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Effect of hybrid nanofluid on heat transfer performance of parabolic trough solar collector receiver

机译:杂交纳米流体对抛物面槽太阳能收集器热传递性能的影响

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In this study, three-dimensional heat transfer and flow characteristics of hybrid nanofluids under turbulent flow condition in a parabolic trough solar collector (PTC) receiver has been investigated. Ag-ZnO/Syltherm 800, Ag-TiO2/Syltherm 800, and Ag-MgO/Syltherm 800 hybrid nanofluids with 1.0%, 2.0%, 3.0%, and 4.0% nanoparticle volume fractions are used as working fluids. Reynolds number is between 10,000 and 80,000. The temperature of the fluid is taken as 500 K. The C++ homemade code has been written for the nonuniform heat flux boundary condition for the outer surface of the receiver. Variations of thermal efficiency, heat transfer coefficient, friction factor, PEC number, Nusselt number, and temperature distribution are presented for three different types of hybrid nanofluids and four different nanoparticle volume fractions with different Reynolds numbers. Also, the graphs of the average percent increase according to Syltherm 800 are given for the working parameters. According to the results of the study, all hybrid nanofluids are found to provide superiority over the base fluid (Syltherm 800) with respect to heat transfer and flow features. Heat transfer augments with the growth of Reynolds number and nanoparticle volume fraction. Thermal efficiency, which is one of the important parameters for PTC, decreases with increasing Reynolds number and increases with the increasing volume fraction of nanoparticle. It is obtained that the most efficient working fluid for the PTC receiver is the Ag-MgO/Syltherm 800 hybrid nanofluid with 4.0% nanoparticle volume fraction.
机译:在本研究中,研究了抛物线槽式太阳能集热器(PTC)接收器中湍流条件下混合纳米流体的三维传热和流动特性。纳米颗粒体积分数为1.0%、2.0%、3.0%和4.0%的Ag-ZnO/Syltherm 800、Ag-TiO2/Syltherm 800和Ag-MgO/Syltherm 800杂化纳米流体用作工作流体。雷诺数在10000到80000之间。将流体的温度取为500 K.,编写了C++的自制代码,用于接收器的外表面的非均匀热流边界条件。给出了三种不同类型的混合纳米流体和四种不同雷诺数的纳米颗粒体积分数的热效率、传热系数、摩擦系数、PEC数、努塞尔数和温度分布的变化。此外,根据Syltherm 800给出了工作参数的平均增长百分比图。根据研究结果,发现所有混合纳米流体在传热和流动特性方面优于基础流体(Syltherm 800)。随着雷诺数和纳米颗粒体积分数的增加,传热增强。热效率是PTC的重要参数之一,它随雷诺数的增加而降低,随纳米颗粒体积分数的增加而增加。结果表明,PTC接收器最有效的工作流体是Ag-MgO/Syltherm 800杂化纳米流体,其纳米颗粒体积分数为4.0%。

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