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Natural convection and entropy generation of Al_2O_3-water nanofluid in an inclined wavy-wall cavity

机译:倾斜波浪壁腔中Al_2O_3-水纳米流体的自然对流和熵产生

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A numerical investigation is performed into the natural convection heat transfer performance and entropy generation of Al_2O_3-water nanofluid in an inclined wavy-wall cavity. The simulations focus specifically on the effects of the cavity inclination angle, nanoparticle volume fraction, Rayleigh number and wave amplitude of the wavy surface on the flow streamlines, isotherm distribution, Nusselt number and entropy generation within the cavity. The range of the studied parameters is as follows: cavity inclination angle from 0° to 360°, nanoparticle volume fraction from 0% to 4%, Rayleigh number from 10~2 to 10~6, wavy-surface amplitude from 0.0 to 0.5. The results show that the inclination angle has a strong effect on the flow streamlines, isotherms, local entropy generation and heat transfer performance; particularly at higher Rayleigh numbers. In addition, it is shown that for a given Rayleigh number and cavity inclination angle, the mean Nusselt number increases and the total entropy generation decreases as the volume fraction of Al_2O_3 nanoparticles increases. Finally, it is shown that for a constant Rayleigh number and inclination angle, the Nusselt number in a wavy-surface cavity is higher than that in a regular cavity, while the total energy generation is lower.
机译:对斜波壁腔中自然对流换热性能和Al_2O_3-水纳米流体的熵产进行了数值研究。模拟特别关注腔倾斜角度,纳米颗粒体积分数,波状表面的瑞利数和波幅对流线,等温线分布,努塞尔数和腔内熵的影响。研究的参数范围如下:腔体倾斜角从0°到360°,纳米颗粒体积分数从0%到4%,瑞利数从10〜2到10〜6,波浪面振幅从0.0到0.5。结果表明,倾角对流线,等温线,局部熵的产生和传热性能有很大影响。特别是在较高的瑞利数下。另外,显示出,对于给定的瑞利数和腔倾斜角,随着Al_2O_3纳米粒子的体积分数增加,平均努塞尔数增加并且总熵产生减少。最后,表明对于恒定的瑞利数和倾角,波浪形腔中的努塞尔数大于规则腔中的努塞尔数,而总能量产生较低。

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