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Thermal performance of a parabolic trough linear collector using Al_2O_3/H_2O nanofluids

机译:使用Al_2O_3 / H_2O纳米流体的抛物线槽线性集热器的热性能

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The effect of using nanofluids on the thermal performance of a parabolic trough linear collector (PTLC) was investigated. Experiments were performed to evaluate the thermal efficiency of a PTLC according to the ISO 9806 test. Distilled and deionized water and nanofluids produced by dispersing nanoparticles of alumina (Al2O3) in water with a volume fraction of 1% and 3% were employed as a heat transfer fluid (HTF). Adding nanoparticles increased the thermophysical properties of the base fluid, enhancing the heat transfer between the receiver tube and the working fluid. An increase in the thermal efficiency of the PTLC with respect to the base fluid was achieved for all the nanofluids tested in different ambient conditions and incident angles. For the first set of experiments, maximum efficiencies observed were: 52.4% for 3% volume fraction nanofluid and 40.8% for water. For experiments run later in the year, maximum efficiencies obtained were 57.7% for nanofluid with 1% volume fraction and 46.5% for water. Also, it was found that the efficiency of the nanofluids had a strong dependence on the incident angle, where the highest efficiency was obtained for the smallest angle. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了使用纳米流体对抛物线形槽式线性集热器(PTLC)的热性能的影响。根据ISO 9806测试进行了评估PTLC的热效率的实验。通过将氧化铝纳米颗粒(Al2O3)分散在水中的体积分数分别为1%和3%产生的蒸馏水和去离子水以及纳米流体被用作传热流体(HTF)。添加纳米颗粒增加了基础流体的热物理性质,从而增强了接收管与工作流体之间的热传递。对于在不同环境条件和入射角下测试的所有纳米流体,PTLC相对于基础流体的热效率均得到提高。对于第一组实验,观察到的最大效率为:32.4体积分数的纳米流体为52.4%,水为40.8%。对于今年晚些时候进行的实验,纳米流体的最高效率为57.7%,体积分数为1%,水为46.5%。同样,发现纳米流体的效率对入射角具有强烈的依赖性​​,其中最小的角度获得最高的效率。 (C)2018 Elsevier Ltd.保留所有权利。

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