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Numerical study of flow and heat transfer characteristics of alumina-water nanofluids in a microchannel using the lattice Boltzmann method

机译:晶格玻尔兹曼方法对微通道中氧化铝-水纳米流体的流动和传热特性的数值研究

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摘要

In the present study, mathematical modeling is performed to simulate force d convection flow of Al_2O_3/water nanofluids in a microchannel using the lattice Boltzmann method (LBM). Simulations are conducted at low Reynolds numbers (Re = 16). Results indicate that the average Nusselt number increases with the increase of Reynolds number and particle volume concentration. The fluid temperature distribution is more uniform with the use of nanofluid than that of pure water. Furthermore, great deviations of computed Nusselt numbers using different models associated with the physical properties of a nanofluid are revealed. The results of LBM agree well with the classical CFD method for predictions of flow and heat transfer in a single channel and a microchannel heat sink concerning the conjugate heat transfer problem, and consequently LBM is robust and promising for practical applications.
机译:在本研究中,使用格子Boltzmann方法(LBM)进行数学建模以模拟微通道中Al_2O_3 /水纳米流体的力d对流。在低雷诺数(Re = 16)下进行仿真。结果表明,平均努塞尔数随雷诺数和颗粒体积浓度的增加而增加。使用纳米流体的流体温度分布比纯水更均匀。此外,揭示了使用与纳米流体的物理特性相关的不同模型计算出的努塞尔数的巨大偏差。 LBM的结果与关于共轭传热问题的单通道和微通道散热器中的流动和热传递的预测的经典CFD方法非常吻合,因此LBM的功能强大且在实际应用中很有希望。

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