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首页> 外文期刊>International Journal of Thermal Sciences >Natural convection of Al2O3-water nanofluid in an inclined enclosure with the effects of slip velocity mechanisms: Brownian motion and thermophoresis phenomenon
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Natural convection of Al2O3-water nanofluid in an inclined enclosure with the effects of slip velocity mechanisms: Brownian motion and thermophoresis phenomenon

机译:Al2O3-水纳米流体在斜罩中的自然对流受滑移速度机制的影响:布朗运动和热泳现象

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摘要

Effects of inclination angle on natural convective heat transfer and fluid flow in an enclosure filled with Al2O3-water nanofluid are studied numerically. The left and right walls of enclosure are kept in hot and cold constant temperature while the other two walls are assumed to be adiabatic. Considering Brownian motion and thermophoresis effect (two important slip velocity mechanisms) the two-phase mixture model has been employed to investigate the flow and thermal behaviors of the nanofluid. The study was performed for various inclination angles of enclosure ranging from gamma = 0 degrees to gamma = 60 degrees, volume fraction from 0% to 3%, and Rayleigh numbers varying from 105 to 10(7). The governing equations are solved numerically using the finite volume approach. The results are presented in the form of streamlines, isotherms, distribution of volume fraction of nanoparticles and Nusselt numbers. They demonstrated that the slip velocity mechanisms have caused the decreasing Nusselt number with increasing volume fraction of nanoparticles. They also indicate important differences between single-phase and two-phase models. In addition, the highest value for Nusselt number is reached at gamma = 30 degrees. Increase in nanoparticle diameter leads to decrease and increase in Nusselt number and non-uniformity, respectively. The investigation of inclination angle effects on natural convection of nanofluid in an enclosure has been carried out for the first time by two-phase mixture model including slip velocity mechanisms (Brownian motion and thermophoresis phenomenon) effects. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:数值研究了倾斜角对填充有Al2O3-水纳米流体的外壳中自然对流换热和流体流动的影响。外壳的左壁和右壁保持在热和冷的恒定温度下,而其他两个壁被认为是绝热的。考虑到布朗运动和热泳效应(两个重要的滑移速度机制),已采用两相混合物模型研究纳米流体的流动和热行为。该研究是针对从gamma = 0度到gamma = 60度,从0%到3%的体积分数以及从105到10(7)不等的瑞利数的各种不同的倾斜角度进行的。用有限体积法数值求解控制方程。结果以流线,等温线,纳米颗粒的体积分数分布和Nusselt数的形式表示。他们证明,滑移速度机制随着纳米粒子体积分数的增加而导致Nusselt数减少。它们还表明了单相模型和两相模型之间的重要区别。此外,在伽玛= 30度时,努塞尔数达到了最大值。纳米粒径的增加分别导致Nusselt数和不均匀性的减少和增加。通过包括滑移速度机制(布朗运动和热泳现象)效应的两相混合模型,首次进行了对外壳中纳米流体自然对流的倾斜角影响的研究。 (C)2016 Elsevier Masson SAS。版权所有。

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