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Flow and heat transfer analysis of TiO_2/water nanofiuid in a ribbed flat-plate solar collector

机译:带肋平板太阳能集热器中TiO_2 /水纳米流体的流动和传热分析

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The present paper investigates the turbulent forced convection of TiO2/water nanofluid through a ribbed flat-plate solar collector numerically. A three-dimensional simulation of solid flat-plate with flow through the plain and ribbed duct has been performed. The scale-adaptive-simulation approach has been employed to simulate the flow turbulence. The velocity and temperature profiles, Nusselt number and the efficiency of solar flat-plate solar collector have been studied by using plain and ribbed ducts at different Reynolds number and nanoparticles volume fraction. Results indicate that wake circulation region in the back of the rib is intensified at higher Reynolds number leading to an enhancement in the convective heat transfer. Moreover, the efficiency of flat-plate solar collector increases with the nano particles volume fraction whilst an enhancement in the efficiency of the ribbed duct is approximately 10% higher than that of the plain duct. This enhancement varies for different nanofluids such that the CuO/water nanofluid provides a higher thermal efficiency than that of TiO2/water. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文研究了通过有肋平板太阳能收集器的TiO2 /水纳米流体的湍流强迫对流。进行了通过平板管和肋管的流动的固体平板的三维模拟。规模自适应模拟方法已被用来模拟流动湍流。通过使用不同雷诺数和纳米粒子体积分数的平纹和肋纹管,研究了太阳能平板太阳能集热器的速度和温度分布,努塞尔数和效率。结果表明,在较高的雷诺数下,肋骨后部的尾流循环区域增强,导致对流传热的增强。此外,平板式太阳能收集器的效率随着纳米颗粒体积分数的增加而增加,而肋式管道的效率提高比普通管道的效率提高约10%。对于不同的纳米流体,这种增强作用是不同的,因此,CuO /水纳米流体的热效率高于TiO2 /水。 (C)2018 Elsevier Ltd.保留所有权利。

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