2-Syltherm 800 hybrid nanofluid. In the present study, after showing the superiority of utilization of this hybrid nanofluid in a LS-2 PTC over four previously studied hybrid nanofluids, thermal and hydrodynamic performance evaluation studies together with exergy and environmental analyses have been performed. Also for the sake of comparison Syltherm 800 as the base fluid and the corresponding mono nanofluids of Al2O3 and SiO2 have been considered and for all of the cases the flow regime has been considered turbulent. In some previous studies related to hybrid nanofluids the acceptable range for Reynolds and Prandtl numbers have not been observed, thus the results such as energy and exergy efficiencies and other output parameters stated before are not trustworthy. In this study, proper ranges of 10000-22000 for Reynolds number and 550-600 K for inlet temperature have been considered. The results showed that the energy and exergy efficiencies of the Al2O3/SiO2-Syltherm 800 hybrid nanofluid are always the highest, such that the maximum enhancements compared to those of the base fluid are 5.22 % and 5.49 %, respectively; whereas for mono nanofluid of SiO2 they are 1.71 % and 1.75 % and for mono nanofluid of Al2O3 they are 1.19 % and 1.36 %, respectively. Moreover, the results showed that the hybrid nanofluid is the most suitable with the highest PEC of 1.76. Environmental analysis based on exergoenvironmental method showed that if the hybrid nanofluid is utilized the maximum carbon dioxide emission in the life cycle of PTC is 1.657 kg/day; whereas for Syltherm 800 and mono nanofluids of SiO2 and Al2O3, it is 2.089, 1.925 and 1.961 kg/day, respectively. Energy, exergy and environmental analyses showed that the best performance of PTC is attained when hybrid nanofluid is utilized and Tin and Re are 600 K and 10(4), respectively.
机译:使用杂交纳米流体在抛物线槽太阳能集热器(PTC)中是提高其性能的有希望的方式。有一些关于PTCS中杂交纳米流体的利用的研究,然而没有研究Al2O3 / SiO2-Syltherm 800杂交纳米流体的使用。在本研究中,在揭示了四个先前研究的杂合纳米流体中,在LS-2 PTC中利用这种杂交纳米流体的优越性,已经进行了热和流体动力学性能评估研究。同样为了对比较Syltherm 800作为基础流体和Al 2 O 3和SiO 2的相应单纳米流体已经考虑,并且对于所有情况,流动制度被认为是湍流的。在一些与杂交纳米流体相关的研究中,尚未观察到雷诺和普朗斯特数的可接受范围,因此能源和漏洞效率和其他输出参数之类的结果不值得信赖。在本研究中,已经考虑了用于雷诺数的适当范围为10000-22000,用于入口温度为550-600k。结果表明,Al2O3 / SiO2-Syltherm 800杂交纳米流体的能量和漏效均始终是最高的,使得与基础液相比的最大增强分别为5.22%和5.49%;鉴于SiO2的单纳米流体,它们为1.71%和1.75%,对于Al2O3的单纳米流体分别为1.19%和1.36%。此外,结果表明,杂交纳米流体最适合于1.76的最高PEC。基于Exergoen环境的环境分析表明,如果杂交纳米流体利用PTC生命周期中的最大二氧化碳排放为1.657千克/天;鉴于SiO2和Al2O3的Syltherm 800和Mono纳米流体,分别为2.089,1.925和1.961千克/天。能量,deergy和环境分析表明,当使用杂种纳米流体和锡和RE分别为600 k和10(4)时,PTC的最佳性能也得到了最佳的PTC。

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